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David Eu Phones & Addresses

  • San Francisco, CA
  • 46990 Ocotillo Ct, Fremont, CA 94539 (408) 806-3168
  • Livermore, CA
  • Sunnyvale, CA
  • New York, NY
  • Menlo Park, CA

Work

Company: Inphenix, Inc. Address: 250 N Mines Rd, Livermore, CA 94551

Education

School / High School: Columbia

Ranks

Licence: New York - Due to reregister within 30 days of birthday Date: 1997

Professional Records

Lawyers & Attorneys

David Eu Photo 1

David Eu - Lawyer

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ISLN:
912512455
Admitted:
1997
University:
University of California, Berkeley, B.A., 1991
Law School:
Columbia University, J.D., 1996
David Eu Photo 2

David Yi-Chi Eu, Livermore CA - Lawyer

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Address:
Inphenix, Inc.
250 N Mines Rd, Livermore, CA 94551
(650) 898-3116 (Office)
Licenses:
New York - Due to reregister within 30 days of birthday 1997
Education:
Columbia
David Eu Photo 3

David Eu, Livermore CA - Lawyer

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Office:
250 N Mines Rd., Livermore, CA
ISLN:
912512455
Admitted:
1997
University:
University of California, B.A.
Law School:
Columbia University, J.D.

Resumes

Resumes

David Eu Photo 4

Product Management

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Location:
Milpitas, CA
Industry:
Computer Software
Work:
Samsung Electronics America
Product Management

Gap Mar 2013 - Oct 2014
Product Management Consulting

Walmart Ecommerce Jul 2012 - Mar 2013
Product Management Consulting

Betfair Feb 2011 - Jul 2012
Product Management

Codemorphis Jun 2002 - Jan 2011
Owner
Education:
Queen's University 2001 - 2002
Master of Business Administration, Masters
Mcgill University 1990 - 1992
Master of Science, Masters, Computer Science
Mcgill University Sep 1985 - Jun 1988
Bachelors, Bachelor of Science, Computer Science and Mathematics, Computer Science, Mathematics
Skills:
Product Management
Software Development
Agile Methodologies
Software Project Management
E Commerce
Scrum
Mobile Devices
Testing
Agile Project Management
Mobile Applications
Quality Assurance
User Experience
Management
Enterprise Software
Xml
Web Applications
Cloud Computing
Strategy
Software Engineering
Web Services
Scalability
Requirements Analysis
Software Design
User Interface
System Architecture
Saas
Rest
Enterprise Architecture
Android
Soa
Languages:
English
French
Spanish
David Eu Photo 5

David Eu

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David Eu Photo 6

David Eu

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Position:
President at Inphenix
Location:
San Francisco Bay Area
Industry:
Medical Devices
Work:
Inphenix
President
Education:
Columbia University
London School of Economics and Political Science
University of Cambridge

Business Records

Name / Title
Company / Classification
Phones & Addresses
David Eu
President
INPHENIX, Inc.
Telecommunications · Mfg Electronic Components · Other Electronic Component Manufacturing
250 N Mines Rd, Livermore, CA 94551
(925) 606-8809
David Eu
President
SDX INCORPORATED
1937A Tully Rd, San Jose, CA 95122
1937 Tully Rd, San Jose, CA 95122
David Eu
Mines Road, LLC
Real Estate · Real Estate Investment
250 N Mines Rd, Livermore, CA 94551

Publications

Us Patents

Wavelength-Tunable Vertical Cavity Surface Emitting Laser For Swept Source Optical Coherence Tomography System

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US Patent:
20180048121, Feb 15, 2018
Filed:
Aug 8, 2017
Appl. No.:
15/671564
Inventors:
- Livermore CA, US
Tongning Li - Fremont CA, US
David Eu - Fremont CA, US
International Classification:
H01S 5/183
G01B 9/02
G01N 21/47
H01S 5/34
H01S 5/343
Abstract:
A wavelength-tunable vertical-cavity surface-emitting laser (VCSEL) with the use of microelectromechanical system (MEMS) technology is provided as a swept source for Optical Coherence Tomography (OCT). The wavelength-tunable VCSEL comprises a bottom mirror of the VCSEL, an active region, and a MEMS tunable upper mirror movable by electrostatic deflections. The bottom mirror comprising a GaAs based distributed Bragg reflector (DBR) stack, and the active region comprising multiple stacks of GaAs based quantum dot (QD) layers, are epitaxially grown on a GaAs substrate. The MEMS tunable upper mirror includes a membrane part supported by suspension beams, and an upper mirror comprising a dielectric DBR stack. The MEMS tunable quantum dots VCSEL can cover an operating wavelength range of more than 100 nm, preferably with a center wavelength between 250 and 1950 nm, and the sweeping rate can be from a few kHz to hundreds of kHz, and up to a few MHz.

Wavelength Tunable Mems-Fabry Perot Filter

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US Patent:
20170235124, Aug 17, 2017
Filed:
May 1, 2017
Appl. No.:
15/583355
Inventors:
- Livermore CA, US
Tongning Li - Fremont CA, US
David Eu - Fremont CA, US
Qinian Qi - Fremont CA, US
International Classification:
G02B 26/00
B81C 1/00
G02B 1/11
G02B 1/12
H01S 3/08
H01S 3/105
Abstract:
A wavelength tunable gain medium with the use of micro-electromechanical system (MEMS) based Fabry-Perot (FP) filter cavity tuning is provided as a tunable laser. The system comprises a laser cavity and a filter cavity for wavelength selection. The laser cavity consists of a gain medium such as a Semiconductor Optical Amplifier (SOA), two collimating lenses and an end reflector. The MEMS-FP filter cavity comprises a fixed reflector and a moveable reflector, controllable by electrostatic force. By moving the MEMS reflector, the wavelength can be tuned by changing the FP filter cavity length. The MEMS FP filter cavity displacement can be tuned discretely with a step voltage, or continuously by using a continuous driving voltage. The driving frequency for continuous tuning can be a resonance frequency or any other frequency of the MEMS structure, and the tuning range can cover different tuning ranges such as 30 nm, 40 nm, and more than 100 nm.

Wavelength-Tunable Vertical Cavity Surface Emitting Laser For Swept Source Optical Coherence Tomography System

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US Patent:
20160056613, Feb 25, 2016
Filed:
Nov 2, 2015
Appl. No.:
14/930191
Inventors:
- Livermore CA, US
Tongning Li - Fremont CA, US
David Eu - Fremont CA, US
International Classification:
H01S 5/183
H01S 5/34
G01B 9/02
H01S 5/343
Abstract:
A wavelength-tunable vertical-cavity surface-emitting laser (VCSEL) with the use of microelectromechanical system (MEMS) technology is provided as a swept source for Optical Coherence Tomography (OCT). The wavelength-tunable VCSEL comprises a bottom mirror of the VCSEL, an active region, and a MEMS tunable upper mirror movable by electrostatic deflections. The bottom mirror comprising a GaAs based distributed Bragg reflector (DBR) stack, and the active region comprising multiple stacks of GaAs based quantum dot (QD) layers, are epitaxially grown on a GaAs substrate. The MEMS tunable upper mirror includes a membrane part supported by suspension beams, and an upper mirror comprising a dielectric DBR stack. The MEMS tunable quantum dots VCSEL can cover an operating wavelength range of more than 100 nm, preferably with a center wavelength between 250 and 1950 nm, and the sweeping rate can be from a few kHz to hundreds of kHz, and up to a few MHz.

Wavelength Tunable Mems-Fabry Perot Filter

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US Patent:
20150153563, Jun 4, 2015
Filed:
Nov 25, 2014
Appl. No.:
14/553807
Inventors:
- Livermore CA, US
Tongning Li - Fremont CA, US
David Eu - Fremont CA, US
Qinian Qi - Fremont CA, US
International Classification:
G02B 26/00
H01S 5/022
B81C 1/00
H01S 3/08
Abstract:
A wavelength tunable gain medium with the use of micro-electromechanical system (MEMS) based Fabry-Perot (FP) filter cavity tuning is provided as a tunable laser. The system comprises a laser cavity and a filter cavity for wavelength selection. The laser cavity consists of a gain medium such as a Semiconductor Optical Amplifier (SOA), two collimating lenses and an end reflector. The MEMS-FP filter cavity comprises a fixed reflector and a moveable reflector, controllable by electrostatic force. By moving the MEMS reflector, the wavelength can be tuned by changing the FP filter cavity length. The MEMS FP filter cavity displacement can be tuned discretely with a step voltage, or continuously by using a continuous driving voltage. The driving frequency for continuous tuning can be a resonance frequency or any other frequency of the MEMS structure, and the tuning range can cover different tuning ranges such as 30 nm, 40 nm, and more than 100 nm.

Wavelength-Tunable Vertical Cavity Surface Emitting Laser For Swept Source Optical Coherence Tomography System

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US Patent:
20150010031, Jan 8, 2015
Filed:
Jul 1, 2014
Appl. No.:
14/321792
Inventors:
- Livermore CA, US
Tongning Li - Fremont CA, US
David Eu - Fremont CA, US
International Classification:
H01S 5/343
H01S 5/183
US Classification:
372 4501
Abstract:
A wavelength-tunable vertical-cavity surface-emitting laser (VCSEL) with the use of micro-electromechanical system (MEMS) technology is provided as a swept source for Optical Coherence Tomography (OCT). The wavelength-tunable VCSEL comprises a bottom mirror of the VCSEL, an active region, and a MEMS tunable upper mirror movable by electrostatic deflections. The bottom mirror comprising a GaAs based distributed Bragg reflector (DBR) stack, and the active region comprising multiple stacks of GaAs based quantum dot (QD) layers, are epitaxially grown on a GaAs substrate. The MEMS tunable upper mirror includes a membrane part supported by suspension beams, and an upper mirror comprising a dielectric DBR stack. The MEMS tunable quantum dots VCSEL can cover an operating wavelength range of more than 100 nm, preferably with a center wavelength between 250 and 1950 nm, and the sweeping rate can be from a few kHz to hundreds of kHz, and up to a few MHz.
David Y Eu from San Francisco, CA, age ~57 Get Report