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A 0.7-V CMOS operational transconductance amplifier with bulk-driven technique
Conference paper

A 0.7-V CMOS operational transconductance amplifier with bulk-driven technique

Meng-Hung Shen, Yi-Shuan Wu, Guan-Hung Ke and Po-Chiun Huang
2010 International SoC Design Conference, ISOCC 2010, pp.392-395
2010

Abstract

Amplifiers Bulk-input Low voltage
This paper presents a two-stage pseudo-differential amplifier. Rail-to-rail operations are achieved by using bulk terminals as the inputs. The positive feedback technique is used to enhance the transconductance with negative conductance. The bulk terminals of all transistors are carefully biased to lower their threshold voltages (V th ) and maximize signal swing. Using a standard 0.18-μm CMOS technology, measurement results demonstrate that gain-bandwidth product is 0.97MHz. The settling time for a 0.7-V pp step is 2.1μs. The input referred noise is 0.14mV at 1MHz. All the circuits dissipate 0.107μW under a single 0.7-V power supply. ©2010 IEEE.

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