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Michael Richard Suggs, 73Osceola, NC

Michael Suggs Phones & Addresses

Browns Summit, NC   

13139 Asbury Chapel Rd, Huntersville, NC 28078   

13219 Asbury Chapel Rd, Huntersville, NC 28078   

Charlotte, NC   

Harrisburg, NC   

Richburg, SC   

Blackstock, SC   

China Grove, NC   

Belmont, NC   

Sylvester, GA   

17122 Red Feather Dr, Charlotte, NC 28277    704-5427069   

Work

Position: Protective Service Occupations

Education

Degree: High school graduate or higher

Mentions for Michael Richard Suggs

Career records & work history

Lawyers & Attorneys

Michael Suggs Photo 1

Michael Suggs - Lawyer

ISLN:
1001240590
Admitted:
2022

Michael Suggs resumes & CV records

Resumes

Michael Suggs Photo 17

Financial Advisor At Edward Jones

Position:
Financial Advisor at Edward Jones
Location:
Jefferson, Texas
Industry:
Investment Management
Work:
Edward Jones - Jefferson, Tx since Sep 2011
Financial Advisor
Superior Imaging, LLC - United States Sep 2009 - Sep 2011
Owner/Principal
Grainger - East Texas Feb 2008 - Aug 2011
Account Manager
Philips Healthcare 2001 - 2008
Account Manager / Surgery Sales Specialist
Education:
Blinn College 1990 - 1993
A.A.S., Radiologic Technology
Skills:
Wealth Management Services, Portfolio Management, Retirement Planning, Personal Financial Planning, Investment Strategies, Estate Planning, Series 7, Series 66
Michael Suggs Photo 18

Water Plant Operator Iii At City Of High Point

Position:
Water Plant Operator III at City of High Point
Location:
Greensboro/Winston-Salem, North Carolina Area
Industry:
Government Administration
Work:
City of High Point
Water Plant Operator III
Michael Suggs Photo 19

Owner, Goler Community Development Corporation

Position:
Owner at Goler Community Development Corporation
Location:
Greensboro/Winston-Salem, North Carolina Area
Work:
Goler Community Development Corporation
Owner
Sara Lee Underwear 1983 - 1986
Marketing Assistant

Publications & IP owners

Us Patents

Quick-Disconnect Fluid Coupling With Check Valve

US Patent:
6354564, Mar 12, 2002
Filed:
May 26, 2000
Appl. No.:
09/579554
Inventors:
Thomas W. Van Scyoc - Gastonia NC
Michael J. Suggs - Gastonia NC
Phillip G. Wilson - Mooresville NC
Assignee:
Perfecting Coupling Company - Charlotte NC
International Classification:
F16L 2900
US Classification:
251149, 13761404, 13761405, 2511496
Abstract:
A ball detent fluid coupling for liquid and gas applications has a ball-retaining sleeve on the socket that is retractable by hand for joining and for separating the socket and plug and is characterized by a pressure-actuated check valve mounted on a valve guide within the flow path to preclude backflow into the supply side of the coupling. The valve also operates to shut off the flow when the mating parts of the coupling are disconnected or when flow through the coupling is shut off. A conventional valve can be mounted in the fluid flow passageway opposite the pressure-actuated check valve to urge the mating plug and socket to decouple when the sleeve releases the ball detents from engagement with the plug and to stop flow in the discharge line. The coupling will typically be used at pressures of from about 5 to 130 psig.

Quick-Action Fluid Coupling

US Patent:
6158717, Dec 12, 2000
Filed:
Apr 18, 2000
Appl. No.:
9/550815
Inventors:
Thomas W. Van Scyoc - Gastonia NC
Phillip G. Wilson - Mooresville NC
Michael J. Suggs - Gastonia NC
Assignee:
Perfecting Coupling Company - Charlotte NC
International Classification:
F16L 3728
US Classification:
2511496
Abstract:
A quick-action fluid coupling for connecting two fluid-conducting lines includes a plug for attachment to one of the lines and a socket for attachment to the other. The socket has a tubular body and includes a valve having a valve sleeve and a fixed valve stem coaxially disposed within the tubular body. The valve sleeve is moved axially upon connection of the plug and socket so as to open a fluid flow passage between the valve sleeve and the valve stem. The outer surface of the valve stem defines a plurality of circumferentially spaced depressions therein. A circumferential groove is defined in an inner surface of the tubular body and is spaced radially outward of and in axial alignment with the depressions in the valve stem. A plurality of separately formed, discrete retaining elements are respectively engaged partly in the depressions in the valve stem and partly in the groove in the tubular body. Each retaining element is captively retained between forwardly and rearwardly inclined surfaces of the corresponding depression and between forwardly and rearwardly inclined surfaces of the groove.

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