Abstract:
A fast change electric transformer connector is disclosed, which includes a cable connector having a cable attachment section, a connector extension connected to the cable attachment section, and a stud slide adaptor connected to a side of the connector extension for slidably attaching the cable connector to a transformer stud; and a stud screw adaptor complimentary to a transformer stud. The cable attachment section includes a cable receiving body having multiple receiving slots for receiving cables; and multiple removable sliding cable fastening blocks disposed within the receiving slots for fastening the cables. Each sliding cable fastening block can be slid in or out from the receiving slot for conveniently installing a large cable. Also disclosed are a transformer connector and a transformer adaptor, which have an adaptor extension for connecting between the transformer stud and the cable connection portion of the connector/adaptor, for use when shorted cables are cut.
Abstract:
An object is to provide a compact AC adaptor integral-type household-power-line coupler capable of simplifying a structural arrangement of an apparatus containing a communication terminal, and also capable of improving a handling characteristic and an outer appearance thereof. The AC adaptor integral-type household-power-line coupler is arranged by employing a household-power-line power converting/supplying unit 7 connected to a plug unit 4, for supplying electric power to a communication terminal, the plug unit being employed to be coupled to a household-power-line plug socket; a household-power-line carrier signal coupling unit 8 for inputting/outputting a signal via the plug unit 4 to the communication terminal; and a casing unit 6 containing thereinto both the household-power-line power converting/supplying unit 7 and the household-power-line carrier signal coupling unit 8.
Abstract:
A fast change electric transformer connector is disclosed, which includes a cable connector having a cable attachment body with a plurality of cable attachment ports, a connector extension connected to the cable attachment body, and a stud slide adaptor connected to a side of the connector extension; and a stud screw adaptor complimentary to a transformer stud, for connecting the transformer stud and the stud slide adaptor of the cable connector. Further disclosed is a transformer adaptor, which includes an inter-connector having a screw threaded end for connecting to a cable connector, and a stud slide adaptor for adapting to a transformer stud; and a stud screw adaptor for connecting the transformer stud and the stud slide adaptor of the inter-connector. Using the transformer connector or adaptor of the present invention, a transformer can be replaced rapidly without disconnecting cables.
Abstract:
A slip-fit electrical connector compatible with different size threaded transformer studs includes a body having a plurality of transverse conductor receiving passageways, and intersecting conductor fastener receiving passageways. The body also has a multi-size transformer stud receiving passageway extending longitudinally inwardly from an end thereof, and at least one stud fastener receiving passageway intersecting the multi-size transformer stud receiving passageway. The multi-size transformer stud receiving passageway may be defined by an arcuate bottom, and a plurality of successively larger threaded stud landings with a lowermost threaded stud landing being bifurcated by the arcuate bottom. Each successive threaded stud landing may be bifurcated by a prior threaded stud landing. The threaded stud landings are for different size threaded transformer studs to conveniently and reliably fasten the transformer stud and connector together.
Abstract:
Magnetic circuits for communicating data in a tractor and trailer combination. In a preferred embodiment, a connector for interfacing electrical signals between a tractor and trailer which will be connected together such that the tractor pulls the trailer comprises a receptacle interfaced between the tractor/trailer for housing first electrical interface members that carry electrical signals output from the tractor to the trailer and receiving electrical signals output from the trailer to the tractor, a plug connectable to the receptacle for housing second interface members that carry electrical signals output from the trailer to the tractor, and receiving electrical signals output from the tractor to the trailer, a first coil in the receptacle for communicating data from data-producing devices in the tractor to data-receiving devices in the trailer, and for receiving data from the data-producing devices in the trailer, and a second coil in the plug for receiving the data. The magnetic circuits described herein provide efficient and clean electrical signals for digital data communications in a tractor trailer combination. Furthermore, these devices are simple and economical to produce, and are adaptable for the standard J560 connector which already exists in the trucking industry to interface power between the tractor and the trailer.
Abstract:
A terminal element, a motor winding structure and a manufacturing method are disclosed. The terminal element includes a fixing portion, a positioning portion and a buffering portion. The fixing portion is disposed at one end of the terminal element and has a serrate fixing pattern. The fixing portion is connected with a connecting position of the motor winding bobbin. The positioning portion is disposed adjacent to the fixing portion and urged against the motor winding structure for positioning the fixing portion while it is connected with the connecting position. The buffering portion has a first bending and a second bending, and the first bending is connected to positioning portion. The buffering portion absorbs the force applied to the terminal element.
Abstract:
A terminal element, a motor winding structure and a manufacturing method are disclosed. The terminal element includes a fixing portion, a positioning portion and a buffering portion. The fixing portion is disposed at one end of the terminal element and has a serrate fixing pattern. The fixing portion is connected with a connecting position of the motor winding bobbin. The positioning portion is disposed adjacent to the fixing portion and urged against the motor winding structure for positioning the fixing portion while it is connected with the connecting position. The buffering portion has a first bending and a second bending, and the first bending is connected to positioning portion. The buffering portion absorbs the force applied to the terminal element.
Abstract:
To prevent an exposed conductor portion from breaking and to maintain connection state between lead wires and a wiring board even when a load is added to the lead wires under the condition that the lead wires for a coil device is connected to and retained on the wiring board. In a structure for drawing out lead wires from a coil device according to the present invention, for drawing a lead wire from a terminal pin of a coil device 65 having a coil 62 and a plurality of terminal pins to which ends of the coil are connected, an end of the lead wire 2 is connected to a connector 1, the connector is connected at a side face thereof to a wiring board 67 for relay, and the wiring board is connected to the terminal pin. A connection terminal of the connector is connected to the wiring board in a direction perpendicular to a direction that the lead wire extends. In another case, after an end of the lead wire is connected a crimp terminal 3, the crimp terminal is connected at a side face thereof to a wiring board for relay, and thereafter the wiring board is connected to the terminal pin.
Abstract:
The invention concerns mains units for voltage conversion for electronic terminal devices. The invention concerns in particular a plug-in socket for coupling to corresponding standard plugs and for connecting an electrical terminal device to a voltage supply. The invention also concerns means for voltage conversion for a plug-in socket. The object of the invention is to improve the use of mains units with voltage conversion means, in comparison with the state of the art. The object is attained by a plug-in socket for coupling to corresponding standard plugs and for connection of an electrical terminal device to a primary voltage, comprising a socket housing, first electrical contact device arranged in the socket housing for coupling to corresponding electrical contact device of the standard plugs, a device integrated in the socket housing for voltage conversion of a primary voltage into at least one secondary voltage for the electrical terminal device, second electrical contact device arranged on the socket housing for electrical contacting of the secondary voltage and wherein the voltage conversion device are integrated in the socket housing so that the external dimensions of the socket housing are substantially predetermined by the dimensions of the corresponding standard plug. The object is further attained by voltage conversion device for a plug-in socket as set forth above comprising a closed one-part structural form. The object is still further attained by an electrical terminal device comprising a plug-in socket as set forth above.
Abstract:
In an antenna coil device 100, a coil portion 12 having a lead wire 2 wound around a magnetic core 1 is mounted on a case 3 made of plastic resin, and on one side of the case 3, terminal boards 4 and 5 that electrically connect one end and the other end of the lead wire 2 of the coil portion 12 to an external device are placed in a protruding manner. A latch recess 4D is formed in an inserting end portion 4C of the terminal board 4 to form a tip portion into split shape sites 4E and 4F. A tapered portion 7 is formed on the outside of the split shape sites 4E and 4F, and an end portion of the tapered portion 7 joins an engagement portion 8 that is formed in a protruding manner in the lateral direction of the inserting end portion 4C.