A MEMS RF phase and frequency modulator

R. Reichenbach, K. Aubin, M. Zalalutdinov, J. Parpia, H. Craighead
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引用次数: 4

Abstract

We present a method to create an RF MEMS oscillator with continuous control of the output phase and frequency. When the weakly nonlinear oscillating system becomes synchronized with an imposed sinusoidal force of close frequency, the resonator frequency can be detuned with a DC bias on a resistive actuator to produce an easily controlled phase differential between the injected signal and the resonator feedback. We demonstrate a 26 MHz MEMS oscillator with frequency tunability of 0.3% and phase tunability of 200/spl deg/. By modulating the Joule heat dissipated in the structure, a 26 MHz carrier frequency was either frequency modulated by a 30 kHz baseband signal with a modulation depth of 15 kHz, or phase modulated by a 20 kHz baseband signal with a modulation depth of 160/spl deg/.
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一种MEMS射频相位和频率调制器
我们提出了一种可以连续控制输出相位和频率的RF MEMS振荡器的方法。当弱非线性振荡系统与施加的频率相近的正弦力同步时,可以通过电阻执行器上的直流偏置使谐振器频率失谐,从而在注入信号和谐振器反馈之间产生易于控制的相位差。我们演示了一个26 MHz的MEMS振荡器,频率可调性为0.3%,相位可调性为200/spl度/。通过调制结构中耗散的焦耳热,26 MHz载波频率可以由30 kHz基带信号以15 kHz的调制深度进行频率调制,或者由20 kHz基带信号以160/spl度/调制深度进行相位调制。
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