IP Library Granted Patent US 8,777,662
Granted Patent B2
US 8,777,662 · App. 14/026,457 · Granted Jul 15, 2014

Electrical contact for shock-resistant electrical connector

Inventors: Robert Barnard (Cleveland, TX); Michael Williams (Cypress, TX)
Assignee: AG Geophysical Products, Inc.
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Quick Facts
Patent No.
US 8,777,662
App. No.
14/026,457
Granted
Jul 15, 2014
Kind
B2
Abstract

An electrical connector in the form of a socket assembly defining a plurality of arcuate leaf contacts adapted for insertion of a pin contact therein. The socket assembly comprises an elongate socket core having the leaf contacts formed at a distal end thereof, and a substantially cylindrical hood surrounding the leaf contacts. In one embodiment of the invention, the hood is provided with structure for limiting the radial outward deflection of the leaf contacts when the electrical connector is subjected to shock forces. The limiting structure can be a stepped inner cylindrical sidewall of the hood, defining a reduced inner diameter portion of the hood surrounding at least a distal portion of each leaf contact.

Claims (38)

1. A socket assembly for an electrical connector, comprising:

a socket core comprising a plurality of arcuate leaf contacts that extend from a base portion of the socket core, the socket core having an inner socket-core surface that defines a receptacle for a pin, each of the arcuate leaf contacts having an inner boundary that forms a portion of the inner socket-core surface and provides electrical contact between the socket core and the pin; and

a body having an inner surface about the socket core, a first portion of the inner surface about the base portion of the socket core having a first interior dimension that is sized to contact an outer surface of the base portion, a second portion of the inner surface about the leaf contacts having a second interior dimension that is smaller than the first interior dimension and sized to limit outward radial deflection of the arcuate leaf contacts,

wherein the second portion of the inner surface does not abut the arcuate leaf contacts when no pin resides in the receptacle.

2. The socket assembly of claim 1 , wherein the arcuate leaf contacts have a fixed length from the base portion of the socket core, and the second portion of the inner surface surrounds the arcuate leaf contacts over at least a majority of their fixed lengths.

3. The socket assembly of claim 1 , wherein the second portion of the inner surface is configured to maintain the electrical contact between the socket core and the pin when the pin resides in the receptacle and the socket assembly is subject to shock forces.

4. The socket assembly of claim 1 , wherein the inner surface includes a stepped transition between the first and second portions of the inner surface.

5. The socket assembly of claim 1 , wherein the first and second portions of the inner surface are cylindrical.

6. The socket assembly of claim 1 , further comprising the pin, wherein the pin is configured to reside in the receptacle in electrical contact with the inner boundary of the arcuate leaf contacts.

7. The socket assembly of claim 1 , wherein the body comprises a socket hood having an inner socket-hood surface, and the inner surface about the socket core comprises the inner socket-hood surface.

8. A socket assembly for an electrical connector, comprising:

a socket core comprising a plurality of arcuate leaf contacts that extend from a base portion of the socket core, the socket core having an inner socket-core surface that defines a receptacle for a pin, each of the arcuate leaf contacts having an inner boundary that forms a portion of the inner socket-core surface and provides electrical contact between the socket core and the pin; and

a body having an inner surface about the socket core, a first portion of the inner surface about the base portion of the socket core having a first interior dimension that is sized to contact an outer surface of the base portion, a second portion of the inner surface about the leaf contacts having a second interior dimension that is smaller than the first interior dimension and sized to limit outward radial deflection of the arcuate leaf contacts,

wherein the second portion of the inner surface abuts the arcuate leaf contacts when no pin resides in the receptacle.

9. A socket assembly for an electrical connector, comprising:

a socket core comprising a plurality of arcuate leaf contacts that extend from a base portion of the socket core, the socket core having an inner socket-core surface that defines a receptacle for a pin, each of the arcuate leaf contacts having an inner boundary that forms a portion of the inner socket-core surface and provides electrical contact between the socket core and the pin; and

a body having an inner surface about the socket core, a first portion of the inner surface about the base portion of the socket core having a first interior dimension that is sized to contact an outer surface of the base portion, a second portion of the inner surface about the leaf contacts having a second interior dimension that is smaller than the first interior dimension and sized to limit outward radial deflection of the arcuate leaf contacts.

10. The socket assembly of claim 1 , wherein the body comprises an outer boundary and an opening through the outer boundary, the opening having a third interior dimension that is smaller than the second interior dimension and sized to allow the pin to pass through the opening and into the receptacle.

11. An electrical connector assembly comprising:

a connector body; and

a socket core supported by the connector body, the socket core comprising a plurality of arcuate leaf contacts that extend from a base portion of the socket core, the socket core having an inner socket-core surface that defines a receptacle for a pin, each of the arcuate leaf contacts having an inner boundary that forms a portion of the inner socket-core surface and provides electrical contact between the socket core and the pin; and

an inner surface about the socket core, a first portion of the inner surface about the base portion of the socket core having a first interior dimension that is sized to contact an outer surface of the base portion, a second portion of the inner surface about the leaf contacts having a second interior dimension that is smaller than the first interior dimension and sized to limit outward radial deflection of the arcuate leaf contacts.

12. The electrical connector assembly of claim 11 , wherein the second portion of the inner surface does not abut the arcuate leaf contacts when no pin resides in the receptacle.

13. The electrical connector assembly of claim 11 , comprising a socket hood supported by the connector body, wherein the inner surface about the socket core comprises an inner surface of the socket hood.

14. The electrical connector assembly of claim 11 , further comprising a pin assembly supported by the connector body.

15. The electrical connector assembly of claim 11 , wherein the arcuate leaf contacts have a fixed length from the base portion of the socket core, and the second portion of the inner surface surrounds the arcuate leaf contacts over a majority of their fixed lengths.

16. The electrical connector assembly of claim 11 , wherein the second portion of the inner surface is configured to maintain the electrical contact between the socket core and the pin when the pin resides in the receptacle and the electrical connector is subject to shock forces.

17. A socket hood for installation on an electrical connector, the socket hood comprising:

an inner socket-hood surface defining a socket core receptacle, the socket core receptacle configured to receive a socket core of an electrical connector, the socket core comprising a plurality of arcuate leaf contacts extending from a base portion of the socket core,

a first portion of the inner socket-hood surface having a first interior dimension that is sized to contact an outer circumference of the base portion of the socket core,

a second portion of the inner socket-hood surface having a second interior dimension that is smaller than the first interior dimension and sized to limit outward radial deflection of the arcuate leaf contacts of the socket core; and

an opening through an outer boundary of the socket hood, the opening having a third interior dimension that is smaller than the second interior dimension and sized to allow a pin contact to pass through the opening and into electrical contact with the leaf contacts,

wherein the second portion of the inner socket-hood surface is sized to abut an outer boundary of the arcuate leaf contacts when a pin resides in the socket core.

18. The socket hood of claim 17 , wherein the second portion of the inner socket-hood surface is configured to maintain electrical contact between the socket core and the pin when the socket hood is subject to shock forces.

19. The socket hood of claim 17 , wherein the inner socket-hood surface includes a stepped transition between the first and second portions of the inner socket-hood surface.

20. The socket hood of claim 17 , wherein the inner socket-hood surface includes a stepped transition between the opening and the second portion of the inner socket-hood surface.

21. The socket hood of claim 17 , wherein the opening and the first and second portions of the inner socket-hood surface are cylindrical.

22. The socket hood of claim 17 , wherein the second portion of the inner socket-hood surface is sized to abut an outer boundary of the arcuate leaf contacts when no pin resides in the socket core.

Assignments (3)
MERGER Recorded Jan 17, 2016
From: TELEDYNE A-G GEOPHYSICAL PRODUCTS, INC.
To: TELEDYNE INSTRUMENTS, INC.
Reel/Frame 037505/0733 →
CHANGE OF NAME Recorded Jan 27, 2015
From: A-G GEOPHYSICAL PRODUCTS, INC.
To: TELEDYNE A-G GEOPHYSICAL PRODUCTS, INC.
Reel/Frame 034826/0699 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2013
From: BARNARD, ROBERT; WILLIAMS, MICHAEL
To: AG GEOPHYSICAL PRODUCTS, INC.
Reel/Frame 031204/0389 →
Continuity (4)
Continuation 13564865 · Aug 2, 2012
Continuation PCTUS2011024085 · Feb 8, 2011
Continuation 12658849 · Feb 16, 2010
Related Publication 20140011392A1 · Jan 9, 2014