Abstract:
A connection device and method of manufacturing the same is provided. The connection device includes a housing that includes a first face, into which a plug is introduced, and a second face that is formed to be in contact with the first face, a connection hole that extends to the inside of the housing from the first face, an opening that extends from the first face to the second face to partially expose the connection hole on at least the second face, and a sealing member that is arranged on an outer peripheral surface of the housing to surround a region where the opening is formed. When mounted on the case member of the electronic device, the sealing member may form a dustproof and waterproof structure between the inner peripheral surface of the case member and the outer peripheral surface of the housing.
Abstract:
An adaptor for receiving a keystone type connector and insertion into a patch panel is provided comprising a bottom wall comprising a ridge engaging lower slot and a lower edge engaging channel and a top wall comprising a flexible tab and a cantilevered latch engaging upper slot and an upper edge engaging channel in said flexible tab. The walls define a keystone modular jack receiving region and opening. The adaptor is dimensioned such that when said lower edge is received in said lower edge engaging channel, said upper edge is releasably engageable by said upper edge engaging channel, thereby releasably securing the adaptor within an aperture in a patch panel.
Abstract:
A telecommunications cabling system, including: (a) an earthed support; and (b) at least one connection module mounted to the earthed support, including: (i) a housing for a plurality of electrical contact members, the housing having a plurality of recesses to receive wires of at least one shielded cable; (ii) at least one opening to receive an end of an electrical connector to place electrical contacts at the end of the electrical connector in direct or indirect electrical communication with at least some of the wires; and (iii) a shielding interface for the connection module; wherein the shielding interface is simultaneously contactable with shielding of the shielded cable, a corresponding shielding interface of the electrical connector, and the earthed support.
Abstract:
A connector adapted to be connected to a network device is provided. The network device includes a connection port, and the connection port includes an elastic sheet. A wedging hole is formed on the elastic sheet. The connector includes a connector housing, a sliding element and a rotation element. The connector housing includes a latch. The latch is formed on the connector housing, and is adapted to be wedged into the wedging hole. The sliding element is moved between a first position and a second position along a straight line. When the sliding element is in the first position, the latch wedges into the wedging hole. When the sliding element is in the second position, the sliding element abuts the elastic sheet to separate the latch from the wedging hole. The rotation element is connected to the sliding element.
Abstract:
A male RJ45 connector includes a printed circuit (8) having electrical tracks, at least one grounding plate sandwiched between faces (23, 24) of the circuit and a slot extending longitudinally and opening on a side (38) of the circuit and being configured to pass through both the faces and the at least one grounding plate; and a spreader system (9) mounted on the circuit and including a separator body (25), an extension body (26) provided with a hollow (27) configured to receive the printed circuit and a central wall (28) dividing the hollow (27) into two parts and being configured to be inserted into the slot; the central wall and the at least one grounding plate being configured to be electrically interconnected and form an electrically and/or magnetically shielding barrier between pairs of conducting wires (11-14) mounted on the spreader and connected to the circuit.
Abstract:
An apparatus and method for crosstalk compensation in a jack of a modular communications connector includes a flexible printed circuit board connected to jack contacts and to connections to a network cable. The flexible printed circuit board includes conductive traces arranged as one or more couplings to provide crosstalk compensation.
Abstract:
A power over Ethernet (PoE) interface for 10GBase-T Ethernet includes at least one communication channel Ethernet interface including an autotransformer having a center tap for coupling direct current (DC) power. A combination of the geometry of the toroid core of the autotransformer and in some embodiments of a common mode choke, as well as the wire twisting, the wire distribution and the wire routing allow maximizing bandwidth up to or greater than 500 MHz for 10GBase-T performance by increasing the coupling and reducing capacitance across the wires, and results in return and insertion losses and OCL that meet anticipated standards.
Abstract:
The present invention generally relates to communication connectors and internal components thereof. In one embodiment, the present invention is a communication jack comprising both front-rotated and back rotated plug interface contacts. In another embodiment, the present invention is a communication jack comprising a two-piece front sled. In yet another embodiment, the present invention is a communication jack that retains its functionality when mated with both eight-position and six-position plugs.
Abstract:
[Problem] To provide an electrical connector that suppresses cross-talk. [Resolution Means] An electrical connector includes a main body 14 and a cover 16, with the main body 14 and the cover 16 demarcating a space housing a cable 3; the main body 14 includes an upper housing 20, a lower housing 22, a wiring substrate 28 arranged between the upper housing 20 and the lower housing 22, and a shield member 30 arranged interposing the upper housing 20 and the lower housing 22; and the wiring substrate 28 includes a contact 24 for electrically connecting to the cable 3, a connection terminal 26 for electrically connecting to a mating connector, and connecting conductor wiring L for electrically connecting the contact 24 and the connection terminal 26.
Abstract:
A network connector structure includes a connector body and a locking structure. The connector body encloses a conduction wire. The locking structure is attachable to the connector body and includes a withdrawal prevention section and a coupling section. When the network connector structure is inserted into a socket, the withdrawal prevention section of the locking structure is received in the socket in such a way that an engagement face of the engagement section engages and abuts a projection block of the socket to prevent the network connector structure from being withdrawn from the socket. The coupling section detachably mounts the locking structure to the connector body so as to allow for easy replacement.