US10537117B2
The present invention relates to a product comprising: a container (1) having a volume Vc, sealed by a sealing (6), and a dairy composition (2), having a volume Vd, which is comprised in the sealed container, characterized in that the dairy composition comprises caseinomacropeptide (CMP) and 0.60
US10537107B2
Gelatinous materials combined with the Colloidal Silver additive to formulate an antimicrobial product having cushioning properties. Embodiments of the present invention can include gelatinous materials selected from a group consisting of thermosetting polymer, Styrene-Ethylene-Butadiene-Styrene polymer (SEBS), Thermoplastic Elastomer (TPE), and Polyurethane (PU) gelatin with and without a raised geometry on an outer surface.
US10537106B2
A gold nanoparticle-based assay for the detection of a target molecule, such as Hepatitis C Virus (HCV) RNA in serum samples, that uses positively charged gold nanoparticles (AuNPs) in solution based format. The assay has been tested on 74 serum clinical samples suspected of containing HCV RNA, with 48 and 38 positive and negative samples respectively. The developed assay has a specificity and sensitivity of 96.5% and 92.6% respectively. The results obtained were confirmed by Real-Time PCR, and a concordance of 100% for the negative samples and 89% for the positive samples has been obtained between the Real-Time PCR and the developed AuNPs based assay. Also, a purification method for the HCV RNA has been developed using HCV RNA specific probe conjugated to homemade silica nanoparticles. These silica nanoparticles have been synthesized by modified Stober method. This purification method enhanced the specificity of the developed AuNPs assay. The method can detect a target molecule, such as HCV RNA in serum, by employing modified silica nanoparticles to capture the target from a biological sample followed by detection of the captured target molecule using positively charged AuNPs. The assay is simple, cheap, sensitive and specific. Another aspect of the invention is anisotropic silver nanoparticles and methods of their use.
US10537101B2
The present invention relates to a method for reducing the phytotoxicity of systemic fungicides, mainly triazoles, in susceptible cultivars, mainly soy cultivars. The present method makes it unnecessary to develop new diversified fungicide formulations and to add specific substances to reduce the toxicity of these products.
US10537100B2
The present invention relates to a pesticide composition comprising at least one pesticidal active ingredient and at least one methylendioxyphenyl derivative compound of Formula (I), wherein R1 is a linear (C4-C6)alkyl.
US10537093B2
An electronic gas dispenser control system having backflow and pressure sensors is described.
US10537088B2
A system for storing and cooling milk includes a cooling tank to store milk, a first sensor monitoring the filling level of milk in the cooling tank, and a cooling system cooling the milk in the cooling tank including a cooling device, a second sensor, and a control device. The cooling device includes an evaporator, a varying-capacity modulated scroll compressor connected with its suction side to the evaporator, a condenser connected to the high pressure side of the compressor, and an expansion valve interconnected between the condenser and the evaporator. The second sensor monitors a parameter indicative of the pressure at the suction side of the compressor. The control device is operatively connected to the first sensor to receive the monitored filling level, the second sensor to receive the monitored parameter, and the compressor to control the capacity thereof in response to the monitored filling level and the monitored parameter.
US10537078B1
A soybean cultivar designated 78221232 is disclosed. The invention relates to the seeds of soybean cultivar 78221232, to the plants of soybean cultivar 78221232, to the plant parts of soybean cultivar 78221232, and to methods for producing progeny of soybean cultivar 78221232. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar 78221232. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar 78221232, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar 78221232 with another soybean cultivar.
US10537069B2
Adjustment device for automatic adjustment of a spacing between a first and a second cutting blade. The adjustment device includes a connector extending through a recess in the respective first and second cutting blades at right angles to the first and second contact surfaces and arranged to guide the movement of the displaceable cutting blades relative to the other cutting blade. The adjustment device further includes a first stop fixed to one end of the connector and arranged in contact with the outer surface of the second cutting blade, and an adjustment means located at the opposite end of the connector and arranged to apply a pre-tensioning force on the outer surface of the first cutting blade and maintain first and second contact surfaces of the first and second cutting blades in contact.
US10537066B1
A continuous baler having a movable section having an open mode and a closed mode. In the closed mode, the movable section is joined to a baling half chamber and a tying half chamber to form a baling chamber and a tying chamber, respectively. In the open mode, the movable section is moved away from the baling half chamber and tying half chamber, in order to allow passage of a bale formed in the baling chamber from the baling half chamber to the tying half chamber.
US10537065B2
An adjustable vane system for use with a rotor cage of a threshing system of an agricultural harvester includes a vane. The vane includes: a generally helically curved inner profile; a surface being an outer profile that is opposite the inner profile and is generally helically curved over a portion of the vane, the outer profile being configured to be positioned closer to the rotor cage than the inner profile; and a flat portion located midway along the outer profile.
US10537063B2
A head for an agricultural machine includes a frame with a center segment defining a first longitudinal axis and a wing defining a second longitudinal axis. The head also includes a motion control assembly connecting the center segment and the wing such that the wing is movable relative to the center segment between a deployed position and a non-deployed position. The motion control assembly is configured to maintain the second longitudinal axis in a parallel relationship with the first longitudinal axis as the wing moves between the deployed position and the non-deployed position, and the wing is movable from the deployed position to the non-deployed position along a continuous arc.
US10537061B2
A system and method for monitoring and coordinating harvest operations is disclosed. The system and method includes a control system to real time monitor the grain capacity of one or more harvesters to optimize harvest operations. The control system may also monitor harvest and offload vehicle positions and provide instructions for optimizing harvest operations.
US10537060B2
Systems, methods and apparatus for detecting stalks processed by a combine harvester, for measuring stalk diameters, and for displaying harvest metrics and yield data to a user based on stalk locations and stalk diameters.
US10537057B2
A spool assembly includes a spool formed of a central section including a core wall containing a core and passages extending through the core wall, an upper flange located at an upper portion of the central section, a lower flange located at a lower portion of the central section, and a protrusion section integral with the central section and extending above the upper flange. The protrusion section includes a cut-out formed inside the protrusion section, the cut-out having a non-circular shape adapted to be securely engaged to a drive member of a motor.
US10537056B2
A header for an agricultural harvester comprising a frame and an epicyclical drive operatively connected to the frame. The epicyclical drive includes a first rotatable wheel having a first central rotational axis and a first flange. The first flange includes a first eccentric axis rotatable about the first central rotational axis, and a first output shaft spaced from the first eccentric axis. The epicyclical drive further includes a second rotatable wheel having a second central rotational axis and a second flange. The second flange includes a second eccentric axis rotatable about the second central rotational axis, and a second output shaft spaced from the second eccentric axis. The header further includes a first cutter bar directly connected to the first output shaft and a second cutter bar directly connected to the second output shaft. Operation of the epicyclical drive results in substantially linear oscillating motion of the cutter bars.
US10537055B2
An agricultural planter row unit has a gauge wheel supported by a gauge wheel arm, to control planting depth. An actuator drives movement of a mechanical stop that bears against a gauge wheel support arm to position the gauge wheel support arm to obtain a desired planting depth. A seed depth control system generates a force estimate indicative of a force to make a planting depth adjustment. The control system automatically controls actuation of the seed depth actuator to exert the estimated force.
US10537053B2
An agricultural implement has a hitch frame, a center frame pivotally attached rearward of the hitch frame about a hitch pivot axis. Wing frames are pivotally attached to ends of the center frame and a center actuator is pivots the center and wing frames from a rearward extending operating position to an upward extending transport position. Caster wheels are pivotally mounted on front sides of the wing frames about caster and transport axes. In the operating position, the caster axes are oriented vertically and the transport axes are oriented horizontally, and in the initial transport position, the caster axes are oriented horizontally, perpendicular to the hitch pivot, the transport axes are oriented vertically, and caster wheel actuators pivot the caster wheels 90 degrees about the transport axes to align the caster axes with the hitch pivot axis. The caster wheels support the wing frames in both operating and transport positions.
US10542651B2
An inspection apparatus includes an imaging unit that captures an image of a board having a land on which a solder piece has been printed, an image of the board having a component mounted on the solder piece, or an image of the board having the component soldered to the land, a land determination unit that determines a position of an element on the board other than the land from the image of the board captured by the imaging unit, and determines a position of the land in the image based on the determined position of the element, and an inspection unit that inspects the solder piece or component on the land using the position of the land determined by the land determination unit as a reference.
US10542642B2
A protective housing for shielding an individual against electro-magnetic field (EMF) radiation includes a conductive mesh configured to be suspended from an elevated position, a conductive plane at a base of the protective housing and configured to be a grounding plane for the protective housing, the conductive plane and conductive mesh being configured to shield an interior space, defined by the conductive plane and conductive mesh when suspended, against EMF radiation, and a cable coupled to a circumference of the conductive mesh and configured to weigh down the conductive mesh and to electrically couple the conductive mesh to the conductive plane.
US10542641B2
A data center cooling system includes a thermosiphon, an actuator coupled to the thermosiphon, and a controller. The thermosiphon includes an evaporator; a condenser; and at least one conduit coupled between the evaporator and the condenser to transport a working fluid between the evaporator and the condenser. The controller is coupled to the actuator and configured to operate the actuator to adjust a liquid level of the working fluid in the evaporator based, at least in part, on a parameter associated with a heat load of one or more data center heat generating computing devices.
US10542640B1
Liquid chamber housings are described herein. In one example, an apparatus for liquid chamber housings can include a first housing segment coupled to a first side of a board and a second housing segment coupled to a second side of the board to create a liquid chamber for a portion of the board between the first housing segment and the second housing segment.
US10542635B2
An electronic apparatus includes a liquid immersion tank that stores a refrigerant and has a plurality of slots therein, an electronic device stored in one slot of the plurality of slots and a dummy device stored in another slot of the plurality of slots, formed in a hollow shape, the dummy device having a ceiling portion and a bottom portion, the ceiling portion having a first hole and an opening and closing portion to open and close the first hole, and the bottom portion being open, and a fixing portion that fixes the dummy device to the liquid immersion tank.
US10542630B2
A housing for an electric component and a method for producing a housing for an electric component are disclosed. In an embodiment the housing includes a first housing part and a second housing part, wherein the first housing part is connected to the second housing part in a joining region, and wherein the joining region is at least partially covered by a coating containing sprayed-on particles.
US10542628B2
A housing or enclosure for an electronic device is formed from a shell and chassis may positioned along an interior of the shell. The shell may be formed from a hard or cosmetic material and the chassis may be formed from a machinable material. The chassis may define one or more machined surfaces that are configured to receive or mount a component of the electronic device.
US10542618B1
Embodiments are directed to a printed circuit board and a method of manufacturing the printed circuit board. The PCB is a multi-layer component, including a dielectric material, an intermediate layer positioned adjacent to the dielectric material, and a conductor positioned adjacent to the intermediate layer. The intermediate layer is comprised of fiberglass strands having an associated orientation. When assembled, the fiberglass of the intermediate layer and the conductor having a matching orientation and separation distance from a source to a destination.
US10542617B2
An electronic device is provided. The electronic device includes a printed circuit board having a terminal formed thereon, an image sensor electrically connected to the terminal, and a metal casing enclosing a surface of the image sensor, wherein the metal casing comprises a first portion spaced apart from the printed circuit board by a first distance and a second portion spaced apart from the printed circuit board by a second distance.
US10542615B2
A liquid treatment apparatus includes a liquid storing vessel, a first electrode, a second electrode at least partly arranged inside the vessel, a tubular first insulator surrounding a first-electrode lateral surface with a first space interposed therebetween, and including a first opening in an end surface in contact with the liquid, a tubular second insulator surrounding the first-electrode lateral surface inside the first insulator, a gas supply device supplying gas into the first space and ejecting the gas into the liquid through the first opening, and a power supply applying a voltage between the first and second electrodes and producing plasma. The second insulator is arranged with a second space interposed between the first and second insulators. Portions of the first and second insulators, those portions being positioned inside the vessel, are covered with the gas when the gas is supplied into the first space by the gas supply device.
US10542584B2
Systems, methods, and apparatus are described that provide for communicating coexistence messages over a multi-drop serial bus. A method performed at a device coupled to a serial bus includes receiving first coexistence information directed to a first device coupled to the serial bus, generating a first coexistence message representative of the first coexistence information, converting the first coexistence message to obtain a first datagram including the first coexistence information, and transmitting the first datagram to the first device over the serial bus. The first coexistence message may be configured for communication through a point-to-point data link. The first datagram may be configured according to a first protocol associated with the serial bus.
US10542569B2
A method for accessing communication networks includes receiving by a device an identification of a communication network; determining whether the identification corresponds to a registered communication network; if the identification corresponds to a registered communication network, generating a password for accessing the communication network by applying a cryptographic function parameterized with a secret value associated with the communication network to the identification; and automatically establishing a connection of the device to the communication network using the generated password. Furthermore, methods for managing access to communication networks and providing communication networks are disclosed. A corresponding client device, service infrastructure and service provider infrastructure are also detailed.
US10542568B2
A method of managing access to a wireless communication network (101), comprising: a wireless communication device (101a, 101b, 101c) selecting (S2) an access channel out of a plurality of access channels (CH1, CH2, CH3) for transmission of a data packet based on a traffic type out of a plurality of traffic types (T1, T2, T3) assigned to the data packet.
US10542561B2
A method, a device, and a system for transmitting a downlink signal is provided. The method includes monitoring a first common control channel indicating a downlink (DL) interval of subframe (SF) #(n−1) and SF #n, monitoring a second common control channel indicating a DL interval of SF #n and SF #(n+1), and performing a DL reception process in the SF #n based on a detection result of the first common control channel and a detection result of second common control channel. The DL interval represents occupied OFDM symbols in a DL subframe.
US10542557B2
A method for communicating in a wireless communications system includes receiving, by a first station, an uplink scheduling information and a first frequency resource usage indicator from an access point, the first frequency resource usage indicator indicating a utilization of a first set of network resources for carrying acknowledgement information from the access point. The method also includes transmitting, by the first station, a first data packet to the access point in accordance with the uplink scheduling information and also transmitting, by the first station, a second frequency resource usage indicator to a second station that is not served by the access point, the second frequency resource usage indicator indicating that the first set of network resources are being utilized by the first station.
US10542556B2
Certain aspects of the present disclosure provide techniques for MCS and/or rank selection for UE jointly served by BSs in a CoMP cluster. As described herein, MCS and/or rank selection may be based, at least in part, on the inter-cluster interference and intra-cluster interference experienced by the UE. According to aspects, a CoMP scheduler may assign a UE served by BSs in a CoMP cluster to one of a first group of UEs or a second group of UEs based, at least in part, on inter-cluster and intra-cluster interference experienced by the UE. The scheduler may assign at least one of a MCS or rank selection to the UE based, at least in part, on the assigned group. The scheduler may provide an indication, to one or more BSs in the CoMP cluster, of the at least one MCS or rank selection assigned to the UE.
US10542549B2
According to one configuration, a base station controller monitors use of multiple wireless channels amongst multiple wireless base stations operating in a wireless network environment. In response to detecting under allocation of wireless channels between a first wireless base station and a first group of communication devices, the base station control allocates a supplemental wireless channel to the first wireless base station. In one embodiment, the base station controller de-allocates a wireless channel from a second wireless base station and assigns the de-allocated wireless channel to the first wireless base station as the supplemental wireless channel. The base station controller then transmits a channel allocation communication to the first wireless base station, the channel allocation communication indicating an identity of the supplemental wireless channel allocated for use by the first wireless base station.
US10542548B2
The present invention relates to a method for receiving a device-to-device signal of a terminal in a wireless communication system supporting frequency division duplex (FDD) band and time division duplex (TDD) band-based carrier aggregation. Particularly, the present invention comprises a step for receiving a D2D signal on an uplink cell of the FDD band according to whether a wide area network (WAN) signal of the TDD band is transmitted and received on a specific sub-frame in which the WAN signal is received on a downlink cell of the FDD band, wherein the D2D signal is received when the TDD band transmits the WAN signal and a reception circuit (RX chain) for the TDD band is reconfigured for the uplink cell of the FDD band.
US10542547B2
Systems and techniques are disclosed for selecting service-specific cells that considers additional information about service availability at the cells. A base station stores service availability information in system information. A UE searching for a service-specific cell on which to camp receives the system information with service availability. The UE analyzes its service requirements against the service availability as well as measured radio conditions and selects a cell that enables service-specific support on which to camp. When a change occurs to availability of the service support at the base station, it notifies the camped UE of the change and the UE obtains the changed system information to determine whether to reselect a different cell on which to camp. When a service-specific cell is not available, the UE may select a suitable cell for normal service and periodically perform cell reselection in an attempt to again camp on a service-specific cell.
US10542546B2
The present invention relates to a communications system (1) with at least one node (101, 102, 110), a control instance (10) and a shared communications medium (11). The at least one node is designed to receive messages that are or were transmitted in a first transmission mode. This first transmission mode has a lower data transmission rate and/or transmission complexity than a second transmission mode. The control instance (10) determines a first of the nodes in order to transmit data thereto in the second transmission mode or in order to release the shared communications medium (11) for the first node to transmit data in the second transmission mode. The control instance communicates this to the first node by means of a message (501, 502, 503, 504). This message is transmitted in the first transmission mode.
US10542545B2
A method of beam failure recovery for multi-beam operation in wireless communication systems with beamforming is proposed. Specifically, a four-step beam failure recovery procedure is proposed. In a first step of beam failure detection, UE detects a beam failure condition of the original serving beam pair link. In a second step of new candidate beam identification, UE performs measurements for candidate beam selection. In a third step of beam failure recovery request (BFRQ) transmission, UE transmits a BFRQ message to BS upon the triggering condition for BFRQ transmission is satisfied. In a fourth step of monitoring BS response, UE monitors BS response to decide the success or failure of the beam failure recovery.
US10542537B2
A high speed moving terminal including first and second antennas each communicating with first and second radio units (RUs) of a base station distributedly installed in a mobile wireless backhaul network communicates with the first and second RUs, respectively, with different uplink-downlink configuration of the first RU and the second RU, and transmits control information of the corresponding downlink signal in an uplink subframe that comes first in the time domain after processing latency of a downlink signal received from the first RU among uplink frames with the uplink-downlink configurations of the first RU and the second RU if the downlink signal is received from the first RU through the first antenna.
US10542530B2
Certain aspects of the present disclosure relate to techniques for reducing the decoding complexity for low cost devices (e.g., low cost UEs). One technique may include simplifying the PDCCH format. This may include generating a compact DCI format for transmitting DCI to a low cost device. The compact DCI format may correspond to at least one standard DCI format used by a regular UE and may comprise a reduced number of bits when compared to the standard DCI format. Another technique may include reducing the number of blind decodes. This technique may include selecting a set of resources for transmitting DCI from a limited set of decoding candidates, such that a receiving low cost device need only perform blind decodes for the limited set of decoding candidates.
US10542524B1
Ways of allocating an identifier to a mobile device are disclosed. One method includes receiving a request that requests an address be assigned to the mobile device, considering factors in connection with determining a mobile IP (MIP) address to be assigned to the mobile device, determining the MIP address based on the factors, and conveying the MIP address to the mobile device.
US10542518B2
Measurements from a plurality of Access Points (APs) may be used to determine that at least one AP in the plurality is mobile. Measurements from APs determined to be mobile may be excluded when determining a User Equipment (UE) location. Disclosed embodiments also pertain to AP mobility characterization. AP mobility may be determined based on range rate measurements such as Round Trip Time measurements between the AP and UE; or a Doppler frequency shift relative to a nominal frequency used by the AP for transmissions. Based on range rate measurements, a probability of mobility may be assigned to APs. Information pertaining to APs that are determined to be stationary or associated with a low probability of mobility may be reported to a location server. Information pertaining to APs determined to be mobile or associated with a higher probability of mobility may not be reported to a location server.
US10542513B2
A deregistration method of user equipment in a network and user equipment performing the same is disclosed. The user equipment determines whether the user equipment is in a connection management (CM)_CONNECTED state in a non-3GPP access network and initiates a deregistration procedure through the non-3GPP access network if the user equipment is in the CM_CONNECTED state in the non-3GPP access network.
US10542501B2
A method of transmission power control in a wireless communication system, is discussed. The method can include performing a wide area network (WAN) transmission in a first subframe of a first carrier; and performing a sidelink transmission in a second subframe of a second carrier, wherein if the first subframe and the second subframe overlap in time, a maximum output power for either the WAN transmission in the first subframe or the sidelink transmission in the second subframe is determined on the basis of a maximum output power for the first subframe of the first carrier.
US10542498B2
Methods, tests systems and computers for controlling power delivered to a test volume are provided. According to one aspect, an electromagnetic test system has at least one operational path having a channel emulator output, an amplifier, an attenuator and an antenna. A method includes, for a given desired output power level, C, setting a channel emulator output power to a power level B, and setting the attenuator to a setting A, such that C is a function of B and A. In such embodiments, the attenuation A is calculated based on an upper limit output power of the channel emulator and the desired output power C.
US10542490B2
The present disclosure relates to a 5th Generation (5G) or pre-5G communication system supporting a higher data transfer rate after a 4th Generation (4G) communication system such as Long Term Evolution (LTE). In particular, a method and an apparatus for controlling communication of a terminal in a wireless communication system are provided. The method includes receiving information regarding an operation of a second system by using a first communication module configured to support a first system and controlling an activation state of a second communication module configured to support the second system, based on the information regarding the operation of the second system.
US10542489B2
A terminal wakeup method and an apparatus are disclosed. The method includes: if an access point fails to send a data frame to a station, and the access point fails to send a data frame to the station after channel switching, sending, by the access point, a wakeup signal to the station to wake up the station. According to the method, a data frame loss caused by channel switching can be reduced.
US10542486B1
A method for discovering and resolving a new multiple access point (MAP) controller by an existing MAP controller in a wireless network, comprising collecting, by a high-level controller (HLC) of a device comprising the existing MAP controller, network topology information of the wireless network from the existing MAP controller, determining, by the HLC, that the new MAP controller is connected to the wireless network, and disabling, by the HLC in response to determining that the new MAP controller is connected to the wireless network, the existing MAP controller.
US10542479B2
The present invention relates to a two-step search procedure for D2D communication. A method for D2D communication includes: obtaining a discovery code and a multicast identifier to be used for transmitting additional information on an application program through a D2D multicast subframe, based on an identifier of an application program of a device; and broadcasting the discovery code and the multicast identifier in a discovery subframe.
US10542475B1
When a serving base station encounters a trigger for handover of a UE to a target base station, the serving base station will responsively predict whether, before the serving base station would direct the UE to handover to the target base station, an inactivity timer for the UE will expire, and the serving base station will then control the handover based on that prediction. For instance, responsive to the predicting being that the inactivity timer will expire before the serving base station would send a handover command message to the UE, the serving base station could forgo engaging in handover-preparation signaling with the target base station for the handover, instead allowing the UE to transition to idle mode upon expiration of the timer, at which point the UE could then engage in idle-mode handover to the target base station.
US10542474B2
A method of handling handovers in a cell cluster comprises transmitting, by an anchor cell in the cell cluster, first control information with a first power level to a communication device of the wireless communication system, for the communication device to perform a network entry according to the first control information; and transmitting, by the anchor cell, second control information with a second power level lower than the first power level to the communication device, for the communication device to obtain channel information according to the second control information.
US10542462B2
A system comprises an integrated small cell and WiFi (ISW) gateway (GW). The ISW GW is integrated with a mobility management entity (MME) and serving gateway (SGW) and has interfaces with both a 3 GPP access network and a TWAN. The ISW GW operates as a common control gateway and a common user gateway for both LTE networks and TWANs. User equipment (UE) by means of the ISW GW is able to access the capabilities of a packet data network (PDN) through either the LTE network or TWAN. Further, the ISW GW provides for an existing communication connection between a UE and a PDN to be handed over from one of the LTE network or TWAN to the other. Still further, the ISW GW supports simultaneously maintaining two communication paths, one via the LTE network and one via the TWAN, between a UE and a packet network.
US10542461B2
Embodiments herein relate to apparatuses and methods for relaying a data session of a first wireless device via a second radio access node in a radio communications network, wherein said data session is ongoing towards the first gateway node via a first radio access node in the radio communications network.Embodiments herein also relate to a first and a second wireless device, a ProSe function node, a MME, a gateway node and methods therein.
US10542460B2
When performing a contention protocol, such as Listen-Before-Talk (LBT), an Long Term Evolution (LTE)-Licensed Assisted Access (LAA) node dynamically adapts the ED threshold used by the LTE-LAA node depending on whether other transmission nodes are detected at the frequency components that are to be used by the LTE-LAA node. In one implementation, the ED threshold value may initially be set to a conservative value, and when other transmissions nodes are not detected, the ED threshold value may be set to a more aggressive value. In another implementation, the ED threshold value may initially be set to a more aggressive value, and only when another transmission node is detected, the ED threshold value may be set to a more conservative value. In yet another possible implementation, the ED threshold value and the transmit power may be proportionally modified, for a particular UE, based on a parameter associated with the UE.
US10542459B2
A computing device may include a memory configured to store instructions and a processor configured to execute the instructions to receive a message from a user equipment (UE) device via a Mobility Management Entity (MME), wherein the computing device is configured as a Service Capability Exposure Function (SCEF) device. The processor may be further configured to identify an application server associated with the message based on one or more application server identifiers included in the received message; map uplink data, included in the received message and associated with the identified application server, to an application programming interface (API) associated with the identified application server; and send the mapped uplink data to the identified application server using the API associated with the identified application server.
US10542455B2
A data indication method includes: transmitting a buffer status report to a network side, the buffer status report containing at least one piece of buffer size information, the buffer size information indicating a buffer size to which a logical channel or a logical channel group corresponds; or transmitting a buffer status report of a variable length to a network side; wherein, the buffer status report of a variable length contains buffer size information on a logical channel group with a buffer size being greater than zero when the buffer status report is triggered or before logical channel data are multiplexed, or contains buffer size information on a logical channel group with a buffer size being greater than zero before logical channel data are multiplexed and being equal to zero after the logical channel data are multiplexed.
US10542452B2
Quality of service may be enhanced for high priority traffic. A UE may communicate within a packet switched system, e.g., an LTE network. The UE may use a first or default bearer for signaling messages of high priority services and a second bearer for messages of low priority services. For example, the first bearer may have a quality of service class identifier (QCI) value of 5 while the second bearer may have a QCI value other than 5, (e.g., 6-9). The first bearer may be used for signaling messages associated with voice over IP, video over IP, and/or SMS over IP, as desired. The second bearer may be used for messages (e.g., signaling messages) associated with other, lower priority services. For example, the second bearer may be used for presence messages or instant messages or other lower priority messages.
US10542451B1
Systems and methods are described for managing conflicts between a load balancing protocol and a neighbor relations protocol. Network characteristics for an access node in communication with a plurality of wireless devices may be determined. The plurality of wireless devices may be classified into a high priority class and a low priority class based on a traffic requirement for each of the wireless devices. The determined network conditions my then be compared to a criteria. Based on the comparison, the high priority class of wireless devices may be instructed to perform one of a neighbor relations protocol and a load balancing protocol.
US10542435B2
Systems and methods for Carrier Sense Adaptive Transmission (CSAT) and related operations in unlicensed spectrum are disclosed to reduce interference between co-existing Radio Access Technologies (RATs). The parameters for a given CSAT communication scheme may be adapted dynamically based on received signals from a transceiver for a native RAT to be protected and an identification of how that RAT is utilizing a shared resource such as an unlicensed band. Other operations such as Discontinuous Reception (DRX) may be aligned with a CSAT Time Division Multiplexed (TDM) communication pattern by way of a DRX broadcast/multicast message. Different TDM communication patterns may be staggered in time across different frequencies. Channel selection for a co-existing RAT may also be configured to afford further protection to native RATs by preferring operation on secondary channels as opposed to primary channels.
US10542430B2
Representative embodiments of secure authentication to a resource in accordance with a predefined, electronically stored quorum-based authentication policy include causing electronic interaction among multiple devices that constitute a quorum in accordance with the policy, computationally determining whether the interaction satisfies the policy, and if so, electronically according access to the resource to one or more individuals associated with the interacting device(s).
US10542412B2
Wireless mesh networking protocols for directional transmissions in the PHY layer over multiple hops between a mix of mesh and non-mesh stations (STAs). Joint beamforming (BF) training and mesh network discovery is described including adaptive signaling with the mesh network. The mesh networking protocol can be utilized in a mix of wireless nodes including portals, access points (APs), personal control points (PCPs), and mesh stations (STAs).
US10542400B2
An approach is provided in which a mobile device registered to a first mobile number sends a migration request that initiates a service migration from the first mobile number to a second mobile number. The mobile device receives a list of services that are currently registered to the first mobile number, and sends a selection of one or more of the services to migrate from the first mobile number to the second number. In turn, the mobile device receives a confirmation message that the selected services are migrated from the first mobile number to the second mobile number.
US10542397B2
The invention relates to a system for forwarding articles by individuals of a community, implementing a spatiotemporal tracking system comprising a computing platform including at least one computer application intended to be loaded by portable computing units held by individuals of the community, and embedded devices, coupled to the articles, each comprising second near field wireless communication means, capable of communicating with the first near field wireless communication means, the computing units and the computer module comprising a shared computer application allowing the exchange of data between them.
US10542393B1
Methods, computer-readable media, software, and apparatuses provide a system for controlling access to text messaging capabilities of a mobile computing device of a user while the user is driving. The mobile computing device may be configured to restrict a user from sending or receiving text messages while the user is driving depending on a current driving situation. Whether a user can send or receive text messages may further depend on a priority of the text message or a priority level of a sender or intended recipient of the text message. The system may include devices for collecting information regarding the vehicle and its surroundings and for determining the current driving situation based on the collected information. Further, the system may include devices for maintaining records of the restrictions placed on text messaging and of rewards earned for agreeing to be subject to such restrictions.
US10542384B1
A method is provided that includes accessing, by a server provider server of a service provider, a database storing associations between network addresses and locations. Additionally, the method includes determining a subset of the database corresponding to a first network address, each association included in the subset corresponding to an association between the first network address and a respective location. The method also includes in response to determining that the subset of the database satisfies one or more clustering criteria, calculating a representative location corresponding to the first network address, and storing an association between the first network address and the representative location in a second database.
US10542383B2
A system for micro-locating a portable device including: a plurality of proximity sensors disposed within a vehicle, wherein the proximity sensors are disposed at different locations from each other, and wherein the proximity sensors are each configured to broadcast a signal; a portable device configured to receive the signals broadcast from the proximity sensors to determine its location with respect to the vehicle; and a control module disposed within the vehicle and configured to enable or disable vehicle control features of the portable device based on the location of the portable device.
US10542381B2
Described are systems and methods of aircraft surveillance and tracking. A method for aircraft tracking includes partitioning an airspace region into multiple sectors and generating multiple data structures corresponding respectively to each of the multiple sectors. Each data structure has a primary identifier and at least one secondary identifier that matches the primary identifier corresponding to the at least one other sector. The method includes receiving at least one data packet from an aircraft located within one of the multiple sectors, storing the aircraft data from the data packet within the data structure corresponding to the one of the sectors, storing the aircraft data within each of the data structures that has a secondary identifier matching the primary identifier, and for each of the multiple sectors, sending each aircraft within the sector aircraft data stored within the data structure corresponding to the sector.
US10542378B2
Embodiments of the present application disclose a map generation system and method. By scanning or processing an article in an article shelf, the technical solution of an embodiment of the present application may take as a position of the article a position of a handheld terminal at the time of the scanning or the processing, or take as the position of the article a position of a wireless apparatus corresponding to the scanned or processed article, to generate a navigation map according to the position of each article. The embodiment of the present application realizes the automatic generation of the map and improves the accuracy of drawing the map.
US10542373B2
An information offering apparatus includes an offering unit that offers target information concerning a target of a user's action to the user; and a changing unit that changes the target information in accordance with history information concerning the user's action.
US10542366B1
A content presentation system including a display screen and an array of speakers behind the display screen is described herein. In some examples, speaker-associated screen areas, the volume of a sound, and a screen location of a sound source may be used to determine one or more speakers that are associated with the sound. For example, the volume of a sound and the screen location of a sound source may be used to determine a sound range for the sound that may be used to associate one or more speakers with the sound. In some examples, upon determination of the sound range, one or more speaker-associated screen areas that are wholly or partially included within the sound range may then be identified. Each speaker that is represented by an identified speaker-associated screen area may then be associated with the sound.
US10542361B1
One embodiment provides a system for nonlinear control of a loudspeaker. The system comprises a current source amplifier connected to the loudspeaker, and a controller connected to the current source amplifier. The controller is configured to determine a target displacement of a diaphragm of the speaker driver based on a source signal for reproduction via the loudspeaker, determine a control current based on the target displacement of the diaphragm and a first physical model of the loudspeaker, and transmit a control current signal specifying the control current to the current source amplifier. The current source amplifier outputs the control current to drive the speaker driver based on the control current signal. An actual displacement of the diaphragm during the reproduction of the source signal is controlled based on the control current, via the control current signal.
US10542351B2
Presented herein are non-surgical or superficial coupling apparatuses for transcutaneous bone conduction devices. A coupling apparatus comprises a drive plate configured to be detachably connected to a transcutaneous bone conduction device. The drive plate is also connected to an earhook (ear hook) configured to fit over/around a recipient's pinna (auricle) to at least partially support the drive plate. An adhesive member may also be provided to secure the drive plate to the recipient's skin.
US10542339B1
A mouth cover radio headset for shielding a user's mouth from lip reading includes a headset comprising an ear cover and a flexible band coupled to the ear cover. The flexible band has a top pad and a side pad coupled to a distal end. A radio unit is coupled within the ear cover and comprises a transceiver and a battery. A speaker is coupled within the ear cover and is in operational communication with the radio unit. A boom is coupled to the headset and pivotably extends from the ear cover. An expandable mouth shield is coupled to the boom. The expandable mouth shield has a closed position and an alternate expanded position. The expandable mouth shield is configured to cover a wearer's mouth when in the expanded position. A microphone is coupled to the expandable mouth shield and is in operational communication with the radio unit.
US10542337B2
A microphone transducer is provided, the microphone transducer comprising a housing and a transducer assembly supported within the housing and defining an internal acoustic space. The transducer assembly includes a magnet assembly, a diaphragm disposed adjacent the magnet assembly and having a front surface and a rear surface, and a coil attached to the rear surface of the diaphragm and capable of moving relative to the magnet assembly in response to acoustic waves impinging on the front surface. The transducer assembly further includes a primary port establishing acoustic communication between the internal acoustic space and an external cavity at least partially within the housing, and a secondary port located at the front surface of the diaphragm.
US10542321B2
According to one embodiment of the invention, a computer-implemented method for a digital broadcast system is described. The method involves an operation of receiving an electronic questionnaire that includes a plurality of questions registered to avoid duplication of any one of the plurality of questions. The electronic questionnaire, when processed by a receiver of the digital broadcast system, generates for display a plurality of questions. The receiver acquires answers to the electronic questionnaire, where the answers are used in adjusting content subsequently downloaded to the receiver.
US10542320B2
A coax server acts as a proxy between a coax transmission infrastructure and an Internet Protocol (IP) transmission infrastructure. An incoming request is received from a particular one of a plurality of coax client devices on the coax infrastructure. A request for specific media content is transmitted to a media-on-demand server in response to receiving the incoming request. A media stream is received over the IP infrastructure from the media-on-demand server, the media stream corresponding to the specific media content, and the coax server allocates a coax channel of sufficient bandwidth on the coax infrastructure and transmits the media stream on the coax channel utilizing the RF modulation scheme. A pointer indicating the coax channel on which the media stream is being transmitted is sent to the particular coax client device. The coax channel is unknown to other of the coax client devices besides the particular coax client device.
US10542315B2
Aspects of the subject disclosure include, for example, embodiments that include determining a content context of a first segment of content being presented by a media processor at a display to an audience. Further embodiments include determining an expected audience reaction according to the content context of the first segment, and receiving sensor data captured from a sensor device in proximity to the audience where the sensor data is indicative of a sensed audience reaction to the first segment of the content. Additional embodiments include comparing the sensed audience reaction with the expected audience reaction to determine a level of interest in the first segment, and adjusting a second segment of the content according to the level of interest to generate an adjusted second segment displayable at the display. Other embodiments are disclosed.
US10542311B2
The present invention relates to a display device and a control method therefor, and the objective of the present invention is to display content on a main screen of the display device, enter a magnification mode according to a magnification mode input request received from a remote control, receive, from the remote control, an input for selecting a specific region from the entire region displayed on the main screen, magnify the selected specific region at a predetermined magnification in correspondence with the received selection input, display the magnified specific region on the main screen, and differently display specific information of the magnified specific region on a PIP screen of the main screen according to the predetermined magnification.
US10542309B2
A method of operating an electronic device comprises obtaining a search path. The method also comprises obtaining at least one video content related to the search path and determining intersection points between the at least one video content. The method also comprises extracting parts of the at least one video content corresponding to the search path by using the intersection points and generating video content of the search path by stitching the extracted parts together.
US10542279B2
Temporal motion vector prediction control is described in video coding. In one example, a method includes receiving a plurality of frames representing encoded video, parsing an uncompressed header for each frame, determining whether a temporal motion vector prediction command is included within the parsed uncompressed header of a first frame, selecting a reference frame from a reference list of frames, retrieving motion vector information from the selected reference frame, performing temporal motion vector prediction on the first frame corresponding to the parsed uncompressed header if a temporal motion vector prediction command is included within the parsed header to form a motion predicted frame, applying a loop filter to the motion predicted frame, and rendering the frame as decoded video.
US10542266B2
A device for transcoding a video data stream in the H.264 format into a video data stream in the H.265 format includes circuitry adapted for performing a merging of adjacent macroblocks of the data stream in the H.264 format according to a predetermined criterion of frequency similarity of the discrete cosine transform coefficients of said macroblocks after application of an inverse quantisation operation; and for determining motion vectors in the H.265 format on the basis of motion vectors in the H.264 format by performing, for the macroblocks resulting from the merging of macroblocks issuing from the data stream in the H.264 format, a combination of the motion vectors of said macroblocks issuing from the data stream in the H.264 format.
US10542265B2
Relatively low dynamic range images or image partitions are converted into relatively high dynamic range images or image partitions that comprise reconstructed pixel values having a higher dynamic range than pixel values of the relatively low dynamic range images. Information relating to reconstructed pixel values of the relatively high dynamic range images and pixel values of the relatively low dynamic range images is collected. Prediction parameters are derived from the collected information. A predicted image or image partition is predicted from a relatively low dynamic range image or image partition based on the prediction parameters and comprises predicted pixel values having the higher dynamic range than pixel values of the relatively low dynamic range image or image partition.
US10542264B2
A method and apparatus for decoding JVET video, including receiving a bitstream and generating predictor pixels for angular prediction using pixels at projected positions along both a top reference row (main reference line) and a left reference column (side reference line). By combining projected pixel values on the main reference line with projected pixel values on the side reference, a predictor pixel at coordinate (x,y) can be determined. Further weighting the values according to a distance between predictor pixels and projected pixel positions on the main and side references may be included in the combination of pixel values. The weight parameter may be determined from a weighting table. Further, the weights for horizontal and vertical predictors may be computed based on that of a horizontal and vertical predictor, whichever is more accurate.
US10542261B2
Techniques and systems are provided for decoding video data. For example, a method of decoding video data includes receiving, by a decoding device, an encoded video bitstream generated according to a first coding protocol, and determining that a base layer is to be provided to the decoding device as part of an external bitstream that is different from the received encoded video bitstream. The external bitstream is provided to the decoding device by an external source and is not provided as part of the encoded video bitstream. The base layer is encoded using a second coding protocol that is different from the first coding protocol. The method further includes determining to ignore a profile, tier, and level syntax structure assigned to the base layer in the video parameter set in response to determining the base layer is to be provided to the decoding device as part of an external bitstream. The profile, tier, and level syntax structure is assigned a zero value based on the base layer being provided as part of the external bitstream. The method further includes decoding the encoded video data of the encoded video bitstream.
US10542260B1
Aspects of the disclosure provide a method and an apparatus for video decoding. In some embodiments, the apparatus includes processing circuitry. The processing circuitry receives encoding information of a block associated with a picture in a coded video bitstream. The processing circuitry determines whether the block includes a valid region in the picture and an invalid region outside the picture based on the encoding information. Further, the processing circuitry reconstructs at least one sample in the valid region of the block when the block is determined to include the valid region in the picture and the invalid region outside the picture.
US10542258B2
Tile copying may include decoding a current frame from an encoded video bitstream by decoding, from the encoded video bitstream, tile information for a current tile of the current frame. Decoding the tile information for the current tile of the current frame includes decoding a reference tile offset, and the tile information for the current tile omits encoded tile content information corresponding to the current tile. From the encoded video bitstream, encoded tile content information corresponding to the reference tile is identified based on the reference tile offset, a decoded tile corresponding to the current tile is generated by decoding the encoded tile content information corresponding to the reference tile as the current tile, and the decoded tile is output or stored.
US10542248B2
A method of image processing in a structured light imaging device is provided that includes receiving a captured image of a scene, wherein the captured image is captured by a camera of a projector-camera pair in the structured light imaging system, and wherein the captured image includes a pre-determined hierarchical binary pattern projected into the scene by the projector, wherein the pre-determined hierarchical binary pattern was formed by iteratively scaling a lower resolution binary pattern to multiple successively higher resolutions, rectifying the captured image to generated a rectified captured image, extracting a binary image from the rectified captured image at full resolution and at each resolution used to generate the pre-determined hierarchical binary pattern, and using the binary images to generate a depth map of the captured image.
US10542243B2
A system, article, and method to perform light source estimation for image processing includes measuring a compactness of the distribution of the image data to select a light source.
US10542229B2
The present disclosure relates to a solid-state imaging device, a signal processing method therefor, and an electronic apparatus enabling sensitivity correction in which a sensitivity difference between solid-state imaging devices is suppressed.The solid-state imaging device includes a pixel unit in which one microlens is formed for a plurality of pixels in a manner such that a boundary of the microlens coincides with boundaries of the pixels. The correction circuit corrects a sensitivity difference between the pixels inside the pixel unit based on a correction coefficient. The present disclosure is applicable to, for example, a solid-state imaging device and the like.
US10542224B2
There is provided an imaging device including: an image processing unit; a face recognition processing unit; a storage unit; and a composition processing unit for generating composite data by a composition process so that persons photographed in each of a plurality of image data are included in one image data. The face recognition processing unit recognizes a first person by performing a face recognition process on first image data. When second image data obtained by photographing a second person at the different photographing timing of the first image data, with the same background as the first image data, is recorded in the storage unit, the composition processing unit generates composite data in which the first person and the second person are superimposed on the same background.
US10542222B2
A multiview body camera system with a vest, a helmet, shoulder pads, camera units providing video, directional microphones providing audio, sensors providing motion detection and other functions is described herein. A control module controls camera units, microphones, sensors and all other circuitry. A tamper-proof locking compartment containing elements of the body camera system is operable by a remote control signal transmitted from an authorized party or by a security code. The body camera system features voice command recognition, real time monitoring, recording, storing, remote reporting; alerts the wearer of impending threats, such as approaching cars, persons, objects or gunshots and may incorporate a visor that provides a panoramic view. The body camera integrates all components internally. Bullet resistant material is used in the construction of the vest and helmet. The device operates continuously, and the wearer cannot disrupt the operation without consequence. All recorded data is archived an internal memory.
US10542213B2
There has been a problem that continuous recording of monitoring data may be impeded by inconsistency in setting values, occurring due to changes in settings of an imaging unit or compression encoding unit performed while recording.Provided are a recording source which outputs a stream including compression-encoded video data, instructing means which change a parameter relating to the recording source, according to a command transmitted from an external device connected via a network, and control means which perform control so as to switch whether or not a command by the instructing means as to the recording source correlated with the recording job can be accepted, in accordance with the recording state of the recording job.
US10542212B2
The present technology relates to a control device and a control method that make it possible to estimate a self-position reliably with lower power consumption. An activation determination unit selects some of a plurality of cameras as activation cameras to be used for self-position estimation, and on the basis of the selection result of the activation cameras, an activation switching unit sets cameras taken as the activation cameras among the plurality of cameras to an activation state and causes the cameras to photograph images, and suspends the activation of the other cameras. A self-position estimation unit performs self-position estimation on the basis of images photographed by the activation cameras. Further, the activation determination unit selects the activation cameras again at a predetermined timing. The present technology can be applied to a self-position estimation system.
US10542208B2
Systems and methods for synthesizing high resolution images using image deconvolution and depth information in accordance embodiments of the invention are disclosed. In one embodiment, an array camera includes a processor and a memory, wherein an image deconvolution application configures the processor to obtain light field image data, determine motion data based on metadata contained in the light field image data, generate a depth-dependent point spread function based on the synthesized high resolution image, the depth map, and the motion data, measure the quality of the synthesized high resolution image based on the generated depth-dependent point spread function, and when the measured quality of the synthesized high resolution image is within a quality threshold, incorporate the synthesized high resolution image into the light field image data.
US10542204B2
An apparatus and a method for capturing a bracketing sequence of digital image frames. An apparatus includes a digital camera and at least one memory including camera settings. The apparatus further includes a processor configured to control operation of the digital camera together with the camera settings. The apparatus further includes a user interface for at least one of inputting and adjusting the camera settings. The user interface enables user to manually define an image capture sequence including a first camera setting input and a second camera setting input. The processor is configured to store the image capture sequence in the at least one memory, and to control the digital camera to capture a bracketing sequence of digital image frames using the first camera setting input and the second camera setting input.
US10542200B2
A camera transmits a DECT registration request including DECT camera information. A controller stores the DECT camera information and transmits a DECT registration response including DECT controller information. The camera stores the DECT controller information and transmits a wireless LAN registration request including wireless LAN camera information. The controller stores the wireless LAN camera information and transmits a wireless LAN registration response including wireless LAN controller information. The camera stores the wireless LAN controller information.
US10542197B2
An electronic device includes an illumination module, an image projection module, a camera module and at least one processor. The processor, coupled to the illumination module, the image projection module and the camera module, determines that the electronic device executes a first or second operating mode according to an operation instruction of a user. When the first operating mode is executed, the processor enables the illumination module to generate a medium color temperature light, simultaneously enables the image projection module to project a window screen onto a plane, and allows the use to operate the window screen on the plane. When the second operating mode is executed, the processor enables the illumination module to generate a high color temperature light, simultaneously enables the image projection module to project a preset pattern onto the plane, and turns on the camera module to allow the user to take photo or image.
US10542196B2
A device for relative positioning of multi-aperture optics having several optical channels in relation to an image sensor includes a reference object, a positioning device, and a calculating device. The reference object is arranged such that the reference object is imaged onto one image region per channel in the optical channels by the multi-aperture optics. The positioning device is controllable to change a relative location between the multi-aperture optics and the image sensor. The calculating device is configured to determine actual positions of the reference object in at least three image regions in images of the reference object and to control the positioning device on the basis of a comparison of the actual positions with positions.
US10542192B2
A synchronization signal generation function of an image transmitter is configured to generate an imaging synchronization signal. One or more processors of the image transmitter cause an imager of the image transmitter to perform new imaging every time the imaging synchronization signal is generated and cause communication data corresponding to captured image data output from the imager to be transmitted from a communicator of the image transmitter to an image receiver by radio waves. A synchronization signal generation function of the image receiver is configured to generate a display synchronization signal. One or more processors of the image receiver is configured to generate a display image corresponding to the captured image data from the communication data received by radio waves in a communicator of the image receiver and cause a monitor of the image receiver to display a newly generated display image every time the display synchronization signal is generated.
US10542190B2
A color adjuster includes: a color specifier that specifies a color when an image former forms an image; a pre-modified candidate acquirer that obtains a calculated value to which a profile for forming an image is applied or a colorimetric value of an image forming result with respect to the color specified by the color specifier; a modification history database that stores the calculated value or the colorimetric value obtained by the pre-modified candidate acquirer, the calculated value and the colorimetric value being associated with a past modified value; a modified value determinator that determines a modified value of the calculated value or the colorimetric value obtained by the pre-modified candidate acquirer on the basis of the past modified value stored in the modification history database; and a modified value outputter that displays or outputs the modified value determined by the modified value determinator.
US10542189B2
A print control apparatus that realizes printed matter that appears suitably in a case of observation by reflected light and in a case of observation by transmitted light is disclosed. The print control apparatus, based on data of a source image, generates first print data to be used for printing to a first surface of a recording medium. The print control apparatus also, based on data of the source image, generates second print data that is used for printing to a second surface that is different to the first surface and that represents a higher luminance range, in a luminance range that the data of the source image represents, than a luminance range that the first print data represents.
US10542188B2
An image processing apparatus receives designation of a target color to be removed, obtains the hue and chroma of the designated color, determines the target color based on the obtained hue and chroma, and replaces the signal value of a pixel contained in image data and having a signal value corresponding to a color falling within a predetermined range containing the designated color with a signal value indicating white, thereby performing color removal.
US10542184B2
A photoelectric conversion device includes a photoelectric conversion element to generate an image signal according to an intensity of light being input and circuitry. The circuitry obtains pixel values in dark time, respectively, for at least a first time and a second time. The second time is longer than the first time. The pixel values in dark time represent pixel values obtained when no light is input to the photoelectric conversion element. The circuitry obtains a subtraction between the pixel values for the first time and the pixel values for the second time. The circuitry detects a noise amount based on the subtraction. The circuitry determines at least one pixel having the detected noise amount that is equal to or greater than a predetermined first threshold value, as a defective pixel of the photoelectric conversion element.
US10542183B2
An image processing apparatus performs quantization processing of first multivalued image data, second multivalued image data, and third multivalued image data using a dither pattern including a plurality of threshold pixels having threshold values respectively determined for quantization, generates first recording data by quantizing the first multivalued image data using a dither pattern having a threshold pixel arrangement satisfying a predetermined condition regarding the number of threshold pixels and a predetermined condition regarding low-frequency components corresponding to a frequency region lower than a predetermined frequency in spatial frequency characteristics corresponding to an arrangement of the threshold pixels, generates second recording data by quantizing the second multivalued image data using the dither pattern having the threshold pixel arrangement, and generates third recording data by quantizing the third multivalued image data using the dither pattern having the threshold pixel arrangement and the second multivalued image data.
US10542180B2
A system includes a storage unit that stores history information associating a device executed processing and processed data with each other, a screen display unit that displays a screen in which at least one piece of history information is displayed and that is used for causing the device to execute processing based on the history information selected from the displayed at least one piece of history information, a generating unit that generates instruction information for instructing the device to execute the processing of data corresponding to the history information, a processing executing unit that executes the processing of the data based on the instruction information, and a recording unit that records the device that executed the processing and the processed data in the storage unit as the history information based on the instruction information for instructing the processing of the data executed by the processing executing unit.
US10542175B2
An image reading apparatus includes a conveying unit to convey a document, first and second reading units, a reception unit, a selection unit, and a setting unit. The first reading unit generates image data form a document first side and the second reading unit generates image data from a second side in parallel with the first reading unit reading. The reception unit receives settings regarding a size, an orientation, and a document opening direction of the document. The selection unit selects either a first reading method causing the first and second reading units to read per the set size, and a second reading method causing the first reading unit to read the first side per the set size and causing the second reading unit to read an entire second side. The setting unit sets image data corresponding to the document second side reading by the second reading method.
US10542165B2
An MFP (Multifunction Peripheral) is an image processing apparatus used for a printing method. In the printing method, plural kinds of images are printed on paper. The paper is trimmed after printing. Thereby, each of plural kinds of images can be obtained. The MFP includes a mark attaching unit that arranges marks corresponding to each of a plurality of kinds of images at scheduled cutting positions. As a result, it is possible to easily sort the sheets after cutting.
US10542161B2
An electronic device includes a camera, a location sensor, a display, and a controller. The controller acquires a database including name information of tangible objects, first location information indicating locations of the tangible objects, and first feature point information related to feature points of the tangible objects. The controller generates image recognition information on the basis of a captured image captured by the camera, the image recognition information including distance information indicating a distance from the electronic device to a particular subject and second feature point information related to feature points of the particular subject. The controller identifies a name of the particular subject on the basis of the image recognition information, the database, and second location information indicating a location of the electronic device acquired by the location sensor. The controller causes an overlay image, yielded by overlaying the name on the captured image, to be displayed on the display.
US10542151B2
A system and method is provided for facilitating a communication between a client and an advisor. The system preferably includes a client device, an advisor device, and a host device, all connected via a network. The client device may interact with a website to request a communication with an advisor. The host device may provide the request to the advisor via a mobile application operating on the advisor device. The mobile application may also be used to upload data to the host device and to participate in the scheduled communication, such as a telephone call. Prior to using the application to participate in the communication, the host device may verify the application by calling it and verbally requesting the entry of verification data. If the advisor enters correct data, the application will be considered verified, and the advisor can use it to participate in the scheduled communication with the client.
US10542148B1
Systems and methods described herein can automatically route an inbound call from an identified customer to one of a plurality of agents, the agent being selected on the basis of likelihood of a favorable outcome. The method determines a predictive model appropriate for the identified customer, with model variables including call center data, and targeted marketing data based upon risk data for the customer. An analytical engine calculates outcome predictions by applying the predictive model to values of model variables over a recent time interval. In a time-series analysis, this calculation is repeated while dynamically adjusting the recent time interval, until identifying a call routing option that satisfies a favorable outcome criterion. This method may be used to select the agent to handle the incoming call, and optionally to select a product for that agent to discuss with the identified customer.
US10542147B1
A virtual assistant application, system, and service that interacts with a caller over a telephone, cellular, or VoIP network as the called party's representative when the called party is unavailable, providing answers to queries and performing commands that were provisioned by the called party. The application includes a telephony interface, speech recognition and synthesis, a dialog manager, and knowledge domain. The application can also be configured to interact with a sender of SMS, MMS, or IM messages.
US10542141B2
A system and method, the method comprising receiving, at a processor, an hearing user's (HU's) voice signal from an HU participant during a first call, wherein the first call is a communication across a communication network, the processor programmed to perform the steps of, examining at least a portion of the voice signal to determine an identity of the HU, identifying a voice model associated with the identity of the HU, wherein the voice model comprises a plurality of rules, and further wherein each of the plurality of rules is a rule for transcribing a word in the HU voice signal into text and generating a text output, wherein the text output is a transcription of a plurality of words identified in the HU voice signal, and further wherein at least one of the plurality of words identified is identified using at least one rule of the plurality of rules.
US10542133B2
Various embodiments disclosed herein provide for a system for managing and adding contacts. A first mobile device can display an image that can be recorded by a second mobile device. Similarly, the first mobile device can record an image displayed by the second mobile device. The image data from each mobile device can be transmitted to a cloud based contact management system, which can match the images to contact information associated with each mobile device. The contact management system can then push the contact details of each mobile device to the other mobile device, and/or link social media accounts associated with each mobile device. The contact management system can also store connection records that represent an ongoing authorization to push contact information changes from each user to the other, respectively.
US10542126B2
Systems, methods, and non-transitory computer-readable storage media for allowing an invitee to record a presentation prior to an online conference meeting. For example, invitations to an upcoming meeting hosted on an online conferencing system can be sent by a conference server. The invitation can have a meeting time associated with the meeting. The conference server can receive a request by an invitee of the upcoming meeting. The request can be to access the upcoming meeting prior to the meeting time. In response to the request, the invitee can record a presentation for the upcoming meeting. During the online conference, the recorded presentation can be played.
US10542125B2
A method for configuring a computing device to use a communication protocol is provided. The method is performed by a computing device that includes a host processor coupled to a bus processor and to memory. The method includes receiving, by the host processor, a human-readable configuration file that includes parameters for communication using the communication protocol. The method additionally includes generating, by the host processor, at least one data structure based on the parameters in the human-readable configuration file. Additionally, the method includes providing, to the bus processor, memory location associated with the at least one data structure for use in communicating using the communication protocol.
US10542120B2
An example system for wirelessly providing operating system specific features includes memory and a processor configured to send a device identifier (DID) request to a remote host device via a wireless connection. The processor is to also receive remote host information from the remote host device via the wireless connection. Additionally, the processor is to detect an operating system of the host remote device based on the received remote host information. The processor is to further modify an operation of the system based on the detected operating system of the remote host device. The processor is to then provide, via the wireless connection, an operating system specific feature based on the detected operating system of the remote host device.
US10542115B1
A method of electronic communication via a virtual network function (NFV) implementation of a core network. The method comprises receiving a hypertext transfer protocol (HTTP) content request from a user equipment (UE), wherein the HTTP content request comprises an identification of a content source and determining by an orchestrator service that insufficient NFV processing capacity is available to perform the HTTP content request, where the orchestrator service is an application that executes on a first physical host. The method further comprises dynamically increasing the NFV processing capacity by the orchestrator service, performing the HTTP content request using the increased NFV processing capacity, and returning a HTTP content response to the UE, wherein the HTTP content response does not comprise identification of the content source.
US10542111B2
Data can be communicated across a clustered data processing environment. A server can receive a request and a token from a web user interface component and search for the data object associated with the token in a local cache. If the data object is found, it can be used to communicate with a backend server, in order to receive a response with server-specific data. The response and the data object can be sent back to the web user interface.
US10542110B2
Data can be communicated across a clustered data processing environment. A server can receive a request and a token from a web user interface component and search for the data object associated with the token in a local cache. If the data object is found, it can be used to communicate with a backend server, in order to receive a response with server-specific data. The response and the data object can be sent back to the web user interface.
US10542107B2
Domain Name System (DNS) records of a single site are analyzed. A first one of the DNS records points to an IP address of a service. A second one of the DNS records is not pointed to an IP address of the service and is referencing the first DNS record. An electronic communication is transmitted to an operator for the single site that includes a notification that an IP address of the single site is exposed through the second DNS record.
US10542102B2
A server device is provided that provides a user with a mode for assigning newer privileges. The server device includes: a communication unit for receiving, from a terminal device, position information indicating a position of the terminal device in the real world, the terminal device being held by a user, and a first application being executed in the terminal device; a memory unit for storing a plurality of items stored in correspondence with prescribed locations in the real world; and a control unit for assigning to the user a privilege usable in a second application different from the first application, on the basis of one or more items that are selected by the user from the plurality of items stored in the memory unit and that are arranged in correspondence with locations within a prescribed range from the real-world position indicated by the position information.
US10542096B2
In one embodiment, the present invention is a method and apparatus for social networking in a dynamic environment. In one embodiment, a method for social networking in a network includes broadcasting a first set of one or more keywords representing one or more interests of a first user in the network, receiving a response from a second user in the network indicating interest in at least one of the interests of the first user, and connecting to a server in the network, where the server hosts a group for supporting communications between at least the first network user and the second network user.
US10542094B2
Methods and registrar computers for providing a data feed to a virtual requestor device. The registrar computer maintains a control directory of virtual devices and virtual requestor devices registered therewith. The registrar computer also maintains a data feed directory comprising a list of data feeds available to the at least one virtual requestor device. In addition to including data feeds generated by the virtual devices, the data feed directory also includes at least one data feed generated by the registrar computer. When the registrar computer receives a data feed request for a data feed generated by the registrar computer the registrar computer itself provides the data feed to the virtual requestor device.
US10542083B2
Generally discussed herein are systems and apparatuses for multi-mode collaboration between entities in different jurisdictions. According to an example a technique can include determining a location of a remote communication device by at least one of a global positioning system (GPS), low frequency (LF) atomic time radio, earth magnetic signature, internet protocol (IP) address, and cell phone tower triangulation, determine regulations regarding communication from an internal network to the remote device based on the determined location, and configure the remote device to transmit and receive communications in a manner compliant with the determined regulations including one of voice over internet protocol (VOIP) communication, hypertext transfer protocol (HTTP) communication, text communication, voice communication, video communication, and augmented reality communication.
US10542071B1
Techniques are disclosed for monitoring the health of a computing application, system or service. A health monitoring service performs event driven health status checks for applications that use non-HTTP workloads. To do so, heath status messages (e.g., HTTP status requests) are directed to an API gateway at a specified frequency. In response to each health status message, the API gateway triggers at least a first event driven function to perform a health check of an application. Results of the health-status check performed by the first event driven function may be written to a status database. Further, results of the first event driven function can result in additional event driven functions being triggered (e.g., to remove an unhealthy application from production use).
US10542070B2
A method of processing browser sessions in a telecommunications network is provided. The method includes receiving, from a subscriber client device in a plurality of subscriber devices each having an associated subscriber and a browser session request. The method includes, at the entity in the service provider network: transmitting the browser session request to a server entity located inside or outside the service provider network, receiving, from the server entity, a browser session response in relation to the transmitted browser session request, transmitting the browser session response to the subscriber client device, performing a lookup in the subscriber profile database for the subscriber client device in the plurality or the associated subscriber, and modifying, prior to the respective transmittal, at least one of the browser session request and the browser session response according to the results of the lookup. An apparatus and computer software are also provided.
US10542066B2
A method includes: sending a Real-time Transport Protocol data packet to a client; receiving a bandwidth value and a frame rate value fed back by the client, the bandwidth value and the frame rate value being calculated by parsing the data packet; obtaining a corresponding bandwidth weight according to the bandwidth value, and obtaining a corresponding frame rate weight according to the frame rate value; obtaining a quantization table weight according to the bandwidth weight and the frame rate weight; and matching image transmission data according to the quantization table weight; ands ending matched image data to the client.
US10542044B2
A system reports credentials on nodes of a network. Nodes are assigned to security silos. If a credential reported from a node is found to match a credential found on a node outside of its security silo or be for authentication with a node outside the its security an alert is generated, unless proper precautions are generated. Credentials may be reported as one-way hashes of credentials. Security silos may be automatically generated to segregate at-risk nodes from critical servers based on the presence or use of email clients and browsers. Precautions that may be used to suppress alerts, such as using KERBEROS TGT.
US10542043B2
The technology disclosed relates to enhancing trust for person-related data sources by tracking person-related sources using trust objects that hold trust metadata. In particular, it relates to generating trust-enhanced data by appending trust metadata to social media content and other business-to-business entities, and further using the trust-enhanced data to develop social engagement models based on customer preferences. The trust metadata described includes names, interface categories and origins of the person-related data sources along with customer engagement preferences and connection types.
US10542040B2
The present disclosure relates to an intelligent service (e.g., a smart home, a smart building, a smart car, etc.) based on a 5G communication technology and an IoT related technology. In accordance with an embodiment of the present disclosure, a method is provided for detecting, by a web server in a wireless communication system, a malicious code which is injected into the command stream of a widget miming on a web-based OS in a device. The method includes: analyzing the widget in the web server; determining at least one invariant condition constantly maintained and conserved while the widget is running, on the basis of a result of the analyzing; generating a metadata file including data satisfying the at least one invariant condition; and associating the metadata file with the widget and providing the widget in a state in which the associated metadata file is included in the widget.
US10542038B2
A security appliance may incorporate a touch screen or similar input/output interface, providing command and control over network functionality and configuration, without requiring log in via a network from another computing device. During denial of service attacks, commands from the local interface may be given priority access to processing resources and memory, allowing mitigating actions to be taken, such as shutting down ports, blacklisting packet sources, or modifying filter rules. This may allow the security device to address attacks without having to be manually rebooted or disconnected from the network.
US10542020B2
A home network Intrusion and Detect on Protection System (IDPS) is described. The Home Network IPDS provides a managed client solution that secures client home networks including both wired and wireless networks. The home networks can include not only computer devices and mobile devices, but also can include other connected devices such as smart devices. In embodiments, a software agent hosted on devices within the client's home network detects and scans for threats and provides remediation for the threats including blacklisting and placing compromised devices in a quarantined state. Logs created in response to threats are compared against known threats, and device reputation databases in a service network are maintained for the devices in each managed client network.
US10542019B2
A computer-implemented method (and structure) includes receiving information. The received information is converted into a strictly hierarchical data format. A precision for a releasing the strictly hierarchical data is calculated based on privacy protection levels and a reward for different precision levels. The strictly hierarchical data is sequentially released at the calculated precision.
US10542017B1
The disclosed computer-implemented method for personalizing security incident reports may include (i) generating, within a training dataset, a feature vector for each of a group of security incidents, the feature vector including features that describe the security incidents and the features including response codes that a set of clients previously assigned to the security incidents as labels, (ii) training a supervised machine learning function on the training dataset using the response codes that the set of clients previously assigned to the security incidents, (iii) applying the supervised machine learning function to a feature vector that describes a new security incident on the set of clients to predict that the set of clients will ignore the new security incident, and (iv) personalizing a list of security incidents that is electronically reported to the set of clients by deprioritizing the new security incident. Other methods, systems, and computer-readable media are also disclosed.
US10542009B2
A transaction initialization system serving first and second devices, interconnected by a communication network, each having a speaker and a microphone, which wish to perform a transaction, the system comprising a server; and a client which controls the first device to initiate the transaction by (a) commanding the first device's speaker to generate a transaction-heralding sound and by (b) notifying the server, via said network, of generation of the transaction-heralding sound; and controls the second device, using a processor, to notify the server, via said network, that a particular transaction-heralding sound has been heard; and wherein, at least once, when the server notes that the same transaction-heralding sound has been reported as having been sent and as having been received, the server responsively validates a transaction between the two devices.
US10541996B1
Systems and methods are disclosed that provide for secure communications between a user device and an authentication system. The systems and methods create a dynamic identification for the device that is stored in both the device and authentication system.
US10541994B2
In an example of a system and method for time-based local authentication, an Information Handling System (IHS) may include a processor and a memory coupled to the processor. The memory may have program instructions stored thereon that, upon execution, cause the IHS to generate a first time token and to transmit the first time token to a secondary IHS via a local network, where the secondary IHS is configured to generate a second time token and to transmit the second time token to the IHS via the local network. The IHS may receive the second time token from the secondary IHS and it may determine whether the first time token matches the second time token. In response to the first time token matching the second time token, the IHS may receive access to a protected resource.
US10541991B2
A method for authentication based on a blockchain network is provided. The method includes steps of: an authentication-supporting server (a) if verification is requested by a certificate authority (CA) app, verifying a signature value and transmitting an access token to a user device, supporting the CA-affiliate app to transmit a login request to a CA-affiliate server, and registering the access token in the blockchain network, and transmitting a verification request to the blockchain network to transmit the access token to the authentication-supporting server, and register the access token in the blockchain network, and transmitting the access token to the user device, and transmit the login request to the CA-affiliate server, and (b) performing one of (i) verifying the access token, and (ii) transmitting the verification request to the blockchain network, and transmitting a verification-result to the CA-affiliate server, to allow the CA-affiliate app to log in to the CA-affiliate server.
US10541989B2
Various embodiments provide methods and computing devices configured to implement the methods for dynamically changing an ephemeral shared data set. Various embodiments provide methods and computing devices configured to implement the methods for the dynamic generation of a value that may be used to protect a communication based on the dynamically changed ephemeral shared data set. Various embodiments incorporate the assumption that trusted systems ultimately are demonstrably insecure, because such systems are penetrable and vulnerable. Various embodiments provide a digital communication system that assumes no trust among various network elements, for at least the reason that the digital environment is inherently untrustworthy.
US10541986B2
Methods, apparatus, and systems for authenticating a user taking into account measurement values of characteristics of the purported environment of the user are described. Specifically, in a preferred embodiment, a device is used that comprises a sensor for making said measurement of the location dependent physical property; a memory component for storing a secret value; and a data processing component for generating an electronic signature over said measurement by cryptographically combining said measurement with a secret key comprised in or derived from said secret value.
US10541982B1
Embodiments of the present invention provides a data protection solution which can efficiently tokenize sensitive data submitted by a user device to a public cloud and de-tokenize any tokenized response from the cloud. A small, in-memory token map may be looked up to facilitate the two-way conversions between sensitive data and tokenized data. The token map can be flexibly configured, it may be generated and/or changed on the fly, and its design could preserve data format and provide multilingual support. The innovative tokenization process is fast, secure, scalable through cloud-native design but less costly as compared to prior approaches.
US10541980B2
Disclosed is a file security method for reinforcing file security, which includes: by a first communication device, detecting an access to a file stored in a virtual drive; by the first communication device, requesting a decryption key of the file to a second communication device and receiving the decryption key; and by the first communication device, decrypting the access-detected file by using the decryption key.
US10541976B2
A network device allows inbound connections from external addresses to a computer on a local network while forbidding output connections from the computer to that external address unless preceded by an inbound connection therefrom. In some embodiments, the computer is allowed to accept inbound connections from external addresses but is not permitted to initiate outbound connections to other computers in the local network unless preceded by an inbound connection. In some embodiments, a request from an external address is processed by the network device by transmitting network information for the computer to the external address and temporarily changes network rules to allow connections from the external address. In some embodiments, if the computer attempts a disallowed connection, the connection attempt is routed through a proxy server by providing network data for the proxy server to the computer.
US10541975B2
A gateway device for implementing data security is described herein. The gateway device is coupled between a client device and a server device, and is configured to receive encoded data and a set of operations from the server device in response to a request for cloud services from the client device. The gateway device is configured to decode the encoded data, and to provide the decoded data and the set of operations to the client device. The client device is configured to perform the set of operations on the decoded data, and to incorporate the operation results into an application or interface corresponding to the requested cloud service. The gateway device is configured to encode the operation result data, and to provide the encoded operation result data to the server device for storage.
US10541970B2
A method and system for providing Deep Packet Inspection (DPI) as a service to a computer network are provided herein. The contribution of embodiments of the present invention is two-folded. First, a possible framework of having DPI deployed as a service is detailed, including the necessary algorithms and required adaptations. Second, the superior performance of the suggested design is demonstrated via simulations. Since the focus is on the algorithmic aspects and network design, an SDN implementation of the suggested design is not provided herein. However, many aspects of such an SDN implementation follow closely the guidelines known in the art.
US10541966B1
A method is described that enables communication between two disjoined networks with overlapping IP address ranges. An intermediary function in each of the networks and a unique IP address pool are deployed to facilitate the communication. This method also enables communications between one network with a group of networks with overlapping IP address ranges.
US10541965B2
A social media application, platform, or computer system facilitating same presents a user with an option to post information later, as opposed to immediately. If the user selects to post later, the user may select a time, enter a time, or select a random time for the post to occur. The user may select a range from which the randomly selected posting time occurs. The computer system may be a user device or a server computer device, either of which may determine a random value for use in causing the information-to-be-posted to post randomly within the selected time range. The computer system may analyze multiple posts from multiple source and append information-to-be-posted to postings of others that contain content related to the information-to-be-posted.
US10541956B2
Methods and systems for authenticating and confidence marking e-mail messages are described. One embodiment describes a method of authenticating an e-mail message. This method involves extracting a plurality of e-mail headers associated with the e-mail message, and identifying a sending edge mail transfer agent (MTA). The method then calls for determining if the sending edge MTA is authorized to send the e-mail message.
US10541955B2
A message transmitting method. In the method, a receiving party identifier is acquired; a visual element is acquired; a sound gathering instruction is received; a sound is gathered to form audio data according to the sound gathering instruction; and a message is generated according to the visual element and the audio data, and is transmitted to a message receiver corresponding to the receiving party identifier, so as for the message receiver to present the visual element and play the audio data.
US10541954B1
Using Unary alphabet to express a cyber message, the identities of the message bits can be used to carry a companion message. The P (prime) message, and the C (companion) message can be related or unrelated. The C message may be used to authenticate, or to invalidate the P message and its writer. While the P message may be in the open, the C message may be limited to key-holding readers. The C message may be modified by successive readers while leaving the P message unchanged. A wide range of applications is available on account of the simple idea of writing the primary message via bit-count (ignoring bit identities), leaving the identity assignments to carry the companion message. Alice and Bob may exchange a large number of primary messages, where for most of them the companion message says: “ignore the primary message”. While both Alice and Bob, reading the companion message will regard only the proper messages, an eavesdropper will be thoroughly confused, or receive a misleading impression of the conversation between the two. If the C message is generated via a private key, then a reader of the P+C messages will be able to authenticate the prime message and its writer with the respective public key.
US10541950B2
Forming a group of users for a conversation includes determining when users are accessing information associated with each other, maintaining a group of the users, the group of the users representing a transitive closure over a viewing relationship of the information, displaying, via a display of a user device, digital representations of the users in the group accessing the information, and initiating, based on an action of at least one of the users in the group of users, a conversation.
US10541949B2
An information management system may store information related to tasks to be performed by workers in an organization. Workers in the organization may communicate with the information management system using email messages. The information management system may not require a login or authentication procedure, and workers may interact with the information management system without the need to log in to the information management system. The information management system may receive an email message from a worker that indicates a request for a report. The information management system may determine whether to transmit the report to the worker based on whether the worker is appropriately registered with the information management system, and/or whether the worker has administrative privileges. The information management system, in response to a positive determination, may transmit the report to the email address from which the requesting email message was sent.
US10541946B1
Nodes within a network are configured to adapt to changing path states, due to congestion, node failures, and/or other factors. A node may selectively convey path information and/or other state information to another node by annotating the information into packets it receives from the other node. A node may selectively reflect these annotated packets back to the other node, or other nodes that subsequently receive these annotated packets may reflect them. A weighted cost multipathing selection technique is improved by dynamically adjusting weights of paths in response to feedback indicating the current state of the network topology, such as collected through these reflected packets. In an embodiment, certain packets that would have been dropped may instead be transformed into “special visibility” packets that may be stored and/or sent for analysis. In an embodiment, insight into the performance of a network device is enhanced through the use of programmable visibility engines.
US10541945B2
Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, are described for storing message data in a PubSub system. In certain examples, the method includes storing messages of each of a plurality of channels in a writable portion of a respective buffer for the channel. The method may also include moving a pointer delineating a boundary between the writable portion and a readable portion of the buffer such that the messages are in the readable portion after the pointer has moved. The method may also include allowing one or more subscribers to read from the readable portion of one or more of the buffers during the storing.
US10541938B1
An apparatus in one embodiment comprises at least one processing device having a processor coupled to a memory. The one or more processing devices are operative to configure a plurality of distributed processing nodes to communicate over a network, to obtain metadata characterizing data locally accessible in respective data zones of respective ones of the distributed processing nodes, and to populate catalog instances of a distributed catalog service for respective ones of the data zones utilizing the obtained metadata. Distributed data analytics are performed in the distributed processing nodes utilizing the populated catalog instances of the distributed catalog service and the locally accessible data of the respective data zones. The metadata characterizing the locally accessible data is illustratively obtained in a metadata repository from at least one of a master data management platform and a governance, risk and compliance platform.
US10541929B2
PCC control of HTTP adaptive bit rate video streaming protocols. This PCC control is enforced in a network node that is in communication interaction with a user terminal, UE, and a media server, and is configured to: perform a deep packet inspection, DPI, on IP packets sent from the media server to the UE to detect an association between a plurality of identifiers and corresponding characteristics of respective different media streams representing the same media information; perform a DPI on IP packets sent from the UE to the media server to detect a media stream identifier selected by the UE from said association, the IP packets corresponding to a request to obtain one of the different media streams of the association; and modify the request by replacing the detected media stream identifier selected by the UE with any other of the media stream identifiers of the association.
US10541925B2
Methods and devices for load balancing of connections may include receiving, at a management component on a container host on a computer device, at least one data packet based on a destination IP address of the data packet that corresponds to a plurality of container hosts. The methods and devices may include selecting a destination container from at least one container host on the computer device and other computer devices in communication with the computer device over a virtual network to balance a data load and translating the source IP address of the at least one data packet to a local IP address of the container host. The methods and devices may include changing the destination IP address of the at least one data packet to a virtual IP address of the selected destination container so that the at least one data packet is transformed to a proxy data packet.
US10541923B2
Systems and methods for Segment Routing (SR) Traffic Engineering (SR-TE) in a network include receiving link utilization measurements at a Label Edge Router (LER) with the link utilization measurements flooded by one or more Label Switch Routers (LSRs); and, responsive to one or more of detecting congestion and underutilization on one or more links associated with an SR tunnel at the LER based on the received link utilization measurements, performing one or more actions at the LER to one or more of alleviate the congestion and re-optimize the underutilization. A state of the SR tunnel is maintained only at the LER through a label stack assigned at the LER, and the label stack includes one or more of a node Segment ID (SID) and an adjacency SID.
US10541921B2
Embodiments provide a TCAM-based access control list that supports disjunction operations in rules. A network frame is received. Embodiments determine set TCP flags of the network frame. Upon determining that the set TCP flags match a first entry in a numeric range table, bits of a search key corresponding to the first entry are updated. The search key accesses a second entry stored in a TCAM. The first entry further comprises an encode field to scan a TCP header of the network frame for set TCP flags, a first mask field to a condition corresponding to unset TCP flags to identify in the network frame, a second mask field to a condition corresponding to set TCP flags to identify in the network frame, and an operation field specifying a disjunction operation for comparing the set TCP flags with the first mask field and the second mask field.
US10541916B2
Systems and methods relating to transmitting data between an internetwork of multiple networks. The transmitted data uses a device address that uses a common addressing scheme regardless of network protocols used to implement the multiple networks. The multiple networks includes networks having multiple network protocols, and the multiple networks extend a connection from a home network to a service using a tunnel.
US10541908B2
A communication relay apparatus includes a plurality of LAN ports configured to receive LAN cables respectively, at least one switch configured to switch to any one of a plurality of states, and an aggregator configured to specify a combination of two or more of the plurality of LAN ports in accordance with a state that is designated in the at least one switch, and conduct redundancy or expansion of a communication bandwidth with respect to a communication performed through the LAN cables that are received in the specified LAN ports.
US10541904B2
Examples relate to establishing a network fault detection session. In one example, a routing device may receive a request to initiate a bidirectional forwarding detection (BFD) session with a second routing device; transmit a first echo frame to the second routing device; receive a first response frame; determine that a response time does not meet a response time threshold; in response to the determination, determine that a BFD failure threshold has not been met; after the determination that the BFD failure threshold has not been met, transmit a second echo frame to the second routing device; receive a second response frame; determine whether a second response time meets the BFD response time threshold; and in response to determining that the second response time meets the BFD response time threshold, provide a notification that a BFD session has been established between the routing device and the second routing device.
US10541902B1
Techniques are described for providing network device management. In some implementations, a native mobile device application enables use of a mobile device to add new devices to a network, remove devices from a network, change network and device profile settings, troubleshoot a network, provide an interface into network devices, communications, diagnostics, etc., and provide remote access to the network for installation, programming, troubleshooting, and inclusion.
US10541898B2
Embodiments of the invention relate to a centralized managing system and method for creating, deploying, administering, and managing a plurality of separate and distinct virtual computer networks on a virtualization platform for offering cloud computing services (SaaS). Embodiments of the invention relate to a computer system for a centralized management of separate and distinct virtual computer networks, which has a security grid which has at least one grid processor and a memory device that stores a managing application. The managing application has a virtualization platform, a grid access layer, a virtual computer network template system, a plurality of resource distribution tools and a plurality of monitoring and metering tools. The grid processor is adapted by the managing application so that it can create, deploy, administer, and manage the plurality of separate and distinct computer networks.
US10541895B2
A data processing apparatus is deployed at a cloud network, and includes a plurality of data nodes, a receiver circuit, and an aggregation circuit. The receiver circuit is coupled to the plurality of data nodes and is configured to receive downtime records from a plurality of industrial machines, and to selectively route the downtime records to selected ones of the plurality of data nodes based upon a predetermined criteria. Each of the plurality of data nodes comprises a control circuit and a memory. Each control circuit is configured to, in parallel with the other control circuits, to further populate the downtime records with other data related to the operation of the machines, determine one or more time windows for each of the records, and divide the records according to the time windows.
US10541885B2
Systems and methods for negotiating control of a shared audio or visual resource are disclosed. A request for control of a shared audio or visual resource is received at an arbiter. The arbiter maintains existing state information for ownership of the shared audio or visual resource and ownership transition conditions of the shared audio or visual resource. The request is received from one of a process executing on an embedded system and a process executing on a mobile computing device. New state information regarding ownership of the shared audio or visual resource is determined based at least in part on the request for control and the ownership transition conditions. The new state information indicates which of the processes controls output of the shared audio or visual resource.
US10541884B2
Systems and methods of the present invention provide for a server computer to receive, from a client GUI a request for a recommendation, the request including a designation of a desired assessment score. The server then queries activity data for the user to identify an objective category associated with the user activity and an assessment score for the user below a defined threshold. The server then queries a recommended activity data, tagged with the identified category and a score weighting defining an increase to the assessment score. The server then generates a GUI including a report of the assessment score below the threshold and the recommended activity.
US10541880B2
Systems and methods for regulating data traffic using active learning techniques. In one embodiment, a global monitor communicates with a plurality of sensors over a wide area network. The global monitor builds a global model for a data analytics service that maps elements to values based on data reported by the sensors. The global monitor generates a query for the data from the sensors, selects one or more candidate elements from the elements in the global model, generates a global policy specifying that the data requested from the sensors is limited to the data targeted to the candidate element(s), and sends the query indicating the global policy to the sensors. The global monitor receives the data targeted to the candidate element(s) from the sensors according to the global policy, and adjusts the global model based on the data targeted to the candidate element(s).
US10541876B2
Certain embodiments described herein are generally directed to interconnecting a plurality of local control planes (LCP) for state data exchange. In some embodiments, a first LCP receives the state data and a distribution list from a central control plane (CCP) node. The distribution list may comprise identifiers of LCPs to which the state data relates. In certain embodiments, the first LCP transmits an acknowledgment to the CCP node indicating receipt of the state data. In some embodiments, the first LCP identifies, according to a distribution pattern, one or more target LCPs of those identified in the distribution list. The distribution pattern may be based on information in the distribution list, information stored by the first LCP, or a combination of the two. In some embodiments, the first LCP may transmit the state data to the one or more target LCPs.
US10541866B2
The subject disclosure relates to systems and methods for improving multicast traffic flows in a computer network. In some aspects, a method of the technology includes steps for receiving multicast traffic statistics from each of a plurality of switches in a computer network, aggregating the multicast traffic statistics into a time-series database, and identifying a low-performing multicast flow based on the time-series database. In some aspects, the method can include steps for automatically reconfiguring the computer network to improve the low-performing multicast flow. Systems and machine readable media are also provided.
US10541865B1
In general, techniques are described for remotely monitoring, controlling, and/or adjusting configuration settings related to network access points located within a rental property. In some implementations, rental data that indicates a property that has been rented for a specified rental period is received. Sensor data collected by one or more sensors of the property during the specified rental period is obtained. A current occupancy of the property during the specified rental period is determined from the sensor data. Network data indicating network activity over a network access point of the property is obtained during the specified rental period. The network access point is configured during the specified rental period based at least on the network activity indicated by the network data and the current occupancy determined for the property from the sensor data.
US10541855B2
An individual session border controller in a cluster of SBCs, e.g., in a Cloud, sends a resource utilization reporting message to the current master resource manager for the cluster. In response to the received utilization reporting message from the individual SBC, the master resource manager determines a mode of operation, e.g. one of: normal, critical or overshoot, for the cluster and a resource allocation for the SBC, the resource allocation method used being different for at least two different modes. The master resource manager communicates the determined cluster mode and the determined resource allocation to the individual SBC, e.g., in a response message. The SBC controls its resource utilization reporting rate as a function of the mode. In at least one mode, e.g., normal mode, the SBC is allowed to use more resources, e.g., X % more, than the amount of resources allocated to the SBC by the master resource manager.
US10541851B2
Methods, systems, and devices for wireless communication are described. A base station may perform an access procedure to obtain access to a shared radio frequency spectrum band during a measurement window and generate a synchronization signal (SS) burst comprising a plurality of SS blocks. The base station may perform a beam sweeping first transmission of the SS burst over the shared radio frequency spectrum based at least in part on the access procedure. In the first transmission or a second transmission, the base station may transmit at least one of a first indication of a time of access to the shared radio frequency spectrum band with respect to the measurement window, a second indication of a transmission beam associated with the SS block, and a third indication of a quantity of remaining SS blocks from the plurality of SS blocks to follow the SS block in the measurement window.
US10541847B2
A method and a device for forming a DFT-spread OFDM symbol including data and pilots, comprising: forming a pilot symbol in the time domain, the pilot symbol comprising at least two parts, a first part of the pilot symbol comprising samples of front pilots, a second part of the pilot symbol comprising null values, performing a DFT-spread OFDM modulation of the pilot symbol, precoding the data, putting the precoded data under the form of a data symbol in the time domain, the data symbol comprising at least two parts, a first part of the data symbol comprising null values, a second part of the data symbol comprising the data, performing a DFT-spread OFDM modulation of the data symbol, modifying a part of the DFT-spread OFDM modulated data symbol, combining the modified DFT-spread OFDM modulated data to the DFT-spread OFDM modulated pilot symbol.
US10541846B2
The present disclosure provides a multi-carrier time-division multiplexing (MC-TDMA) modulation and demodulation method and system. Before multi-carrier modulation is performed on an input symbol, an interleaving allocation and an FFT may be performed, a time domain symbol may be transformed into a frequency domain symbol signal to perform a MDFT treatment. A sending end may adopt an analyzing filter bank structure, and pre-filtering and an IFFT may be performed on a signal successively. A pre-filter may be positioned between an NM point FFT and an M point IFFT, a PAPR value of the system may be reduced using the symmetry of a coefficient of a filter, and a frequency domain symbol signal may be allocated to different sub-bands for multi-carrier modulation.
US10541835B2
In a method for initializing a bus system, and a bus system having a master module and serially disposed bus subscribers, the master module asks the bus subscribers to log into the master module. After logging into the master module, each bus subscriber waits a predefined period of time to see whether a further bus subscriber logs into the master module, and closes the bus system if no further bus subscriber logs into the master module within the predefined period of time.
US10541833B2
According to various aspects and embodiments, a device is provided. The device includes a memory, a Controller Area Network (CAN) controller coupled to a CAN bus, at least one processor coupled to the memory and the CAN controller. The at least one processor is configured to set the CAN controller to a first baud rate, determine a second baud rate, and send, in response to determining the second baud rate, a baud rate change request via the CAN bus, wherein the baud rate change request includes a least an identifier of the second baud rate.
US10541818B2
A method and system for decentralized biometric signing of a digital contract. A digital identity including a private key is created. The private key was encrypted on a mobile device via use of captured biometric data. A digital hash of the digital contract is generated. A user using biometric data is authenticated. Usage of the biometric data is authorized. Responsive to the usage of the biometric data being authorized, the encrypted private key is decrypted. The digital hash is signed with the decrypted private key. The signed digital hash is stored in a blockchain.
US10541817B2
A data generation apparatus includes a processor that executes a process including obtaining target data sequentially from time-series data, the target data including n (n being an integer greater than or equal to 2) data items in a predetermined section of the time-series data, calculating parameter information satisfying a (k−1) order polynomial based on the target data, the (k−1) order polynomial including k random values, k being an integer greater than or equal to 1 and less than n, associating the target data to the parameter information, outputting the target data and the parameter information associated to the target data, attaching a signature to secret information based on a secret distributed protocol. The secret information is calculable by using k pairs of data including the target data and the parameter information associated to the target data, and outputting the secret information attached with the signature.
US10541815B2
A method of maintaining ongoing authentication of a user of an application without the need to enter and re-enter a username and a corresponding password for each session initiated between a client side application residing on a client side platform and a server; and wherein the password is not stored on the server; the method comprising utilising an unbroken chain of one-time pass codes; each pass code in the chain being unique to the username and client side application; each pass code renewed periodically and preferably at least once during each said session.
US10541812B2
An online system provides content item values for content items to be displayed via publisher servers on client devices of users. For example, the content items include text, images, or video for display on user interfaces such as webpages. The online system may compete with other third party systems that also provide content items for display via the publisher servers. To reduce latency between requests and responses by the online system, the online system may pre-determine a candidate content item value before an opportunity occurs to display a content item. The online system may associate candidate content item values with tokens provided to client devices. Additionally, the online system may use different types of content item value predictors that provide a range of content item values and that require varying amounts of latency to determine the content item values.
US10541804B2
Techniques for securely provisioning a set of enclaves are described. A contract owner may register with a shared registry. A subset of enclaves may be selected to be provisioned from among a plurality of enclaves. A keyshare may be requested from one or more provisioning services for each of the subset of enclaves to be provisioned. The requested keyshares may be received from each provisioning service for each of the subset of enclaves to be provisioned. For each of the selected enclaves, the received keyshares may be sent for verification by the enclave. Each of the selected enclaves may send an authenticated and encrypted key derived from the received keyshares.
US10541803B2
Aspects of the disclosed technology provide a method comprising executing different first and second instructions a first and second number of times, respectively, in repeated alternations. The method further comprises measuring spectra of signals emanating as a result of the processor executing the first and second instructions. The method also includes analyzing data indicative of the spectra of the signals to determine side-channel candidate side-band pairs that each have a lower and upper sideband at first and second frequencies, respectively, that are separated by approximately twice the respective alternation frequency. Finally, the method includes identifying a side-channel carrier frequency at a frequency approximately at a midpoint between a side-channel candidate side-band pair's first and second frequency.
US10541796B2
A communication device generates: i) a physical layer (PHY) preamble of a PHY protocol data unit (PPDU), ii) a first portion of a PHY data payload of the PPDU, and iii) a second portion of the PHY data payload. The PHY preamble includes a first training field, and one or more second training fields. The first portion of the PHY data payload and the second portion of the PHY data payload include a plurality of first orthogonal frequency division multiplexing (OFDM) symbols. Each of multiple first OFDM symbols has a first duration. The communication device generates a PHY midamble of the PPDU to be included between the first and second portions of the PHY data payload. The PHY midamble includes one or more third training fields, each including a respective second OFDM symbol having a second duration shorter than the first duration.
US10541795B2
Limited uplink bandwidth radio network devices (30) are supported on wide bandwidth uplink carriers by configuring and controlling the use of multiple control regions within the uplink carrier bandwidth. In some embodiments, the total bandwidth of the uplink carrier is divided into a plurality of sub-band portions, wherein at least one sub-band portion includes at least one control region nominally dedicated to the transmission of uplink control signaling. The control regions may be configured at one or both edges of sub-band portions, or elsewhere within a sub-band portions. Sub-band portions may share a control region. Radio network devices (30) are configured with a specified portion of the uplink carrier bandwidth for use for uplink transmission, which includes at least one control region. The specified portion may comprise an integer number of sub-band portions, or may span only part of one or more sub-band portions. Radio network devices (30) may be dynamically configured to allow or suppress data signaling in control regions.
US10541793B2
Methods and apparatuses of mitigating interference in a heterogeneous network using an inter-cell interference coordination are provided. An interference control server assigns, for each of the UE groups, a set of almost blank subframes (ABS) or non-preferred sub-bands specific to the corresponding one of the UE groups based on the UE group interference relationship and a resource demand for each of the UE groups. A base station assigns a plurality of sets of ABS (or non-preferred sub-bands) to reuse time-domain (or frequency-domain) resources.
US10541790B2
A method and apparatus for providing for full-duplex (FD) operation in time division duplex (TDD) communications are disclosed herein. A wireless transmit/receive unit (WTRU) may receive an indication of a first, UL heavy, TDD uplink (UL)/downlink (DL) configuration and an indication of a second, DL heavy, TDD UL/DL configuration. The WTRU may also receive a grant in a common DL subframe. The WTRU may apply the hybrid automatic repeat request (HARQ) process timing associated with one of the TDD UL/DL configurations for DL HARQ feedback. Also, the WTRU may monitor a set of subframes for a UL or a DL grant. Further, the WTRU may receive a grant in a subframe which may include an indication of a reference TDD UL/DL configuration. The WTRU may then apply the HARQ process timing associated with the reference TDD UL/DL configuration for DL HARQ feedback.
US10541787B2
Provided are a method and an apparatus for transmitting retransmission data using an HARQ in a wireless communication system. Specifically, it is determined whether there is a radio resource for transmitting retransmission data. When the radio resource exists, a DCI format including a retransmission indicator field is configured. The retransmission indicator field indicates whether the retransmission data is general retransmission data or opportune retransmission data. The opportune retransmission data is retransmitted before an ACK/NACK signal for initial transmission data is received. The retransmission data is transmitted through the radio resource according to scheduling of a configured DCI format.
US10541782B2
Aspects of the invention include using a cyclic redundancy code (CRC) multiple-input signature register (MISR) for early warning and fail detection. Received bits are monitored at a receiver for transmission errors. The monitoring includes receiving frames of bits that are a subset of frames of bits used by the transmitter to generate a multi-frame CRC. At least one of the received frames of bits includes payload bits and a source single check bit not included in the multi-frame CRC. It is determined whether a transmission error has occurred in the received frames of bits. The determining includes generating a calculated single check bit based at least in part on bits in the received frames of bits, and comparing the received source single check bit to the calculated single check bit. An error indication is transmitted to the transmitter if they don't match.
US10541780B2
Various features pertain to mitigating interference on downlink/uplink channels caused by bursty traffic transmissions. A transmitting node encodes data into transport blocks, each including code blocks in which the data is encoded. The transport blocks are then wirelessly transmitted over a channel specific to a receiving node, where the code blocks of the transport blocks are transmitted without redundant parity code blocks or with a desired amount of redundant parity code blocks. The transmitting node then receives an indication from the receiving node of a number of failed data code blocks. The transmitting node generates an error correction code sufficient to recover all of the failed code blocks and transmits the error correction code within a new transport block along with new data. The receiving node receives the new transport block including the error correction code and then recovers the failed code blocks from the error correction code via erasure decoding, a combination of erasure decoding and error decoding, and/or other suitable techniques at the code block level.
US10541775B2
The invention relates to a system for sending data in an optical network comprising source nodes (1-1, 1-2, 1-3, 1-4, 1-5), each capable of generating, in a spectral band that is associated with it, a multi-carrier optical data signal obtained by modulation of a source signal at a source wavelength and of sending this signal in the form of single-band data bursts (11-13, 21-23, 31-33, 41-43, 51-53) that can be associated with distinct source wavelengths, and a combiner (1,2) for combining single-band data bursts, sent by the source nodes in the spectral bands that are associated with them, into multi-band data bursts (61-63, 71-73) occupying a spectral band corresponding to a juxtaposition of the spectral bands associated with the source nodes. In this system, a unit for controlling an instant of sending of said single-band data bursts by the source nodes, implements a control plane taking account of a path time of the single-band data bursts sent by the source nodes to the combiner.
US10541773B2
In some embodiments of the invention, OFDM symbols are transmitted as a plurality of clusters. A cluster includes a plurality of OFDM sub-carriers in frequency, over a plurality of OFDM symbol durations in time. Each cluster includes data as well as pilot information as a reference signal for channel estimation. In some embodiments, a plurality of clusters collectively occupy the available sub-carrier set in the frequency domain that is used for transmission. In some embodiments of the invention data and/or pilots are spread within each cluster using code division multiplexing (CDM). In some embodiments pilots and data are separated by distributing data on a particular number of the plurality of OFDM symbol durations and pilots on a remainder of the OFDM symbol durations. CDM spreading can be performed in time and/or frequency directions.
US10541765B1
One or more processors control processing of radio frequency (RF) signals using a machine-learning network. The one or more processors receive as input, to a radio communications apparatus, a first representation of an RF signal, which is processed using one or more radio stages, providing a second representation of the RF signal. Observations about, and metrics of, the second representation of the RF signal are obtained. Past observations and metrics are accessed from storage. Using the observations, metrics and past observations and metrics, parameters of a machine-learning network, which implements policies to process RF signals, are adjusted by controlling the radio stages. In response to the adjustments, actions performed by one or more controllers of the radio stages are updated. A representation of a subsequent input RF signal is processed using the radio stages that are controlled based on actions including the updated one or more actions.
US10541763B1
A wireless receiver and method of wireless communication determines levels of noise, including interference, in communication channels without need of calibration. A digital test signal is digitally added to digitized noise, and a signal-to-noise-and-interference (SNIR) value is determined from a resulting bit error rate and/or message error rate. The level of noise is then determined from the SNIR. The amplitude of the digital test signal is adjusted to cause the SNIR to be sensitive to the noise level, which can require an SNIR between 1 dB and 10 dB. The system can include a digital test signal generator, or the digital test signal can be stored in a memory. The system can further include a channelizer, demodulator, data correlator, decryptor, and message assembler. Noise and interference level determinations can be used to select an optimal communication channel, and to adjust a transmission power and/or rate to suitable values.
US10541748B1
An automatic power reduction (APR) system for an optical network module, including: a multi-fiber interface including a plurality of ports adapted to be coupled to one or more multi-fiber connectors; a card processor operable to detect a loss of signal on an input port of the plurality of ports and comparing the power of an associated output port to an activation threshold received by the card processor; and a module processor operable to, in the event that the loss of signal is detected on the input port and the power of the output port exceeds the activation threshold, trigger the optical network module to execute an APR routine and attenuate spectrum associated with an affected port using a wavelength selective switch coupled to the plurality of ports.
US10541744B2
Systems and methods for managing a network are disclosed. In an aspect, a method can comprise receiving first information by an access node of a premises network via a first radio frequency band. At least a portion of the first information can be transmitted via a second radio frequency band to a gateway node of the premises network. Second information can be received from the gateway node via the second radio frequency band. At least a portion of the second information can be transmitted via the first radio frequency band to a source of the first information.
US10541742B1
A converter assembly system and method down-converts high frequency communication signals. A first down-converter converts a first input signal to a first intermediate frequency (IF) signal, and a second down-converter converts a second input signal to a second IF signal. A switching assembly, operatively connected to the first and second down-converters, is configured to operate in a first state, in which the first IF signal is routed to a first output and the second IF signal is routed to a second output, and a second state, in which the first and second IF signals are combined into a composite intermediate signal and the composite intermediate signal is routed to at least one of the first output or the second output.
US10541738B1
Self-driving and autonomous vehicles are very popular these days for scientific, technological, social, and economical reasons. In one aspect of this technology, one of the main concerns for an implementation of any V2X technology on a large scale is the issue of congestion control. In large cities and crowded highways during rush hours, each host vehicle can get messages from over 200 other vehicles and several road side units, all working on the same channel and trying to send and receive messages at the same time. With respect to the weather effect on signal, the signal path loss occurs whenever there is moderate (or moderate plus) rain, and because of that, the OBU communications packets are prone to get lost, or communication coverage region gets diminished, depending upon the intensity, speed, angle and temperature of the rainfall/snowfall droplets. We have provided the solutions for these 2 problems, with variations.
US10541733B1
A wireless transceiver including: antennas, components forming transmit and receive chains coupled to the antennas for MIMO communications, voltage sources, power amplifier supply voltage detectors and regulated switches. The components forming the transmit chains include power amplifiers (PA)s each coupled to a corresponding one of the transmit chains for amplifying RF signals of a MIMO communication link and each PA having a supply voltage input. The PA supply voltage detectors each couple to an associated one of the transmit chains to detect changes in an amplitude of the signal thereon and to identify required changes in the supply voltage level of the corresponding PA for transmission of the signal. The regulated switches couple the voltage sources and PAs, and are responsive to each PA's supply voltage detector to switchably couple the supply voltage input of each PA to the voltage sources providing the identified voltage levels during transmission.
US10541730B2
A server-based nuclear containment operations system can be used to monitor structures, systems, components, and personnel within the containment building of a nuclear power facility. The disclosed and claimed concepts relate generally to a method for utilizing near field communication (NFC) on a mobile client device having the dynamic capabilities of a logic-based computerized procedures system (CPS). The client permits the execution of procedures remotely in the field while monitoring the real-time current state and operation of the systems, components, and sensors of a large facility such as a nuclear power plant. This system consists of a client and server application which provide real-time monitoring of procedure adherence and place keeping, facility clearance information, and work order administration (including tracking an operator's procedure adherence) and further provides a capability for operator input. The client portion of the system is wireless and is designed to be taken into the field, which would include areas such as radiological and hazardous area where retrieval of completed paperwork can be impractical. The client has the capability to use NFC for physical component identification which enables clearance verification.
US10541710B2
An encoder for encoding K information bits into a code word of length N′ on the basis of a polar code of length N is provided, wherein N is a power of 2 and greater than or equal to N′. The encoder comprises a memory storing a plurality of bit indices, which comprise a set of N frozen bit indices associated with the polar code of length N, a set of N/2 puncturing bit indices and/or a set of N/2 shortening bit indices and a processor configured to retrieve at least a subset of the plurality of bit indices from the memory, to encode the K information bits using the polar code of length N for obtaining encoded data of length N and to reduce the number of bits of the encoded data to the length N′ for obtaining the code word of length N′.
US10541706B2
A dynamic-zoom analog to digital converter (ADC) having a coarse flash ADC and a fine passive single-bit modulator is disclosed. Radio frequency (RF) devices incorporating aspects of the present disclosure may support multiple wireless modes operating at different frequencies. Therefore, the RF devices have need for an ADC which is flexible and optimizable in terms of resolution, bandwidth, and power consumption. In this regard, the RF devices incorporate circuits, such as ADC circuits, which incorporate a discrete-time passive delta-sigma modulator. In order to improve the resolution of the delta-sigma modulator, a coarse ADC is deployed as a zooming unit to a single-bit passive delta-sigma modulator to provide a coarse digital conversion. Coarse conversion is used to dynamically update reference voltages at an input of the delta-sigma modulator using a multi-bit feedback digital to analog converter (DAC). The dynamic-zoom ADC supports multiple modes with improved power and quantization noise.
US10541703B2
An interleaved ADC receives an RX signal attenuated by a DSA based on an active DSA setting, within a range of DSA settings (DSA setting range) corresponding to selectable attenuation steps, the DSA setting range partitioned into a number of DSA setting subranges (DSA subranges). The ADC includes an IL mismatch estimation engine in the digital signal path, with an estimation subrange blanker, and an IL mismatch estimator. The estimation subrange blanker is coupled to receive the IADC data stream, and responsive to a DSA subrange allocation signal to select, in each of successive aggregation cycles, IADC data corresponding to an active DSA setting that is within an allocated DSA subrange (DSA active data within an DSA allocated subrange). The IL mismatch estimator aggregates, during each aggregation cycle, IL mismatch estimation data based on the selected DSA active data within the DSA allocated subrange, generates an estimate of IL mismatch (IL mismatch estimate) based on the aggregated IL mismatch estimation data, generates IL mismatch correction parameters based on the aggregated IL mismatch estimation data, and generates IL mismatch estimate uncertainty data corresponding to an uncertainty in the IL mismatch estimate used to generate the associated IL mismatch correction parameters for the DSA allocated subrange. A DSA statistics collector to collect a distribution of DSA settings over a pre-defined time period (DSA setting distribution statistics). An estimation subrange allocator coupled to receive DSA setting distribution statistics, and the IL mismatch estimate uncertainty data, and to provide to the estimation subrange blanker the DSA subrange allocation signal according to a pre-defined allocation strategy.
US10541699B1
Aspects of the disclosure are directed to compensating for errors in in an analog-to-digital converter circuit (ADC). As may be implemented in accordance with one or more embodiments, an apparatus and/or method involves an ADC that converts an analog signal into a digital signal using an output from a digital-to-analog converter circuit (DAC). A compensation circuit generates a compensation output by, for respective signal portions provided to the DAC, generating a feedback signal based on an incompatibility between the conversion of the signal portions into an analog signal and the value of the signal portions provided to the DAC. A compensation output is generated based on the signal input to the DAC with a gain applied thereto, based on the feedback signal.
US10541695B2
A fast-locking phase locked loop and a fast locking method are provided. The fast locking method includes dividing a frequency of an oscillation signal by a preset divisor to output a divided signal, detecting a frequency difference between the divided signal and a reference signal, tracking whether a divided frequency of the divided signal falls within a locked frequency range or not, if not, tracking the divided frequency, and if yes, locking the divided frequency, detecting a divided phase difference between a divided phase of the divided signal and a reference phase of the reference signal, recording the phase difference as a tracking reference phase difference, tracking a next divided phase according to the tracking reference phase difference, and determining whether the divided phase falls within a locked phase range, and if not, tracking the divided phase, and if yes, locking the divided phase.
US10541684B2
An input/output circuit including: a first transistor that, based on an input signal and an enable signal input to an enable terminal that switches a validity and invalidity of an output, drives a load connected between an output terminal and an external power supply; a first switch provided between the input terminal and a control terminal of the first transistor, and including a first switching terminal that switches between connecting or blocking the input signal; and a switch control section that controls the first switching terminal based on the enable signal, wherein, when a logic of the enable signal has transitioned, the switch control section controls the first switching terminal to cause the first switch to be in a connecting state for a predetermined period, to input the input signal to the control terminal of the first transistor, and to suppress a current flowing to the load.
US10541680B2
The disclosure provides a flip-flop. The flip-flop includes a master latch. The master latch receives a flip-flop input, a clock input, an inverted clock input, an enable signal and an inverted enable signal. A slave latch is coupled to the master latch and receives the enable signal and the inverted enable signal. An output inverter is coupled to the slave latch and generates a flip-flop output.
US10541679B1
Various aspects of amplifying amplitude of a pulse are disclosed herein. In sonic embodiments, a device includes driver circuitry that receives an input pulse swinging or transitioning between a first reference voltage and a second reference voltage higher than the first reference voltage, In some embodiments, the driver circuitry generates a driving pulse swinging between a third reference voltage and the second reference voltage according to the input pulse, where the third reference voltage is between the first reference voltage and the second reference voltage. In some embodiments, the device further includes a transistor coupled to the driver circuitry. In some embodiments, the transistor outputs an output pulse swinging between the first reference voltage and an output voltage according to the driving pulse from the driver circuitry, where the output voltage is higher than the second reference voltage.
US10541678B2
An example system includes a control interface and a device coupled to the control interface. The control interface may generate a parameter. The device may receive the parameter from the control interface, generate a switching waveform and current reference, adjust the switching waveform to generate an output current, and adjust the output current by using an error amplifier to provide an output current that conforms to at least one parameter.
US10541676B2
In a described example, an apparatus includes a driver circuit coupled to an output pad, the driver having a p-channel FET coupled between a positive peripheral voltage and the pad, and having a first gate terminal coupled to a first gate control signal, and an n-channel FET coupled between the pad and a ground terminal and having a second gate terminal coupled to a second gate control signal. A predriver circuit is coupled to receive a data signal for output to the pad and further coupled to output the first gate control signal; and the predriver circuit is coupled to output a supply voltage to the first gate control signal in a first mode, and to output a bias voltage less than the supply voltage to the first gate control signal in a second mode; and a bias circuit is coupled for outputting the bias voltage.
US10541670B2
Provided are micromechanical resonators and resonator systems including the micromechanical resonators. The micromechanical resonators may each include a supporting beam including a fixed end fixed on a supporting member and a loose end configured to vibrate, and a lumped mass arranged on the loose end, wherein the loose end has a width greater than a width of the fixed end, and a width of the lumped mass is greater than that the width of the fixed end.
US10541654B1
Amplification with post-distortion compensation is disclosed. In an example aspect, an apparatus includes a voltage rail and a cascode amplifier. The cascode amplifier includes an amplification node, a cascode node, and a common-source node. The cascode amplifier also includes at least one cascode transistor, an input transistor, and a compensation transistor. The cascode transistor is coupled between the amplification node and the cascode node. The input transistor is coupled between the cascode node and the common-source node. The compensation transistor is coupled between the voltage rail and the cascode node.
US10541653B2
Embodiments of RF amplifiers and packaged RF amplifier devices each include a transistor with a drain-source capacitance that is relatively low, an input impedance matching circuit, and an input-side harmonic termination circuit. The input impedance matching circuit includes a harmonic termination circuit, which in turn includes a first inductance (a first plurality of bondwires) and a first capacitance coupled in series between the transistor output and a ground reference node. The input impedance matching circuit also includes a second inductance (a second plurality of bondwires), a third inductance (a third plurality of bondwires), and a second capacitance coupled in a T-match configuration between the input lead and the transistor input. The first and second capacitances may be metal-insulator-metal capacitors in an integrated passive device.
US10541649B2
A phase-locked loop circuit comprises a multi-phase oscillator having a plurality of coupled oscillators. A calibration module detects mismatches between frequency characteristics of the different oscillators in the phase-locked loop circuit during a calibration process. The calibration module then calibrates the various oscillators to compensate for the detected mismatch. Once calibrated, the phase-locked loop circuit can operate with little or no performance degradation despite the mismatch in frequency characteristics between the different oscillators.
US10541648B2
Present invention relate to a wideband signal source. The wideband signal source comprises a voltage controlled oscillator (VCO), a first buffer and a programmable frequency extender. The VCO outputs a signal with at least N:1 frequency tuning ratio, with N being an integer or a non-integer number larger than 1. The frequency extender receives the signal via the buffer to generate a final output, which has a wider frequency band than the signal. The buffer isolates the final output from interfering VCO for VCO operation stability. The frequency extender comprises at least a 1/N frequency divider, which matches the N:1 frequency tuning ratio of the signal, such that the final output has a gapless frequency band wider than the VCO output signal.
US10541638B2
A control apparatus for controlling an electrical unit driven by AC power, the control apparatus comprising a pair of switching elements configured to convert power from a power source into AC power and supply the AC power to the electrical unit. The control apparatus comprises the steps of generating a PWM signal on the basis of the duty command value calculated by the calculation unit and a carrier signal for performing the PWM control; controlling the AC power supplied to the electrical unit by switching a connection state of the switching element on the basis of the PWM signal generated by the generating unit; determining whether the carrier signal increases or decreases; and adjusting a switching timing of the switching element by correcting the duty command value calculated by the calculation unit on the basis of whether the carrier signal is increasing or decreasing determined by the determination unit.
US10541635B2
A motor control method comprises detecting operating parameters of a motor system comprising a plurality of windings, a rotor, a stator magnetically coupled to the rotor and a plurality of power converters connected to the plurality of windings, determining, by a controller, a suitable pole number and a preliminary set of operating variables based upon the operating parameters, reducing operating stresses of the motor system gradually and after reducing the operating stresses, configuring the plurality of power converters so as to adjust the number of poles of the motor system according to the suitable pole number.
US10541633B2
Systems and methods for reducing produced gas venting from a hydrocarbon well, in which the engine driving the pump burns produced gas from the well, the engine made to increase its throttle to burn more gas in response to an increased gas pressure indicator, and an external load such as a generator directed to increase the load on the engine and maintain the engine operating within a desired revolutions-per-minute range to avoid redline condition.
US10541625B2
In a conversion circuit having a plurality of switching elements connected in series and parallel and a capacitor, the respective parts are connected by an external stacked conductor in which a P conductor connected to the positive electrode of the capacitor, an N conductor connected to the negative electrode of the capacitor (2), an AC conductor, and an even number of intermediate conductors connected between the plurality of switching elements, are stacked in plural layers. The respective switching elements are arranged such that the mutual positional relationship between the positive terminals and the negative terminals is the same as a direction of main current flowing through the external stacked conductor. The plurality of switching elements are arranged symmetrically with respect to a center line of the external stacked conductor which is in the same direction as the main current. External connection terminals are provided to the AC conductor, so as to be positioned symmetrically with respect to the center line.
US10541620B2
A two-wire load control device (such as, a dimmer switch) for controlling the amount of power delivered from an AC power source to an electrical load (such as, a high-efficiency lighting load) includes a thyristor coupled between the source and the load, a gate coupling circuit coupled between a first main load terminal and the gate of the thyristor, and a control circuit coupled to a control input of the gate coupling circuit. The control circuit generates a drive voltage for causing the gate coupling circuit to conduct a gate current to thus render the thyristor conductive at a firing time during a half cycle of the AC power source, and to allow the gate coupling circuit to conduct the gate current at any time from the firing time through approximately the remainder of the half cycle, where the gate coupling circuit conducts approximately no net average current to render and maintain the thyristor conductive.
US10541618B2
A flyback converter includes a primary-side switch connected to a primary-side winding of a magnetic device and a secondary-side switch connected to a secondary-side winding of the magnetic device. The flyback converter is operated by controlling the primary-side switch to store energy in the magnetic device during ON periods of the primary-side switch, switching on the secondary-side switch synchronously with switching off the primary-side switch to transfer energy from the magnetic device to the secondary side, determining an off time of the secondary-side switch based on a reflected input voltage measured at the secondary-side winding when the primary-side switch is on, accounting for a settling time of the reflected input voltage when determining the off time of the secondary-side switch so that the settling time has little or no effect on the off time, and switching off the secondary-side switch based on the off time.
US10541616B2
A power adaptor includes a main electric unit, a transformer unit and a bus capacitor unit. The main electric unit is disposed on a first surface. The transformer unit is configured on the main electric unit and disposed on a second surface. The first surface is perpendicular to the second surface. The main electric unit and the transformer unit form a containing space. The bus capacitor unit includes at least one bus capacitor. The bus capacitor unit is disposed in the containing space.
US10541614B1
A DC-DC power converter is described, and includes switched inductance circuits arranged in parallel, current sensors disposed to monitor one of the switched inductance circuits, and a controller. The DC-DC power converter supplies electric power originating from a DC power source to a high-voltage bus. Control and operation includes determining a desired control mode for operating the DC-DC power converter, wherein the desired control mode includes one of a voltage control mode and a current control mode. A desired voltage and a desired differential current for operating the DC-DC power converter are determined based upon the desired control mode. A desired current for operating the DC-DC power converter is determined based upon the desired differential current. Operation of the DC-DC power converter is controlled in the desired control mode based upon the desired voltage and the desired current.
US10541613B2
The power supply apparatus includes an inductor; a switching element connected to another end of the inductor, the switching element configured to drive the inductor by being turned on or turned off in accordance with an input pulse signal; a boost converter circuit connected to both ends of the inductor and including a plurality of rectification units, the boost converter circuit configured to amplify a voltage generated in the inductor, each of the plurality of rectification units including a diode and a capacitor; and a voltage boosting element configured to supply a voltage obtained by boosting an input voltage to the inductor.
US10541611B2
A converter circuit and related technique for providing high power density power conversion includes a reconfigurable switched capacitor transformation stage coupled to a magnetic converter (or regulation) stage. The circuits and techniques achieve high performance over a wide input voltage range or a wide output voltage range. The converter can be used, for example, to power logic devices in portable battery operated devices.
US10541604B2
Techniques for supplying a bias current to a load are provided. In certain examples, a circuit can include a level-shift capacitance, a current source, and a load configured to receive a bias current in a first state of the circuit. The current source and the level-shift capacitance can be coupled in series between the load and a supply voltage in the first state. In some examples, during a second state of the circuit, the level-shift capacitance can receive charge, and can be isolated from one of the load or the current source.
US10541603B2
Circuits comprising: an inductor having a first side connected to VIN; a first switch having a first side connected to a second side of the inductor; a second switch having a first side connected to VIN; a first capacitor having a first side connected to a second side of the second switch; a third switch having a first side connected to a second side of the first switch; a fourth switch having a first side connected to a second side of the third switch; a fifth switch having a first side connected to a second side of the first capacitor and to a second side of the fourth switch, and having a second side coupled to a voltage source; and a second capacitor having a first side connected to the first side of the fourth switch, and having a second side connected to the second side of the fifth switch.
US10541593B2
On an AC permanent magnet switched reluctance motor stator seat, “C-shaped” or “U-shaped” excitation salient pole pairs or compound excitation salient pole pairs are set up in a balanced way. Excited by excitation current, the permanent magnet flux of compound excitation salient pole pair is imported into the main loop of excitation flux to form compound excitation magnetic potential. On the rotor support, permanent magnets are fixed at the same interval, and the magnetic polarity of neighboring permanent magnets on a same rotating surface is different. When the rotating shaft rotates, two magnet pole faces of each permanent magnet on rotor support will be dead against the two ports of each excitation salient pole pair on the stator, forming a closed magnetic loop with air gap.
US10541589B2
The invention relates mainly to a starter for a heat engine of a motor vehicle comprising: at least one electromagnetic switch comprising a positive output terminal, at least one electric motor, said electric motor comprising: a stator comprising coils, each of the coils being wound around a pole piece to form a pole, at least one brush cage (43), at least one positive brush (35) mounted in said brush cage, an electrical path between said positive brush (35) and the positive output terminal (32), and at least one thermal protection (96) located in said electrical path, in which said thermal protection is able to disconnect said two elements (93, 95) when the thermal protection has a temperature above a temperature threshold for electrically disconnecting said positive output terminal with respect to said positive brush (35).
US10541585B2
There is provided a buildup device that builds up a plate-shaped core after rotating the core by a predetermined angle, and that includes a servomotor, a damping plate attached to the servomotor, at least one upper plate provided above the damping plate, at least one lower plate provided below the damping plate, and a plurality of vibration absorbing members attached to the damping plate. The upper plate and the lower plate restrict a degree of freedom of vibration to one direction, and the vibration absorbing members absorb vertical vibration.
US10541584B2
A motor includes a bus bar holder with a bottom portion widening from an inner surface of a main body portion to a radially inner side, and protrusion portions extending from the bottom portion toward one side. A wiring member held by the bus bar holder includes circuit board connection terminals electrically connected to one surface of the circuit board. The circuit board connection terminals are arranged in a predetermined direction at one surface of the circuit board. An outer edge of the circuit board is provided with a first notch portion in which one of the protrusions is located. The first notch portion is opened toward any one of a direction from the center axis to the circuit board connection terminal and a predetermined direction, when viewed from one direction.
US10541579B2
A wind power generator and stator iron core thereof, and stator iron core module; the iron core module (4) has an overall dimension consistent with a principle of the number of slots per pole per phase q=1; the iron core module (4) is provided with two three-phase winding units therein, an electrical angle formed by the two three-phase winding units is 30 degrees. The method of arranging winding in the stator iron core module (4) is changed to effectively reduce fifth and seventh winding harmonic magnetomotive forces.
US10541577B2
An electric machine may include an adjacent pair of laminations each defining pockets having permanent magnets arranged therein to form magnetic poles. The laminations may be stacked in a pole-skewed fashion to form a portion of a rotor. A stator may surround the rotor. The machine may further include a separator lamination between the adjacent pair defining cutout portions having a shape based on a superposition of shapes of the pockets to increase a reluctance of leakage paths between the permanent magnets.
US10541575B2
A rotor for an electric rotating machine, in particular a synchronous machine includes a shaft that can rotate about an axis of rotation, and at least one pole shoe. In order to improve vibration properties, the pole shoe includes a pole shoe body and a pole shoe sheet metal which rests on a radially outer surface of the pole shoe body.
US10541571B2
A motor includes a bearing housing and a stator. The stator includes a stator core, an insulator, and a conductor. The insulator is an insulating body covering at least a part of the stator core. The conductor is wound around the stator core via the insulator. The bearing housing includes a first inner peripheral surface and a first outer peripheral surface. The first inner peripheral surface holds a bearing. The first outer peripheral surface is in contact with the insulator directly or via an adhesive. A surface roughness of the first outer peripheral surface is greater than a surface roughness of the first inner peripheral surface. Therefore, a friction coefficient between the first outer peripheral surface and the insulator increases. Therefore, it is possible to suppress position deviation of the stator with respect to the bearing housing.
US10541568B2
A power transmission device includes a power transmission unit configured to transmit electric power to a plurality of power reception devices, a communication unit configured to exchange charging information with the plurality of power reception devices, a determination unit configured to determine based on the charging information, for each of the plurality of power reception devices, whether the power reception device is capable of limiting power reception, a detection unit configured to detect based on the charging information, for each of the plurality of power reception devices, completion of charging of the power reception device, and a control unit configured to perform control so that power transmission is stopped in a case where the detection unit detects that at least one power reception device incapable of limiting power reception has completed charging.
US10541565B2
A wireless power feeding unit includes a power transmitting module and a power receiving module. The power transmitting module includes: a first inverter circuit which is connected to a power source via a switch; a first transmission coil connected to the first inverter circuit; a second inverter circuit which is connected to the power source or another power source not via the switch; a second transmission coil which is connected to the second inverter circuit; and a power transmission control circuit which controls the first and second inverter circuits. The power receiving module includes a first reception coil opposed to the first transmission coil and a second reception coil opposed to the second transmission coil. During operation of the first and second inverter circuits, even while supply of power to the first inverter circuit is stopped, the power transmission control circuit maintains control of the second inverter circuit.
US10541564B2
An apparatus and a method for are provided for a wireless power receiver. The method includes receiving power from a wireless power transmitter; measuring a temperature of a point in the wireless power receiver during reception of the wireless power; regulating the received power; identifying the temperature at a first time point; maintaining an amount of the regulated power to be provided to a battery with a first level if the identified temperature is lower than a preset temperature; decreasing the amount of the regulated power if the identified temperature is greater than or equal to the preset temperature; in response to decreasing the amount of the regulated power, identifying the temperature at a second time point after the first time point; and increasing the amount of the regulated power to the first level if the identified temperature at the second time point is lower than the preset temperature.
US10541560B2
The present invention relates to a power control method and device in a wireless power transmission system. According to the present invention, even if a CEP packet is not transmitted from a wireless power reception device over a certain period of time, a wireless power transmission device may additionally determine whether the wireless power reception device is located in a charging area and sustainably perform charging.
US10541559B2
Disclosed herein is a wireless power transmitting device that includes: a boost converter boosting an input DC voltage; an inverter converting an output voltage of the boost converter into an AC voltage; a power transmitting coil supplied with the AC voltage to generate an AC magnetic field; a receiving circuit receiving a power transmission command signal; a boost control circuit controlling a boost level of the boost converter according to the power transmission command signal; an operation detection circuit detecting whether or not the boost converter is operated; and an inverter control circuit controlling the inverter. The operation detection circuit activates a stop signal when detecting that the boost converter does not perform operation after an elapse of a predetermined time period from a start of power transmission. The inverter control circuit stops an operation of the inverter in response to the stop signal.
US10541549B2
An object of the present invention is to provide a charging apparatus having high efficiency of charging a battery by inputting an alternating current voltage. A charging apparatus that charges a direct current battery includes a step-down converter unit to which a direct current voltage from a power supply is input and that converts the direct current voltage, and when a voltage of the direct current battery is between a predetermined first voltage smaller than a charge completion voltage of the direct current battery and the charge completion voltage, a variable voltage that increases from the first voltage to the charge completion voltage in accordance with charging of the direct current battery is input to the step-down converter unit.
US10541532B2
A transmission circuit including four transmission component sets for an Ethernet device is provided. Each transmission component set are coupled between an Ethernet connector and an Ethernet chip. Each transmission component set includes a transformer, two capacitors, and four transmission lines (TLs). The transformer includes four terminals and two center taps. Two diagonal terminals of the four terminals are coupled to a ground. The other two diagonal terminals of the four terminals are coupled to the Ethernet connector and, through one of the two capacitors, to the Ethernet chip via two of the four TLs, respectively. The two center taps are coupled to the Ethernet connector and, through the other one of the two capacitors, to the Ethernet chip via the other two of the four TLs, respectively.
US10541526B2
A wiring device including an interrupting device, a fault detection circuit, and a testing circuit. The interrupting device electrically connects a line terminal to a load terminal when the interrupting device is in a reset condition and disconnects the line terminal from the load terminal when the interrupting device is in a tripped condition. The fault detection circuit is configured to detect a fault condition and generate a fault detection signal in response to detecting the fault condition, the fault detection signal is provided to the interrupting device to place the interrupting device in the tripped condition. The testing circuit is configured to determine a frequency of an input voltage at the one or more line terminals, perform a first test of the interrupting device at a first period of the frequency, and perform a second test of the fault detection circuit at a second period of the frequency.
US10541505B2
A high-power ytterbium-doped calcium fluoride laser system is disclosed herein which includes at least one pump source, at least one laser cavity formed by at least one high reflector and at least one output coupler, and at least one ytterbium-doped calcium fluoride optical crystal positioned within the laser cavity in communication with the pump source, the ytterbium-doped calcium fluoride optical crystal configured to output at least one output signal of at least 20 W, having a pulse width of 200 fs or less, and a repetition rate of at least 40 MHz.
US10541498B2
An electrical connector includes: an insulative housing having a base and a tongue; an upper and lower rows of contacts mounted in the insulative housing and exposed to two opposite surfaces of the tongue; and a shielding shell enclosing the insulative housing, wherein the shielding shell has a rear shell part and a front shell part, and the rear shell part has a seamless annular portion accommodating the base.
US10541496B2
Provided is a plug connection which ensures signal integrity, in particular at high data rates and with a large number of plug-in cycles, in a cost-effective manner. A dielectric is in each case arranged between the pin contacts of a connector and the socket contacts of a mating connector to ensure galvanic isolation and capacitive connection between them. In this way the connected circuit electronics can be simplified. There is no need for a coupling capacitor and impedance matching can be performed the geometric arrangement of the contacts. In particular, it ensures that there is a variety of different plug connections to choose from with different properties, in particular with different impedances and capacitances.
US10541494B2
Apparatuses, methods and storage medium associated with connectors for coupling to a computer processing unit (CPU) package are disclosed herein. In embodiments, a connector assembly for connection to a computer processing unit (CPU) package may include a connector housing. One or more electrical contacts of the connector housing may be to couple to the CPU package when the connector assembly is engaged with a mating connector assembly. The connector assembly may further include a mounting handle affixed to a top of the connector housing. The mounting handle may include a locking latch that extends from the mounting handle. The locking latch may engage with a notch within the mating connector assembly that, when engaged, the locking latch may provide a force to maintain coupling of the one or more electrical contacts with the CPU package when engaged with the mating connector assembly.
US10541491B2
A connector assembly is provided which includes a first connector having a first housing and a second connector having a second housing. The first housing has two fixed portions positioned apart from one another in the transverse direction, an elastic portion passing between the two fixed portions and able to bend elastically in the longitudinal direction, and an engaging protruding portion formed on the elastic portion and able to be hooked in an engaging hole in the second housing. The engaging protruding portion is positioned between upper and lower edges of the elastic portion.
US10541483B2
Provided is a plug connector having an insulator and a plug connector fixing bracket that is hard to collapse (break). A plug connector (15) is attachable to and detachable from a receptacle connector (35) and includes: a plug insulator having an outer wall that includes a pair of longitudinal walls and a pair of transverse walls together constituting an annular projection engageable with an engagement recess of the receptacle connector (35); a plug contact group arranged in a row and supported by the longitudinal wall of the outer peripheral wall, contacts a receptacle contact group when the annular projection is fit into the engagement recess, and is connected to a circuit pattern of a plug side circuit board; and a plug connector fixing bracket mounted on the transverse walls. The plug connector fixing bracket includes a receiving surface facing a bottom surface of the transverse walls, a transverse outer wall and a transverse inner wall that bend from the receiving surface and respectively extend along an inner surface and an outer surface of the transverse walls, and a pair of longitudinal outer walls that bends from the receiving surface and extends along outer surfaces of the longitudinal walls.
US10541481B2
An electrical connector includes a fastener plate, a rail frame pivotally mounted to one end of the fastener plate, a carrier frame assembled to the rail frame in a sliding manner, and a load plate pivotally mounted to the end of the fastener plate outside of the rail frame. The carrier frame includes latches to retain the CPU thereon. The rail frame includes a pair of opposite sliding channels extending in the front-to-back direction, along which the carrier frame is moveable. A front transverse bar is located in front of the sliding channels. A pair of protection blocks are located in front of the pair of sliding channels for protecting the latches of the carrier frame or the CPU.
US10541479B2
An interconnection includes a cable assembly and a board assembly. The cable assembly includes a cable having an inner conductor. The board assembly comprises an intermediate layer disposed between first and second outer layers, a recess disposed between the first and second outer layers so as to form a cable-receiving space at a first side edge, and a first inner-conductor contact opening extending through at least one of the first and second outer layers and opening into the cable-receiving space. The inner conductor is inserted at the first side edge into the cable-receiving space and is disposed at an offset in a longitudinal direction relative to the first inner-conductor contact opening. The inner conductor is electrically conductively soldered via a first soldered inner-conductor connection to a first inner-conductor connection region of the first and/or second outer layers, at least in a region of the first inner-conductor contact opening.
US10541473B2
The present disclosure relates to a communication technique for convergence of a 5G communication system for supporting a higher data transmission rate beyond a 4G system with an IoT technology, and a system therefor. The present disclosure may be applied to an intelligent service (for example, smart home, smart building, smart city, smart car or connected car, health care, digital education, retail business, security and safety-related service, etc.) on the basis of a 5G communication technology and an IoT-related technology. An operation method of an inter-antenna phase calibration device in a wireless communication system using an unlicensed band according to an embodiment of the present invention comprises the steps of: calculating a listen before talk (LBT) processing time while an LBT is being performed; selecting a calibration mode for calibrating an inter-antenna phase on the basis of the LBT processing time; and calibrating the inter-antenna phase according to the selected calibration mode.
US10541472B2
A system includes a frequency modulated signal generator, a feed system, and an array of passive antenna elements. The frequency modulated signal generator can be producing a frequency modulated continuous wave signal. The feed system can be coupled to the frequency modulated signal generator for propagating the frequency modulated continuous wave signal. The array of passive antenna elements can be coupled to the feed system and can be configured to be excited by the frequency modulated continuous wave signal. The passive antenna elements can have resonant frequencies that are selected to generate a set of radiative field patterns corresponding to a set of known goal field patterns when the array of passive antenna elements are excited by the frequency modulated continuous wave signal. Related apparatus, systems, techniques, and articles are also described.
US10541467B1
A novel system for supporting a plurality of notch antenna elements is disclosed. This system allows the creation of higher power ultra-wideband step notch arrays. The system also provides electrical connection to each of the notch antenna elements via respective coaxial cables or other direct connections. These coaxial cables connect to coaxial connectors disposed on a substrate that supports the notch antenna elements. Each coaxial connector is in electrical communication with one of the notch antenna elements. By replacing the printed circuit board traditionally used, higher power can be supplied to the notch antenna elements.
US10541446B2
An electrolyte composition (A) containing(i) at least one aprotic organic solvent;(ii) at least one conducting salt;(iii) at least one compound of formula (I) wherein X1 and X2 are independently from each other selected from N(R1), P(R1), O, and S, Y1 and Y2 are independently from each other selected from (O), (S), (PR2) and (NR2); and electrochemical cells containing electrolyte composition (A).
US10541442B2
According to one embodiment, a battery is provided. The battery includes one or more electrode stack. The one or more electrode stack includes an electrolyte layer, a first electrode layer, and a second electrode layer. The electrolyte layer includes an electrolyte and a carboxymethylcellulose sodium salt. The first electrode layer includes a first active material and a carboxymethylcellulose ammonium salt. The second electrode layer includes a second active material and a first binder soluble in an organic solvent. The first electrode layer is bound to a first surface of the electrolyte layer. The second electrode layer is bound to a second surface of the electrolyte layer on a reverse side to the first surface.
US10541433B2
An energy storage system for an electrical grid running on a renewable energy source includes a baseload power module, a waste converter module, and a load-following power module. The baseload power module includes a first fuel cell system configured to provide a baseload power to the electrical grid. The waste converter module is configured to extract and store hydrogen from an exhaust stream produced by the first fuel cell system. The load-following power module includes a second fuel cell system configured to receive hydrogen from the waste converter module and convert the hydrogen to electrical energy to support the electrical grid.
US10541425B2
According to an embodiment, a method of processing a material for a catalyst includes establishing an electrical potential on a porous electrode. Core particles are directed through the porous electrode. A layer of metal is deposited on the core particles as the particles pass through the porous electrode. According to an embodiment, an example assembly for processing a material for a catalyst includes a housing that establishes a path for particles to move through the housing. A porous electrode is situated within the housing for permitting core particles to move through the porous electrode. A layer of metal can be deposited on the core particles as the particles pass through the porous electrode.
US10541420B2
Battery electrodes are provided that can include a conductive core supported by a polymeric frame. Methods for manufacturing battery electrodes are provided that can include: providing a sheet of conductive material; and framing the sheet of conductive material with a polymeric material. Batteries are provided that can include a plurality of electrodes, with individual ones of the electrodes comprising a conductive core supported by a polymeric frame.
US10541412B2
Silicon particles for active materials and electro-chemical cells are provided. The active materials comprising silicon particles described herein can be utilized as an electrode material for a battery. In certain embodiments, the composite material includes greater than 0% and less than about 90% by weight silicon particles, the silicon particles having an average particle size between about 10 nm and about 40 μm, wherein the silicon particles have surface coatings comprising silicon carbide or a mixture of carbon and silicon carbide, and greater than 0% and less than about 90% by weight of one or more types of carbon phases, wherein at least one of the one or more types of carbon phases is a substantially continuous phase.
US10541409B2
A decomposition reaction of an electrolyte solution and the like caused as a side reaction of charge and discharge is minimized in repeated charge and discharge of a lithium ion battery or a lithium ion capacitor, and thus the lithium ion battery or the lithium ion capacitor can have long-term cycle performance. A negative electrode for a power storage device includes a negative electrode current collector and a negative electrode active material layer which includes a plurality of particles of a negative electrode active material. Each of the particles of the negative electrode active material has an inorganic compound film containing a first inorganic compound on part of its surface. The negative electrode active material layer has a film in contact with an exposed part of the negative electrode active material and part of the inorganic compound film. The film contains an organic compound and a second inorganic compound.
US10541406B1
A process of forming and the resulting nano-pitted metal substrate that serves both as patterns to grow nanostructured materials and as current collectors for the resulting nanostructured material is disclosed herein. The nano-pitted substrate can be fabricated from any suitable conductive material that allows nanostructured electrodes to be grown directly on the substrate.
US10541403B2
An embodiment is directed to a cylindrical battery cell with a multi-terminal cell side that includes an inner cell head and an outer cell rim, with an insulative ring arranged in a recessed area between the outer cell rim and the inner cell head. Another embodiment is directed to a cylindrical battery cell configured with one or more insulation layers integrated into (e.g., wrapped around) a shaft of the cylindrical battery cell. Another embodiment is directed to a battery module including a set of cylindrical battery cells including shaft-integrated insulation, with exposed non-insulated sections of the set of cylindrical battery cells upon insertion into a battery housing being overlapped by one or more insulative housing ribs of the battery housing.
US10541398B2
According to one embodiment, there is provided a nonaqueous electrolyte battery including a positive electrode, a negative electrode, a nonaqueous electrolyte and a separator. The positive electrode includes a positive electrode active material containing LixNi1−a−bCoaMnbMcO2 (0.9
US10541397B2
A battery includes a bottomed cylindrical case body that accommodates an electrode body and a bottom-portion insulating plate (19) that is disposed between the electrode body and a bottom portion of the case body. The bottom portion of the case body has a gas discharge port that opens when an internal pressure of the battery reaches a predetermined pressure. The bottom-portion insulating plate (19) has a through hole. An aperture ratio, which is a ratio of an area of the through hole with respect to a total area of the insulating plate, is greater than or equal to 10% and less than or equal to 40%. A Young's modulus of the bottom-portion insulating plate at 25° C. is 10 GPa or greater.
US10541394B2
Provided is a battery mounting assembly including a battery portion, and a battery mounting portion on which the battery portion slides to be mounted, wherein the battery portion includes: a first guide configured to guide a sliding movement of the battery portion; a first connection terminal arranged on a surface of the battery portion; a fixing pin arranged on the battery portion; and a fixing pin retreat button configured to retreat the fixing pin, wherein the battery mounting portion includes: a second guide configured to guide the sliding movement of the battery portion; a second connection terminal arranged on a surface of the battery mounting portion and connected to the first connection terminal; and a fixing hole formed in the surface of the battery mounting portion and into which the fixing pin is inserted.
US10541388B2
A display device and a method of manufacturing the display device are capable of substantially minimizing damage and carbonization of a substrate, the display device including: a substrate including a first area and a second area disposed in a first direction and including at least one layer disposed along a second direction intersecting the first direction; a display layer in the first area of the substrate; a functional member on the display layer in the first area of the substrate; and a driving unit in the second area of the substrate, the driving unit configured to drive the display layer. Said at least one layer includes a first end portion at the first area of the substrate and a second end portion at the second area of the substrate, and the first end portion has a greater surface roughness than a surface roughness of the second end portion.
US10541387B2
A deposition mask includes a mask body and a through-hole provided in the mask body and through which a deposition material passes when the deposition material is deposited on a deposition target substrate. The mask body satisfies y≥950 and y≥23x−1280 when an indentation elastic modulus is x (GPa) and a 0.2% yield strength is y (MPa). When the mask body satisfies these inequalities, the generation of recesses during ultrasonic cleaning of the mask can be suppressed.
US10541377B2
The organic EL element (10) at least includes, between a first electrode (2) and a second electrode (4), at least one layer of an exciton generating layer (33) which contains at least one type of TADF material as a host material and at least one layer of a fluorescent emission layer (34) which contains at least one type of fluorescent emission material.
US10541369B2
To provide an organic compound of excellent characteristics that exhibits excellent electron-injecting/transporting performance with hole blocking ability, and has high stability in the thin-film state, as material for an organic electroluminescent device having high efficiency and high durability, and to provide the organic electroluminescent device having high efficiency and high durability using the compound. An organic electroluminescent device includes a pair of electrodes, and one or more organic layers sandwiched between the pair of electrodes, wherein the compound of general formula (1) in which a substituted bipyridyl group and a pyridoindole ring structure are bonded via a phenylene group, is used as a constituent material of at least one organic layer.
US10541368B2
A substrate is for use in manufacturing a display device. The substrate includes a first area that corresponds to pixel positions. The substrate further includes a second area adjacent to the first area. The substrate further includes a first mark disposed in the second area, wherein a first virtual line corresponds to the first mark. The substrate further includes a second mark disposed in the second area and spaced from the first mark, wherein a second virtual line corresponds to the second mark and intersects the first virtual line at a virtual reference point. The substrate further includes an indicator disposed in the second area, spaced from the first mark and the second mark, and corresponding to an opening of a mask, wherein a positional relation between the virtual reference point and a point of the indicator represents a positional relation between the substrate and the mask.
US10541367B2
A method for manufacturing an organic EL display panel, including: forming first electrodes over a substrate; defining, above the substrate, pixel formation regions lining up in a row direction and a column direction, by forming banks over the substrate; applying ink to each pixel formation region by causing a plurality of nozzles lining up in a straight line to discharge the ink to the pixel formation regions while displacing the nozzles relative to the substrate in a scanning direction; drying the ink to form functional layers in the pixel formation regions; and forming a second electrode at a position covering the pixel formation regions. In the application of ink, an angle θ between the scanning direction and the row direction is set to more than 0° and less than 90° and each nozzle applies the ink across a plurality of rows of the pixel formation regions.
US10541362B2
The present disclosure is drawn to, among other things, a method of fabricating an integrated circuit device having a magnetoresistive device. In some aspects, the method includes forming the magnetoresistive device on a first contact of a substrate, wherein the magnetoresistive device includes a fixed magnetic region and a free magnetic region separated by an intermediate region; depositing a first dielectric material over the magnetoresistive device; depositing a second dielectric material over the first dielectric material; polishing a surface of the second dielectric material; forming a first cavity through the polished surface of the second dielectric material to expose a surface of the magnetoresistive device; and depositing an electrically conductive material in the first cavity to form a via.
US10541359B2
A solder-free sensing device includes a connecting assembly and a sensor. The connecting assembly includes a main body and at least two connecting pins engaged in the main body. The main body defines a receiving groove to receive the sensor. The sensor includes a first electrode layer and a second electrode layer insulated from the first electrode layer. Each connecting pin includes an end portion and an extending portion extending from the end portion. The end portion of each connecting pin is engaged in the receiving groove. The extending portion of each connecting pin extends through the main body to the outside of the main body. The sensor is electrically coupled to an external system by the at least two connecting pins.
US10541357B2
The invention relates to a method for cyclical operation of a thermoelectric cell arrangement by periodically changing the temperature of the thermoelectric cell arrangement, wherein the thermoelectric cell arrangement is thermally coupled to a cyclically operated absorption heat pump. The following method steps are carried out cyclically: thermally coupling the thermoelectric cell arrangement during a cooling phase to a cold side of the absorption heat pump, thermally coupling the thermoelectric cell arrangement during a heating phase to a hot side of the absorption heat pump. The invention also relates to a harvester device for generating electrical energy by means of a thermoelectric cell arrangement, wherein the thermoelectric cell arrangement is thermally coupled to an absorption heat pump, wherein the thermal coupling makes it possible to effect, in time with the working cycle of the absorption heat pump, a temperature change in the thermoelectric cell arrangement.
US10541348B2
A method comprising: depositing a quantum dot solution onto an as-grown layer of channel material to form a layer of quantum dot material having a substantially uniform thickness across the area of the layer of quantum dot material; and transferring the layers of channel and quantum dot material as a single stack onto a substrate comprising source and drain electrodes such that both the layers of channel and quantum dot material substantially conform to the topography of the underlying substrate and electrodes whilst maintaining the substantially uniform thickness of quantum dot material, the source and drain electrodes configured to enable a flow of electrical current through the layer of channel material, the layer of quantum dot material configured to generate electron-hole pairs on exposure to incident electromagnetic radiation to produce a detectable change in the flow of electrical current which is indicative of one or more of the presence and magnitude of the incident electromagnetic radiation.
US10541344B2
A method for texturing a photovoltaic module ribbon on a photovoltaic cell including a plurality of first electrodes on a first side and a plurality of second electrodes on a second side, and coupling a first photovoltaic module ribbon to the plurality of first electrodes. The method also includes positioning the photovoltaic cell on a textured base having a texture embodied thereon, where the first photovoltaic module ribbon is substantially contacting the texture. The method further includes coupling a second photovoltaic module ribbon to the plurality of second electrodes, and transferring the texture of the textured base to the first ribbon using heat energy released when the second photovoltaic module ribbon is coupled to the plurality of second electrodes.
US10541342B2
An embodiment provides a system, including: a sensor unit, comprising: a sensor that captures data; a memory storing data captured by the sensor; a photovoltaic cell operatively coupled to the sensor and the memory; the photovoltaic cell formed as a transparent layer; a display operatively coupled to the photovoltaic cell; a communication component that communicates the data captured by the sensor to a device; and a device that receives the data captured by the sensor via the communication component. Other aspects are described and claimed.
US10541339B2
A sintered compact includes a wavelength conversion region containing a phosphor material that performs wavelength conversion of primary light and emits secondary light, and a holding region provided to be in contact with the wavelength conversion region. The wavelength conversion region and the holding region are integrated.
US10541335B2
A method for inducing stress in a device channel includes forming a stress adjustment layer on a substrate, the stress adjustment layer including an as deposited stress due to crystal lattice differences with the substrate. A device channel layer is formed on the stress adjustment layer. Cuts are etched through the device channel layer and the stress adjustment layer to release the stress adjustment layer to induce stress in the device channel layer. Source/drain regions are formed adjacent to the device channel layer.
US10541332B2
A semiconductor device includes: a sidewall insulating film; a gate electrode; source and drain regions; a first stress film; and a second stress film.
US10541324B2
An embodiment of a semiconductor device includes a semiconductor substrate that includes a host substrate, a buffer layer that includes at least one additional layer formed over the substrate, a channel layer formed over the buffer layer, a barrier layer formed over the channel layer forming a channel, a gate electrode disposed over the substrate electrically coupled to the channel, and an ohmic contact recessed into the barrier layer. A method for fabricating the semiconductor device includes forming a semiconductor substrate that includes a mixed crystal layer, creating an isolation region that defines an active region along an upper surface of the semiconductor substrate, forming a gate electrode over the semiconductor substrate in the active region, and recessing an ohmic contact into the semiconductor substrate.
US10541320B2
A bipolar transistor has a subcollector layer and a stack of collector, base, and emitter layers on the subcollector layer. On the subcollector layer are collector electrodes. On the base layer are base electrodes. The collector layer includes multiple doped layers with graded impurity concentrations, higher on the subcollector layer side and lower on the base layer side. Of these doped layers, the one having the highest impurity concentration is in contact with the subcollector layer and has a sheet resistance less than or equal to about nine times that of the subcollector layer.
US10541318B2
Semiconductor devices and methods of forming the same include forming a stack of layers of alternating materials, including first layers of sacrificial material and second layers of channel material. The first layers are recessed relative to the second layers with an etch that etches the second layers at a slower rate than the first layers to taper ends of the second layers. First spacers are formed in recesses formed by recessing the first layers. Second spacers are formed in recesses formed by recessing the first layers. The first spacers are etched to expose sidewalls of the second spacer. Source/drain extensions are formed in contact with exposed ends of the second layers.
US10541317B2
Methods for, and structures formed by, wet process assisted approaches implemented in a replacement gate process are provided. Generally, in some examples, a wet etch process for removing a capping layer can form a first monolayer on the underlying layer as an adhesion layer and a second monolayer on, e.g., an interfacial dielectric layer between a gate spacer and a fin as an etch protection mechanism. Generally, in some examples, a wet process can form a monolayer on a metal layer, like a barrier layer of a work function tuning layer, as a hardmask for patterning of the metal layer.
US10541311B2
In a semiconductor memory device, first insulating films are arranged along a first direction and a second direction and extend in a third direction. Interconnect is disposed between the first insulating films in the first direction and extends in the third direction. Electrodes are disposed between the first insulating films in the first direction on a second direction side of the interconnect, and is arranged along the third direction. Second insulating film is disposed between the interconnect and the electrodes. Semiconductor members are arranged along the third direction between the first insulating films in the second direction and extend in the first direction. The electrode is disposed between the interconnect and the semiconductor members. Third insulating film is disposed between the electrodes and the semiconductor member and is thicker than the second insulating film.
US10541310B2
A semiconductor device includes a first gate electrode, a plurality of first source electrodes, a second gate electrode, and a plurality of second source electrodes. The first gate electrode is arranged with no other electrode between the first gate electrode and a first short side of the semiconductor substrate. The plurality of first source electrodes include a plurality of approximately rectangular first source electrodes arranged in stripes extending parallel to the lengthwise direction of the semiconductor substrate. The second gate electrode is arranged with no other electrode between the second gate electrode and a second short side of the semiconductor substrate. The plurality of second source electrodes include a plurality of approximately rectangular second source electrodes arranged in stripes extending parallel to the lengthwise direction of the semiconductor substrate.
US10541307B2
A semiconductor device according to an embodiment includes a p-type SiC layer and a contact electrode electrically connected to the SiC layer. The contact electrode includes metal. And a region is provided in the SiC layer adjacent to the contact electrode. The region having an oxygen concentration not lower than 1×1016 cm−3 and not higher than 1×1021 cm−3.
US10541305B2
A group III-N nanowire is disposed on a substrate. A longitudinal length of the nanowire is defined into a channel region of a first group III-N material, a source region electrically coupled with a first end of the channel region, and a drain region electrically coupled with a second end of the channel region. A second group III-N material on the first group III-N material serves as a charge inducing layer, and/or barrier layer on surfaces of nanowire. A gate insulator and/or gate conductor coaxially wraps completely around the nanowire within the channel region. Drain and source contacts may similarly coaxially wrap completely around the drain and source regions.
US10541300B2
Embodiments of a semiconductor device and methods of forming thereof are provided herein. In some embodiments, a power semiconductor device may include a first layer having a first conductivity type; a second layer disposed atop the first layer, the second layer having the first conductivity type; a termination region formed in the second layer, the termination region having a second conductivity type opposite the first type; and an active region at least partially formed in the second layer, wherein the active region is disposed adjacent to the termination region proximate a first side of the termination region and wherein the second layer is at least partially disposed adjacent to the termination region proximate a second side of the termination region opposite the first side.
US10541289B2
An electro-optical apparatus includes a first pixel and a second pixel. The first pixel and the second pixel include a reflective layer, an insulating layer, a functional layer, and an opposing electrode. The insulating layer includes a first insulating layer, a second insulating layer having a first opening, and a third insulating layer having a second opening. A first pixel electrode is provided on the first insulating layer in the first opening. A second pixel electrode is provided on the second insulating layer.
US10541288B2
Provided is a flexible organic electroluminescent device and a method for fabricating the same. In the flexible electroluminescent device, line hole patterns are formed on surfaces of a plurality of inorganic layers positioned in a pad region in which a flexible printed circuit board is connected to prevent a path of cracks caused by repeated bending and spreading of the organic electroluminescent device from spreading to the interior of the device.
US10541276B2
Disclosed is a double-sided organic light-emitting diode lighting panel. A semitransparent silver film layer is provided between a first light-emitting layer that emits blue light and a second light-emitting layer that emits yellow light. Double-sided light emission of the OLED lighting panel is realized by taking advantage of semi-transparence and reflection properties of the silver film layer. Such a structure is relatively simple, and manufacture costs and manufacture difficulties are reduced. The OLED lighting panel can be used for interior lighting or can be used in places having special needs, and thus application of a double-sided OLED lighting device is widened.
US10541275B2
A display device according to the present disclosure has a resonator structure in which a light reflector and a semi-transmissive plate are disposed at a distance that differs for each luminescent color. In this resonator structure, a light-emitting function layer including a light-emitting layer, a transparent cathode electrode, and a protective film that protects the cathode electrode are laminated in order between the light reflector and the semi-transmissive plate. In addition, the semi-transmissive plate is formed on the protective film.
US10541269B2
A semiconductor device includes a magnetic random access memory (MRAM) cell. The MRAM cell includes a first magnetic layer disposed over a substrate, a first non-magnetic material layer made of a non-magnetic material and disposed over the first magnetic layer, a second magnetic layer disposed over the first non-magnetic material layer, and a second non-magnetic material layer disposed over the second magnetic layer. The second magnetic layer includes a plurality of magnetic material pieces separated from each other.
US10541259B2
A solid-state imaging device according to the present disclosure includes a pixel array unit in which unit pixels including photoelectric conversion elements are arranged in a matrix form and the unit pixels are grouped into a plurality of pixel groups and a timing controller which independently sets an exposure start timing and an exposure end timing relative to each of the plurality of pixel groups so that at least one pixel group of the plurality of pixel groups is exposed a plurality of times within a single vertical synchronization period.
US10541258B2
There is provided a method of patterning a stack of layers defining one or more electronic device elements, comprising: creating a first thickness profile in an uppermost portion of the stack of layers by laser ablation; and etching the stack of layers to translate the first thickness profile into a second thickness profile at a lower level; wherein the etching reduces the thickness of said uppermost portion of the stack and one or more lower layers of the stack under said uppermost portion.
US10541254B2
A thin film transistor substrate according to an embodiment comprises: a support substrate; a bonding layer disposed on the support substrate; a thin film transistor disposed on the bonding layer, wherein the thin film transistor includes a channel layer containing a nitride-based semiconductor layer, a source electrode electrically connected to a first region of the channel layer, a drain electrode electrically connected to a second region of the channel layer, a gate electrode disposed below the channel layer, and a depletion forming layer disposed between the channel layer and the gate electrode; and a pixel electrode disposed on the thin film transistor and electrically connected to the drain electrode of the thin film transistor. The thin film transistor substrate according to the embodiment, and a display panel and a display device including the same have an advantage of implementing high resolution and reproducing a soft moving image by providing a high carrier mobility.
US10541236B2
The present disclosure relates to semiconductor structures and, more particularly, to electrostatic discharge structures with reduced capacitance and methods of manufacture. The structure includes: a plurality of fin structures provided in at least one N+ type region and at least one P+ region; and a plurality of gate structures disposed over the plurality of fin structures and within the at least one N+ type region and one P+ region, the plurality of gate structures being separated in a lengthwise direction between the at least one N+ type region and the least one P+ region.
US10541226B2
An embodiment is a structure including a first die, a molding compound at least laterally encapsulating the first die, a first redistribution structure including metallization patterns extending over the first die and the molding compound, a first conductive connector comprising a solder ball and an under bump metallization coupled to the first redistribution structure, and an integrated passive device bonded to a first metallization pattern in the first redistribution structure with a micro bump bonding joint, the integrated passive device being adjacent the first conductive connector.
US10541210B2
Provided is an electronic device including: an electronic component; and an electromagnetic interference shielding layer formed on at least a portion of the electronic component. The electromagnetic interference shielding layer includes: magnetic particles for electromagnetic wave absorption, each of the magnetic particles having a conductive film on a surface of the magnetic particle; and a conductive portion where conductive metal particles for electromagnetic shielding are sintered and formed on the conductive film of the magnetic particles.
US10541209B2
An electronics package includes a support substrate, an electrical component having a first surface coupled to a first surface of the support substrate, and an insulating structure coupled to the first surface of the support substrate and sidewalls of the electrical component. The insulating structure has a sloped outer surface. A conductive layer encapsulates the electrical component and the sloped outer surface of the insulating structure. A first wiring layer is formed on a second surface of the support substrate. The first wiring layer is coupled to the conductive layer through at least one via in the support substrate.