Abstract:
An cable assembly includes an external cover having a back wall defining a retaining cavity; at least one printed circuit board accommodated in the external cover; two cables arranged in juxtaposed manner, each cable including a number of wires, a shielding layer shrouding the wires, a metallic braiding enclosing the shielding layer and an insulative jacket enclosing the metallic braiding; two ring shaped reinforcement members, each reinforcement member located between the shielding layer and the metallic braiding of a front segment of the each cable; and a ferrule crimped to the front segments of the two cable and encircling the reinforcement members, the ferrule retained in the retaining cavity, and the metallic braiding of each cable sandwiched between the ferrule and the reinforcement member inside the corresponding cable.
Abstract:
Described herein is an apparatus and method for providing an inerting gas during the application of soldering to a work piece. In one aspect, there is provided an apparatus that is placed atop of a solder reservoir and comprises a plurality of porous tubes that are in fluid communication with an inerting gas. In another aspect, there is provided a method for providing an inerting gas to a wave soldering apparatus comprising the steps of, among other things, placing an apparatus atop at least one edge of the solder reservoir wherein the apparatus comprises a plurality of tubes comprising one or more openings in fluid communication with an inerting gas source. In a further aspect, at least one of the tubes comprises a non-stick coating or is comprised of a porous non-stick material such as a sleeve.
Abstract:
An electrical connector assembly (100) comprises: a housing (1) comprising a first shield part (15), a second shield part (16) assembled with each other; at least one printed circuit board (2) disposed in the housing; a strain relief (5) disposed in the housing and sandwiched by the first shield part and the second shield part; a metallic shell (8) engaged with the housing; a pair of first screws (91) assembled to the housing along two opposite directions and interlocked with first shield part, the second shield part and the strain relief; and a pair of second screws (92) assembled to the housing along a same direction and interlocked the first shield part, the second shield part, the strain relief and the metallic shell.
Abstract:
An cable assembly includes an insulative housing; a plurality of terminals received in the insulative housing; a cable having a plurality of wires connected to the terminals; and a metallic shell enclosing the insulative housing and the terminals, the metallic shell includes a first shell, a second shell and a third shell, the first shell enclosing the second shell, and the third shell arranged between the first shell and the second shell.
Abstract:
An electrical connector (100) includes an insulative housing (1) having a base (11) and a tongue plate (12) protruding beyond the base (11); a set of contacts (2) having contacting portions (26) arranged in one row along one side of the tongue plate (12), the contacts (2) consisting of a first type of grounding contacts (G) and a second type of a set of pairs of differential contacts (24, 23, 22, 21), the differential contacts comprising a first pair of differential contacts (24) for bi-directionally transmitting data and a second pair of differential contacts (23) for unidirectionally transmitting data, in the contacting portions (26), the grounding contacts having at least two grounding contacts (G1, G2) arranged between the first pair of differential contacts (24) and the second pair of differential contacts (23); and a metal shell (3) covering the insulative housing (1) and having a receiving space (30) for the tongue plate (12) extending into.
Abstract:
Described herein is an apparatus and method for providing an inerting gas during the application of soldering to a work piece. In one aspect, there is provided an apparatus that is placed atop of a solder reservoir and comprises a plurality of porous tubes that are in fluid communication with an inerting gas. In another aspect, there is provided a method for providing an inerting gas to a wave soldering apparatus comprising the steps of, among other things, placing an apparatus atop at least one edge of the solder reservoir wherein the apparatus comprises a plurality of tubes comprising one or more openings in fluid communication with an inerting gas source. In a further aspect, at least one of the tubes comprises a non-stick coating or is comprised of a porous non-stick material such as a sleeve.
Abstract:
An electrical connector assembly (100) comprises: a housing (1) comprising a first shield part (15), a second shield part (16) assembled with each other; at least one printed circuit board (2) disposed in the housing; a strain relief (5) disposed in the housing and sandwiched by the first shield part and the second shield part; a metallic shell (8) engaged with the housing; a pair of first screws (91) assembled to the housing along two opposite directions and interlocked with first shield part, the second shield part and the strain relief; and a pair of second screws (92) assembled to the housing along a same direction and interlocked the first shield part, the second shield part, the strain relief and the metallic shell.
Abstract:
An electrical connector assembly (100), comprises: an insulative housing (1) having a plurality of receiving spaces (11) formed therein. A plurality of PCB modules (2) are respectively received into the plurality of receiving spaces (15). Two latches (3) are formed on a top surface of the insulative housing, each latch defines a front end (31) connected to a front edge of the top surface of the insulative housing and a rear end (32) cantilevered from the front end of the latch. And an actuator (4) is formed on the top surface of the insulative housing, the actuator defines a rear end (41) connected to a rear edge of the top surface of the insulative housing and a front end (42) cantilevered from the rear end of the actuator, and the front end of the actuator located above the two rear ends of the two latches.
Abstract:
An electrical connector (100) includes an insulative housing (1) having a base (11) and a tongue plate (12) protruding beyond the base (11); a set of contacts (2) having contacting portions (26) arranged in one row along one side of the tongue plate (12), the contacts (2) consisting of a first type of grounding contacts (G) and a second type of a set of pairs of differential contacts (24, 23, 22, 21), the differential contacts comprising a first pair of differential contacts (24) for bi-directionally transmitting data and a second pair of differential contacts (23) for unidirectionally transmitting data, in the contacting portions (26), the grounding contacts having at least two grounding contacts (G1, G2) arranged between the first pair of differential contacts (24) and the second pair of differential contacts (23); and a metal shell (3) covering the insulative housing (1) and having a receiving space (30) for the tongue plate (12) extending into.
Abstract:
A cable assembly (100) includes a first insulated housing (1) having at least a first mounting slot (101) and a corresponding second mounting slot (102) defined therein, a fastening member for fastening the first insulated housing and a panel together, the fastening member including a latching member (5) accommodated in the first mounting slot and anchoring plate (6) accommodated in the second mounting slot, the screw having a base portion and a shrinkable post portion integrated with the base portion, the anchoring plate defining a first through hole and a second through hole communicated with the first through hole, the post portion being larger than the second through hole and smaller than the first through hole; and the post portion of the latching member inserted into the first mounting hole and locked into the second through hole of the anchoring plate.