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Projects by Director
     
 Lee
 Lin
 Wu
 

Prof. Clark T.-C. Nguyen
(510) 642-6251
ctnguyen@eecs.berkeley.edu
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Titles of Current Projects:
BPN435: A Micromechanical Power Amplifier
BPN433: A Micromechanical Power Converter
BPN766: Active Q-Control for Improved Insertion Loss Micromechanical Filters New Project
BPN701: Bridged Micromechanical Filters
BPN534: Fully-Integrated Micromechanical Clock Oscillator
BPN707: High-Order Micromechanical Electronic Filters
BPN651: Low Power, Low Noise Cavity Optomechanical Oscillators
BPN767: MEMS-Based Tunable Channel-Selecting Super-Regenerative RF Transceivers New Project
BPN359: Micromechanical Disk Resonator-Based Oscillators
BPN734: Package-Derived Influences on Micromechanical Resonator Stability
BPN676: Q-Boosted Optomechanical Oscillators
BPN682: Strong I/O Coupled High-Q Micromechanical Filters
BPN540: Temperature-Stable Micromechanical Resonators and Filters
BPN709: Tunable & Switchable Micromechanical RF Filters

 DARPA Center for Micro/Nano Scaling-Induced Physics


Recently Ended Projects:
BPN434: A Micromechanical RF Channelizer
BPN630: Capacitive-Gap Micromechanical Local Oscillator At GHz Frequencies
BPN542: New Materials for MEMS Resonators
BPN369: HEaTS: AlN Narrowband RF Filters
BPN613: High-Order UHF Micromechanical Filters
BPN607: Long-Term Stability in MEMS-Based Oscillators
BPN358: Micromechanical Transmit Filter
BPN541: High-Voltage MEMS Resonators
BPN437: A Low-Power Receiver Employing RF Channel-Selection
BPN432: Micromechanical Resonant Displacement Gain Stages
BPN546: Fully-Integrated Cell Phone Reference Oscillator
BPN431: Levitated Micromechanical Resonators
BPN405: Manufacturing Repeatability of the Frequency and Q of Capacitive Micromechanical Disk Resonators
BPN436: Limits to Micromechanical Resonator Performance


 

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