Abstract:
A cloud gateway device and a method for operating the cloud gateway device is provided. The cloud gateway device is communicatively connected to one or more IIoT devices to at least collect data therefrom, and to the cloud to send collected data into the cloud. The cloud gateway device includes a transparency module provided for implementing transparency features into the cloud gateway device. Operating the cloud gateway device includes acquiring industrial data from the IIoT devices and/or the cloud gateway device, and computing information pertaining to the industrial data.
Abstract:
A photodetector cell may include a substrate, and a first contact carried by the substrate and having a first work function value. The photodetector cell may include a second contact carried by the substrate and having a second work function value different from the first work function value, and a semiconductor wire carried by the substrate and having a third work function value between the first and second work function values. The semiconductor wire may be coupled between the first and second contacts and comprising a photodiode junction.
Abstract:
An electronic device may include a first substrate, an electrically conductive feed line on the first substrate, an insulating layer on the first substrate and the electrically conductive feed line, a second substrate on the insulating layer, and an antenna on the second substrate and having nanofilm layers stacked on the second substrate. The antenna is coupled to the feed line through an aperture.
Abstract:
A computing device receives a file. The computing device determines whether the file has previously been scanned for violations of a data loss prevention policy. If the file was previously scanned, a result of the previous scan is used to decide whether or not the file violates the data loss prevention policy. If the file was not previously scanned, the file is scanned to decide whether or not the file violates the data loss prevention policy.
Abstract:
Apparatus and methods for measuring consumer experience through an optimal user panel within predetermined error rate, or any other categorization for wireless domain. The data is collected at the panel member's wireless device. Categorization of data is based on but not limited to, product groupings and market segments. To minimize the cost of the method while having the estimate of consumer experience within aforesaid error rates, the panel members are chosen such that they can provide the most informative data of usage for the parameters that effect consumer experience, such as wireless network usage, usage of applications, sequence thereof among others. The focal point of data collection will be to trace the failure rate in the wireless network, devices, application among others. Thus we can apply suitable statistical models of prediction, such as but not limited to Poisson distribution and Empirical Bayes technique. Thus an optimal and more accurate quantitative measure of the estimate is made. By providing for performance statistics of consumer experience, it can readily be determined if a performance problem is related to the device, to the network and can also compare various factors such as but not limited to service providers, software platforms on wireless devices, different market segments using the wireless devices.
Abstract:
A cloud gateway device (20) and a method for operating the same is proposed, wherein the cloud gateway device (20) is conventionally communicatively connected to one or more IIoT devices (12) to at least collect data therefrom, and to the cloud (18) to send collected data into the cloud (18), wherein the cloud gateway device (20) comprises a transparency module (50) provided for implementing transparency features into the cloud gateway device (20), and wherein operating the said cloud gateway device (20) comprises acquiring industrial data from the IIoT devices (12) and/or the cloud gateway device (20) and computing information (transparency information) pertaining to the said industrial data.
Abstract:
A device network communicates with a remote platform such as a cloud service via a gateway. A network monitor device monitors network health and may adjust the amount of data collected by the gateway, reducing the amount of data collected in case of poor network health.
Abstract:
A photodetector cell may include a substrate, and a first contact carried by the substrate and having a first work function value. The photodetector cell may include a second contact carried by the substrate and having a second work function value different from the first work function value, and a semiconductor wire carried by the substrate and having a third work function value between the first and second work function values. The semiconductor wire may be coupled between the first and second contacts and comprising a photodiode junction.
Abstract:
An electronic device may include a first substrate, an electrically conductive feed line on the first substrate, an insulating layer on the first substrate and the electrically conductive feed line, a second substrate on the insulating layer, and an antenna on the second substrate and having nanofilm layers stacked on the second substrate. The antenna is coupled to the feed line through an aperture.
Abstract:
A device network communicates with a remote platform such as a cloud service via a gateway. A network monitor device monitors network health and may adjust the amount of data collected by the gateway, reducing the amount of data collected in case of poor network health.