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A new bipolar op-amp IC synthesis approach

机译:一种新的双极型运算放大器IC综合方法

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Bipolar op-amp IC modules with a simple circuit structure are difficult to design for a wide range of design specifications, due to strong correlations between transistor parameters. As a result, bipolar op-amps are commonly designed resorting to complicated circuit structures which result in large chip area and high fabrication cost. We have developed a new synthesis approach which can generate bipolar op-amp IC modules for a wide range of design specifications with a simple structure. The approach incorporates two new methods which we have developed to predict Miller capacitance and to calculate transistor transconductance during transistor sizing. Differing from conventional methods, our methods consider the effect of device parasitics during the synthesis and hence are accurate. The approach has been implemented in our bipolar op-amp IC synthesis package.
机译:由于晶体管参数之间的强相关性,具有简单电路结构的双极型运算放大器IC模块难以针对各种设计规格进行设计。结果,通常根据复杂的电路结构来设计双极型运算放大器,这导致大的芯片面积和高的制造成本。我们已经开发出一种新的合成方法,该方法可以生成具有简单结构的,适用于多种设计规范的双极型运算放大器IC模块。该方法结合了两种新方法,我们已经开发出了两种新方法来预测米勒电容并计算晶体管尺寸时的晶体管跨导。与常规方法不同,我们的方法考虑了合成过程中器件寄生效应的影响,因此是准确的。该方法已在我们的双极型运算放大器IC合成套件中实现。

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