Abstract:
A first connector includes a first insulative housing defining opposite first and second mating faces, a set of first upper contacts arranged upon the first mating face, a set of first lower contacts including a first lower differential pairs, a second lower differential pairs and a lower grounding contact, and a first grounding plate. The contacting sections and the first grounding arm are arranged upon the second mating face, and the first terminal portions of the first lower differential pairs are arranged in a first row, and the second terminal portions of the second lower differential pairs and the tail section of the lower grounding contact are arranged in a second row for excellent high-frequency characteristics.
Abstract:
An opto-electronic device assembly adapted for mounted on a mother board includes a case and opto-electronic devices. The case has multiple cavities opening forwards and downwards. Each opto-electronic device includes an optical engine module and an electrical socket. The optical engine module includes an optical engine, an optical transmission interface and an electrical transmission interface with electrical pads. The electrical socket has a plurality of terminals with one ends contacting with PCB and another opposite ends contacting with the electrical pads. Each electrical transmission interface is removeably assembled in the electrical sockets to complete electrical connection between the substrate and the mother board. The opto-electrical devices are received in the cavities in a condition that the optical transmission interfaces exposes to a front open of the case.
Abstract:
A first connector includes a first insulative housing defining opposite first and second mating faces, a set of first upper contacts arranged upon the first mating face, a set of first lower contacts including a first lower differential pairs, a second lower differential pairs and a lower grounding contact, and a first grounding plate. The contacting sections and the first grounding arm are arranged upon the second mating face, and the first terminal portions of the first lower differential pairs are arranged in a first row, and the second terminal portions of the second lower differential pairs and the tail section of the lower grounding contact are arranged in a second row for excellent high-frequency characteristics.
Abstract:
A cable assembly (1000) includes an elongated metallic housing (10A) and a cable holder member (6) attached to a rear portion of the housing (10A); a cable (4) coupled to the housing, with a mounting portion (40) thereof gripped by the cable holder member; and a protective member (5) embedded in the mounting portion of the cable, disposed outside of the wires (42) of the cable.
Abstract:
An active optical assembly includes a paddle card, an optical-electrical module including an opto-electronic communication device electrically connected with the paddle card, a heat sink ring mounted to the paddle card, an optical cable subassembly inserted into the heat sink ring and optically coupling with the optical-electrical module, and a heat sink cover mounted to the heat sink ring. The heat sink cover, the heat sink ring, and the paddle card cooperate to enclose the optical-electrical module so as to transfer heat generated by the opto-electronic communication device to the heat sink ring and the heat sink cover for dissipation.
Abstract:
A plug connector (100) comprises an insulative housing (1), a plurality of terminals (2) retained to the insulative housing (1), a pair of latches (3) fit to the insulative housing (1) and a housing cover (4) attached to the insulative housing (1). The insulative housing (1) has a base portion (11) and a tongue portion (12) extending forwardly from a middle of the base portion (11). The terminals (2) are arranged on the tongue portion (12) in parallel. The housing cover (4) has a cylindrical portion (41) with a pair of slits (411) extending therethrough for the latch (3) partly extending through. Each latch (3) has a locking piece (31) provided with a front straight edge (311) to abut against with a front edge of a receptacle connector (900) when the plug connector (100) is inserted upside down to the receptacle (900).
Abstract:
An electrical connector assembly comprises a first connector unit and a second connector. The first connector unit comprises a first connector having an insulative housing with a plurality of contacts mounted thereon. A printed circuit board, on which the first connector is seated, defines a pair of mounting sections at opposite ends thereof and locate adjacent to the first connector. An insulative cover is attached to a first surface of the printed circuit board which is opposite to the first connector. The insulative cover forms a pair of guiding posts retained in said mounting sections and a pair of stand-off sections located at opposite ends thereof for supporting the first connector during the mating process. A metallic cover is attached to the insulative cover. The second connector defines a pair of guiding apertures at opposite ends thereof for receiving said guiding posts.
Abstract:
A cable connector includes an insulative housing including two sidewalls and a mating slot defined between the two sidewalls, and a plurality of terminals received in the insulative housing. The terminals include contacting portions exposed to the mating slot and connecting portions behind a rear end of the insulating housing. The two sidewalls are loaded with a firs row and a second row of the plurality of terminals respectively. The first row includes signal terminals and grounding terminals. A grounding plate is inserted in the insulating housing and between two rows of terminals. The grounding plate defines resilient arms and connecting legs, the resilient arms slant to the first row and touch with the grounding terminals.
Abstract:
An electrical connector assembly comprises a first connector unit and a second connector. The first connector unit comprises a first connector having an insulative housing with a plurality of contacts mounted thereon. A printed circuit board, on which the first connector is seated, defines a pair of mounting sections at opposite ends thereof and locate adjacent to the first connector. An insulative cover is attached to a first surface of the printed circuit board which is opposite to the first connector. The insulative cover forms a pair of guiding posts retained in said mounting sections and a pair of stand-off sections located at opposite ends thereof for supporting the first connector during the mating process. A metallic cover is attached to the insulative cover. The second connector defines a pair of guiding apertures at opposite ends thereof for receiving said guiding posts.
Abstract:
A plug connector (100) comprises an insulative housing (1), a plurality of terminals (2) retained to the insulative housing (1), a pair of latches (3) fit to the insulative housing (1) and a housing cover (4) attached to the insulative housing (1). The insulative housing (1) has a base portion (11) and a tongue portion (12) extending forwardly from a middle of the base portion (11). The terminals (2) are arranged on the tongue portion (12) in parallel. The housing cover (4) has a cylindrical portion (41) with a pair of slits (411) extending therethrough for the latch (3) partly extending through. Each latch (3) has a locking piece (31) provided with a front straight edge (311) to abut against with a front edge of a receptacle connector (900) when the plug connector (100) is inserted upside down to the receptacle (900).