Abstract:
A connector comprises a connector body (40), a connector upper housing (10), a locking component (20) and a connecting assembly (30) provided within the connector body (40). The locking component (20) includes a locking knob (23) and a locking bolt (21). Holes are provided on the middle of the connecting assembly (30) and the connector body (40) respectively to match with the locking bolt (21). The diameter of the locking knob (23) of the locking component (20) is larger than the width of the connector body (40). The connector upper housing (10) is fixed on the connector body (40) and restricts the locking knob (23) between the connector body (40) and the connector upper housing (10).
Abstract:
Power supply equipment includes circuitry for converting an input voltage to first and second DC voltages provided at respective connection points. One of the connection points is electrically coupled to a first cable having at its distal end a connector or connector adapter which has a shape and pin out compatible for detachably mating with a first electronic device. A second connection point is electrically coupled to a second cable having at its distal end a connector or connector adapter which has a shape and pin out compatible for detachably mating with a second electronic device. Either or both of the cables may be electrically coupled to their respective connection points via respective connectors which detachably mate with respective proximal end connectors on the cables. The power supply powers the first electronic device at the first DC voltage and the second electronic device at the second DC voltage.
Abstract:
Power supply equipment includes circuitry for converting an input voltage to first and second DC output voltages. At least one of the output voltages is programmable in response to a voltage control signal. A first output port provides the first DC output voltage to a first electronic device and a second output port provides the second DC output voltage to a second electronic device. The conversion circuitry provides power sufficient to simultaneously power the first electronic device at the first DC voltage and the second electronic device at the second DC voltage.
Abstract:
A coaxial connection assembly including a coaxial jack. The jack is positioned within a longitudinal opening of a housing. The first end of the jack extends through a first end of the housing and the second end of the jack extends through a second end of the housing. The jack may only be inserted within and removed from the housing through the first end and may be held within the opening by a catch. Rotation of the jack within the opening is prevented. The housing includes a mounting flange extending away from the longitudinal opening. The flange may be adjacent the first end of the housing, and may include an opening for receiving a fastener. Sidewalls may extend from the flange toward the second end.
Abstract:
A small form factor power supply includes a switching transformer, control circuitry and rectifier circuitry, each contained within a housing. The switching transformer has a planar core and windings which surround at least a portion of the planar core. The control circuitry includes at least one surface mounted component, to control a switching device to couple a source of DC power to a primary of the switching transformer at a switching frequency. The rectifier circuitry is coupled to a secondary of the switching transformer to provide a DC voltage. The housing contains the switching transformer, the control circuitry and the rectifier circuitry, wherein a height of the housing is not greater than 0.75 inches.
Abstract:
A wall plate assembly including a wall plate with an integrated USB module. The assembly includes a USB connector and printed circuit board formed together on the wall plate as an integral whole. By placing USB extender circuitry directly on the printed circuit board, rather than in a separate housing, the present assembly can maintain its bus-powered attributes without the bulk of a separate extender housing. A quick-connect coupling enables fast electrical connection and disconnection with a complementary quick-connect coupling on a USB wire.
Abstract:
A small form factor power supply includes a switching transformer, control circuitry and rectifier circuitry, each contained within a housing. The switching transformer has a planar core and windings which surround at least a portion of the planar core. The control circuitry includes at least one surface mounted component, to control a switching device to couple a source of DC power to a primary of the switching transformer at a switching frequency. The rectifier circuitry is coupled to a secondary of the switching transformer to provide a DC voltage. The housing contains the switching transformer, the control circuitry and the rectifier circuitry, wherein a height of the housing is not greater than 0.75 inches.
Abstract:
A coaxial connection assembly including a coaxial jack. The jack is positioned within a longitudinal opening of a housing. The first end of the jack extends through a first end of the housing and the second end of the jack extends through a second end of the housing. The jack may only be inserted within and removed from the housing through the first end and may be held within the opening by a catch. Rotation of the jack within the opening is prevented. The housing includes a mounting flange extending away from the longitudinal opening. The flange may be adjacent the first end of the housing, and may include an opening for receiving a fastener. Sidewalls may extend from the flange toward the second end.
Abstract:
A ground terminal capable of being downsized and having good electrical connectability with a chassis. The ground terminal includes a ground terminal body formed into an annular shape as viewed in plan, and at least one connection portion formed integrally with the ground terminal body, the connection portion being bendable and extending from an inner circumference of the ground terminal body toward the center of the ground terminal. When a mounting screw used to mount a printed board mounted with the ground terminal to a chassis is inserted into the annular ground terminal body and a mounting hole of the printed board, the connection portion of the ground terminal is bent in the mounting hole to be brought in contact with the chassis.
Abstract:
A wireless interconnect device for using in a computer includes embedded antennae and provides improved signal transmission and reception. The computer includes a casing, an outer lid covering the casing, and a main board located in the casing. The wireless interconnect device includes a connector and a wireless Ethernet card. The connector is a mini PCI-slot connector electrically connecting to the main board. The wireless Ethernet card includes a main body, a first antenna, a second antenna, a first signal line and a second signal line, and an electric connecting part. The electric connecting part electrically connects to the connector. The first and second signal lines respectively electrically connect the first antenna and the second antenna to the main board. The first antenna is located at a front side of the casing and the second antenna is located at a top of the outer lid.