Abstract:
A power supply shut-off apparatus 10 includes a fuse-accommodating box 14, a power supply-side bus bar 15, a load-side bus bar 16, and a plug 18 for connecting a power supply and a load through a fuse 13. A mounting portion 17 is provided with an insulation wall 11, a terminal 16a of the power supply-side bus bar 16 is located on one surface side of the insulation wall 19, and a terminal 11 of the fuse 13 is located on the other surface side of the insulation wall 19. The plug 18 is formed of a plug housing 49 and a terminal member 50 having a U-shaped cross section, the terminal member 50 is mounted astride the insulation wall 19 for electrically connecting the terminals 11, 12 of the fuse 13 to either one of terminals 15a, 16b of the power supply-side bus bar 15 and the load-side bus bar 16. The insulation wall 19 is provided with wobble-suppressing means 20 for preventing each of the terminals 11, 12 from moving from a wall surface of the insulation wall 19 and preventing each of the terminals 11, 12 from wobbling.
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 first bus bar whose one end is fixed to one fuse terminal of the fuse, a second bus bar having one end fixed to one of the power supply and the load, 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 other end of the first bus bar is extended so as to be composed as one terminal of the pair of main body side terminals, and the other end of the second bus bar is extended so as to be composed as the other terminal of the pair of main body side terminals. At least one of the first bus bar and the second bus bar is freely deflected in a direction crossing substantially perpendicularly to a fitting/detaching direction so that a distance between the pair of main body side terminals varies.
Abstract:
A packing body 11 is accommodated in a packing accommodating groove 29 provided on a seal end surface 26 in one side of a case 19. A mounting projection 12 is provided integrally on the packing body 11 and is protruded from the packing body 11. The mounting projection 12 has a hook pin hole 17, into which a hook pin 32 protruded from a rear side of the seal end surface 26 of the case 19, is inserted, and an engagement hole 18 which is closer to a tip than the hook pin hole 17 and into which a fixing assistant tool 33 for pulling the mounting projection 12 is inserted.
Abstract:
A shield wire's terminal treatment structure including a housing into which a shield wire is inserted and which is secured to a mounting portion, and a shield connection ring which is capped on the housing and through which the shield wire is extended. In the structure, a braid of the shield wire which is protruded from the housing is folded over an outer peripheral surface of the housing, and the shield connection ring is mounted on the housing with the braid thus folded pushed against the outer peripheral surface of the housing.
Abstract:
The feeder connector is designed to prevent incomplete engagement of the feeding and receiving side connectors and to facilitate connection work when charging an electric car. The feeder connector comprises a feeding side connector A on the power supply apparatus side and a receiving side connector B on the car body side. The feeding side connector A has a connector body 1, a protective case 2 and a lock lever 12. The protective case 2 consists of a main case 2A made up of a cylinder portion 3, a half-cylinder portion 4 and a trough portion 5, all formed integral, and a subcase 2B. The connector body 1 is formed integral with the cylinder portion 3 of the main case 2A through a flange 19 formed along the periphery of the body. An opening 11 is formed ranging from the cylinder portion 3 of the main case 2A to the subcase 2B. In this opening 11, a lock lever 12 for the receiving side connector B is rotatably provided.
Abstract:
In a connector device, a female connector is fixedly mounted on a first base body, and a male connector 10 is mounted on a second base body which is swingable about a rotating axis with respect to the first base body, in such a manner that the male connector is loosely fitted in a guide, being displaceable in a direction perpendicular to the rotating axis, and is kept urged towards the rotating axis by urging means. Hence, the guide member of the male connector is engaged with a guide hole of the female connector while abutting against the wall surface, on the side of the rotating shaft, of the guide hole, which makes it possible to decrease the dimension L1 of the guide hole in the direction perpendicular to the rotating axis. That is, the connector device can be miniaturized.
Abstract:
An electro-magnetically shielded connector comprises a connector body including at least two housings; an electrically conductive layer formed on a surface of one of the two housings in such a manner that the electrically conductive layer covers a surface of the one housing, and when the two housings are combined with each other, at least a part of the electrically conductive layer on an inner surface of the one housing is exposed; and main electrically connecting device for electrically connecting the electrically conductive layer of the connector body and a shield of a shielded cable to seal an inside of the connector body.
Abstract:
A low insertion-withdrawal force electric connector is disclosed wherein a pin is mounted on one side wall of a male housing; a groove into and out of which said pin is movable is provided in a hood of a female housing; a cam lever is pivotally mounted on said hood; and the cam lever has at its front end an eccentric cam groove which is engageable with the pin so as to cause said two housings to be fitted and disengaged relative to each other in response to the pivotal movement of said lever. A fitting-side acting surface of the eccentric cam groove against the pin is disposed generally perpendicular to the direction of advance of said pin when the two housings are completely fitted together.
Abstract:
To inspect the coupling condition of two matable connector housings, one of the connector housings is formed with a guide recessed portion on an upper surface thereof so as to be fittable to the lower end surface of an image tube, an aperture at the center of the guide recessed portion through which connector housing coupling condition can be seen, and at least one groove indicative of the connector model code; an image tube is lowered so that the lower end portion of the image tube is brought into contact with the guide recessed portion to take an image; the detected image is compared with reference patterns to check whether the connector housings are coupled normally; an alarm is generated if abnormal; and the total number of normally coupled connectors can be displayed for each connector model code.
Abstract:
A shield member includes a metal foil layer and a base layer which have flexibility and are sheet-like or band-like, a bonding layer which bonds the metal foil layer and the base layer, and a cylindrical portion and an overlapping portion which are made by winding and folding the metal foil layer and the base layer so that the metal foil layer is on an inside. The overlapping portion is in a state of being brought down and arranged along the cylindrical portion.