Hybrid Signal Integrity Modeling and Analysis of Heterogeneous Integrated System With Neuromorphic Darwin Chip

Quankun Chen;Hanzhi Ma;Da Li;Tuomin Tao;Shurun Tan;En-Xiao Liu;Jose Schutt-Aine;Er-Ping Li
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Abstract

This article introduces a comprehensive approach for designing and analyzing signal integrity in heterogeneous integrated systems that incorporate neuromorphic Darwin chips. The proposed integrated system architecture includes a neuromorphic Darwin chip, digital signal processing unit, microcontroller unit, field programmable gate arrays, and coding and decoding modules to encode and reconstruct analog spiking signals. The study evaluates the encoding module and the heterogeneous integration structure and conducts signal integrity analysis. To achieve optimal signal integrity performance, the article proposes a novel binocular eye diagram analysis technique. This innovative approach guides the encoding algorithm modification and improves the overall system performance. This research is the first to combine joint field-circuit simulation, heterogeneous integration modeling, and signal integrity analysis of the Darwin neuromorphic chip, and it is expected to serve as a valuable reference for future studies on similar systems.
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带有神经形态达尔文芯片的异构集成系统的混合信号完整性建模与分析
本文介绍了一种设计和分析包含神经形态达尔文芯片的异构集成系统信号完整性的综合方法。拟议的集成系统架构包括神经形态达尔文芯片、数字信号处理单元、微控制器单元、现场可编程门阵列以及编码和解码模块,用于编码和重建模拟尖峰信号。研究评估了编码模块和异构集成结构,并进行了信号完整性分析。为了实现最佳的信号完整性性能,文章提出了一种新颖的双目眼图分析技术。这一创新方法指导了编码算法的修改,提高了系统的整体性能。这项研究首次将达尔文神经形态芯片的现场电路仿真、异构集成建模和信号完整性分析联合起来,有望为今后类似系统的研究提供有价值的参考。
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Front Cover 2024 Index IEEE Transactions on Signal and Power Integrity Vol. 3 IEEE Electromagnetic Compatibility Society Information System-Level Application of the Z-Directed Component (ZDC) for Power Integrity Multilayer Ceramic Capacitor Source Model Application in Acoustic Noise Prediction
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