Detailed function introduction based on TXMC638

TEWS Technology's TXMC638 model 24 channels, 16-bit, 5M samples per second sampling rate XMC card will be 24 ADC channels (using Linear Technology LTC2323-16 analog-to-digital conversion chip, sampling rate 5Msps, successive approximation register) Integrated into a programmable data acquisition system, the board carries Xilinx's Kintex-7 FPGA (K160T, K325T or K410T) and a 1GB 32-bit wide on-board DDR3 SDRAM chip. In addition, the TXMC638 provides three 100-ohm ac-coupled, wide input voltage range differential input terminals. All input and output ports and three 100-ohm input terminals are connected to the 98-pin Samtec ERF8-049. Plug-in terminal.

The FPGA on the TXMC638 has been loaded with a reference design. In addition to programming the FPGA using Xilinx's USB programmer, the user can also download the design via the on-board configuration controller (BCC). For system programming, the FPGA is configured via serial SPI flash, real-time debugging and reading can be done through the JTAG port. For the PCIe standard, the Xilinx Tandem configuration can be used to configure the FPGA, and "Tandem PROM" is the recommended method set. The block diagram of the XMC capture card is as follows:

The Kintex-7 FPGA on the board is a new 28nm FPGA that reduces power consumption by more than half compared to previous generations of FPGAs and doubles the price/performance ratio. The Kintex-7 family of FPGAs offers high-density logic (up to 478K logic cells), high-performance serial connectivity (1.6Gb/s), DDR memory, high-speed transceivers (12.5Gb/s), DSP, PCI Express interface, and 16 Channel dual 12-bit resolution digital-to-analog converter.

The card's differential ADC input processes ±2.5V signals and produces a ±5 V differential voltage range. The card also provides 64 digital I/O pins on the XMC P14 connector for 64 single-ended LVCMOS 24 or 32 differential LVDS25 interfaces and four 12.5Gbps GTX transceiver pins on the P16.

According to the TEWS data sheet: You can develop your own data acquisition and control applications for the TXMC638 using the Xilinx Vivado Design Suite (the Vivado Design Suite is an integrated design environment released by Xilinx in 2012, including a highly integrated design environment and a new generation From system to IC level tools, based on a shared scalable data model and a common debugging environment, Vivado can not only implement programmable logic design, but also implement programmable system integration. More and more system functions are integrated on fewer chips.)


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