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Analytical current-voltage relations for compact SiGe HBT models. II. Application to practical HBTs and parameter extraction

机译:紧凑型SiGe HBT模型的分析电流-电压关系。二。在实际HBT和参数提取中的应用

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For pt. I, see ibid., vol. 46, no. 7, p. 1384-93 (1999). The current-voltage relations derived in the first part of the paper for an idealized SiGe HBT are now checked for transistors with more practical doping profiles: nonabrupt pn junctions, Ge gradient in the base, and heterojunction within the collector region. It is shown that the "idealized" model equations can still be applied if the model parameters are adequately chosen. Sufficient agreement with device simulation results is obtained even in the high-current region. This holds not only for the static behavior but also for small-signal parameters, e.g., y/sub 21/ and y/sub 22/, which are more sensitive to potential errors. As another result, all the investigated HBT versions show improved characteristics compared with the idealized HBT. An adequate procedure of how to extract the model parameters from measurement or simulation results is presented. Both the device simulator and the model equations have been successfully checked by measurements. The model has been extended by a transit time model to a complete compact model called SIGEM, which has been implemented in a commercial circuit simulator and successfully used for the design of high-speed IC's.
机译:对于pt。我,见同上,第一卷46号7,第1384-93(1999)。现在,针对具有更实用掺杂分布的晶体管,检查了在本文第一部分中得出的理想SiGe HBT的电流-电压关系:非突变pn结,基极中的Ge梯度以及集电极区域中的异质结。结果表明,如果适当选择模型参数,仍然可以应用“理想化”模型方程。即使在高电流区域,也可以获得与器件仿真结果的充分一致性。这不仅适用于静态行为,还适用于对潜在错误更敏感的小信号参数,例如y / sub 21 /和y / sub 22 /。另一个结果是,与理想化的HBT相比,所有研究的HBT版本均显示出改进的特性。给出了如何从测量或仿真结果中提取模型参数的适当程序。通过测量已成功检查了设备模拟器和模型方程式。该模型已通过传输时间模型扩展为一个完整的紧凑模型,称为SIGEM,已在商用电路模拟器中实现,并成功用于高速IC的设计。

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