虚拟emi实验室:从黑魔法到成功的前端设计中去除奥秘

H. Fahmy, Chen Wang, D. Pissoort, A. Badesha
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引用次数: 4

摘要

EMI工程师每天都在与复杂的辐射问题作斗争,这些问题使关键产品无法通过EMI认证,并造成巨大的利润损失。电磁干扰工程的发展与10年前的信号完整性工程类似,当时仿真工具能够在合理的时间内提供准确的预测模拟。通过使用先进的全波场求解软件:Momentum (MOM) [1], EMpro (FDTD)[2]以及异构大规模CPU/GPU并行处理(CUDA)技术[3]的硬件增强,我们可以将EMI团队从后端黑魔法转移到成功的经济高效的前端设计。本文提出了一种用于带前和带后的创新过程(虚拟emi实验室),为设计人员提供早期emi抑制矩阵(片上和板上使能器),以找到性能和成本之间的最佳权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual-EMI lab: Removing mysteries from black-magic to a successful front-end design
EMI engineers are struggling everyday with complex radiation problems that fail critical products to pass EMI certification and causes big loss of profit. Advances in EMI engineering are following a similar trend like Signal-Integrity engineering 10-years ago when simulation tools became capable of providing accurate predictive simulations in a reasonable amount of time. With careful engineering utilizing cutting-edge full-wave field-solver software: Momentum (MOM) [1], EMpro (FDTD) [2] along with a hardware boost with heterogeneous massive CPU/GPU parallel processing (CUDA) technology [3], we can move the EMI teams from the back-end black-magic to a successful cost-effective front-end design. This paper presents an innovative process (Virtual-EMI lab) for pre- and post-tape-out providing the designers with an early stage EMI-suppression matrix (on-chip and onboard enablers) to find the optimum trade-off between performance and cost.
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