Framework for Developping Behavioural Models From Physical Designs

A. Kouhoul, Y. Karmous, Naim Benhamida, S. Aouini, Tahar Haddad, Larbi Talbi
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Abstract

Verification of high-precision nanometer analog and mixed-signal circuits has become very challenging because traditional Analog simulators do not have the capacity required to support the circuit complexity. As a result, they are not suitable for large analog, mixed-signal, and digital circuits as the run time is too long. To overcome this limitation and address the need of speed and accuracy behavioral models are developed. This article explains the development and implementation of a new digital environment to run analog and mixed signal systems. The proposed environment was tested to verify a 400Gbit/s coherent optical modem.
从物理设计发展行为模型的框架
高精度纳米模拟和混合信号电路的验证变得非常具有挑战性,因为传统的模拟模拟器不具备支持电路复杂性所需的能力。因此,由于运行时间太长,它们不适合大型模拟、混合信号和数字电路。为了克服这一限制,解决速度和准确性的需要,开发了行为模型。这篇文章解释了开发和实现一个新的数字环境来运行模拟和混合信号系统。对所提出的环境进行了测试,验证了400Gbit/s相干光调制解调器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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