Lawrence Hsieh, a semiconductor scientist, electrical and computer engineer, and multifaceted entrepreneur, is the director of Impactio Laboratories and currently dedicated to the development of legal technology and academic analytics applications.
Hsieh is the inventor of over 20 innovative U.S. patents, and has published over 50 peer-reviewed scientific articles in leading journals and prestigious conference proceedings in the field of multimedia computational algorithm, integrated circuits design, semiconductor fabrication, electro-optical devices, and nano-scale antenna, which have been cited 2700+ times by leading researchers and scientists around the world with an h index of 16.
Hsieh is a senior member of the Optical Society of America (OSA), a senior member of the Institute of Electrical and Electronics Engineers (IEEE), and a member of Sigma Xi, the Scientific Research Honor Society.
Hsieh received his BS/MS degrees in Electrical Engineering from National Taiwan University and pursued his Ph.D. at the EECS Department of the University of Michigan, Ann Arbor. Hsieh is a recipient of the U.S. EB1A (Alien of Extraordinary Ability) and National Interest Waiver. He is a member of the American Intellectual Property Law Association (AIPLA) and a licensed patent practitioner authorized to practice before the United States Patent and Trademark Office (USPTO).
https://scholar.google.com/citations?hl=en&user=TCcUeisAAAAJ
Published Journals and Papers during Doctoral Study:
1. Analysis of periodic metallic nano-slits for efficient interaction of terahertz and optical waves at nano-scale dimensions B Hsieh, M Jarrahi - Journal of Applied Physics, 2011
https://scholar.google.com/scholar?cites=2528996435347290498&as_sdt=5,44&sciodt=0,44&hl=en
2. Simultaneous focusing of terahertz and optical waves into nano-scale
B Hsieh, M Jarrahi - Infrared, Millimeter and Terahertz Waves, 2011
https://scholar.google.com/scholar?cites=11817918255610375678&as_sdt=5,44&sciodt=0,44&hl=en
3. Toward ultrafast pump-probe measurements at the nanoscale
B Hsieh, N Wang, M Jarrahi - Optics and Photonics News, 2011
https://scholar.google.com/scholar?cites=17897372123605760455&as_sdt=5,44&sciodt=0,44&hl=en
4. Extraordinary interaction of terahertz and infrared waves through metallic nano-slits
B Hsieh, M Jarrahi - Photonics Conference (PHO), 2011 IEEE, 2011
http://ieeexplore.ieee.org/abstract/document/6110399/
1. US PAT. NO. 8,429,487 Error protection method, TDC module, CTDC module, all-digital phase-locked loop, and calibration method thereof
2. US PAT. NO. 8,395,453 Error compensation method, digital phase error cancellation module, and ADPLL thereof
3. US PAT. NO. 8,228,128 All-digital phase-locked loop, loop bandwidth calibration method, and loop gain calibration method for the same
4. US PAT. NO. 8,149,146 Automatic power control system for optical disc drive and method thereof
5. US PAT. NO. 8,031,008 PLL with loop bandwidth calibration circuit
6. US PAT. NO. 8,031,007 Error protection method, TDC module, CTDC module, all-digital phase-locked loop, and calibration method thereof
7. US PAT. NO. 7,903,006 Automatic power control system for optical disc drive and method thereof
8. US PAT. NO. 7,791,428 All-digital phase-locked loop, loop bandwidth calibration method, and loop gain calibration method for the same
9. US. PAT. NO. 7,697,399 Power control system and related method
10. US PAT. NO. 7,697,380 Apparatus for detecting the wobble carrier frequency of an optical disk and method for same
11. US PAT. NO. 7,693,012 Apparatus for demodulating address in pre-groove symbols and apparatus for decoding pre-pit symbols
12. US. PAT. NO. 7,693,011 Wobble detection circuit and method for processing wobble signals
13. US PAT. NO. 7,613,093 Duty ratio control apparatus for pre-pit detection or header detection of an optical storage medium
14. US PAT. NO. 7,474,235 Automatic power control system for optical disc drive and method thereof
15. US PAT. NO. 7,339,405 Clock rate adjustment apparatus and method for adjusting clock rate
16. US PAT. NO. 7,295,073 Automatic gain control apparatus