JOHN F CURLEY
Broker in Boston, MA

License number
Massachusetts 9056640
Issued Date
Jul 9, 2003
Expiration Date
Mar 14, 2006
Type
Salesperson
Address
Address
Boston, MA 02109

Professional information

John Curley Photo 1

Editor At Self

Position:
Editor at Self
Location:
Greater Boston Area
Industry:
Publishing
Work:
Self - Editor Grune & Stratton Publishers Sep 1985 - Nov 1987 - Production editor Rollins College Jan 1983 - Sep 1985 - Employment manager
Education:
Rollins College 1978 - 1982
BA, French


John Curley Photo 2

Sales Trader At Rbc Capital Markets

Position:
sales trader at RBC Capital Markets
Location:
Greater Boston Area
Industry:
Investment Banking
Work:
RBC Capital Markets - sales trader


John Curley Photo 3

Student At Harvard University

Location:
Greater Boston Area
Industry:
Biotechnology
Education:
Harvard University 2007 - 2011


John Curley Photo 4

President At Epc Labs, Inc.

Position:
President at EPC Labs, Inc.
Location:
Greater Boston Area
Industry:
Maritime
Work:
EPC Labs, Inc. - President


John Curley Photo 5

Footwear Cleat

US Patent:
2011023, Sep 29, 2011
Filed:
Oct 26, 2010
Appl. No.:
12/912419
Inventors:
JOHN J. CURLEY - BOSTON MA, US
International Classification:
A43C 15/00
US Classification:
36 59 R
Abstract:
A dynamic golf cleat having a plurality of composite dynamic traction elements, the wherein the elements preferably assume an angle with respect to the plane of the shoe sole, to allow room for deflection toward the shoe sole under load. The dynamic traction element is preferably formed of an elastomeric material such as thermoplastic urethane. A hub portion having a threaded attachment means is preferably oriented perpendicular to the plane of the shoe sole. Extending outwardly in a radial manner from the hub portion is a plurality of embedded thin tensile members oriented to be integrally formed within each flexible traction element. Each individual tensile member is centrally located within each dynamic traction element creating a distinct upper surface area and a lower surface area, within each dynamic traction element. Said sections of the dynamic traction elements have facing surfaces joined by a thin tensile member sections. These thin tensile member sections are molded integral with the two flexible traction element, an upper surface area and a lower surface area.