Abstract:
An electronic device includes an enclosure, and an operation device. The enclosure includes a first sidewall, and a second sidewall connected to a rear end of the first sidewall. A receiving recess is defined in the first sidewall and extends through the second sidewall, to receive a universal serial bus (USB) device. A USB port is installed in receiving recess away from the second sidewall, to be connected to the USB device. The operation device is pivotably connected to the receiving recess and includes two spaced arms to sandwich the USB device when the USB device is connected to the USB port. When the operation device is rotated in a predetermined direction, the arms move toward the second sidewall, to push the connected USB device to disengage from the USB port.
Abstract:
A motherboard includes a power circuit, a system power supply, and a central processor unit (CPU). The power circuit includes a direct current (DC) voltage input terminal. A first control circuit receives a direct current (DC) voltage through the DC voltage input terminal and outputs a first control signal. A second control circuit receives the first control signal and outputs a second control signal to the CPU and output a third control signal. A switching circuit includes a number of switches. The second control signal controls the corresponding switches to be on or off. A voltage converting circuit receives the third control signal and converts the DC voltage from the DC voltage input terminal, and outputs the converted DC voltage to the system power supply. The CPU receives the second control signal and controls the motherboard operation.
Abstract:
A lamp control circuit includes a first switch circuit receiving a voltage from a power supply after a control is turned on and outputs a first control signal, a count circuit receives the first control signal and outputs a second control signal, a gate circuit receives the second control signal and outputs a third control signal, a second switch circuit includes a number of electronic switches to receive the third control signal and controls the electronic switches to be turned on or turned off, and a lighting circuit including a number of light emitting diode (LED) groups. Each LED group includes an LED. When an electronic switch connected to an LED group is turned on, the LED of the corresponding LED group is lit. When an electronic switch connected to an LED group is turned off, the LED of the LED group does not light.
Abstract:
An outdoor monitoring system includes a camera, a direct-current adapter, a solar cell unit and a power management unit. The power management unit includes a controller, a rechargeable power source, a first voltage detection circuit, and a second voltage detection circuit. The first voltage detection circuit detects a charging voltage of the solar cell unit for charging the rechargeable power source. The second voltage detection circuit detects an output voltage of the rechargeable power source applied to the camera. The controller selectively connects the rechargeable power source or the direct-current adapter to the camera according to the output voltage and connects or disconnects the rechargeable power source to the solar cell unit according the output voltage and the charging voltage.
Abstract:
A camera image correction system includes an image correction device and an internet protocol camera intercommunicating with the image correction device. The image correction device includes an input module, a signal processing module, and a wireless communications module. The input module inputs and generates correction instructions that the signal processing module processes. The wireless communications module transmits the correction images to the internet protocol camera. The internet protocol camera includes an antenna, a system on chip, and a signal control module. The antenna receives the correction instruction; the signal control module processes the correction instructions to generate command signals. The system on chip controls the internet protocol camera according to the command signals to obtain monitoring images, the monitoring images are processed by the signal control module and transmitted to the image correction device through the antenna and the wireless communications module.
Abstract:
A filter conversion device includes a first filter, a second filter, a motor, and a comparator. The motor moves the first and second filters according to a control signal from a processor of the camera. Two input terminals of the comparator are respectively connected to two input terminals of the motor. An output terminal of the comparator is connected to the processor. The comparator detects the control signal transmitted to the motor and feeds back the detection result to the processor, for determining whether the control signal is correct.
Abstract:
A chip adapter used to install a chip on a first chip arranging area of a circuit board includes a board. The size of the board has the same size as the first chip arranging area of the circuit board. Edges of the chip adapter define a number of gaps corresponding to first pads of the circuit board. A second chip arranging area of the same size as the chip is arranged in a center of the chip adapter. A number of second pads are arranged around the second chip arranging area of the chip adapter corresponding to pins of the chip. Each second pad is electrically connected to a sidewall of the corresponding gap of the chip adapter.
Abstract:
A master-slave communication system includes a master device, a plurality of slave devices, and a bus providing communication channels therebetween. The master device includes a first micro control unit (MCU), a first power supply module, and an address setting module. Each slave device includes a second MCU and a second power supply module connected to the first power supply module through the address setting module. The address setting module detects a current output from the first power supply module, and outputs an ID address setting signal which is directly proportional with the current to the first MCU and the second MCU of a new slave device, the second MCU of the new slave device sets an ID address according to the ID address setting signal, the first MCU records the ID address as the ID address of the new slave device according to the ID address setting signal.
Abstract:
A monitoring system includes a controller, a number of input devices, a number of digital sensors, a number of analog sensors, and a number of alarms. Each input device comprises a switching circuit, an input circuit, and a connector. The connector is connected to a digital sensor or connected to an analog sensor and a first power source in series. The controller controls the switching circuit of the input device to receive a digital signal of the digital sensor or an analog signal of the analog sensor and output a corresponding detection signal. The input circuit transmits the detection signal to the controller. The controller controls the corresponding alarm to work according to the detection signal.
Abstract:
A temperature control circuit includes a microprocessor, a protection module, a temperature detecting module, and a heating module. The temperature detecting module includes a thermistor and a first switch. The thermistor is operable to sense a temperature to turn on or off the first switch for outputting a detection signal to the microprocessor and the protection module. The protection module is operable to control the microprocessor to work or reset according to the detection signal. The heating module includes a heater and a second switch. The microprocessor controls the second switch to turn on or off for making the heater work or stop working according to the detection signal.