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Wei Q Yang

from San Francisco, CA
Age ~71

Wei Yang Phones & Addresses

  • 180 Leland Ave, San Francisco, CA 94134 (415) 841-0159
  • San Mateo, CA

Professional Records

Lawyers & Attorneys

Wei Yang Photo 1

Wei Yang - Lawyer

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Address:
Skadden Arps
(106) 535-5555 (Office)
Licenses:
New York - Currently registered 2006
Education:
Harvard Law School
Wei Yang Photo 2

Wei Yang, San Mateo CA - Lawyer

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Address:
Fyz Law Group LLP
1700 S Amphlett Blvd Ste 250 A, San Mateo, CA 94402
(650) 312-8668 (Office)
Licenses:
Illinois - Active And Authorized To Practice Law 2012
Wei Yang Photo 3

Wei Yang, San Mateo CA - Lawyer

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Address:
FYZ Law Group LLP
1700 S Amphlett Blvd Ste 250 A, San Mateo, CA 94402
(650) 312-8668 (Office)
Licenses:
California - Active 2000
Education:
University of Iowa College of Law
Wei Yang Photo 4

Wei Yang - Lawyer

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Office:
Law Offices of Wei Yang
Specialties:
Estate Planning
Immigration
Family Law
Corporate Law
ISLN:
915467936
Admitted:
2000
University:
Baruch College of the City University of New York, M.B.A., 1994; Shanghai International Studies University, B.A., 1985
Law School:
University of Iowa College of Law, J.D., 1999

Medicine Doctors

Wei Yang Photo 5

Wei Yang

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Specialties:
Internal Medicine
Work:
Harvard Vanguard Medical Associates
77 Herrick St STE 101, Beverly, MA 01915
(978) 927-4110 (phone), (978) 232-7189 (fax)
Education:
Medical School
West China Univ of Med Sci, Chengdu City, Sichuan, China
Graduated: 1986
Procedures:
Electrocardiogram (EKG or ECG)
Nutrition Therapy
Pulmonary Function Tests
Vaccine Administration
Conditions:
Abnormal Vaginal Bleeding
Acute Pharyngitis
Acute Sinusitis
Acute Upper Respiratory Tract Infections
Anxiety Dissociative and Somatoform Disorders
Languages:
English
Spanish
Description:
Dr. Yang graduated from the West China Univ of Med Sci, Chengdu City, Sichuan, China in 1986. She works in Beverly, MA and specializes in Internal Medicine.
Wei Yang Photo 6

Wei Yang

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Specialties:
Anatomic Pathology, Anatomic Pathology & Clinical Pathology
Work:
Northeast Iowa Pathology Associates
1825 Logan Ave, Waterloo, IA 50703
(319) 235-3679 (phone), (319) 235-3877 (fax)
Education:
Medical School
Shanghai Second Med Univ, Shanghai City, Shanghai, China
Graduated: 1991
Languages:
English
Description:
Dr. Yang graduated from the Shanghai Second Med Univ, Shanghai City, Shanghai, China in 1991. He works in Waterloo, IA and specializes in Anatomic Pathology and Anatomic Pathology & Clinical Pathology. Dr. Yang is affiliated with Unitypoint Health Allen Hospital.

Public records

Vehicle Records

Wei Yang

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Address:
420 Ortega St, San Francisco, CA 94122
VIN:
JHMFA36267S004231
Make:
HONDA
Model:
CIVIC
Year:
2007

Business Records

Name / Title
Company / Classification
Phones & Addresses
Wei Yang
President
CAREMAX INTERNATIONAL
Residential Care Services
440 Peachstone Ter, San Rafael, CA 94903
Wei Yang
President
W & W CHARITABLE FOUNDATION
Membership Organization
10430 Corte De Madrid, Cupertino, CA 95014
2146 Ringwood Ave, San Jose, CA 95131
Wei Yang
Managing
Anti-Aging Revolution LLC
Commission Type of Direct Selling (Onlin
932 Carson Dr, Sunnyvale, CA 94086
Wei Yang
ASIAN BUFFET RESTAURANT, INC
Wei Yang
NEW CHINA BRIAN BUFFET INC
Wei Chen Yang
Sole Officer
DR. WEI CHEN YANG, P.S.C
Wei Chi Yang
Gleneagles Company, LLC, The
Real Estate Investment · Business Services at Non-Commercial Site · Nonclassifiable Establishments
183 Del Medio Ave, Mountain View, CA 94040
995 Cranberry Dr, Cupertino, CA 95014

Publications

Isbn (Books And Publications)

Mesoplasticity and Its Applications

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Author

Wei Yang

ISBN #

0387555420

Mechatronic Reliability: Electric Failures, Mechanical-Electrical Coupling, Domain Switching, Mass-Flow Instabilities

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Author

Wei Yang

ISBN #

3540422838

Us Patents

Compact Wavelength Multiplexer-Demultiplexer Providing Low Polarization Sensitivity

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US Patent:
6563977, May 13, 2003
Filed:
Jun 27, 2000
Appl. No.:
09/605523
Inventors:
Li Chen - Fremont CA
Shu Zhang - Fremont CA
Wei Yang - Fremont CA
Assignee:
Bayspec, Inc. - Fremont CA
International Classification:
G02B 628
US Classification:
385 24, 385 31, 385 33, 359115, 359122
Abstract:
An optical multiplexing and demultiplexing device includes: a fiber mounting means for securing a plurality of optical fibers each terminating in a fiber end, at least one of the fiber ends radiating a corresponding input beam having a polarization state defined by a polarization plane that may vary as a function of time, and at least one of the fiber ends for receiving an output beam; collimating and focusing means having a focal length, and providing collimation of the input beams, and focusing of the output beams; diffraction means including at least one diffractive element providing for dispersion of optical beams passing therethrough, each diffractive element having an associated diffraction efficiency that varies as a function of the polarization state of light beams passing therethrough; and a polarization rotating means for rotating the plane of polarization of a beam passing therethrough by a specified number of degrees. The device provides for a particular input beam having a first polarization state to be diffracted by the diffractive elements in accordance with a first diffraction efficiency based on the first polarization state. The beam is then passed through the polarization rotating means at least once and thereby rotated into a second polarization state.

Wavelength Selective Optical Cross Switch And Optical Add/Drop Multiplexer Using Volume Phase Grating And Array Of Micro Electro Mechanical Mirrors

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US Patent:
6671428, Dec 30, 2003
Filed:
Mar 20, 2001
Appl. No.:
09/813772
Inventors:
Wei Yang - Fremont CA
Shu Zhang - Fremont CA
Li Chen - Fremont CA
Assignee:
Bayspec, Inc. - Fremont CA
International Classification:
G02B 626
US Classification:
385 18, 385 37
Abstract:
An optical cross switch device for selectively switching light beams between a plurality of fiber optic elements. The device includes an input fiber mounting assembly for securing at least one input fiber terminating in a fiber end for radiating an associated input light beam; collimating means for collimating the at least one input light beam; focusing means for focusing light beams incident thereon; an output fiber mounting assembly for securing at least one output fiber terminating in an output fiber end for receiving an associated light beam; and at least one mirror unit having at least one reflective element for selectively redirecting an associated one of the collimated input light beams toward an associated selected one of the output fiber ends via the focusing means.

Compact Optical Performance Monitor

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US Patent:
6704509, Mar 9, 2004
Filed:
Nov 17, 2000
Appl. No.:
09/715765
Inventors:
Wei Yang - Fremont CA
Shu Zhang - Fremont CA
Li Chen - Fremont CA
Assignee:
Bayspec, Inc. - Fremont CA
International Classification:
H04B 1008
US Classification:
398 34, 398 33, 398 68, 398131
Abstract:
A monitoring system provides for monitoring the optical performance of a plurality of different channels of a fiber optic network, each channel having an associated channel wavelength. The system includes: means for generating a calibration signal including a plurality of stable calibration wavelengths; means for combining a tapped communication signal and the calibration signal to generate a combined signal; and a multi-channel monitoring device. The monitoring device includes: an input optical fiber for receiving the combined signal, and for radiating an input light beam including the communication wavelengths and the calibration wavelengths; a detector unit having an array of pixel detector elements each being responsive to light beams incident thereon, and operative to generate an associated data signal; collimating and focusing means for collimating and focusing beams propagating between the fiber end and the detector unit; and a transmissive grating assembly for diffracting and spatially separating beams propagating between the input fiber end and the detector unit. The grating assembly, collimating and focusing means, and pixel detector elements are configured so that the diffracted beams are spatially separated and focused onto associated ones of the detector elements according to their wavelengths. A data processing unit receives the data signals from the detector unit, and is operative to provide information indicative of the intensities and wavelengths associated with each of the channels of the main communication signal.

Method For Fabricating Integrated Optical Components Using Ultraviolet Laser Techniques

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US Patent:
6706154, Mar 16, 2004
Filed:
Oct 10, 2001
Appl. No.:
09/975117
Inventors:
Wei Yang - Fremont CA
Li Chen - Fremont CA
Assignee:
Bayspec, Inc. - Fremont CA
International Classification:
C07C 600
US Classification:
20415715, 65386, 65392, 65403, 65425
Abstract:
A process for forming an integrated optical device in a substrate, comprising the steps of: providing a substrate having a base index of refraction; providing a UV light beam; focusing the beam on a portion of the substrate in order to form a region of increased refraction; and scanning an elongated region of the glass substrate with the beam in order to define at least one elongated optical channel having an increased index of refraction relative to the base index of refraction, the elongated optical channel for guiding light transmitted there along. The process further includes: forming a plurality of elongated optical channels in the substrate, wherein a first optical channel is operative for transmitting light to the plurality of elongated optical channels such that the transmitted light is divided among the plurality of elongated optical channels, thereby forming an optical beamsplitter.

Microprocessor-Based Optical Signal Conditioner

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US Patent:
7142784, Nov 28, 2006
Filed:
Jan 15, 2003
Appl. No.:
10/346718
Inventors:
Wei Yang - Fremont CA, US
Li Chen - Fremont CA, US
Dejin Yu - Fremont CA, US
Diana Liu - Vancouver, CA
William Yu - Vancouver, CA
Assignee:
BaySpec, Inc. - Fremont CA
International Classification:
H04B 17/00
US Classification:
398 34, 398 25
Abstract:
An optical device for conditioning a multi-channel optical signal is provided, comprising a channel separation and assembly unit and a signal processor. The signal processor comprises an optical attenuator for adjusting the power level of the signals, an optical detector for detecting the power level associated with each of the multiple channels, a reflective medium disposed between the optical attenuator and detector, and a microprocessor-based controller in electrical communication with the attenuator and detector for dynamically controlling the power distribution of the output signal.

Spectrograph Having Multiple Wavelength Ranges For High Resolution Raman Spectroscopy

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US Patent:
8514394, Aug 20, 2013
Filed:
Aug 9, 2010
Appl. No.:
12/853222
Inventors:
Wei Yang - Fremont CA, US
Ming Chai - Union City CA, US
Charlie Zhang - Fremont CA, US
Patrick Yang - Fremont CA, US
Assignee:
BaySpec, Inc. - Fremont CA
International Classification:
G01J 3/28
US Classification:
356328
Abstract:
A spectrograph having multiple excitation wavelength ranges is disclosed. The spectrograph can include a wavelength switching mechanism to switch between different wavelength ranges in accordance with the wavelength of an incoming light signal. The wavelength switching mechanism can include multiple optical assemblies (or elements) corresponding to the different wavelength ranges for processing the incoming light signal. The mechanism can also include a switching component for switching the optical assemblies to align the appropriate assembly with the incoming light signal. Each optical assembly can include one or more transmission gratings to disperse the incoming light signal into multiple wavelengths within a particular wavelength range and a reflecting mirror proximate to the grating(s) to reflect the wavelengths of light back through the grating(s) to photodetectors for measuring to wavelengths to generate a light spectrum. The spectrograph can be used in Raman spectroscopy.

Integrated Optical Components Fabricated Using Ultraviolet Laser Techniques

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US Patent:
20040136635, Jul 15, 2004
Filed:
Jun 27, 2003
Appl. No.:
10/609205
Inventors:
Wei Yang - Fremont CA, US
Li Chen - Fremont CA, US
International Classification:
G02B006/26
US Classification:
385/004000, 385/015000
Abstract:
A process for forming an integrated optical device in a glass substrate, comprising the steps of: providing a glass substrate having a base index of refraction; providing a UV light beam; focusing the beam on a portion of the glass substrate in order to form a region of increased refraction; and scanning an elongated region of the glass substrate with the beam in order to define at least one elongated optical channel having an increased index of refraction relative to the base index of refraction, the elongated optical cannel for guiding light transmitted there along. The process further includes: forming a plurality of elongated optical channels in said glass substrate, wherein a first optical channel is operative for transmitting light to said plurality of elongated optical channels such that said transmitted light is divided among said plurality of elongated optical channels, thereby forming an optical beamsplitter.

Method And Apparatus For Non-Invasive Measurement Of Blood Analytes With Dynamic Spectral Calibration

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US Patent:
20060063991, Mar 23, 2006
Filed:
Aug 9, 2004
Appl. No.:
10/914761
Inventors:
Dejin Yu - Fremont CA, US
Wei Yang - Fremont CA, US
International Classification:
A61B 5/00
US Classification:
600322000
Abstract:
The present invention discloses a method and apparatus and method for achieving non-invasive measurement of analytes from human and animal blood through the skin using Raman lightwave technology. The apparatus includes a confocal signal collection system that effectively reduces the interferences from out-of-focus signals. The apparatus further includes a tissue permeation unit, which controls the amount of blood in the laser tissue interaction region. The change of aggregate spectra with time is used to construct a new series of differenced spectra, from which the spectral effects from surrounding static substances are calibrated out dynamically using the data processing method described.
Wei Q Yang from San Francisco, CA, age ~71 Get Report