Sang-June Park
Qualcomm
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Sang-June Park.
international frequency control symposium | 2012
Chengjie Zuo; Changhan H. Yun; Philip Jason Stephanou; Sang-June Park; Chi-Shun T. Lo; Robert Paul Mikulka; Je-Hsiung J. Lan; Mario Francisco Velez; Ravindra V. Shenoy; Jonghae Kim; Matthew Michael Nowak
For the first time in the development of piezoelectric micromechanical resonators, this paper presents a new class of cross-sectional dilation mode resonators (XDMR) that achieve unprecedentedly high electromechanical coupling constant: kt2 up to 10% for aluminum nitride (AlN) based resonators and 19% for zinc oxide (ZnO) based resonators. Detailed discussions on the geometry design, FEM simulation, and process challenge are provided in this paper to give insight on this novel high-kt2 piezoelectric resonator technology and, more importantly, guide the future development of mechanical resonators with coherent 2D/3D mode shapes.
Archive | 2011
Chi Shun Lo; Jonghae Kim; Sang-June Park; Sanghoon Joo; Chengjie Zuo; Changhan Yun
Archive | 2012
Chengjie Zuo; Changhan Yun; Sang-June Park; Chi Shun Lo; Mario Francisco Velez; Jonghae Kim
Archive | 2014
Justin Phelps Black; Philip Jason Stephanou; Jonghae Kim; Je-Hsiung Jeffrey Lan; Sang-June Park; Changhan Hobie Yun; Chi Shun Lo; Chengjie Zuo
Archive | 2012
Je-Hsiung Lan; Sang-June Park; Jonghae Kim; Evgeni Petrovich Gousev; Matthew Michael Nowak; Philip Jason Stephanou; Justin Phelps Black; Kurt Edward Petersen; Srinivasan Kodaganallur Ganapathi
Archive | 2013
Philip Jason Stephanou; Sang-June Park; Ravindra V. Shenoy
Archive | 2011
Changhan Yun; Sang-June Park; Chi Shun Lo; Jonghae Kim; Je-Hsiung Lan; Sanghoon Joo
Archive | 2012
Philip Jason Stephanou; Sang-June Park; Ravindra V. Shenoy
Archive | 2010
Sang-June Park; Jonghae Kim; Matthew Michael Nowak; Steve C. Ciccarelli
Archive | 2013
Philip Jason Stephanou; Sang-June Park; Ravindra V. Shenoy