Abstract:
A wire harness for which an exterior member can be maintained in a desired shape is provided. A flexible, tubular corrugated tube (16) which covers electric wires (18) and a route keeping tape (17) which is more difficult to extend or buckle in the widthwise direction than the corrugated tube (16) are included, and the route keeping tape (17) is wound helically around a bent part (20), which is formed by bending the corrugated tube (16), along the longitudinal direction.
Abstract:
A swaging structure is provided with a tubular metal foil member made of metal foil. The swaging connection structure is the one that a ring-shaped swaging member is swaged so as to include an area of main contact with a plurality of points or plurality of lines and an area of main contact with area, and thereby to electrically and mechanically contact the tubular metal foil member and a tubular connection part. The swaging connection member is also made a connection structure arranged such that an edge of a circumferential edge part of the ring-shaped swaging member is arranged not to contact with the tubular metal foil member.
Abstract:
A wire harness having good heat-release performance as well as having simple structure and configuration and can be manufactured at low cost is provided. Also, the wire harness which can fulfill electromagnetic shield function is provided. A wire harness 21 includes a thick high-voltage electric wire 22 which electrically connects an inverter 4 and a battery 5, a tubular protection member 23 arranged outside of the high-voltage electric wire 22 so the high-voltage electric wire is passed therethrough, and a heat-transfer-and-shield member 24 made of metal. The tubular protection member 23 includes a cylindrical circular pipe 26 having good heat-release performance, two corrugated tubes 32 and two protectors 33. The heat-transfer-and-shield member 24 is one component constituting the high-voltage electric wire 22 and is arranged in indirect contact with an inner face 27 of the circular pipe 26.
Abstract:
A wiring arrangement of a wiring harness 41 at an underfloor 34 is finished by arranging a connecting member 43 to a position of a through-hole 35, by extending a sheath 48 on the underfloor 34 parallel to the underfloor 34 while the sheath 48 is received in a wire protect member 44, and by fixing a terminal fixing member 45 and the wire protecting member 44 to the underfloor 34. After such a wiring arrangement, the wiring harness 41 is electrically connected to a junction block 31 around the through-hole 35 by mounting a battery 25 or the like.
Abstract:
A grommet structure includes: braided wires (5) which are separated at an electric wire through hole (1a); an electric wire (W2) covered with the braided wire (5); an electric wire (W1) not covered with the braided wire (5); a grommet body (6) having electric wire fit press portions (9) into which the electric wires (W1) and (W2) are press fitted and a flange (10) integrally provided on the electric wire fit press portions (9); a pair of shield shell covers (7) and (8) having shield connecting portions (14) to which ends of the separated braided wires (5) are respectively connected and which sandwich the flange (10) of the grommet body (6) and which are fixed to a periphery of the electric wire through hole (1a) of a vehicle body panel (1); the grommet body (6) is provided with a water-block projection (11) which prevents water from passing and the lower shield shell cover (8) is provided with a waterproof packing (18) which prevents water from passing.
Abstract:
A power-supply breaker apparatus of the present invention includes a fuse provided between a power supply and a load in an electric circuit, an apparatus main body for housing the fuse, a pair of main body side terminals, a plug housing chamber for housing the plug in the apparatus main body movably in a fitting/detaching direction, and a pair of plug side terminals which become conductive with each other in the plug. The electric circuit is electrically conductive via the fuse, and the pair of main body side terminals are supported to the apparatus main body movably in a direction crossing substantially perpendicularly to the fitting/detaching direction, and one of the pair of the main body side terminals is connected with the power supply, and the other terminal is connected with the load. Moreover, when the plug is moved in the fitting/detaching direction, the pair of plug side terminals are freely fitted into and detached from the pair of main body side terminals.
Abstract:
A shield member is closely contacted with a first seal member 3 projecting in the axial direction of a housing, and a second seal member is closely contacted with the outside thereof. A hole at the housing side is communicated with a long hole of a shield member in the movable range of a projecting portion and an engaging portion. The housing can be conductive. The housing and the shield member can be provided integrally. The housing includes a flange portion and ring walls. The ring wall fitted in a first stage ring portion of the shield member is contacted with a hole portion, the seal member is fitted with the outside of the seal member fitted with a second stage ring portion, and a shield electric wire is connected with a third stage ring portion by a shield sleeve. The ring portions can be provided in two steps, with a large diameter portion of a first seal member fitted into a first stage ring portion, and a second seal member provided at the opening end of the hole portion. A drain hole of the housing, a stopper holder and a cushion ring are provided.
Abstract:
A connector body is attached to a conductive casing of an electrical apparatus and provided with a shield terminal to be electrically connected to the conductive casing, an attachment hole is formed in the conductive casing, an insert is formed to the connector body, a plurality of contacts are formed to the shield terminal and arranged to the insert, elastically contacting a wall of the attachment hole, as the insert is inserted in the attachment hole.
Abstract:
The inner surface of a power supply side connector is covered with a circular waterproofing packing. The circular waterproofing packing is to be engaged with a power receiving side connector in a rear half of the waterproof packing. The inner surface of the power supply side connector is also covered with a packing holder for preventing the waterproofing packing from coming off a front half thereof. The packing holder has a circular protrusion for protecting the front end of the connector housing provided at the outer periphery of a front end of the packing holder. The packing holder is made of metal or synthetic resin having shock resistance.