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Mutual inductance extraction and the dipole approximation

机译:互感提取和偶极逼近

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The present work is centered in the controversy between two approaches to inductance extraction: loop vs. partial treatments for IC applications. We advocate for the first one, justifying this claim in terms of representing more realistically the physical situation, as well as having better sparseness properties. We argue that the drawbacks of loop inductance treatment are small for frequencies above 1 GHz. Within the loop inductance formulation, we develop an efficient way of calculating mutual inductances between loops in terms of the field generated by a magnetic dipole. On numerical simulations, the dipole approximation shows good accuracy when compared to FastHenry, down to distances of 30μ for 0.13μ processes. The dipole approximation leads naturally to selection rules for discarding certain couplings that can be experimentally verified.
机译:本工作以两种电感提取方法之间的争议为中心:Loop与IC应用的部分处理。我们倡导第一个,就代表更现实的物理情况而言,以及具有更好的稀疏性质的倡导者。我们认为环电感处理的缺点对于1GHz以上的频率很小。在环路电感制定中,我们在由磁偶极子生成的场方面开发了计算环之间的互感的有效方式。在数值模拟时,与Fasthenry相比,偶极近似显示出良好的精度,距离为30μ的距离0.13μ的过程。偶极近似自然导致用于丢弃可以通过实验验证的某些耦合的选择规则。

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