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Jack Yu Chung Lin, 40Gilbert, AZ

Jack Lin Phones & Addresses

Gilbert, AZ   

Tempe, AZ   

Phoenix, AZ   

Tucson, AZ   

Maricopa, AZ   

Mentions for Jack Yu Chung Lin

Career records & work history

Lawyers & Attorneys

Jack Lin Photo 1

Jack Lin - Lawyer

ISLN:
1000127208
Admitted:
2016
Jack Lin Photo 2

Jack Lin - Lawyer

ISLN:
900699113
Admitted:
1994
University:
Vanderbilt University, B.A., 1989
Law School:
University of California at Los Angeles, J.D., 1993

Medicine Doctors

Jack J. Lin

Specialties:
Epileptologist, Neurology
Work:
Comprehensive Epilepsy Program
101 City Dr S BLDG 30, Orange, CA 92868
714-4566203 (phone) 714-4566908 (fax)
UCI University Phys/SgnsComprehensive Epilepsy Program University Of California Irvine
101 The City Dr S BLDG 30, Orange, CA 92868
714-4566203 (phone) 714-4566908 (fax)
Site
UCI University Phys/SgnsUC Irvine Medical Center Epilepsy Program
101 The City Dr S Pavln 1, Orange, CA 92868
714-4566203 (phone) 714-4566908 (fax)
Site
Education:
Medical School
Rush Medical College
Graduated: 1998
Procedures:
Lumbar Puncture, Sleep and EEG Testing
Conditions:
Epilepsy, Hemorrhagic stroke, Migraine Headache, Ischemic Stroke, Meningitis
Languages:
English, Spanish, Vietnamese
Description:
Dr. Lin graduated from the Rush Medical College in 1998. He works in Orange, CA and 2 other locations and specializes in Epileptologist and Neurology. Dr. Lin is affiliated with UC Irvine Medical Center.

Publications & IP owners

Us Patents

Blockless Fiber Attachment Assembly For Optical Devices

US Patent:
2003001, Jan 16, 2003
Filed:
Jul 10, 2001
Appl. No.:
09/902147
Inventors:
Jack Lin - Scottsdale AZ, US
Annette Jerinic - Stanton CA, US
Assignee:
Aeroflex-TriLink Corporation
International Classification:
G02B006/26
US Classification:
385/051000, 385/049000, 385/050000
Abstract:
An optical fiber attachment assembly and method of making such an assembly. The assembly includes an optical device having an optical waveguide with an end surface exposed on an end surface of the device, and a bare optical fiber having an end surface cleaved at a predetermined angle and aligned with the end surface of the waveguide. The end of the fiber is affixed to the optical device by a first adhesive. A strain relief block positioned at a distance from the end surface of the optical device and the optical fiber is affixed to the strain relief block by a second adhesive to securely mount the fiber to the optical device. The optical device and the strain relief block are mounted on a carrier. Also described is a method for attaching an optical fiber to a waveguide in an optical device. The fiber attachment assembly and method can be used in a flip-chip configuration where the chip is mounted on a ground plane in a flipped orientation via a plurality of spacers.

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