FPGA-based multi-channel KVM management board
A management board and external technology, applied in the direction of electrical digital data processing, data processing input/output process, instruments, etc., can solve the problems of high power consumption, poor stability, large number of KVM management board chips, etc., to achieve low power consumption , stable performance, and the effect of improving system stability
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Embodiment 1
[0020] Such as figure 1 As shown, a multi-channel KVM management board based on FPGA, the management board structure includes FPGA, MAX4312, MAX4310, MAX4023, wherein:
[0021] The line and field signals and I2C signals of the video in the KVM management board are controlled by the FPGA, and the video channel is selected through the FPGA, which can support up to eight channels of selection.
[0022] Since the VGA signal is an analog signal, and the FPGA can only process digital signals, the FPGA is externally connected to MAX4312 for RGB gating, which can support up to eight channels of selection;
[0023] The gated signal is input to MAX4310 for RGB cascading;
[0024] The cascaded RGB signal is input to MAX4023 for OSD video overlay;
[0025] The superimposed signal is output to the monitor for display.
[0026] Among them: line and field signals are: HsyncXn_in and VsyncXn_in;
[0027] The I2C signals are: SCLXn_in and SDAXn_in, and the I2C bus consists of a data line S...
Embodiment 2
[0029] On the basis of Embodiment 1, the FPGA described in this embodiment integrates the selector function, parsing and packaging functions of PS2 keyboard and mouse, and externally connects MAX4999 for USB keyboard and mouse signal selection, which can support eight-way selection at most.
Embodiment 3
[0031] On the basis of Embodiment 2, the FPGA described in this embodiment integrates the USBMAC function of the USB part, and externally connects the USB1T11A as the USBPHY and USBMAC functions to be implemented inside the FPGA.
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