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Vladimir A Leonov, 66802 Flagler Dr, Gaithersburg, MD 20878

Vladimir Leonov Phones & Addresses

802 Flagler Dr, Gaithersburg, MD 20878    440-3760527   

Derwood, MD   

3880 Mayfield Rd, Cleveland, OH 44121    216-3815583   

Parma Heights, OH   

Baltimore, MD   

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Vladimir A Leonov

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Work

Company: Rss consulting, llc 2008 Position: Qa/sr. test engineer

Education

School / High School: ATS Institute of Technology- Cleveland, OH 2002 Specialities: Certificate in Network Administration and Design

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Vladimir Leonov resumes & CV records

Resumes

Vladimir Leonov Photo 24

Vladimir Leonov

Vladimir Leonov Photo 25

Vladimir Leonov - Gaithersburg, MD

Work:
RSS Consulting, LLC 2008 to Present
QA/Sr. Test Engineer
RSM McGladrey, Inc. MAEU - Washington, DC 2006 to 2008
Software/Hardware Test Engineer
Freedom USA, Inc - Twinsburg, OH 2004 to 2006
Software/Hardware Test Engineer
X-Technology, Inc - Warrensville, OH 2000 to 2004
Hardware Test Engineer
Education:
ATS Institute of Technology - Cleveland, OH 2002
Certificate in Network Administration and Design
Moscow Engineer Academy of Railway Transport 1983
Master of Science in Design and organization of process of Tunnel Construction

Publications & IP owners

Us Patents

Isolated Control Apparatus Incorporating Light Controlled Power Semiconductors

US Patent:
7227280, Jun 5, 2007
Filed:
Aug 2, 2004
Appl. No.:
10/902796
Inventors:
Oved Zucker - Arlington VA, US
Vladimir P. Leonov - Falls Church VA, US
Simon Y. London - Rockville MD, US
Assignee:
Bae Systems Information and Electronic Systems Integration Inc. - Nashua NH
International Classification:
H01L 31/08
H01G 9/20
US Classification:
307117
Abstract:
A system for direct optical control of electronic power semiconductors includes an optical triggering circuit at a first location, wherein said optical triggering circuit generates an optical trigger signal, a power circuit located at a second location remote from the first location, wherein said power circuit includes a photoconductor that is responsive to the optical trigger signal generated by the optical triggering circuit, and an optical cable coupling the optical triggering circuit to the power circuit. In operation, the power circuit is directly driven by the transmission of the optical trigger signal from the optical triggering circuit to the power circuit via the optical cable. Inductive elements or transformers may be applied to facilitate triggering performance.

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