2019/10/23 by A. Rohlev, Rohlev, A. · 1 citation
Engineering · Physics and Astronomy · #Particle Accelerators and Free-Electron Lasers #Particle accelerators and beam dynamics #Gyrotron and Vacuum Electronics Research
paper · pdf · doi:10.48550/arxiv.1910.11936
A 20 GHz LLRF system is being built using a two-board(RF Front End + ADC/DAC/FPGA) architecture. The RF Front End provides 8 down-converting channels and 3 up-converting channels (5.5-20 GHz RF to 0.05-3 GHz IF). Separate, phase locked, low-noise input and output LO's are generated on-board with an independent programmable frequency range of 4-20 GHz. A user input is provided so that both LO's as well as all ADC, DAC, and FPGA clocks can be locked to a supplied reference source with a frequency range from 100 MHz to 20 GHz. The IF is processed with a commercial board (HiTech Global ZRF8) based on the Xilinx ZYNQ RFSoC FPGA. The RFSoC FPGA incorporates eight 4-GSPS 12-bit ADC's with a 4 GHz analog bandwidth and eight 6.4-GSPS 14-bit DAC's. The ZRF8 is a PCIe-standard board that provides low noise ADC/DAC/FPGA clocking, 16 GB of memory, a FMC+ socket, and a 1 Gbps Ethernet port. The complete system will be housed in a standard 2U 19" rack.