研究目的
Focusing on achieving optical fiber link with Xilinx Gigabit transceiver block for data rates of over 3.125 Gbps transmitted serially between two FPGA boards.
研究成果
The research successfully demonstrates the use of Xilinx Gigabit transceiver blocks for high-speed optical communication between FPGA boards, achieving data rates of over 3.125 Gbps with very low bit error rates. The system supports real-time data transfer, increasing efficiency for research equipment and monitoring systems.
研究不足
The research is limited by the specific hardware used (Spartan 6 Series SP605 boards and SFP modules) and the focus on communication protocols and GTP core design rather than the design of optical source and photodetector.
1:Experimental Design and Method Selection:
The research involves using Xilinx Gigabit transceiver blocks for high-speed data transmission over optical fibers. The methodology includes setting up a communication link between two Spartan 6 Series SP605 FPGA boards coupled with SFP optical transceiver modules.
2:Sample Selection and Data Sources:
The study uses predefined data patterns and real-time data for transmission tests.
3:List of Experimental Equipment and Materials:
Spartan 6 Series SP605 FPGA boards, SFP optical transceiver modules, Xilinx ISE Design Suite
4:5 software, and ChipScope-Pro analyzer. Experimental Procedures and Operational Workflow:
The process includes generating GTP IP Core, selecting parameters, initializing ports, generating clocks, applying reset, sending data, and observing output.
5:Data Analysis Methods:
The IBERT test is used to validate GTP performance, with results analyzed using ChipScope-Pro analyzer to measure bit error ratio and other parameters.
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