SDR – Software Defined Radio

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  • The X6-400M integrates high speed digitizing and signal generation with signal processing on a PMC/XMC IO module with a powerful Xilinx Virtex 6 FPGA signal processing core, and high performance PCI Express/PCI host interface.
  • The X6-1000M integrates high-speed digitizing and signal generation with signal processing on a PMC/XMC IO module for demanding DSP applications. The tight coupling of the digitizing to the Virtex6 FPGA core realizes architectures for SDR, RADAR, and LIDAR front end sensor digitizing and processing. The PCI Express system interface sustains transfer rates over 2 GB/s for data recording and integration as part of a high performance realtime system.
  • The XA-RX is an XMC IO module featuring eight 16-bit, 125 MSPS A/D channels designed for high speed stimulus-response, ultrasound, and RADAR.
  • The XA-TX is an XMC IO module featuring eight 16-bit, 300 MSPS DAC channels designed for high speed arbitrary waveform generation, wireless transmission, and RADAR pulse generation applications.
  • The X6-250M integrates digitizing with signal processing on a PMC/XMC IO module. The module has a powerful Xilinx Virtex 6 FPGA signal processing core, and high performance PCI Express/PCI host interface. Applications include software-defined radio, RADAR receivers, and multi-channel data recorders. The X6-250M has eight simultaneously sampling A/D channels that sample at rates up to 250 MSPS (14-bit). The A/D have matched input delays and response. The A/D are supported by a programmable sample clock PLL and triggering that support multi-card synchronization for large scale systems.
  • The XA-160M is an XMC IO module featuring two 16-bit, 160 MSPS A/D channels and two 16-bit, 615 MSPS DAC channels designed for high speed stimulus-response, ultrasound, and servo control applications. Flexible trigger methods include counted frames, software triggering and external triggering. The sample rate clock is either an external clock or on- board programmable PLL clock source.