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Switched-opamp: an approach to realize full CMOS switched-capacitor circuits at very low power supply voltages

机译:开关运算放大器:一种在非常低的电源电压下实现完整的CMOS开关电容器电路的方法

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摘要

The implementation of analog CMOS circuits that operate in the very low power supply voltage range (1 V to 2 V) becomes more important nowadays. Most accurate filter circuits are designed in the switched-capacitor technique. The existing design techniques require, however, the on-chip generation of a higher voltage by means of a voltage multiplier. In this paper, a novel technique, derived from the standard switched-capacitor technique, is presented. It is called switched-opamp because it is based on the replacement of the critical switches with opamps which are turned on and off. This technique results in a true, very low voltage operation without the need for voltage multipliers. As an example, a second order lowpass switched-capacitor filter is implemented in the switched-opamp technique. This filter operates with only a 1.5 V power supply. It is realized in a 2.4-/spl mu/m CMOS process with V/sub T/=/spl plusmn/0.9 V. It has a measured total harmonic distortion of -60 dB for a signal swing of 600 mV/sub ptp/ and a powerdrain of only 110 /spl mu/W.
机译:如今,在非常低的电源电压范围(1 V至2 V)下运行模拟CMOS电路变得越来越重要。最准确的滤波器电路是采用开关电容器技术设计的。但是,现有的设计技术需要通过电压倍增器在芯片上产生更高的电压。在本文中,提出了一种从标准开关电容器技术衍生而来的新技术。之所以称为开关运算放大器,是因为它基于将关键开关替换为已打开和关闭的运算放大器。该技术可实现真正的极低电压操作,而无需电压倍增器。例如,在开关运算技术中实现了二阶低通开关电容滤波器。该滤波器仅在1.5 V电源下运行。它以2.4- / spl mu / m CMOS工艺实现,V / sub T / = / spl plusmn / 0.9V。对于600 mV / sub ptp /的信号摆幅,其测得的总谐波失真为-60 dB。和仅110 / spl mu / W的功率消耗。

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