High Linearity Push-Pull Amplifier-Scaler Current on Bipolar Transistors with the Grounded Load

O. Azarov, Y. Heneralnytskyi
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Abstract

devices can be greater if all operations on the signals are performed using current amplifiers rather than voltage amplifiers. Therefore, to maximize the use of the frequency properties of bipolar transistors, it should be used as a current amplifier. A controlled current generator can be quite easily obtained on the basis of an operational amplifier by including loads in the feedback circuit, but in this case it cannot be grounded, which narrows its capabilities. It is proposed that controlled current generators with a grounded load are to be constructed on the basis of a push-pull amplifier and current mirrors included in the negative feedback circle on bipolar transistors. However, this approach is new, almost not considered in the scientific and technical literature, therefore the topic of the article devoted to the creation of highly linear push-pull amplifiers — current scalers on bipolar transistors with a grounded load is relevant. A new method for constructing controlled current-to-current generators implemented on bipolar transistors is analyzed, in which negative feedback is based on the removal of current using current mirrors. Mathematical expressions are obtained that make it possible to set the values of current amplification factors and determine the output resistance of a DC amplifier. Computer simulation of the characteristics of a DC amplifier was carried out, the results of which confirm the possibility of their use in high-precision electronic circuits, in particular in multi-bit (n = 16…20) ADCs and DACs.
带接地负载的双极晶体管上的高线性推挽放大-缩放电流
如果对信号的所有操作都使用电流放大器而不是电压放大器,则器件可以更大。因此,为了最大限度地利用双极晶体管的频率特性,应将其用作电流放大器。通过在反馈电路中包含负载,可以很容易地在运算放大器的基础上获得受控电流发生器,但在这种情况下,它不能接地,这缩小了它的能力。提出了在双极晶体管负反馈环中包含推挽放大器和电流镜的基础上,构建具有接地负载的可控电流发生器。然而,这种方法是新的,在科学和技术文献中几乎没有考虑过,因此本文的主题是致力于创建高度线性推挽放大器-具有接地负载的双极晶体管上的电流缩放器。分析了一种在双极晶体管上构建可控电流发生器的新方法,该方法利用电流反射镜去除电流,从而实现负反馈。得到了可以设置电流放大系数值和确定直流放大器输出电阻的数学表达式。对直流放大器的特性进行了计算机模拟,结果证实了它们在高精度电子电路中,特别是在多位(n = 16…20)adc和dac中使用的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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