Electrical connector having a two-piece socket portion

Electrical connectors – Coupling part including flexing insulation – Hinged or flexed detent on insulation engaging to secure...

Reexamination Certificate

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Reexamination Certificate

active

06290539

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention generally relates to an electrical connector system, and, more particularly, to a two-piece component of a connector having a terminal position assurance feature for giving mechanical and visual assurance that the terminals are properly installed in the connector component and for locking the terminals in position.
2. Description of the Prior Art
An electrical connector typically includes a pair of mateable connector housing components or halves constructed from a dielectric material. The housing halves are usually identified as a plug half (or male half) and a socket half (also referred to as the receptacle half or female half). The two connector halves have complementary inter-engaging conductive terminals for completing an electrical circuit when the housing halves are fully and properly mated. The plug half generally has one or more projecting conductive pins which are inserted into one or more conductive receptacles or sockets on the socket half. The contact between the pin terminals and socket terminals forms the electrical connection between the two connector halves.
The pin and socket terminals are typically small components manufactured from wire and stamped sheet metal materials. Proper placement of the terminals in the dielectric housings of the connector halves is important for ensuring an electrical connection. If one or more terminals is not seated properly in its respective housing half, then a poor quality or incomplete electrical connection may exist when the two housing halves are assembled. This improper seating of the terminals may occur, for example, during initial placement of the terminals into the connector housing, during processing or shipment prior to final assembly of the connector halves, during assembly of the connector halves, or following assembly due to vibrations, external stress, or the like, such as if a terminal is pulled from its fully seated position within the connector housing.
Failures due to improper terminal seating are of particular concern in the automotive industry. Connectors on vehicles are subjected to extreme weather conditions, continual vibrations, and occasional rough treatment during repair, maintenance, or the like. To avoid connector failures, the automotive industry may require that connectors include some form of terminal position assurance (“TPA”) system to provide a visual, mechanical, or other type of assurance that the terminals are properly installed in the connector. A locking mechanism for holding the terminals in the connector housing may also be required. The TPA arrangement may be part of this locking action, or may be separate from the locking mechanism.
In the past, different techniques have been used to provide terminal position assurance for terminals within a connector housing, including pin and socket type terminal systems. For example, U.S. Pat. No. 5,522,740, to Plocek et al., discloses an electrical connector having a TPA insert which detects whether or not a terminal is properly installed. The connector includes the TPA insert which contains a number of terminal-receiving passages. The TPA insert is partially inserted into a connector housing, and the terminals are then inserted into the passages. The terminals include first openings which receive a locking finger portion of the connector housing when the terminals are inserted. Following insertion of all the terminals, the TPA insert is moved to the fully-inserted position, and locking arms on the TPA insert enter second openings in the terminals. If a terminal is not quite properly seated, the TPA insert can seat the terminal when the TPA insert is moved forward. When the TPA insert is in the forward position, the terminals are locked in place. Because the terminals are engaged with both the housing and the TPA insert, a special tool is required to remove the TPA insert or terminals from the final locked position.
U.S. Pat. No. 5,573,430, to Hatagishi, shows another type of two-piece connector component which includes a housing portion which receives an insert portion in which a plurality of terminals are mounted. The insert and housing include a number of guide projections, contact projections, and vibration-preventing projections for securely holding the terminals in position following assembly. However, Hatagishi does not appear to include any arrangements for providing a TPA system which will prevent assembly of the insert into the housing if the terminals are not properly seated.
While the prior art connector components and TPA arrangements function effectively for their intended applications, some of the components may be complex to mold, or to assemble and disassemble. Accordingly, it is desirable to provide an alternative connector and TPA arrangement whose functional components enable a simpler and more compact construction than those of the prior art, without sacrificing strength and functionality. The two-piece connector component and TPA system of the present invention provide these and other benefits, and overcome the shortcomings associated with the prior art.
SUMMARY OF THE INVENTION
In the preferred form, the invention is described as a socket component of a two-part mateable connector system. However, the invention may also be formed as a panel mounted socket, a plug component of a connector, or other similar connector by making slight modifications to the housing configuration. Accordingly, these alternative configurations are also considered to be within the scope of the invention. The socket component of the invention includes a housing portion and an insert portion. The housing portion of the socket component is configured to mate to a plug component having projecting pin terminals for forming an electrical connection. A latch mechanism and connector position assurance device may be included on the socket component for securely latching the socket component to the plug component following assembly of the two connector halves.
The insert of the invention includes a main body which is generally rectangular in cross section. The main body has a planar surface centrally disposed therein and extending outward from the main body to form a distal edge. Generally rectangular side plates are located on either side of the planar surface and are integrally formed perpendicularly to the planar surface. The side plates extend from the main body to the distal edge of the horizontal body. A plurality of parallel terminal-receiving passages are formed by a plurality of generally parallel partitions disposed perpendicularly to the horizontal body in a cross-wise fashion. The partitions extend from the proximal side of the main body to the distal edge of the planar surface. Conductive terminals may be inserted into the passages and a ramped fixed shoulder is formed in each passage on the planar surface for retaining the terminals in the passage. Additionally, a flexible finger is provided for each passage for holding the terminals in position in the passage. Each flexible finger extends distally from the main body over one of the passages, and the distal tip of the finger contacts the terminal and provides resilient bias against the terminal when the terminal is installed in the passage. A terminal may be loaded into each passage in the insert and disposed in front of the fixed shoulder on the horizontal surface so that the tip of the terminal is adjacent to the distal edge of the horizontal surface, and the rear of the terminal abuts the fixed shoulder.
The housing portion of the invention includes a generally box-shaped casing having an upper wall, a lower wall, a pair of sidewalls, a front wall, and an open rear side, so that a hollow cavity is formed for receiving the insert portion of the invention. Guides are formed along the sidewalls on the inside of the housing cavity for contacting and guiding the side plates of the insert portion during insertion of the insert portion into the housing portion. Each of the upper and lower walls of the housing portion includes

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