Title :
Self-sustained low power oscillator based on vibrating body field effect transistor
Author :
Grogg, Daniel ; Ayöz, Suat ; Ionescu, Adrian Mihai
Author_Institution :
Nanoelectronic Devices Lab., Ecole Polytech. Fed. de Lausanne, Lausanne, Switzerland
Abstract :
The operation of a vibrating body field effect transistor (VB-FET) near pull-in is exploited to experimentally demonstrate a self-oscillating device. The positive feedback mechanism is triggered at the onset of inversion in a depleted VB-FET channel, near mechanical pull-in. This is probably the first known demonstration of inherent oscillation capability in a MEM resonator, expected to provide a significant contribution towards the study of low power, high stability reference source design for compact timing and communications applications. We report self-sustained VB-FET oscillators that generate 3 to 4 MHz AC signals when powered by a steady DC source with power consumption levels between 70 ¿W an 1 mW when VD is varied from 0.4 V to 2 V. A detailed study of the drain and gate influences on self-oscillations and noise filtering is proposed. Further scaling of such devices is expected to offer practical solutions for sub-1 ¿W integrated oscillators.
Keywords :
feedback; field effect transistors; low-power electronics; micromechanical resonators; oscillators; DC source; MEM resonator; VB-FET channel; VB-FET oscillators; frequency 3 MHz to 4 MHz; mechanical pull-in; noise filtering; oscillation capability; positive feedback mechanism; power 70 muW to 1 mW; power consumption levels; reference source design; self-oscillating device; self-sustained low power oscillator; vibrating body field effect transistor; voltage 0.4 V to 2 V; AC generators; DC generators; FETs; Feedback; Oscillators; Power generation; Signal generators; Stability; Timing; Vibrations;
Conference_Titel :
Electron Devices Meeting (IEDM), 2009 IEEE International
Conference_Location :
Baltimore, MD
Print_ISBN :
978-1-4244-5639-0
Electronic_ISBN :
978-1-4244-5640-6
DOI :
10.1109/IEDM.2009.5424222