Abstract:
An electrical adapter (100) in accordance with the present invention includes a first connector (20), a second connector (30) and an adapting device (10) electrically interconnecting with the first and the second connectors. The adapting device includes a first printed circuit board (120) defining a number of first through holes (121), a second printed circuit board (130) defining a number of second through holes (131) in alignment with the first through holes, a number of conductive pins (110) inserting through the first and the second through holes, and a conductive shell (140) enclosing the first and the second printed circuit boards and attached to at least one of the first and the second printed circuit boards.
Abstract:
A conductive contact includes a resilient strip and a post. The resilient strip includes a fixed end configured as a sheet for securing the resilient strip, an arm configured for being resiliently deformed by pressure, and a free end. The fixed end and the free end are arranged at two opposite ends of the arm, and the resilient strip is constructed as a substantially convolute shape. The post is secured with the free end for being detachably and conductively in contact with a conductive pad.
Abstract:
In a hinge connector including a shaft member and a flexible board coupled thereto, the shaft member has a first shaft extending in a first direction and a second shaft extending from the first shaft in a second direction perpendicular to the first direction. The flexible board has first and second winding portions which are wound around the first and the second shafts, respectively.
Abstract:
An apparatus which provides the ability to charge or power multiple devices from multiple different power sources, and to communicate electronic data to and from one of the devices. The apparatus utilizes simple construction, requiring no active electronics, thereby reducing the cost of production and the reliability of the device. The apparatus employs a single USB connection cable with connectors on both ends and a second power-only cable and connector which is connected to the power wires of the USB cable and thereby is able to power a second portable device from a single USB port. USB master provide sufficient power for two average portable devices without additional circuitry. Moreover, restricting the data path to only one device also eliminates the need for USB hub circuitry. Finally, greater end user flexibility is provided by using a USB male connector as the source of the data and power connection, a USB female connector for the output of the data and power connection, and a standard barrel-type power connector for the power-only output connection. Having two different output connectors ensures that the user will not confuse the two connectors.
Abstract:
An electrical device having an enclosure in which noise is parasitically induced in a wire located in the interior of the enclosure is disclosed. The electrical device has an entry connector for mating the wire with an external connector at which a transmission line terminates for preventing the induced noise from being emitted from the device enclosure via the transmission line. The electrical device comprises a printed circuit board (PCB) adapted to be mounted adjacent to an opening in a wall of the enclosure, a receptacle, integral with the PCB, configured to mate with the external connector, a first conductive path coupling the transmission line with the wire when mated, and capacitors mounted on the printed circuit board radially disposed around the receptacle and adapted to be electrically coupled to the external connector when mated. The electrical device further comprises a second conductive path coupling the capacitors to a low potential sink.
Abstract:
An edge connector, system, printed circuit board and electronic module are described, which include an edge connector comprised of a substrate, including a first major exterior surface, a second major exterior surface, and a minor exterior surface. The edge connector further includes at least one of a first conductive contact affixed to the first major exterior surface and one of a second conductive contact affixed to the second major exterior surface. Additionally, the edge connector includes at least one third conductive contact conductively coupled to at least a portion of any internal conductive layer of the substrate and the third conductive contact is configured off-plane from the minor exterior surface.
Abstract:
A reversible receptacle for receiving a USB plug, including a first set of four electrical contact regions and a second set of four electrical contact regions, the contact regions configured such that in a first coupling orientation of the plug with the reversible receptacle, only the first set of electrical contact regions is mechanically connected with the contacts of the plug and in a second coupling orientation of the plug with the reversible receptacle, only the second set of electrical contact regions is mechanically connected with the contacts of the plug. Also provided are corresponding reversible USB appliances based upon the aforementioned reversible receptacles.
Abstract:
Embodiments for interfacing between a computer and audio/video equipment are provided. One embodiment comprises a cable that includes a docking cable having a docking connector for communicating signals to and from a computer, an output cable, the output cable having at least one audio/video connector, and an interface module. The interface module is coupled to the docking cable and the output cable. The interface module includes at least one infrared receiver for receiving input to be transmitted to the computer over the docking cable. The interface module provides a path for communicating signals from the docking cable to the at least one audio/video connector. Other embodiments comprise media cables, docking stations and cable management devices that enable interfacing between a computer and audio/video equipment.
Abstract:
A Serial Advanced Technology Attachment (SATA) connector comprising a SATA plug, a power connector and a main body which has a slot defined in a front surface thereof, the slot having another SATA plug and a power plug therein, the SATA plugs are connected with a signal wire, and the power plug of the slot and the power connector are connected with a power wire. It is simple and economical to use the SATA connector for connecting a computer with a SATA data storage device.
Abstract:
A LAN connector is connected with a LAN cable connector inserted thereinto. The LAN connector comprises a flexible portion formed outside a modem-cable-connector occupied space within a housing having a size accommodating the LAN cable connector being inserted thereinto, and a stopper portion formed within the modem-cable-connector occupied space. The stopper portion is displaceable together with the flexible portion. When the modem cable connector is inserted into the housing, the flexible portion is not pushed and bent by the modem cable connector, and the stopper portion stops the modem cable connector. When the LAN cable connector is inserted into the housing, the flexible portion is pushed and bent by the LAN cable connector so as to cause the stopper portion to be withdrawn out of the modem-cable-connector occupied space.