Abstract:
A distribution unit has a power circuit section including a plurality of bus bars with electronic parts mounted on at least some of the bus bars. Ends of specific bus bars are projected from a main body section of the power circuit section in a adjacent manner to form fuse connection terminals. Each of the fuse connection terminals has a tip placement part to place a fuse terminal. An insulating case made of an insulating material for covering the power circuit section is opened in the projection direction of the fuse connection terminals to enable the fuse terminal to be placed in the tip placement part of the fuse connection terminal from the outside of the insulating case. The insulating case has a short-circuit prevention section intervening between the fuse connection terminals for preventing a short circuit between the fuse connection terminals.
Abstract:
A common insulating plate 16 is prepared such that a plurality of paired upper and lower electric wire fitting grooves 16b and 16d are formed straight in the insulating plate 16 at a constant pitch P1 in the transverse direction, and such that a plurality of press-fitting slits 16e are formed in the individual electric wire fitting grooves 16a and 16c at a constant pitch P2 in the longitudinal direction; compression relay terminals 17 are press-fitted in suitable positions of the individual press-fitting slits 16e: and the electric wires 15 are individually fitted in the paired upper and lower electric wire fitting grooves 16b and 16d having the compression relay terminals 17 press-fitted therein, so that the upper and lower electric wires 15 are individually compressed and connected in the upper and lower compression blades 17a and 17b of the compression relay terminals 17 so that the upper and lower electric wires 15 of the insulating plate 16 can be electrically connected.
Abstract:
A terminal is mounted on an electric wiring board that has both a wire circuit formed by a wire and a printed circuit formed by a printed conductor. The terminal includes a connecting portion capable of electrically connecting an internal circuit of the electric wiring board to an external circuit, a lead portion capable of being electrically connected to the printed circuit of the electric wiring board, and a press-fitting portion capable of being electrically connected to the wire circuit. The electric wiring board may be mounted in an electric junction box. A load supporting member may be provided which transfer a load acting on the terminal from a connector of the external circuit to the housing. The load supporting member may include an engaging portion provided at an end surface of a wiring circuit board, and a retaining portion provided on a side wall of the housing.
Abstract:
Instead of a relay block which is present in bus bar circuits in a conventional electric junction box, semiconductor switching devices 14 are provided, and a power distributing unit PD which is independent of a bus bar circuit unit JB is structured by concentrating these semiconductor switching devices 14, output terminals 12 of this power distributing unit PD being connected to appropriate bus bars 32 of the bus bar circuit unit JB. The power distributing unit PD and the bus bar circuit unit JB are incorporated in a common housing 40.
Abstract:
A circuit-constituting unit forming a distribution circuit or the like in a vehicle. The circuit-constituting unit includes a plurality of bus bars for constituting a power circuit; a semiconductor switching device provided in the power circuit; and a control circuit board. The bus bars are bonded to a surface of the control circuit board such that the bus bars are arranged to be generally coplanar with each other. The semiconductor switching device is mounted on both of the corresponding bus bars and the control circuit board. An opening may be formed through the control circuit board. In this case, one of terminals of the semiconductor switching device may be connected to a surface of the control circuit board facing away from the surface to which the bus bars are bonded. The other terminals may be connected respectively to the bus bar through the opening.
Abstract:
In the power distributor using a semiconductor switching element, input terminals 10I and 10L, output terminals 12A-12J, connected to the element, and more preferably, the board terminals 30 and 32, are structured by a metallic plate, and arranged on the same plane perpendicular to the plate thickness. The metallic plate can be integrated by the resin mold, thereby the structure can be greatly simplified. The metallic plate can be produced by a greatly simple method by which, after the punching out of the metallic plate and the molding of the resin mold, a predetermined portion of the metallic plate is cut and the semiconductor switching element is mounted, and it can contribute to also the reduction of the cost.
Abstract:
A MOSFET 150 composed of a bare tip is surface mounted on a bus bar 141 disposed on the surface of an insulated plate 140, and the MOSFET 150 is circuit connected to a bus bar substrate 14 or to a printed circuit board 145 disposed integrally on the bus bar substrate 14 through a wire 151. In the bus bar 141, there is disposed a heat radiating member 155 which is used to radiate heat generated from the MOSFET 150 into an external space.
Abstract:
Bus bars 16(A to D) and 17(A to C) on the two faces of an insulating plate 15 can be electrically connected by arranging the longitudinal bus bars 17(A to C) on one face of the insulating plate 15 and the transverse bus bars 16(A to D) on the other face of the insulating plate 15, by fitting recesses 16a to 16d of the bus bars 16(A to D) of at least the one face at the suitable positions of the intersecting portions of the bus bars 16(A to D) and 17(A to C) of the two faces in through holes 15a of the insulating plate 15 to bring the recesses 16a to 16d into contact with the bus bars 17(A to C) of the face, as confronted thereby, and to weld them 16a to 16d to the same bus bars 17(A to C).
Abstract:
An electrical connection box is to be attached to an attachment objective member. The electrical connection box includes: a circuit housing that accommodates a circuit substrate; a fuse box that detachably accommodates a fuse element, the fuse box being provided at an upper portion of the circuit housing in a state where the electrical connection box being attached to the attachment objective member; a plurality of bus bars that connect the circuit substrate and the fuse element; and a water-discharge channel that discharges water flowed into the fuse box to outside of the electrical connection box, the water-discharge channel being provided at a lower part of the bus bars in a state where the electrical connection box is attached to the attachment objective member, and at a position between the circuit housing and the fuse box.
Abstract:
An electrical connection box includes a case, a connector, a terminal fitting, a cover, and a restricting member. The case has an opening and houses a circuit forming board including a conductive path. The connector is mounted on the circuit forming board to face an outside from an opening end side of the case. The connector has a fitting surface which faces a board surface of the circuit forming board. The terminal fitting is attached to the connector. The terminal fitting is connected to the conductive path of the circuit forming board by soldering. The cover is attached to the opening of the case. The restricting member is provided with the cover and the connector. The restricting member can restrict a displacement of the connector in a direction where the connector is engaged with an opposing connector.