J. Andrew Yeh
National Tsing Hua University, National Applied Research Laboratories Instrument Technology Research Center, Cornell University, National Taiwan University, AIP Networks, Inc.
About
J. Andrew Yeh (ASME Fellow, IEEE Senior Member) earned B.S. degree in Mechanical Engineering from National Taiwan University, Taiwan, and Master degrees in Mechanical Engineering and in Electrical Engineering from Cornell University, USA, in 1996 and 1997, respectively. His Ph.D. degree in Electrical Engineering was received from Cornell University in 1999. He co-founded AIP Networks, Inc. in 2000. Now he is the director general of Instrument Technology Research Center of NARLabs as well as the professor in Institue of NanoEngineering and MicroSystems, National Tsing Hua University at Taiwan. Dr. Yeh serves as an editorial board member of IEEE/ASME Journal of MicroElectroMechanical Systems (JMEMS) since 2010 and as the Chair of ASME Taiwan since 2011. In 2013, he was elected as the Chair of IEEE Instrumentation and Measurement Society, Taipei Chapter. Since 2014, he serves as IEEE I&M Society membership committee VP. He holds more than 70 patents and publishes over 100 journal papers. His current research interests include Optofluidics Microsystem, Breath Biosensors, and Nanostructures in Bulk.
Employment
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National Applied Research Laboratories Instrument Technology Research Center Director2012 - 2016
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National Tsing Hua University Director2009 - 2012
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National Tsing Hua University Professor2008 - Present
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National Tsing Hua University Associate Professor2005 - 2008
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National Tsing Hua University Assistant Professor2002 - 2005
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National Tsing Hua University Assistant Profesor2001 - 2002
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AIP Networks, Inc. Director and Cofounder1999 - 2001
Education
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Cornell University Ph.D.1997 - 1999
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Cornell University M.1996 - 1997
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Cornell University M.1995 - 1996
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National Taiwan University B.S.1988 - 1992
Projects & Funding
Projects & funding information is unavailable.
Publications (177)
- Fabrication of Three-Dimensional Microstructures on SiC Substrates by Using 355 nm Nanosecond Lasers: Process Control and Morphology Evolution Save
- AI Framework Integrated with InN Gas Sensing to Distinguish Sedentary Metabolic Fingerprints from Chronic Liver Disease Save
- Quantitative differential phase contrast imaging system using FPGA for cellular imaging Save
- All‐Dielectric Meta‐Microlens‐Array Confocal Fluorescence Microscopy Save
- A Comparative Analysis of Laser-Ablated Surface Characteristics Between the Si Face and C Face of Silicon Carbide Substrates Save
- Ammonia Selectivity Over Acetone by Viscosity Modulation of Silicone Oil Filter for Diagnosing Liver Dysfunction Save
- Pentacene Coated Atop of Ultrathin InN Gas Sensor Device for the Selective Sensing of Ammonia Gas for Liver Malfunction Application Save
- Platinum Coating on an Ultrathin InN Epilayer as a Dual Gas Sensor for Selective Sensing of Ammonia and Acetone by Temperature Modulation for Liver Malfunction and Diabetes Applications Save
- Portable multispectra tunable forensic lens for jadeite analysis Save
- Stress distribution affected by nanostructures near a surface crack on a silicon chip Save