The present invention relates to an electrical connector assembly.
Electronic controllers used in agricultural, off road vehicle and/or automotive applications are often designed with custom integrated electrical connector features which allow the controller to mate directly with standard, high volume production sealed vehicle wire harness connectors. Staked blades and/or pins are often mounted directly to the printed circuit board in close proximity to the enclosure so that features in the enclosure provide direct support, sealing surfaces and latching means for vehicle wiring harness connectors. For connector integrity, tight manufacturing tolerances are required to make sure that the blades/pins in the circuit board will accurately line up with the integrated connector openings in the electronic controller enclosure. The design requirements for these integrated connector features in the predominately die cast aluminum enclosures can result in high tooling costs. Since customers often demand similar controllers with unique connection requirements, the enclosure designs cannot be reused or standardized to take advantage of high volume production economies of scale.
One such connector assembly is described in published U.S. patent application No. U.S. 2003/01624221. This connector assembly includes a housing which has openings or receptacles which receive header connectors. However, different size header connectors are mounted in corresponding different size receptacles. Thus, different housings would be required for connector assemblies having different sizes and arrangements of header connectors. It is desired to have a connector assembly which permits the use of a standardized housing.
Accordingly, an object of this invention is to provide an enclosure and connector design which can be standardized.
This and other objects are achieved by the present invention, wherein a die cast enclosure design includes standardized window openings. Grooves around each opening provide an adhesive sealing area. Connectors are molded into individual custom plastic shrouds. Each shroud has a skirt of material around the outside. The skirt has a standard foot print (shape and size) so that any shroud can pass through any window in the enclosure and the skirt of the shroud will provide a sealing surface to the enclosure. In this way a standard enclosure can be configured with a number of connector shroud alternatives, providing a number of connector design configurations for the same enclosure. Each connector shroud is designed to mate with a custom staked pin header so that the printed circuit board and header can be processed through soldering operations without the shrouds in place. After soldering processes have been completed, the individual connector shrouds can be slipped over the pin headers and snapped into the printed circuit board assembly. Tight tolerances between the shroud and the pin header will maintain a positive seal and ensure good connector performance. The adhesive sealant around each window opening in the enclosure will bond to the skirt of each shroud at final assembly.
Several connector shroud and pin header combinations can be designed and tooled up for use in a wide variety of controllers. Since each shroud will have a standard skirt and footprint, it can be substituted in an existing controller design to suit a new customer with unique connector requirements. Die cast enclosures can be reused for new designs or design updates without tooling changes. Prototyping lead time and new design speed to market will be improved.
Referring to
The connector assembly 10 also includes a plurality of connector units 20A, 20B and 20C. Each connector unit 20A-20C has a base plate 22 and an array 24A-24C of electrical connecting elements, such as pins, mounted in and projecting through the base plate 22, a hollow shroud 26A-26C. Each hollow shroud 26A-26C surrounds the corresponding one of the arrays 24A-24C, and extends away from the base plate 22. Each connector unit 20A-20C also includes a peripheral skirt 28 or flange which surrounds the shroud 26A-26C and/or the base plate 22 and which projects radially outwardly therefrom. Each shroud 26A-26C has an inner end 30 joined to the base plate 22 and an open outer end 32. As best seen in
As best seen in
While the present invention has been described in conjunction with a specific embodiment, many alternatives, modifications and variations will be apparent to those skilled in the art in light of the foregoing description. Accordingly, this invention is intended to embrace all such alternatives, modifications and variations which fall within the spirit and scope of the appended claims.
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