Abstract:
A telecommunications cabling system, including: (a) an earthed support (12); and (b) at least one connection module (100) mounted to the earthed support (12), including: (i) a housing (200; 220) for a plurality of electrical contact members (212), the housing (200; 220) having a plurality of recesses (202) to receive wires of at least one shielded cable (50); (ii) at least one opening to receive an end of an electrical connector (300; 400) to place electrical contacts at the end of the electrical connector (300; 400) in direct or indirect electrical communication with at least some of the wires; and (iii) a shielding interface (110) for the connection module (100); wherein the shielding interface (110) is simultaneously contactable with shielding (52) of the shielded cable (50), a corresponding shielding interface (500) of the electrical connector (400), and the earthed support (12).
Abstract:
A telecommunications plug includes a housing having an insertion portion sized to be received in a telecommunications jack, and a circuit board at least partially disposed within the housing. The circuit board includes a plurality of contacts exposed through the insertion portion to electrically connect to contact springs of the telecommunications jack and a plurality of wire connections receiving wires of a telecommunications cable. The plug further includes a switching mechanism movable relative to the circuit board and configured to switch between first and second positions, wherein the first and second positions selectably provide capacitive crosstalk between wire pairs within the plug.
Abstract:
Patch cords include a communications cable that has a first conductor and a second conductor that form a first differential pair, and a third conductor and a fourth conductor that form a second differential pair and a plug that is attached to the communications cable. The plug includes a housing that receives the communications cable, first through fourth plug contacts that are within the housing, and a printed circuit board. The printed circuit board includes first through fourth conductive paths that connect the respective first through fourth conductors to respective ones of the first through fourth plug contacts. The plug further includes a first conductive shield that extends above a top surface of the printed circuit board that is disposed between the first differential pair and the second differential pair.
Abstract:
The present invention is directed to a cable organizer. The cable organizer has a base with a plurality of ports. Each port is configured to hold a plug extending from a patch cord. The cable organizer also has a plurality of flanges connected to the base and a plurality of latch mechanisms. Each flange defines a side of one of the ports and each latch mechanism is connected to the ports by a pivot element.
Abstract:
Method, apparatus, and electrical cable for high-speed connections. The apparatus can include an electrical cable, a wire sorter, an electrical mating paddle, and a cable assembly. The wire sorter can be coupled to an end of the electrical cable, and configured to receive wires extending from the end of the electrical cable and position the wires relative to one another in a predetermined arrangement to yield sorted wires. The electrical mating paddle card can then be coupled to the sorted wires according to the predetermined arrangement. The cable assembly can be configured to house the wire sorter and at least a portion of the wires. Moreover, the cable assembly can include a hot-melt injection chamber configured to at least partially immobilize the wires relative to the cable assembly when hot-melt is injected into the hot-melt injection chamber.
Abstract:
A guide pin for a connector assembly includes a guide pin body extending along a pin axis. The guide pin body has a stem extending between a root and a tip. The root has threads configured to be threadably coupled to a support frame of the connector assembly and the tip has a lead-in to guide the guide pin body into a mounting block. The stem has slots extending parallel to the pin axis from the tip to an intermediate position along the guide pin body remote from the tip. The slots are configured to receive ribs of a driver tool used to rotate the guide pin body to threadably couple the root to the support frame.
Abstract:
Method, apparatus, and electrical cable for high-speed connections. The apparatus can include an electrical cable, a wire sorter, an electrical mating paddle, and a cable assembly. The wire sorter can be coupled to an end of the electrical cable, and configured to receive wires extending from the end of the electrical cable and position the wires relative to one another in a predetermined arrangement to yield sorted wires. The electrical mating paddle card can then be coupled to the sorted wires according to the predetermined arrangement. The cable assembly can be configured to house the wire sorter and at least a portion of the wires. Moreover, the cable assembly can include a hot-melt injection chamber configured to at least partially immobilize the wires relative to the cable assembly when hot-melt is injected into the hot-melt injection chamber.
Abstract:
A telecommunications patch panel is provided having a plurality of connector modules rotatably mounted to a frame member. Each connector module has a front face and an opposite facing rear face, and each front face includes a plurality of connector jacks. Each rear face includes a plurality of wire termination blocks. The wire termination blocks are electrically connected to the connector jacks. Each connector module is rotatable about a rotation axis relative to the frame member. A lock selectively locks each connector module to the frame member as desired. The connector jacks and the connector modules are arranged in linear arrays perpendicular to the axis of rotation.
Abstract:
Implementations of the present disclosure involve a cable terminator and/or method of using a cable terminator for non-operably securing a network cable at a destination port on a network device. The cable terminator has a body that includes an insert portion and a receiving portion. The insert portion is shaped so that it may be inserted into a port on a network device, while the receiving portion is shaped to receive a network cable.
Abstract:
Method, apparatus, and electrical cable for high-speed connections. The apparatus can include an electrical cable, a wire sorter, an electrical mating paddle, and a cable assembly. The wire sorter can be coupled to an end of the electrical cable, and configured to receive wires extending from the end of the electrical cable and position the wires relative to one another in a predetermined arrangement to yield sorted wires. The electrical mating paddle card can then be coupled to the sorted wires according to the predetermined arrangement. The cable assembly can be configured to house the wire sorter and at least a portion of the wires. Moreover, the cable assembly can include a hot-melt injection chamber configured to at least partially immobilize the wires relative to the cable assembly when hot-melt is injected into the hot-melt injection chamber.