基于bicmos - cccdba的高性能电流型精密全波整流器

P. Silapan, W. Jaikla, M. Siripruchyanun
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引用次数: 6

摘要

本文介绍了一种实现电流型精密全波整流器的新方案。该电路的特点是:通过输入偏置电流对输出幅度可控的电流信号进行整流和放大;输出电流不受温度变化的影响。此外,在不改变电路拓扑结构的情况下,可以通过电路中的受控电流任意控制输出电流信号的方向为正或负,这与以往文献有所不同。电路描述仅由3个BiCMOS cccdba组成,没有任何无源元件。通过PSPICE对电路的性能进行了研究。他们表明,所提出的电路可以作为电流模式精密全波整流器,其输入电流范围从-240 muA到240 muA可以在+ mn1.5 V电源下实现。最大功耗11.8 mW。此外,最高频率被限制在兆赫范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A high-performance current-mode precision full-wave rectifier based on BiCMOS-CCCDBAs
This article introduces a novel version for implementing current-mode precision full-wave rectifier. The features of the proposed circuit are that: it can rectify and amplify current signal with controllable output magnitude via an input bias current: the output current is free from temperature variation. In addition, direction of the output current signal can be arbitrarily controlled by controlled current in the circuit to be either positive or negative without changing circuit topology, which differs from the previous literatures. Circuit description merely consists of 3 BiCMOS CCCDBAs, without any passive component. The performances of the proposed circuit are investigated through PSPICE. They show that the proposed circuit can function as a current-mode precision full-wave rectifier, where input current range from -240 muA to 240 muA can be achieved at plusmn1.5 V power supplies. The maximum power consumption is 11.8 mW. In addition, the highest frequency is restricted at up to megahertz range.
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