Abstract:
A communication socket comprises a housing including a base portion having a bottom wall and a plurality of sidewalls and a cover portion. The base portion and the cover portion are detachably engaged with each other. The base portion includes a plurality of knock-off holes for inserting an optical fiber at different positions in the sidewall and/or a plurality of fiber entries for inserting a fiber through the bottom wall. The fiber-connector-mounting portion extends from the base. Each of the fiber-connector-mounting portion includes a spacer for maintaining a fiber connector at a distance away from the bottom wall, and a space for inserting the fiber between the fiber connector and the bottom wall. The volume of the communication socket can be minimized, the integration thereof can be improved, the fiber can enter the communication socket in all directions while the fiber's bend radius is satisfied, and the management on the fiber and cable in the communication socket is effective.
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system.
Abstract:
A pair manager for use in securing a twin-axial cable to a printed circuit board is described. The pair manager comprises a generally block-shaped portion containing a pair of channels. The channels extend from the front face to the rear face of the block-shaped portion. An integral flange and a pair of integral fingers extend perpendicularly from the front face of the block-shaped portion. The flange extends generally from the center of the front face and the fingers extend from opposite edges of the front face. The fingers and flange function as a partial shield cavity around each pair of conductors. This design helps to maintain better impedance matching when connecting twin-axial cables to a printed circuit board.
Abstract:
An intelligent network patch field management system is provided that includes electronic hardware, firmware, mechanical assemblies, cables, and software that provide visible and audible cues for connecting and disconnecting patch cords in an interconnect or cross-connect patching environment. Systems of the present invention also monitor patch cord connections in a network.
Abstract:
A connector assembly for mating with a multi-port electrical connector includes a shielded housing having a plurality of discrete shielded plug chambers and a plurality of plugs received in corresponding plug chambers. Each of the plugs are shielded from one another by the shielded housing, and the plugs are configured for simultaneous mating with the multi-port electrical connector, wherein each plug is received in a different port of the electrical connector. The connector assembly also includes a latch assembly coupled to the shielded housing. The latch assembly engages the shielded housing and is configured to engage the multi-port electrical connector to electrically common the shielded housing and the multi-port electrical connector.
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system.
Abstract:
An adapter includes a mechanical frame, which is configured to be inserted into a four-channel Small Form-Factor Pluggable (SFP) receptacle and to receive inside the frame a single-channel SFP cable connector. First electrical terminals, held by the mechanical frame, are configured to mate with respective first pins of the receptacle. Second electrical terminals, held within the mechanical frame, are configured to mate with respective second pins of the connector. Circuitry couples the first and second electrical terminals so as to enable communication between the connector and one channel of the receptacle while terminating the remaining channels of the receptacle.
Abstract:
A connector includes an insulating housing and at least one inserting pin. The insulating housing includes at least one groove and at least one plug receiving hole. The inserting pin penetrates through the groove, and is secured by a sidewall of the groove. The inserting pin includes a resilient leg for being electrically connected to a plug received in the insulating housing.
Abstract:
A wall-mounted HDMI conversion device has a plate, a circuit board, and a plate fixture receiving the circuit board therein and having a slotted hole and an opening. The plate is mounted to a hole on a wall and has a jack on a front side. The circuit board has an HDMI connector and a network socket set mounted on both sides thereof. The HDMI connector penetrates through the slotted hole and is exposed beyond the jack on the plate and the network socket set is exposed beyond the opening of the plate fixture. A conversion circuit is mounted on the circuit board to convert between HDMI signals and network signals. The present invention is mounted on a wall, transmits signals through network cables received inside the wall, thereby having network cable organized conveniently.
Abstract:
An automatic sensing power system automatically determines a power requirement for an electrical device, converts power to the required level, and outputs the power to the electrical device when the electrical device is connected to the automatic sensing power system.