John S Macek, Age 652610 Huntington Dr UNIT D, Duarte, CA 91010

John Macek Phones & Addresses

2610 Huntington Dr UNIT D, Duarte, CA 91010

North Hollywood, CA

340 Duarte Rd, Monrovia, CA 91016 (626) 358-9692

1005 Center Ave, Ontario, CA 91764 (909) 484-5764 (909) 944-5761

1555 Satellite Blvd, San Diego, CA 92154 (619) 271-2849 (619) 628-0597

Mission Viejo, CA

Mentions for John S Macek

John Macek resumes & CV records

Resumes

John Macek Photo 32

Seeking New Opportunity

Position:
Corporate EH&S Compliance Manager at RSR/Quemetco
Location:
Greater Los Angeles Area
Industry:
Executive Office
Work:
RSR/Quemetco - City of Industry, CA since Feb 2011
Corporate EH&S Compliance Manager
JM Eagle Nov 2008 - Feb 2011
Safety Director
KIK International Apr 2008 - Jul 2008
Safety and Environmental Contractor
Ducommon Aerostructures Jul 2006 - Oct 2007
Safety Contractor
Pratt & Whitney Mar 2003 - Jul 2006
Safety Manager
Education:
Chapman University 1998 - 2004
MAOL, Organizational Leadership
Chapman University 1998 - 2004
MSHR, Human Resources
Chapman University 1997 - 2004
John Macek Photo 33

Senior Process Engineer

Location:
2610 Huntington Dr, Duarte, CA 91010
Industry:
Biotechnology
Work:
Prolacta Bioscience
Senior Process Engineer
Skills:
Biotechnology, Gmp, Pharmaceutical Industry, Validation, Six Sigma, U.s. Food and Drug Administration, Medical Devices, Lean Manufacturing, Quality System, Quality Assurance
John Macek Photo 34

John Macek

John Macek Photo 35

John Macek

Location:
United States

Publications & IP owners

Us Patents

Frequency Selective Surface (Fss) Filter For An Antenna

US Patent:
5949387, Sep 7, 1999
Filed:
Apr 29, 1997
Appl. No.:
8/841185
Inventors:
John J. Macek - Torrance CA
Mark E. Bever - Redondo Beach CA
Assignee:
TRW Inc. - Redondo Beach CA
International Classification:
H01Q 1523
H01Q 1514
H01Q 1502
US Classification:
343909
Abstract:
A frequency selective surface filter (20 or 50) particularly useful in connection with a transmit antenna (10) for passing and rejecting signals in multiple frequency bands. According to one embodiment, the frequency selective surface filter (20) has a single conductive screen (24) disposed on a dielectric medium (22). The single-conductive screen (24) includes an array of parallel intersecting lines (26) and (28) providing low frequency filtering. The single-conductive screen (24) also includes an array of double-loop conductive elements each made up of an inner conductive loop (32) and an outer conductive loop (30). According to a second embodiment, the frequency selective surface filter (50) contains two dielectrically separated conductive layers including a first conductive layer (52) having an array of double-slots made up of an inner slot (64) and an outer slot (66). The double-slot configuration further includes a second conductive layer (60) made up of an array of single conductive loops (62).

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