The present disclosure relates to high speed electrical connectors and more particularly to an apparatus for aligning high speed connectors and assemblies thereof.
Many different formats are available for high speed electrical connection. One such standard is VITA 46 (VME International Trade Association) which provides a VMEbus-based 7-row connector interface rated for switched fabrics at high speed I/O signaling rates up to 6.25 Gbps. This standard is designed to meet the applications typically required by defense and aerospace that requires a large number of densely populated, high-speed I/O pins. One of the challenges that VITA 46 poses is the alignment of the connectors/boards in such a highly dense population.
The assignee of the present application presently has a product line which addresses the connection aspect of this standard, which is marketed as the AMP MULTIGIG RT Connector. This assembly is comprised of a first connector for mounting to a daughtercard, and a second connector for mounting to a backplane. Round cross-sectional pins and sockets mounted to the boards align the assemblies.
The present disclosure discloses an electrical connector assembly, comprising a first substrate carrying a first plurality of electrical connections, a second substrate carrying a second plurality of electrical connections, a keying guide module positioned on the first board and a keying guide pin positioned on the second board. The keying guide pin has plural planar and contiguous surfaces defining a keying profile, and the keying guide module has a complementary receiving opening for receiving in keyed receipt, the keying guide pin.
The present disclosure also discloses a keying assembly for keying an electrical connector assembly comprised of first and second electrical connections mounted on respective first and second substrates. The keying assembly comprises a keying guide module for positioning on the first board and a keying guide pin for positioning on the second board. The keying guide pin has plural planar and contiguous surfaces defining a keying profile, and the keying guide module has a complementary receiving opening for receiving in keyed receipt, the keying guide pin.
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Connector subassembly 6 is comprised of a board 30 in the form of a back plane having a plurality of connector modules 36 having plural contacts 38 which are interconnectable to contacts 18 to interconnect the daughtercard 10 and backplane 30 as described herein. Subassembly 6 further comprises keying guide pins 42 located in an opposed manner to the keying guide modules 22 to align the connector subassembly 4 with connector subassembly as further described herein.
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As disclosed the keying guide module 22 and keying guide pin 42 are robust enough to align the daughtercard 10 and backplane 30. As disclosed, the keying guide pin has planar and contiguous surfaces 120, 122, 124, and 126 which define the keying profile. The keying guide module has complementary surfaces 80, 82, 84, 86 in receiving opening 54 for receiving the keying guide pin 42.
As shown, two surfaces 124, 126 are parallel with the plane of daughtercard 10, and surfaces 120, 122 are transverse to the daughtercard 10. As also shown, the distance between surfaces 124 and 126 is greater than the distance between surfaces 120, 122. This geometry is accommodated by forming the keying guide pin as a quadrilaterally shaped cross-section. As shown, one configuration for accommodating the geometry is to provide the keying guide pin as a rectangular cross-section.
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While this invention has been described as having an exemplary design, the present invention may be further modified within the spirit and scope of this disclosure. This application is therefore intended to cover any variations, uses, or adaptations of the invention using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains.
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