摘要:
A method is disclosed for terminating the metallic shield of a high speed cable which includes an inner dielectric inside the metallic shield, as well as a system for effecting the method. At least a portion of the outer jacket of the cable is removed to expose a portion of the metallic shield. An insulating member is positioned between the metallic shield and the inner dielectric of the cable. The cable then is positioned on a conductive terminating member having a portion in registry with the exposed portion of the metallic shield outside the insulating member. The metallic shield is soldered to the portion of the terminating member, as the insulating member protects the inner dielectric from the heat of the soldering step.
摘要:
A grounding electrical connector system includes first and second mateable connector modules each having dielectric blocks mounting a plurality of terminals and a ground plate. The ground plates of the connector modules interengage with one another in a cross-shaped grounding configuration therebetween. The terminals of the connector modules are located in spaced dispositions such that a pair of mating terminals from each connector module is located in each of four quadrants defined by the cross-shaped grounding structure of the interengaging ground plate.
摘要:
A system is disclosed for terminating the shield a high speed cable having an outer jacket, an inner metallic shield with a portion of the outer jacket removed to expose a portion of the metallic shield, and an inner dielectric inside the metallic shield. The system includes a conductive two-part terminating member having a shield management part and a shield terminating part. The shield management part is adapted for allowing separation of the metallic shield from the inner dielectric and soldering of the shield to the shield management part, while protecting the inner dielectric from the heat of soldering. The shield terminating part is adapted for grounding the metallic shield and includes a receptacle for receiving the shield management part in conductive engagement therewith.
摘要:
A method is disclosed for terminating the metallic shield of a high speed cable, and including a terminating member used with the method. At least a portion of the outer jacket of the high speed cable is removed to expose a portion of the metallic shield of the cable. The cable is positioned on a conductive terminating member having an opening in registry with the exposed portion of the metallic shield. The shield is soldered to the terminating member through the opening.
摘要:
A system is disclosed for terminating the shield of a high speed cable having an outer jacket and an inner metallic shield with a. portion of the outer jacket removed to expose a portion of the metallic shield. The system includes a conductive two-part. terminating member including a cable receiving part and a terminal part. The cable receiving part includes a receptacle for receiving the high speed cable in direct engagement with the exposed metallic shield thereof. A solder connection is applied between the exposed metallic shield and the cable receiving part at the receptacle. The terminal part is adapted for grounding the metallic shield. The cable receiving part is mounted on the terminal part in conductivity therewith.
摘要:
A system is disclosed for terminating the metallic shields of a pair of high speed cables each having a portion of the outer jacket removed to expose a portion of the metallic shield thereof. A rigid sleeve is positioned between the metallic shield and the dielectric of each of the cables. An elongated, generally planar ground plate has a pair of crimp arms projecting inwardly from opposite edges of the plate near one end thereof for crimping onto the exposed portions of the metallic shields of the pair of cables. The crimp arms clamp the shields between the arms and the rigid sleeves and position the pair of cables on the ground plate between the arms.
摘要:
A terminal system having a terminal ground plate portion with a hump projecting therefrom is adapted to terminate an inner metallic shield of a high speed cable, the cable having an outer jacket and the inner metallic shield with a portion of the outer jacket removed to expose a portion of the metallic shield. The hump has a slot for receiving the cable at a location along the cable in registry with the exposed metallic shield thereof. With the metallic shield maintained in the slot, a solder connection is established between the metallic shield and the ground plate portion at the hump.
摘要:
The retention system is provided for a threaded member (14, 54) and an electrical connector (10) which includes a sheet metal shield (46) juxtaposed on a dielectric housing (32). A threaded hole (58) is provided in the shield (46) for 4 threadingly receiving the threaded member (14, 54). A hole (64) is provided in the dielectric housing (32) behind the threaded hole (58) in the shield (46) for threadingly receiving the threaded member (14, 54) after the shank 54 of the threaded member (14, 54) passes through the threaded hole (58) in the shield (46).During assembly, the threaded members (14, 15) self thread into interfering portions of the housing (32) defined by the housing holes (64) to thereby increase the resistance of threading in order to prevent stripping of the threaded holes (58) in the shield (46).
摘要:
A grounding bridge for terminating the ground portions of an interconnect cable includes a conductive metal member having two leg portions extending at angles to each other. One leg portion is folded upon itself to define a partial enclosure which receives an internal coaxial cable of the interconnect cable therein along with a jumper wire while the other leg portion is offset from the one leg portion to lie flat against the metal shielding of the interconnect cable.
摘要:
A titanium diboride target contains fractions of one or more metals from the group including iron, nickel, cobalt and chromium as well as carbon. The mean grain size of TiB2 grains is between 1 μm and 20 μm, the carbon content is in a range of 0.1 to 5% by weight and the total content of Fe, Ni, Co and/or Cr is in a range of 500 to 3,000 μg/g. The carbon is distributed in free form at the grain boundaries of the TiB2 grains in such a way that mean distances between individual carbon particles are less than 20 μm. The porosity is less than 5% by volume.