扩展FPGA SerDes的极限以增强ATE性能

A. Majid, D. Keezer
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引用次数: 8

摘要

为了提高自动化测试设备(ATE)的高速信号生成、环回测试、抖动注入等性能,本文设计了一个多千兆赫测试模块。测试模块包括一个由高性能FPGA组成的核心逻辑块。它的设计与现有的ATE基础设施兼容;通过设备接口板(DIB)连接到被测设备(DUT)。核心逻辑块控制测试模块的功能,从而允许它独立于ATE操作。利用FPGA SerDes的最新进展,测试模块能够以相对较低的成本产生非常高(多ghz)的数据速率。在本文中,我们演示了多路复用逻辑,以产生更高的数据速率(高达10Gbps)和低抖动缓冲环回路径,以将高速信号从被测件传回被测件。测试模块可以产生10Gbps的信号,具有~ 32ps (p-p)抖动,而环回路径为输入信号增加了~ 20ps (p-p)抖动。
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Stretching the limits of FPGA SerDes for enhanced ATE performance
This paper describes a multi-gigahertz test module to enhance the performance capabilities of automated test equipment (ATE), such as high-speed signal generation, loopback testing, jitter injection, etc. The test module includes a core logic block consisting of a high-performance FPGA. It is designed to be compatible with existing ATE infrastructure; connecting to the device under test (DUT) via a device interface board (DIB). The core logic block controls the test module's functionality, thereby allowing it to operate independently of the ATE. Exploiting recent advances in FPGA SerDes, the test module is able to generate very high (multi-GHz) data rates at a relatively low cost. In this paper we demonstrate multiplexing logic to generate higher data rates (up to 10Gbps) and a low-jitter buffered loopback path to carry high speed signals from the DUT back to the DUT. The test module can generate 10Gbps signals with ∼32ps (p-p) jitter, while the loopback path adds ∼20ps (p-p) jitter to the input signal.
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