Leo Wu1439 Little Orchard St, San Jose, CA 95110

Leo Wu Phones & Addresses

1439 Little Orchard St, San Jose, CA 95110

4641 Venice Way, San Jose, CA 95129 (408) 446-2837

Sacramento, CA

Santa Clara, CA

Mentions for Leo Wu

Leo Wu resumes & CV records

Resumes

Leo Wu Photo 40

Senior Web Developer At Armorgames

Position:
Web Developer at ArmorGames (Sole Proprietorship)
Location:
Irvine, California
Industry:
Computer Software
Work:
ArmorGames since Jun 2012
Web Developer
Music Mastermind, Inc Feb 2012 - Jun 2012
Software Engineer
AffNet.com Dec 2010 - Feb 2012
Web Developer
UC Irvine - Academic Web Technologies Jul 2007 - Sep 2010
Web Developer
Education:
University of California, Irvine 2007 - 2010
B.S., Information and Computer Science
Skills:
PHP, MySQL, Java
Interests:
new technology, web frameworks, mobile application, cloud computing, usability, game development, wall climbing, snowboarding, manga, anime
Honor & Awards:
Dean's List for Spring 2009
Leo Wu Photo 41

Resident Doctor

Work:

Resident Doctor
Leo Wu Photo 42

Leo Wu

Education:
President William Mckinley High School 2013 - 2017
Leo Wu Photo 43

Leo Wu

Leo Wu Photo 44

Leo Kin Peng Wu

Leo Wu Photo 45

Cooker

Work:
Baba Group
Cooker
Leo Wu Photo 46

Leo Wu

Leo Wu Photo 47

Leo Wu

Location:
United States

Publications & IP owners

Us Patents

Tvro Receiver With Surface Mounted High Frequency Voltage-Controlled Oscillator

US Patent:
4709409, Nov 24, 1987
Filed:
Aug 25, 1986
Appl. No.:
6/899830
Inventors:
John Y. Ma - Miliptas CA
Leo Wu - San Jose CA
International Classification:
H04B 126
H03B 512
US Classification:
455325
Abstract:
A TVRO receiver utilizes an improved voltage-controlled oscillator (VCO) of the surface mounted type which has a wide bandwidth of operation extending into the microwave frequency range. The VCO comprises a dielectric substrate with a patterned-metal layer on one side and a surface mounted oscillator on the patterned-metal side of the substrate. The oscillator comprises amplifying means which produce an oscillating output by the use of regenerative feedback means including an open-circuit-stub inductance formed in the patterned metal layer, and a tunable resonant circuit coupled to the amplifying means in order to control the frequency of the oscillating output. The resonant circuit includes a short-circuit-stub capacitance formed within the patterned middle layer, at least one variable capacitance diode in series with the short-circuit stub, and means for applying a controllable tuning potential to the resonant circuit.

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