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Richard Paul Mosser Deceased13461 Sahuaro Sunset Rd, Tucson, AZ 85749

Richard Mosser Phones & Addresses

13461 Sahuaro Sunset Rd, Tucson, AZ 85749    520-7492554   

Phoenix, AZ   

6435 Pinion St, Oak Park, CA 91377    805-8897528   

6435 Pinion St #E, Oak Park, CA 91377    805-8897528   

Agoura Hills, CA   

247 Berkeley #AV, Irvine, CA 92612    949-8897528   

Newport Beach, CA   

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Richard Paul Mosser

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Work

Company: Steven myers and associates 1998 to 2006 Position: Associate

Education

Degree: Masters, Master of Engineering School / High School: University of California, Los Angeles 1983 to 1985 Specialities: Engineering

Skills

Program Management • C++ • Windows • Requirements Analysis • Systems Engineering • Military

Industries

Defense & Space

Mentions for Richard Paul Mosser

Richard Mosser resumes & CV records

Resumes

Richard Mosser Photo 16

Aerospace Consultant

Location:
Tucson, AZ
Industry:
Defense & Space
Work:
Steven Myers and Associates 1998 - 2006
Associate
Raytheon 1997 - Dec 1999
Chief Engineer
1997 - Dec 1999
Aerospace Consultant
Education:
University of California, Los Angeles 1983 - 1985
Masters, Master of Engineering, Engineering
University of California, Los Angeles 1968 - 1970
Master of Science, Masters, Electronics Engineering
University of Wyoming 1964 - 1967
Bachelors, Bachelor of Science, Electronics Engineering
University of California
Skills:
Program Management, C++, Windows, Requirements Analysis, Systems Engineering, Military

Publications & IP owners

Us Patents

Linear Frequency Modulation Apparatus And Technique

US Patent:
H17973, Jul 6, 1999
Filed:
Nov 21, 1983
Appl. No.:
6/553902
Inventors:
Richard P. Mosser - Agoura CA
William H. Suder - Agoura CA
Richard E. Pavek - Thousand Oaks CA
Assignee:
The United States of America as represented by the Secretary of the Navy - Washington DC
International Classification:
H03B 2300
US Classification:
367102
Abstract:
Linear frequency modulation having a large time-bandwidth product and an remely linear frequency versus time waveform, is provided by a feedback technique utilizing a linear ramp voltage generator whose output is summed with a correction voltage to drive a voltage controlled oscillator to output the LFM waveform. Part of the LFM waveform is fed back through a digital discriminator for error signal generation and comparison with a preset value associated with the output slope linearity, thus yielding the basis for generating the correction voltage.

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