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Analysis of the Bipolar Current Mirror Including Electrothermal and Avalanche Effects

机译:包含电热效应和雪崩效应的双极电流镜分析

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摘要

An experimental and numerical study of the bipolar current mirror characteristics under strong self-heating and avalanche conditions is presented, and a theoretical model to describe the observed behavior is proposed. It is shown that both electrothermal effects and impact ionization may lead to a marked degradation of the mirroring action, eventually resulting in an instability phenomenon which limits the usable operating range of the circuit. Both the separate and combined actions of these positive-feedback mechanisms are investigated. The model compares favorably with experimental data measured on silicon-on-glass and GaAs current mirrors and allows deriving a theoretical relation for the critical condition corresponding to the onset of the instability. The impact of the most significant technology and design parameters is discussed, and design criteria are given in order to ensure an unconditionally stable behavior.
机译:提出了在强自热和雪崩条件下双极型电流镜特性的实验和数值研究,并提出了描述观测行为的理论模型。结果表明,电热效应和碰撞电离都可能导致镜像作用明显降低,最终导致不稳定现象,从而限制了电路的可用工作范围。研究了这些积极反馈机制的单独行动和联合行动。该模型与在玻璃上硅和GaAs电流镜上测得的实验数据相比具有优势,并且可以推导与不稳定性发生相对应的临界条件的理论关系。讨论了最重要的技术和设计参数的影响,并给出了设计标准,以确保无条件地稳定行为。

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