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Scott J Mcclusky, 541000 W Washington Blvd UNIT 327, Chicago, IL 60607

Scott Mcclusky Phones & Addresses

Chicago, IL   

Tucson, AZ   

Lockport, IL   

Westchester, IL   

Willeys, IL   

Indian Head Park, IL   

Woodridge, IL   

16645 W Huntington Dr, Lockport, IL 60441   

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Scott J Mcclusky

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Work

Company: Self-employed Nov 2012 Address: San Diego, CA Position: Electrical design engineer

Education

School / High School: California Polytechnic State University-San Luis Obispo 2004 to 2010

Skills

Electrical Engineering • PCB design • Simulations • Power Electronics • Circuit Design • Testing • Soldering • Debugging • Power Supplies • Troubleshooting • Analog Circuit Design • Analog • Audio Circuit Design

Industries

Consumer Electronics

Mentions for Scott J Mcclusky

Scott Mcclusky resumes & CV records

Resumes

Scott Mcclusky Photo 19

Electrical Design Engineer

Position:
Electrical Design Engineer at Self-Employed
Location:
San Diego, California
Industry:
Consumer Electronics
Work:
Self-Employed - San Diego, CA since Nov 2012
Electrical Design Engineer
General Atomics Aeronautical Systems - Poway, CA Apr 2010 - Nov 2012
Electrical Design Engineer
Texas Instruments Jun 2009 - Sep 2009
Applications Engineer Co-op
Cal Poly State University Sep 2008 - Jun 2009
Lab Instructor
Rantec Inc. Sep 2008 - Dec 2008
Design Intern
Linear Technology Jun 2008 - Sep 2008
Design Intern
ClearWater Tech Jun 2006 - Jun 2008
Electrical Engineer Intern
Education:
California Polytechnic State University-San Luis Obispo 2004 - 2010
Skills:
Electrical Engineering, PCB design, Simulations, Power Electronics, Circuit Design, Testing, Soldering, Debugging, Power Supplies, Troubleshooting, Analog Circuit Design, Analog, Audio Circuit Design

Publications & IP owners

Us Patents

Exercise Weight System

US Patent:
2008015, Jun 26, 2008
Filed:
Dec 20, 2006
Appl. No.:
11/642474
Inventors:
Scott McClusky - Lockport IL, US
International Classification:
A63B 21/075
US Classification:
482106
Abstract:
An exemplary incremental weight for an exercise system has a generally annular magnet encapsulated within a coating which cushions the magnet, protecting it both from becoming damaged, and from damaging an exercise apparatus, while promoting the adhesive properties of the magnet. In a first exemplary embodiment, the coating comprises a first annular rib and a second annular rib extending respectively about outer and inner peripheries of the generally annular magnet, and a plurality of ribs extending radially between the first and second annular ribs. The generally annular magnet, in exemplary embodiments, comprises at least one of a ceramic magnet, ferrite, or an alnico magnet. Exemplary coatings may be elastomeric, molded silicone, or anti-slip coatings. In another exemplary embodiment, a plurality of mounting pads are attached to a surface of said weight defined by an annular surface of said magnet.

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