基于物理的光电二极管模型实现一致的光电电路仿真

T. Ezaki, G. Suzuki, K. Konno, O. Matsushima, Y. Mizukane, D. Navarro, M. Miyake, N. Sadachika, H. Mattausch, M. Miura-Mattausch
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引用次数: 8

摘要

本文建立了一个用于电路仿真的光电二极管(PD)模型,与现有模型相反,在连续性方程的解中明确地考虑了瞬态载流子的产生。所开发的模型与传统的紧凑型电气器件模型兼容,并被证明可以实现光电集成电路的精确仿真。电场沿PD深度方向的分布会在光电流中产生尾巴,对PD的光响应和光电电路的性能产生不利影响。所建立的光电电路模型也适用于预测电路性能如何随着光电二极管特性的改善而改善
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physics-Based Photodiode Model Enabling Consistent Opto-Electronic Circuit Simulation
The paper developed a photodiode (PD) model for circuit simulation considering, contrary to existing models, the transient carrier generation explicitly in the solution of the continuity equation. The developed model is compatible with conventional compact electrical device models and is demonstrated to enable accurate simulation of opto-electronic integrated circuits. The electric field distribution along the depth direction of the PD is found to cause a tail in the photo current, which has an adverse effect on optical response of PD and the performance of opto-electronic circuits. The developed opto-electronic circuit model is also applicable to predict how circuit performance is improved with respect to the improvement of photo diode characteristics
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