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FPGA based chip emulation system for test development of analog and mixed signal circuits: A case study of DC-DC buck converter

机译:基于FPGA的芯片仿真系统,用于模拟和混合信号电路的测试开发:以DC-DC降压转换器为例

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Prototyping on FPGA has become a main stream verification methodology for hardware design, test development, software co-design, etc. in the area of digital VLSI. In the case of test development, FPGA serves as a virtual DUT (Design Under Test) and test patters are applied from automatic test equipment (ATE). This verifies not only the chip with design for test (DFT) circuitry and test program but also the entire test setup involving virtual DUT, load board, interconnections with ATE, etc. Although, FPGA based platform is used widely for test program verification of digital ICs, this technique is not used for analog/mixed signal (AMS) circuits because of the difficulty in implementing AMS circuits in FPGAs. This work is concerned with the development of a test emulation platform, termed as hand-in-hand test flow, of AMS circuits based on FPGA. The proposed methodology exploits fixed-point modeling and DSP implementation techniques facilitated by latest FPGAs to model the AMS circuits. The proposed hand-in-hand test flow for AMS circuits will help the test engineers to start their test plan concurrently with the design engineers and validate them much prior to the first silicon. We have illustrated the proposed scheme using the case study of a current programmed buck type switching converter on Xilinx~(~R) Virtex~(TM)-5 FPGA. The FPGA emulation measurement results show that performance of the emulated DC-DC buck converter (e.g., duty ratio test, line transient, load step) matches well with that of SPICE simulation.
机译:FPGA原型已成为数字VLSI领域中硬件设计,测试开发,软件协同设计等的主流验证方法。在测试开发的情况下,FPGA充当虚拟DUT(被测设计),并且从自动测试设备(ATE)应用测试模式。这不仅可以验证具有测试设计(DFT)电路和测试程序设计的芯片,还可以验证包括虚拟DUT,负载板,与ATE的互连等在内的整个测试设置。尽管基于FPGA的平台被广泛用于数字的测试程序验证。对于IC,此技术不用于模拟/混合信号(AMS)电路,因为难以在FPGA中实现AMS电路。这项工作与基于FPGA的AMS电路的测试仿真平台(称为手拉手测试流程)的开发有关。所提出的方法利用了最新FPGA所支持的定点建模和DSP实现技术来对AMS电路进行建模。提议的AMS电路并行测试流程将帮助测试工程师与设计工程师同时启动他们的测试计划,并在第一个芯片之前就对其进行验证。我们使用Xilinx〜(〜R)Virtex〜(TM)-5 FPGA上的电流编程降压型开关转换器进行了案例研究,说明了该方案。 FPGA仿真测量结果表明,仿真的DC-DC降压转换器的性能(例如,占空比测试,线路瞬变,负载阶跃)与SPICE仿真的性能良好匹配。

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