Abstract:
A contactless switch provided by the present disclosure is coupled to a signal input device and receives a magnetic signal generated by a magnetic trigger mechanism. The contactless switch includes: a magnetic sensor, for sensing the magnetic signal and generating a corresponding trigger control signal; a controller, for generating a switch signal according to the trigger control signal; and a mode switch module, for processing the input signal to generate an output signal according to the switch signal.
Abstract:
A self-calibration circuit and method for capacitors are provided. A capacitor array is calibrated to approximate a reference capacitor according to an average parameter generated by calibrating the capacitor array multiple times. Since the capacitance of the compensation capacitor required to be connected to the target capacitor in parallel is determined according to the average parameter generated by performing the calibration multiple times, the error caused by a single calibration can be reduced, and meanwhile the calibration error caused by a reference voltage error or noise is reduced.
Abstract:
A data storage system and the backup method thereof are provided. The data storage system includes a storage device and a storage controller. The storage controller is coupled to the storage device and used for dividing the storage device into a primary data block and a backup data block and setting the data storage system to operate under one of a real time backup mode and a non-real time backup mode. Under the non-real time backup mode, the storage controller backups the data stored in the primary data block to the backup data block when the data storage system is idle.
Abstract:
A self-calibration circuit and method for capacitors are provided. A capacitor array is calibrated to approximate a reference capacitor according to an average parameter generated by calibrating the capacitor array multiple times. Since the capacitance of the compensation capacitor required to be connected to the target capacitor in parallel is determined according to the average parameter generated by performing the calibration multiple times, the error caused by a single calibration can be reduced, and meanwhile the calibration error caused by a reference voltage error or noise is reduced.
Abstract:
A multi charging current control circuit including a voltage reference unit, a current limiting unit, a current detector and a current control unit is provided. The voltage reference unit provides many reference voltages. The current limiting unit selects a corresponding reference voltage from the reference voltages according to a charge mode signal and outputs a control signal according to the corresponding reference voltage. The current detector detects a first and a second charging current. The current control unit controls the first charging current and the second charging current according to the control signal. The current detector feedbacks the first charging current and the second charging current detected to the current control unit, such that the current control unit adjusts the first charging current or the second charging current to make the sum of the first charging current and the second charging current less than or equal to a constant value.
Abstract:
A multi-media KVM switch is for providing an output signal to drive a user-interface output device. The multi-media KVM switch comprises an embedded multi-media system, an arbiter and a multiplexer. The embedded multi-media system is enabled as receiving an enabling signal and providing a first device signal. The arbiter is for determining an operational state of at least a computer system in response to a second device signal,outputted by the at least computer system. The arbiter provides the enabling signal to enable the embedded multi-media system when the at least a computer system is in a standby or an off state, and the arbiter is further for providing a selection signal. The multiplexer is for receiving the first and the second device signals, and outputting one of the first and the second device signals as the output signal to the user-interface output device.
Abstract:
A removable electrical interface device for transferring data to and from a host adapted to operate in one of a universal serial bus (USB) compatible mode, a Mu mode and a non-USB compatible mode includes a first row of contact pads capable of supporting at least one of USB Standard-A connection, Mu mode connection or non-USB compatible mode connection, and a second row of contact pads capable of supporting the Mu mode connection and the non-USB compatible mode connection.
Abstract:
The present invention provides a system for a video window in a graphics background of a screen. The video window is allowed to be removed anywhere and be scaled up or down. The system comprises a receiving module to receive the video and graphics data and group both of the data in segment, a scaling module to process the scaling by applying the provided recursive pixel-extracting algorithm for the video segment, and an overlapping module to post the scaled video data on the graphics data in accordance with a boundary condition.
Abstract:
A memory controller and method thereof are provided. The memory controller includes a control logic circuit, a phase locked loop (PLL) and a multiplexer. The PLL generates a plurality of phase clock signals according to a system clock signal. The phase clock signals have the same frequency with the system clock. The phase clock signals have different phase difference to each other. The multiplexer receives the phase clock signals under the control of the control logic circuit, then selects and outputs one of the phase clock signals to generate a selected phase clock signal.
Abstract:
A method of installing a driver and software for a plug and play device is provided, wherein the plug and play device includes a main function device and a storage device meeting a standard specification. The storage device stores a driver and software required by the main function device. The main function device and storage device may be connected to the host in two different ways after the plug and play device is installed to the host. The first way is to connect the two devices to the host simultaneously. The host loads a built-in standard driver for the storage device from the host to access the storage device, and then loads the driver and software required by the main function device from the storage device to gain freely access to the main function device. The second way is to connect the storage device to the host, and to cause the host to copy the main function device driver and software from the storage device to the host's storage device (e.g., a disk drive). Next, the main function device is connected to the host. At this time, the host can directly load the copied driver and software for the main function device and retrieve the device accordingly.