超高速信号采集与信号完整性处理测试技术研究

    Research on Ultra-High-Speed Signal Acquisition and Signal Integrity Processing Technology

    • 摘要: 随着当前电子系统向着更大带宽、更高传输速率、更强运算能力的方向发展,具备相应超高速信号采集能力的平台需求越来越紧迫。同时,配合相应平台,实现信号完整性的全过程处理、监控、反馈评估,并促进其优化的技术应运而生,这两方面能力的协同发展推动高速处理技术领域的产业有效改进和提高,从而推动我国在超高速采样、存储、传输与信号完整性相关应用领域及上下游产业链的长足发展。超高速信号采集与信号完整性处理测试技术以自研ADC芯片为核心,完成了80GSa采样ADC的自主研发,使用大量的软件进行数据处理,测试测量、处理及计算精密度得到很大提升,实现在80Gsa采样率下的高速信号传输和处理能力。在完整性的处理方面,以调理电路为关键零部件,以溯源算法为核心,示值显示的数据是算法计算的结果。

       

      Abstract: As electronic systems evolve towards greater bandwidth, higher transmission rates, and enhanced computing power, the demand for platforms with ultra-high-speed signal acquisition capabilities has become increasingly urgent. Concurrently, technologies for comprehensive signal integrity processing, monitoring, feedback evaluation, and optimization have emerged to complement these platforms. The synergistic development of these capabilities drives effective improvements in high-speed processing technologies, promoting rapid advancements in ultra-high-speed sampling, storage, transmission, and signal integrity-related applications across China's industry chain. This study focuses on ultra-high-speed signal acquisition and signal integrity processing technology based on a self-developed 80 GSa/s (Giga-Samples per second) Analog-to-Digital Converter (ADC) chip. Extensive software-based data processing significantly enhances measurement precision, processing accuracy, and computational efficiency, enabling high-speed signal transmission and processing at an 80 GSa/s sampling rate. For signal integrity processing, conditioning circuits serve as key components, while traceability algorithms form the core of the system. The displayed values are the results of algorithmic calculations, ensuring data accuracy and reliability.

       

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