Abstract:
A charging dock applied in an intelligence loudspeaker box, includes a shell, a battery module and a charging cable. The intelligence loudspeaker box has a charging hole. A top surface of the shell is recessed downward to form a receiving space equipped with a pogo pin connector. The intelligence loudspeaker box is received in the receiving groove. One end of the pogo pin connector is connected to the intelligence loudspeaker box. The battery module is disposed in the shell. The battery module includes a circuit board. A top surface of the circuit board is equipped with a docking element. The docking element is connected to the other end of the pogo pin connector. One end of the charging cable is connected to the charging hole, and the other end of the charging cable is connected to a power unit.
Abstract:
A charging dock applied in an intelligence loudspeaker box, includes a shell, a battery module and a charging cable. The intelligence loudspeaker box has a charging hole. A top surface of the shell is recessed downward to form a receiving groove equipped with a pogo pin connector. The intelligence loudspeaker box is received in the receiving groove. One end of the pogo pin connector is connected to the intelligence loudspeaker box. The battery module is disposed in the shell. The battery module includes a circuit board. A top surface of the circuit board is equipped with a docking element. The docking element is connected to the other end of the pogo pin connector. One end of the charging cable is connected to the charging hole, and the other end of the charging cable is connected to a power unit.
Abstract:
An automatic circuit board test system includes at least one switch module of board under test connected with a test board, a control module and a test process module. The test board includes a first signal interface, a second signal interface and a third signal interface and a repeater. The second signal interface and the third signal interface are mutually connected by a signal cable. The first signal interface is connected with the repeater. The at least one switch module of board under test is connected with the second signal interface and the third signal interface. The control module is connected with the at least one switch module of board under test. The control module controls the at least one switch module of board under test. The test process module is connected with the control module and the first signal interface by at least two serial port buses.
Abstract:
A waveguide tube includes a first waveguide block, a second waveguide block and a nano plating layer. The first waveguide block has a first combination surface. A middle of one side of the first combination surface is recessed inward to form a first waveguide recess. The second waveguide block is fastened with the first waveguide block. The second waveguide block has a second combination surface disposed corresponding to the first combination surface. A middle of one side of the second combination surface is recessed inward to form a second waveguide recess. The first combination surface and the second combination surface are attached with each other, so the first waveguide recess is combined with the second waveguide recess to form a waveguide space. The nano plating layer is plated on outer surfaces of the first waveguide block and the second waveguide block which are completed being assembled.
Abstract:
An intelligent lamp holder includes a microprocessor, an acoustic reception and transmission element, a sound recognition module, a light modulation module and a sensing module. The acoustic reception and transmission element is connected with an external ultrasonic device for receiving ultrasonic signals, and the acoustic reception and transmission element converts the ultrasonic signals into digital signals. The sound recognition module is connected with and controlled by the microprocessor, and the sound recognition module is connected with the acoustic reception and transmission element. The digital signals are transmitted to the sound recognition module. The sound recognition module receives and recognizes the digital signals to generate execution instructions. The light modulation module is connected with and controlled by the microprocessor for controlling on-off statuses and a brightness modulation of a lamp according to different execution instructions. The sensing module is connected with and controlled by the microprocessor.
Abstract:
A vital sign measurement system includes an excitation signal source, a vital sign sensor, an environmental sensor, an analog front-end sensor electrically connected with the vital sign sensor, and a processor module electrically connected with the excitation signal source, the environmental sensor and the analog front-end sensor. The excitation signal source generates excitation signals. The excitation signals are transmitted to a human body, and then the excitation signals are reflected to generate sensing signals. The vital sign sensor receives the sensing signals, and the sensing signals are converted into a plurality of analog synthetic signals. The environmental sensor receives environmental light. The analog front-end sensor receives and amplifies the analog synthetic signals. The processor module calculates an intensity of the environmental light. And the processor module sends an adjustment instruction to the analog front-end sensor to adjust a sampling frequency of the analog front-end sensor.
Abstract:
A heartbeat detecting bracelet includes a base body, a sensor, a processing module and a band-like body. The base body is equipped with a first electrode slice located in an inner surface of the base body for being attached to the skin of the human body, and a second electrode slice located in any one surface of the base body except the inner surface for being touched in use. The sensor is disposed to the base body and capable of being touched or approached during the second electrode slice is touched. The processing module is disposed in the base body and coupled with the first electrode slice, the second electrode slice and the sensor for powering on or off the heartbeat detecting bracelet according to signals from the sensor. The band-like body is combined with the base body for wearing the heartbeat detecting bracelet to the human body.
Abstract:
A wireless charger with magnetic locating function includes an insulating body, a circuit module, a plug module and a wireless charging module. A front of the insulating body is recessed inward to form an opening, and the opening is further recessed inward to form an accommodating space. The circuit module is mounted in the accommodating space. The plug module is connected with the circuit module. The wireless charging module is mounted to the insulating body. The wireless charging module includes a magnetic core equipped with a charging coil, a bracket and an outer board. The charging coil is connected to the circuit module. The bracket covers the charging coil. The bracket has a plurality of accommodating grooves, and each accommodating groove is equipped with one magnetic element. The outer board covers the bracket.
Abstract:
An automatic circuit board test system includes at least one switch module of board under test connected with a test board, a control module and a test process module. The test board includes a first signal interface, a second signal interface and a third signal interface and a repeater. The second signal interface and the third signal interface are mutually connected by a signal cable. The first signal interface is connected with the repeater. The at least one switch module of board under test is connected with the second signal interface and the third signal interface. The control module is connected with the at least one switch module of board under test. The control module controls the at least one switch module of board under test. The test process module is connected with the control module and the first signal interface by at least two serial port buses.
Abstract:
A cable structure includes at least one stuffing element, a first transmission module surrounding outside the at least one stuffing element, a first shielding layer surrounding outside the first transmission module, a second transmission module surrounding outside the first shielding layer, a second shielding layer surrounding outside the second transmission module, a woven layer surrounding outside the second shielding layer, an insulating skin surrounding outside the woven layer, a plurality of first core wire assemblies disposed in the first transmission module and the second transmission module, respectively, and at least one second core wire assembly disposed in the first transmission module or the second transmission module. A diameter of each first core wire assembly is different from a diameter of each second core wire assembly.