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Lijun Gao

from Saint Paul, MN
Age ~60

Lijun Gao Phones & Addresses

  • 521 Lake Ridge Dr, Saint Paul, MN 55126 (651) 644-7822
  • 1205 Raleigh St, Saint Paul, MN 55108 (651) 644-7822
  • 976 Amble Rd, Shoreview, MN 55126 (651) 644-7822
  • Eatontown, NJ
  • Ramsey, MN
  • Minneapolis, MN

Work

Company: Starkey hearing technologies 2013 Address: Eden Prarie Position: Senior dsp technology engineer ii

Education

Degree: MS Candidate School / High School: University of Minnesota-Twin Cities 1998 to 2001 Specialities: Computer Science

Languages

Chinese

Industries

Medical Devices

Resumes

Resumes

Lijun Gao Photo 1

Senior Dsp Technology Engineer Ii At Starkey Hearing Technologies

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Position:
Senior DSP Technology Engineer II at Starkey Hearing Technologies
Location:
Greater Minneapolis-St. Paul Area
Industry:
Medical Devices
Work:
Starkey Hearing Technologies - Eden Prarie
Senior DSP Technology Engineer II

Medtronic CRDM - Mounds View, Minnesota 2004 - 2013
Principal Design Engineer

Vitesse Semiconductor - Bloomington, Minnesota 2003 - 2004
Member of Technical Staff

Bermai Inc. - Minnetonka, Minnesota 2001 - 2003
Sr Design Engineer

GlobalSpan Semiconductor - Red Bank, New Jersy 2001 - 2001
VLSI Designer
Education:
University of Minnesota-Twin Cities 1998 - 2001
MS Candidate, Computer Science
University of Minnesota-Twin Cities 1996 - 2001
PhD, DSP Architecture for VLSI
Tsinghua University 1981 - 1988
BS & MS, Communications & Electronic Systems
Languages:
Chinese

Business Records

Name / Title
Company / Classification
Phones & Addresses
Lijun Gao
MODEL ENGINEERING LLC

Publications

Us Patents

System And Methods For High Power Dc/Dc Converter

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US Patent:
20130083563, Apr 4, 2013
Filed:
Oct 3, 2011
Appl. No.:
13/251527
Inventors:
Duanyang Wang - Harrison NJ, US
Dariusz Czarkowski - S. Setauket NY, US
Francisco de Leon - Ridgewood NJ, US
Kamiar J. Karimi - Kirkland WA, US
Lijun Gao - Renton WA, US
Shengyi Liu - Sammamish WA, US
International Classification:
H02M 3/335
US Classification:
363 17
Abstract:
A voltage conversion system and methods are disclosed. Phase-shift modulation signals are generated and interleaved to provide interleaved phase-shift modulation signals. A plurality of voltage converters are controlled using the interleaved phase-shift modulation signals to convert an input electrical current at an input voltage to an output electrical current at an output voltage.

Lidar Receiver With Multiple Detection Paths

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US Patent:
20210156973, May 27, 2021
Filed:
Nov 27, 2019
Appl. No.:
16/697793
Inventors:
- Norwood MA, US
Miles R. Bennett - Stanford CA, US
Lijun Gao - Shoreview MN, US
International Classification:
G01S 7/4861
G01S 7/487
Abstract:
Techniques for using multiple detection paths in a light detection and ranging (LIDAR) receiver circuit. In general, the receiver circuit can perform more than one flow of filtering, detection, and estimation on the same return signal. One advantage of using multiple detection paths is the ability to extract different aspects of the return signal.

Quality Factor Compensation In Microelectromechanical System (Mems) Gyroscopes

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US Patent:
20190219394, Jul 18, 2019
Filed:
Jan 12, 2018
Appl. No.:
15/869163
Inventors:
- Norwood MA, US
Lijun Gao - Shoreview MN, US
Assignee:
Analog Devices, Inc. - Norwood MA
International Classification:
G01C 19/56
B81B 3/00
Abstract:
Circuits and methods for compensating microelectromechanical system (MEMS) gyroscopes for quality factor variations are described. Quality factor variations arise when mechanical losses are introduced in the gyroscope's resonator, for example due to thermoelastic damping or squeeze-film damping, which may hinder the gyroscope's ability to accurately sense angular velocity. Quality factor compensation may be performed by generating a compensation signal having a time decay rate that depends on the quality factor of resonator. In this way, artifacts that may otherwise arise in gyroscope's output are limited. Additionally, or alternatively, quality factor compensation may be performed by controlling the force with which the gyroscope's resonator is driven. This may be achieved, for example, by controlling the average value of the drive signal.
Lijun Gao from Saint Paul, MN, age ~60 Get Report