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Moon B Park

from Los Angeles, CA
Age ~56

Moon Park Phones & Addresses

  • 333 S Virgil Ave #204, Los Angeles, CA 90020
  • 12621 Adelle St #D, Garden Grove, CA 92841 (714) 590-0000
  • 10641 Lakeside Dr, Garden Grove, CA 92840
  • South Pasadena, CA
  • 24350 Azal Ct, Laguna Niguel, CA 92677
  • Aliso Viejo, CA

Professional Records

Medicine Doctors

Moon Park Photo 1

Moon Soo Park

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Specialties:
Pathology
Anatomic Pathology & Clinical Pathology
Education:
Yonsei University (1965)

Resumes

Resumes

Moon Park Photo 2

Human Resources Coordinator

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Location:
Berkeley, CA
Industry:
Non-Profit Organization Management
Work:
Kycc (Koreatown Youth and Community Center) Aug 2016 - Jul 2019
Human Resources Generalist

Kycc (Koreatown Youth and Community Center) Aug 2016 - Jul 2019
Human Resources Coordinator
Education:
University of California, Berkeley 2012 - 2016
Bachelors, Public Health
University of California
Skills:
Public Health
Community Health
Infectious Diseases
Occupational Health
Customer Service
Microsoft Excel
Research
Public Speaking
Microsoft Word
Powerpoint
Interests:
Education
Languages:
English
Korean
Certifications:
Professional In Human Resources® (Phr®)
Moon Park Photo 3

Postdoctoral Researcher

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Location:
San Francisco, CA
Industry:
Nanotechnology
Work:
Republic of Korea Marine Corps Apr 2008 - Mar 2010
Military Duty In South Korea

University of Waterloo Apr 2008 - Mar 2010
Postdoctoral Researcher
Education:
University of Waterloo 2015 - 2019
Doctorates, Doctor of Philosophy, Chemical Engineering, Philosophy
University of Waterloo 2014 - 2015
Masters, Chemical Engineering
Chungnam National University 2007 - 2014
Bachelor of Engineering, Bachelors, Chemical Engineering, Engineering
Skills:
Research
Chemical Engineering
Nanotechnology
Characterization
Chemistry
Powerpoint
Microsoft Excel
Microsoft Office
Materials Science
Data Analysis
Nanomaterials
Development of Electrocatalysts
Electrochemistry
Advanced Energy Conversion and Storage Systems
R&D
Engineering
Science
Microscopy
Scanning Electron Microscopy
Spectroscopy
Tem
Hydrogen Fuel Cells
Pem Fuel Cells
Metal Air Battery
Fuel Cell
Water Splitting
Bicunctional Catalysts
Material Synthesis
Moon Park Photo 4

Production Coordinator

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Location:
Los Angeles, CA
Industry:
Motion Pictures And Film
Work:
The Asia Network Apr 2016 - Apr 2018
On-Air Studio Engineer

Apr 2016 - Apr 2018
Production Coordinator
Education:
S.i. Newhouse School of Public Communications at Syracuse University 2010 - 2015
Bachelors, Bachelor of Science, Television, Film
Syracuse University 2010 - 2015
Bachelors, Communication, Television
Skills:
Photoshop
Blogging
Social Media
Video Production
Television
Video Editing
Editing
Social Media Marketing
Video
Final Cut Pro
Moon Park Photo 5

Notary Public

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Location:
Los Angeles, CA
Industry:
Design
Work:
Nothing
Notary Public
Moon Park Photo 6

Self Employed

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Work:
Mpjsllc
Self Employed

Business Records

Name / Title
Company / Classification
Phones & Addresses
Moon G. Park
President
Ms Electric, Inc
20370 Wayne Ave, Torrance, CA 90503
Moon Ki Park
President
Lapaju, Inc
3600 Wilshire Blvd, Los Angeles, CA 90010
204 Gabriel Garcia Marquez St, Los Angeles, CA 90033
Moon K. Park
President
Calif International University
College/University
3130 Wilshire Blvd, Los Angeles, CA 90010
(213) 368-4598
Moon Park
President
California International Univ
3130 Wilshire Blvd #102, Los Angeles, CA 90010
(213) 381-3710, (213) 381-6990
Moon Sang Park
President
USMX TRANSPORT, INC
Freight Transportation Arrangement
500 E Carson Plz Dr STE 113, Carson, CA 90746
(310) 515-5101
Moon Kyu Park
President
CALIFORNIA INTERNATIONAL UNIVERSITY FOUNDATION, INC
Business School
3130 Wilshire Blvd #102, Los Angeles, CA 90010
(213) 381-3719
Moon Il Park
Park Investments, LLC
Property Ownership · Real Estate · Investor
511 Ladera St, Monterey Park, CA 91754
Moon Ho Park
President, Director
GMP ENTERPRISES, LLC
Business Consulting Services
500 Executive Ctr Blvd, El Paso, TX 79902
1720 Louisiana Blvd NE, Albuquerque, NM 87110
3435 Wilshire Blvd, Los Angeles, CA 90010
(915) 532-8981

Publications

Us Patents

Method And Apparatus For Matching Impedance Of Optical Components Using A Tapered Transmission Line

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US Patent:
20210066878, Mar 4, 2021
Filed:
Aug 26, 2020
Appl. No.:
17/003984
Inventors:
- Ridgefield Park NJ, US
Moon Soo PARK - Irvine CA, US
Assignee:
OE Solutions America, Inc. - Ridgefield Park NJ
International Classification:
H01S 3/063
H04B 10/50
F21V 8/00
H03H 7/40
H01S 5/0683
Abstract:
A method and apparatus for matching different impedance of optical components and a package for optical communication using a tapered transmission line (or a taper) are provided. The taper may be configured to include a first section, a second section, and a third section, each of which corresponds to different components. By way of example, the first section of the taper may be configured to be allocated to a driver to a flex joint on a printed circuit board (PCB), the second section of the taper may be configured to be allocated to a flex circuit, and the third section of the taper may be configured to be allocated to a transistor outline (TO) and submount including a directly modulated laser (DML). The taper is configured to minimize an amount of impedance mismatch between the optical components and the package.

Enhanced Transmission And Reception Of Remote Digital Diagnostic Information Of Optical Tranceivers

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US Patent:
20180302155, Oct 18, 2018
Filed:
Jun 11, 2018
Appl. No.:
16/005551
Inventors:
- Ridgefield Park NJ, US
Wanseok SEO - Irvine CA, US
Soonwon HONG - Seoul, KR
Moon Soo PARK - Irvine CA, US
Assignee:
OE Solutions America, Inc. - Ridgefield Park NJ
International Classification:
H04B 10/079
H04B 10/077
H04L 1/00
Abstract:
Methods and apparatuses for optical communications are provided. By way of example, an optical transceiver includes a processing device coupled to a memory, an optical subassembly, and a programmable device. The optical subassembly is configured to receive and modulate a first signal carrying high speed user data for transmission to a remote device over an optical link. The programmable device is coupled to the processing device and configured to receive data relating to digital diagnostic monitoring information (DDMI) of the optical transceiver from the processing device, perform forward error correction encoding on the DDMI data to produce a remote digital diagnostic monitoring (RDDM) signal, and send the RDDM signal to the optical subassembly as a second signal to modulate for transmission. The optical subassembly is configured to current modulate the second signal on the first signal to produce a double modulated optical signal for transmission to the remote device.

Enhanced Transmission And Reception Of Remote Digital Diagnostic Information Of Optical Tranceivers

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US Patent:
20170331548, Nov 16, 2017
Filed:
Jul 31, 2017
Appl. No.:
15/665341
Inventors:
- Ridgefield Park NJ, US
Wanseok SEO - Irvine CA, US
Soonwon HONG - Seoul, KR
Moon Soo PARK - Irvine CA, US
Assignee:
OE Solutions America, Inc. - Ridgefield Park NJ
International Classification:
H04B 10/079
H04B 10/077
H04B 10/077
H04L 1/00
Abstract:
Methods and apparatuses for optical communications are provided. By way of example, an optical transceiver includes a processing device coupled to a memory, an optical subassembly, and a programmable device. The optical subassembly is configured to receive and modulate a first signal carrying high speed user data for transmission to a remote device over an optical link. The programmable device is coupled to the processing device and configured to receive data relating to digital diagnostic monitoring information (DDMI) of the optical transceiver from the processing device, perform forward error correction encoding on the DDMI data to produce a remote digital diagnostic monitoring (RDDM) signal, and send the RDDM signal to the optical subassembly as a second signal to modulate for transmission. The optical subassembly is configured to current modulate the second signal on the first signal to produce a double modulated optical signal for transmission to the remote device.

High-Speed Optical Receiver Implemented Using Low-Speed Light Receiving Element And Method For Implementing The Same

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US Patent:
20160365930, Dec 15, 2016
Filed:
Aug 24, 2016
Appl. No.:
15/245176
Inventors:
- Englewood Cliffs NJ, US
Bong Sin KWARK - IRVINE CA, US
Moon Soo PARK - IRVINE CA, US
Assignee:
OE SOLUTIONS AMERICA, INC. - Englewood Cliffs NJ
International Classification:
H04B 10/69
Abstract:
A high-speed optical receiver implemented using a low-speed light receiving element is provided, which is configured to receive an optical signal having a higher transmission rate than that received using a general avalanche photo diode (APD) by expanding a frequency bandwidth using a receiver circuit configured together with an APD in the optical receiver including the APD, an APD bias control circuit, a transimpedance amplifier (TIA) for amplifying a signal received from the APD to have low noise, and a post amplifier; and a method of implementing such a high-speed optical receiver.

Enhanced Transmission And Reception Of Remote Digital Diagnostic Information Of Optical Transceivers

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US Patent:
20160277104, Sep 22, 2016
Filed:
Mar 18, 2016
Appl. No.:
15/073785
Inventors:
- Englewood Cliffs NJ, US
Wanseok SEO - Irvine CA, US
Soonwon HONG - Seoul, KR
Moon Soo PARK - Irvine CA, US
Assignee:
OE Solutions America, Inc. - Englewood Cliffs NJ
International Classification:
H04B 10/079
H04L 1/00
Abstract:
Methods and apparatuses for optical communications are provided. By way of example, an optical transceiver includes a processing device coupled to a memory, an optical subassembly, and a programmable device. The optical subassembly is configured to receive and modulate a first signal carrying high speed user data for transmission to a remote device over an optical link. The programmable device is coupled to the processing device and configured to receive data relating to digital diagnostic monitoring information (DDMI) of the optical transceiver from the processing device, perform forward error correction encoding on the DDMI data to produce a remote digital diagnostic monitoring (RDDM) signal, and send the RDDM signal to the optical subassembly as a second signal to modulate for transmission. The optical subassembly is configured to current modulate the second signal on the first signal to produce a double modulated optical signal for transmission to the remote device.

Scheme For Remote Control Of The Output Power Of A Transmitter In A Smart Sfp Transceiver

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US Patent:
20150200728, Jul 16, 2015
Filed:
Dec 12, 2014
Appl. No.:
14/569427
Inventors:
- Buk-Gu, KR
Moon Soo PARK - Irvine CA, US
Christian HOEDE - Dieman, NL
Jan A.W. VENEMA - Amersfoort, NL
International Classification:
H04B 10/40
H04B 10/077
H04L 5/14
Abstract:
A scheme is described for remote control of the output power of a transmitter in a smart SFP (or SFP+, or XFP) duplex (or BiDi, or SWBiDi) transceiver in a communication system using an operating system with OAM and PP functions, an OAM, PP & Payload Processor, a transceiver, an optical power meter (optional), a BERT, and an optical link in the field.

Optical Transceiver And Optical Communication System

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US Patent:
20150200729, Jul 16, 2015
Filed:
Dec 2, 2014
Appl. No.:
14/558383
Inventors:
- Englewood Cliffs NJ, US
Jong Ho KIM - Irvine CA, US
Moon Soo PARK - Irvine CA, US
Joon Sang YU - Yongin-Si, KR
International Classification:
H04B 10/43
H04B 10/61
H04B 10/572
H04B 10/275
H04J 14/02
Abstract:
Disclosed is an optical transceiver which includes an optical transmitter converting a first electrical signal into a first optical signal, an optical receiver converting a second optical signal into a second electrical signal, and a processing unit operatively coupled to the optical transmitter and the optical receiver. The processing unit is configured to obtain first wavelength information of the first optical signal and second wavelength information of the second optical signal and compare the first wavelength information and the second wavelength information to control a wavelength separation interval between the first optical signal and the second optical signal.

Scheme Of Remote Control Of The Slicing Level Of A Receiver In A Smart Transceiver

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US Patent:
20150139639, May 21, 2015
Filed:
Dec 8, 2014
Appl. No.:
14/563529
Inventors:
- Buk-Gu, KR
Moon Soo PARK - Irvine CA, US
International Classification:
H04B 10/079
H04B 10/69
H04B 10/25
H04B 10/40
H04L 5/14
US Classification:
398 27
Abstract:
A scheme is described of remote control of the slicing level of a receiver in a smart SFP (or SFP+, or XFP) duplex (or BiDi, or SWBiDi) transceiver in a communication system using an operating system with OAM and PP functions, an OAM, PP & Payload Processor, a transceiver, a BERT, and an optical link in the field.
Moon B Park from Los Angeles, CA, age ~56 Get Report