Differential-pair-based current-mode analog signal processing

R. Wojtyna
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引用次数: 4

Abstract

In CMOS electronics using differential pairs, input signals are usually supplied to gate terminals of MOS transistors creating the pair. Then, the tail terminal of the pair is used to ensure the required bias needed for proper operation of the transistors. In this paper, we show that roles of the gate and tail terminals can be changed. This implies, among others, that the tail can be used as a terminal delivering the input signal. In such a case, new possibilities of decreasing the circuit power consumption occur, especially when making use of current mode techniques. This is because the power consumption can drop to zero if the input signal disappears. Combining current mode technique with the differential one enables to achieve important circuit advantages like the required small headroom and simplicity of realizing signal summation with the ability of a considerable reduction of common-mode effects, characteristic of differential methods. The last feature allows us to process even very weak signals, like it is the case at input stages of the popular differential amplifiers. Necessary conditions for successful implementation of the proposed idea have been explained. Example of a simple CMOS circuit operating according to theoretical predictions made is also presented.
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基于差分对的电流模式模拟信号处理
在使用差分对的CMOS电子器件中,输入信号通常提供给MOS晶体管的栅极端子,从而产生差分对。然后,该对的尾端用于确保晶体管正常工作所需的偏置。在本文中,我们证明了门端和尾端的作用是可以改变的。这意味着,除其他外,尾巴可以用作传递输入信号的终端。在这种情况下,降低电路功耗的新可能性出现,特别是当使用电流模式技术时。这是因为如果输入信号消失,功耗可以降至零。将电流模式技术与差分模式技术相结合,可以实现重要的电路优势,如所需的净空空间小,实现信号求和的简单性,以及显著减少共模效应的能力,这是差分方法的特点。最后一个特性允许我们处理甚至非常微弱的信号,就像在流行的差分放大器的输入级一样。说明了成功实施所提出的设想的必要条件。并给出了一个简单的CMOS电路的运行实例。
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