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A 1.57mW 99dB CMOS transimpedance amplifier for VHF micromechanical reference oscillators
Conference paper

A 1.57mW 99dB CMOS transimpedance amplifier for VHF micromechanical reference oscillators

Ming-Huang Li, Ming-Huang Li, Cheng-Syun Li, Li-Jen Hou, Yu-Chia Liu and Sheng-Shian Li
ISCAS 2012 - 2012 IEEE International Symposium on Circuits and Systems, pp.209-212
2012

Abstract

3 dB bandwidth;Capacitive peaking;CMOS technology;Equivalent model;Inverter-based;Low Power;Micro-mechanical;Micromechanical oscillators;Mode resonators;Oscillator configurations;Reference oscillators;Trans-impedance gain;Transimpedance amplifiers;Wide-band Hardware and Architecture,Electrical and Electronic Engineering
This work investigates a low-power transimpedance amplifier (TIA) topology suited for VHF micromechanical oscillator applications. The TIA circuit comprises of a regulated-cascode (RGC) transimpedance gain stage and an inverter-based wideband Cherry-Hooper amplifier with capacitive peaking. The circuit was designed using TSMC 0.18μm CMOS technology, exhibiting mid-band gain of 99dBμ and 3dB bandwidth of 280MHz while dissipating only 1.57mW from a 1.5V supply. A linear RLC equivalent model extracted from a practical 48MHz Lamé-mode resonator with Q>40,000 was interfaced with the TIA circuit in a series-resonant oscillator configuration, showing simulated phase-noise less than 128dBc/Hz at 1kHz offset. © 2012 IEEE.

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