FMC HPC Debug Board with 156 U.FL Breakouts and SMA Probing is a versatile signal breakout and test platform designed for FPGA developers.
Designed by I A M Electronic in Germany
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Features FMC High-Pin Count (HPC) connector interface 156 routed signals accessible via Hirose U.FL connectors Up to 6 GHz signal bandwidth Flexible high-speed signal access via pluggable con…
Read More…Features
FMC High-Pin Count (HPC) connector interface
156 routed signals accessible via Hirose U.FL connectors
Up to 6 GHz signal bandwidth
Flexible high-speed signal access via pluggable connections
Breakout of 68 LPC LA bank signals
Breakout of 48 HPC HA bank signals
Breakout of 8 dedicated clock signals
16 differential MGT signal pairs breakout
8 SMA and 8 clamp probe connection points
Stackable mechanical design
Independent breakout of power pins
Independent breakout of JTAG bus
Independent breakout of JTAG bus
Open-source hardware design
Includes 8 U.FL cables and mounting kit
Applications
Debugging and testing of FMC modules
Direct probing of high- and low-speed signals
Signal loopback and board-to-board connections
Educational use and research involving FPGAs
Description
The FMC HPC-U.FL Debug Board is a diagnostic tool developed for use with FPGA Mezzanine Cards (FMC) utilizing the High-Pin Count (HPC) interface. The board facilitates signal access and measurement by routing key HPC signals to U.FL, SMA, and clamp connectors. This allows developers and researchers to probe, analyze, and re-route FMC signals with minimal effort and without modifying the system under test. Signal routing includes 156 U.FL-accessible signals, with breakouts for 68 LPC LA bank lines, 48 HPC HA bank lines, 8 clock signals, and 16 differential MGT pairs. The board additionally provides 8 SMA connectors and 8 clamp connection points, which can be linked to any U.FL breakout line, enabling compatibility with standard test equipment. The debug board supports a range of configurations including board-to-board and loopback setups. The mechanical design supports stackable usage, and the board includes a power breakout area for voltage monitoring and injection. It empowers developers with full flexibility to re-route and monitor signals from the FMC HPC connector, drastically simplifying the debugging process and accelerating development cycles.
Find more resources at FMCHUB.COM
The full datasheet is available at https://fmchub.github.io/projects/FMC_HPC_UFL_DEBUG_BOARD/Datasheet/FMC_HPC_UFL_DEBUG_BOARD_datasheet.html.
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