Cheng-Hsien Liu, Ph.D.
Affiliations: | 2000 | Stanford University, Palo Alto, CA |
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"Cheng-Hsien Liu"Parents
Sign in to add mentorThomas W. Kenny | grad student | 2000 | Stanford | |
(Design, microfabrication, and control of high-performance micromachined tunneling accelerometers.) |
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Publications
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Zhang LL, Liu CZ, Wu FY, et al. (2016) Sr-Nd-Hf isotopes of the intrusive rocks in the Cretaceous Xigaze ophiolite, southern Tibet: Constraints on its formation setting Lithos. 258: 133-148 |
Chan SC, Chen CR, Liu CH. (2010) A bubble-activated micropump with high-frequency flow reversal Sensors and Actuators, a: Physical. 163: 501-509 |
Kuo C, Liu C. (2009) A Bubble-Free AC Electrokinetic Micropump Using the Asymmetric Capacitance-Modulated Microelectrode Array for Microfluidic Flow Control Ieee\/Asme Journal of Microelectromechanical Systems. 18: 38-51 |
Yang Y, Lin Y, Hu Y, et al. (2009) A large-displacement thermal actuator designed for MEMS pitch-tunable grating Journal of Micromechanics and Microengineering. 19: 15001 |
Kuo CT, Liu CH. (2008) A novel microfluidic driver via AC electrokinetics. Lab On a Chip. 8: 725-33 |
Cheng C, Liu C. (2007) An Electrolysis-Bubble-Actuated Micropump Based on the Roughness Gradient Design of Hydrophobic Surface Ieee\/Asme Journal of Microelectromechanical Systems. 16: 1095-1105 |
Tu C, Fanchiang K, Liu C. (2006) Rotary electrostatic micromirror switches using wafer-scale processing and assembly Microsystem Technologies-Micro-and Nanosystems-Information Storage and Processing Systems. 12: 1099-1108 |
Chang C, Chiang C, Liu C, et al. (2005) A lobster-sniffing-inspired method for micro-objects manipulation using electrostatic micro-actuators Journal of Micromechanics and Microengineering. 15: 812-821 |
Liu C, Kenny TW. (2001) A high-precision, wide-bandwidth micromachined tunneling accelerometer Ieee\/Asme Journal of Microelectromechanical Systems. 10: 425-433 |
Liu CH, Barzilai AM, Reynolds JK, et al. (1998) Characterization of a high-sensitivity micromachined tunneling accelerometer with micro-g resolution Journal of Microelectromechanical Systems. 7: 235-243 |