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Gary Li Phones & Addresses

  • 506 Sealight Ln, Redwood City, CA 94065 (650) 592-9722 (650) 593-2748
  • Foster City, CA
  • 546 Green St, San Francisco, CA 94133 (415) 956-9182 (415) 989-3290
  • Milpitas, CA

Professional Records

Medicine Doctors

Gary Li Photo 1

Dr. Gary A Li, San Jose CA - MD (Doctor of Medicine)

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Specialties:
Emergency Medicine
Address:
GOOD SAMARITAN HOSPITAL
2425 Samaritan Dr, San Jose, CA 95124
(408) 559-2474 (Phone), (408) 358-9474 (Fax)
Certifications:
Emergency Medicine, 2010
Awards:
Healthgrades Honor Roll
Languages:
English
Education:
Medical School
University of California At Irvine / California College of Medicine & Surgery
Graduated: 1988
Medical School
Lac Harbor UCLA Mc
Graduated: 1989
Medical School
Lac Harbor UCLA Mc
Graduated: 1991
Gary Li Photo 2

Gary Alan Li, San Jose CA

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Specialties:
Emergency Medicine
Work:
Good Samaritan Hospital
2425 Samaritan Dr, San Jose, CA 95124
Education:
University of California at Davis (1988)
Gary Li Photo 3

Gary Alan Li, San Jose CA

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Specialties:
Emergency Medicine Physician
Address:
2425 Samaritan Dr, San Jose, CA 95124
Board certifications:
American Board of Emergency Medicine Certification in Emergency Medicine

Lawyers & Attorneys

Gary Li Photo 4

Gary Li - Lawyer

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Address:
Goldman Sachs (Asia) LLC
(297) 873-61xx (Office)
Licenses:
New York - Currently registered 2009
Education:
Columbia University School of Law
Gary Li Photo 5

Gary K Li, Mountain View CA - Lawyer

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Address:
Google Inc.
1600 Amphitheatre Pkwy, Mountain View, CA 94043
Licenses:
California - Active 2010
Education:
University of California, Los Angeles - School of Law
Degree - J.D.
Graduated - 2010
University of California, Berkeley
Degree - B.A.
Graduated - 2005
UCLA SOL

Business Records

Name / Title
Company / Classification
Phones & Addresses
Gary Li
Associate Professor
California State University, East Bay
Beauty Shops
25800 Carlos Bee Blvd, Hayward, CA 94542
Gary Li
Executive
Maptron
Household Laundry Equipment
25518 Foggy Glen Drive, Livermore, CA 94551
Gary Li
Executive Officer
Onmap Inc
Piece Goods, Notions, and Other Dry Good
25800 Carlos Bee Blvd, Livermore, CA 94551
Gary Li
Associate Professor
California State University, East Bay
Beauty Shops
25800 Carlos Bee Blvd, Hayward, CA 94542
Gary Li
Executive
Maptron
Household Laundry Equipment
25518 Foggy Glen Drive, Livermore, CA 94551
Gary Li
Executive Officer
Onmap Inc
Piece Goods, Notions, and Other Dry Good
25800 Carlos Bee Blvd, Livermore, CA 94551
Gary Li
Owner
Gary's Auto Services
General Auto Repair
1383 Laurel St, San Carlos, CA 94070
Gary Li
President
World Oil and Resources, Inc
Management Consulting Services
5048 Round Hl Dr, Pleasanton, CA 94568
Gary Alan Li
Gary Li MD
Emergency Medicine
2425 Samaritan Dr, San Jose, CA 95124
(408) 559-2011
Gary Li
President
CHINESE AMERICAN COOPERATION COUNCIL
Eating Place
842 Bandol Way, San Ramon, CA 94582
PO Box 12028, Pleasanton, CA 94588
Gary Li
President
PEERPC TECHNOLOGY
25518 Foggy Gln Dr, Castro Valley, CA 94552

Publications

Us Patents

System And Method For Designing A Scanning Mirror Assembly With An Optimized Frequency Bandwidth Based On Spring Constant Information

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US Patent:
20220324704, Oct 13, 2022
Filed:
Apr 8, 2021
Appl. No.:
17/226071
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Qin Zhou - Mountain View CA, US
Gary Li - Mountain View CA, US
Assignee:
BEIJING VOYAGER TECHNOLOGY CO., LTD. - Beijing
International Classification:
B81C 99/00
G01S 7/481
G02B 26/08
Abstract:
Embodiments of the disclosure provide a method for designing an optical scanning mirror. The method may include receiving an initial set of design parameters for the scanning mirror assembly. The method may also include simulating first scanning mirror oscillation based on the initial set of design parameters to compute an initial non-linear spring constant associated with at least one spring of the scanning mirror assembly. The method may further include adjusting the set of design parameters for the scanning mirror assembly based on a comparison between the initial non-linear spring constant and a target non-linear spring constant. The method may also include outputting the at least one structural alteration to be implemented on the at least one spring. In certain aspects, the initial set of design parameters and the adjusted set of design parameters may be associated with a same mirror oscillation frequency and linear spring constant.

Scanning Mirror Assembly With Torsion Springs Designed To Improve Non-Linearity

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US Patent:
20220326511, Oct 13, 2022
Filed:
Apr 9, 2021
Appl. No.:
17/226667
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Qin Zhou - Mountain View CA, US
Gary Li - Mountain View CA, US
Assignee:
BEIJING VOYAGER TECHNOLOGY CO., LTD. - Beijing
International Classification:
G02B 26/10
G01S 17/08
G01S 7/481
Abstract:
Embodiments of the disclosure provide a scanning mirror assembly for an optical sensing system. The scanning mirror assembly may include a scanning mirror configured to rotate around an axis of rotation. The scanning mirror assembly may further include a plurality of torsion springs coupled to at least one side of the scanning mirror along the axis of rotation. In certain aspects, the plurality of torsion springs may collectively have a non-linear spring constant and a linear spring constant. In certain other aspects, a ratio of the non-linear spring constant over the linear spring constant may meet a predetermined threshold.

System And Method For Designing Mems Mirror Based On Computed Oscillation Frequency

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US Patent:
20220284139, Sep 8, 2022
Filed:
Mar 4, 2021
Appl. No.:
17/192724
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Gary Li - Mountain View CA, US
Assignee:
BEIJING VOYAGER TECHNOLOGY CO., LTD. - Beijing
International Classification:
G06F 30/10
Abstract:
Embodiments of the disclosure provide a method for designing an optical scanning mirror. The method may include receiving, by a communication interface, a set of design parameters of the scanning mirror. The method may also include simulating scanning mirror oscillation, by at least one processor, based on the set of design parameters using a computer model. In certain aspects, the computer model may include a lookup table that correlates electrostatic force applied to a sample scanning mirror and angular displacement in the sample scanning mirror caused by the electrostatic force. The method may further include generating, by the at least one processor, mirror oscillation data as an output of the computer model for designing the scanning mirror. The mirror oscillation data may include a correlation of drive frequency, angular displacement, and time.

System And Method For Driving A Two-Axis Scanning Mirror Using Drivers Of Different Types

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US Patent:
20220252867, Aug 11, 2022
Filed:
Feb 9, 2021
Appl. No.:
17/172047
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Gary Li - Mountain View CA, US
Assignee:
BEIJING VOYAGER TECHNOLOGY CO., LTD. - Beijing
International Classification:
G02B 26/10
G02B 26/08
G01S 7/481
Abstract:
Embodiments of the disclosure provide a scanner for steering optical beams. In certain configurations, the scanner may include a scanning mirror independently rotatable around a first axis and a second axis. In certain other configurations, the scanner may also include a first driver configured to drive the scanning mirror to rotate around the first axis. In still other configurations, the scanner may further include a second driver configured to drive the scanning mirror to simultaneously rotate around the second axis. In certain aspects, the first driver and the second driver may be different types of drivers.

Mirror Assembly For Light Steering With Flexible Support Structure

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US Patent:
20210396849, Dec 23, 2021
Filed:
Jun 18, 2020
Appl. No.:
16/905248
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Qin Zhou - Livermore CA, US
Gary Li - Mountain View CA, US
Sergio Fabian Almeida Loya - Mountain View CA, US
International Classification:
G01S 7/481
G01S 17/931
B81B 3/00
G02B 1/11
Abstract:
In one example, an apparatus being part of a Light Detection and Ranging (LiDAR) module is provided. The apparatus comprises a microelectromechanical system (MEMS) and a substrate. The MEMS comprising an array of micro-mirror assemblies, each micro-mirror assembly comprises: a first flexible support structure and a second flexible support structure connected to the substrate; a micro-mirror comprising a first connection structure and a second connection structure, the first connection structure being connected to the first flexible support structure at a first connection point, the second connection structure being connected to the second flexible support structure at a second connection point, the first and second connection points being aligned with a rotation axis around which the micro-mirror rotates, the first flexible support structure and the second flexible support structure being configured to allow the first and second connection points to move when the micro-mirror rotates.

Mirror Assembly For Light Steering With Reduced Finger Thickness

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US Patent:
20210396850, Dec 23, 2021
Filed:
Jun 18, 2020
Appl. No.:
16/905254
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Qin Zhou - Livermore CA, US
Gary Li - Mountain View CA, US
International Classification:
G01S 7/481
G01S 17/931
B81B 3/00
B81C 1/00
G02B 1/11
Abstract:
In one example, an apparatus that is part of a Light Detection and Ranging (LiDAR) module of a vehicle comprises a semiconductor integrated circuit comprising a microelectromechanical system (MEMS) and a substrate. The MEMS comprises an array of micro-mirror assemblies, each micro-mirror assembly comprising: a micro-mirror having a first thickness; and an actuator comprising first fingers and second fingers, the first fingers being connected with the substrate, the second fingers being mechanically connected to the micro-mirror having a second thickness smaller than the first thickness, the actuator being configured to generate an electrostatic force between the first fingers and the second fingers to rotate the micro-mirror to reflect light emitted by a light source out of the LiDAR module or light received by the LiDAR module to a receiver.

Mems Mirror Structure With Backside Skeleton

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US Patent:
20210396852, Dec 23, 2021
Filed:
Jun 18, 2020
Appl. No.:
16/905489
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Qin Zhou - Livermore CA, US
Gary Li - Mountain View CA, US
International Classification:
G01S 7/481
G02B 26/10
B81B 3/00
Abstract:
A Light Detection and Ranging (LiDAR) module for a vehicle can include a semiconductor integrated circuit with a microelectromechanical system (MEMS) and a substrate, the MEMS comprising a micro-mirror assembly including a mirror and a gimbal structure. The gimbal can be configured concentrically around and coplanar with the mirror. When rotated, the gimbal drives the mirror to oscillate at or near a resonant frequency and is coupled to the mirror via mirror-gimbal connectors. A support structure can be coupled to a backside of the mirror and gimbal structures and can increase the stiffness of the mirror to help the mirror better resist dynamic deformation. To limit the added rotational moment of inertia, the support structure can be etched to form a matrix of cells (e.g., formed by a mesh of circumferential and radial ridges) such that up to approximately 90% of the support structure material forming the support structure is removed.

Mems Scanning Mirror With Multiple Comb Drives

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US Patent:
20210396992, Dec 23, 2021
Filed:
Jun 18, 2020
Appl. No.:
16/905496
Inventors:
- Beijing, CN
Yufeng Wang - Mountain View CA, US
Gary Li - Mountain View CA, US
International Classification:
G02B 26/08
G02B 26/10
G01S 7/481
G01S 17/89
G01S 17/931
Abstract:
A Light Detection and Ranging (LiDAR) module for a vehicle includes a semiconductor integrated circuit including a microelectromechanical system (MEMS) and a substrate, the MEMS comprising a mirror structure having an axis of rotation and at least one torsion spring coupled to the mirror structure that is collinear with the axis of rotation of the mirror structure and configured to provide a rotational force that causes the mirror structure to oscillate on the axis of rotation. The MEMS further includes at least one comb spine protruding from and coplanar with the mirror structure that is longitudinally parallel to and not collinear with the axis of rotation, and a plurality of comb electrodes protruding normal to the comb spine(s) that form an electrostatic comb drive that is configured to generate an electrostatic force that further causes the mirror structure to oscillate at the resonant frequency on the axis of rotation.
Gary Xin Li from Redwood City, CADeceased Get Report