Abstract:
The wiring-harness routing device 1 includes two wiring harness 10, a support body 3 mounted slidably at a rail 2 and supporting a seat, and a protector 4 sliding interlockingly with the support body 3 and leading the two wiring harnesses 10 to the seat. The protector 4 includes a pair of wiring-harness hold portion 43 holding the two wiring harnesses 10 led through an opening 20 into the rail 2 to be arranged in parallel; a lead portion arranged between the pair of wiring-harness hold portions 43, and passing the two wiring harnesses 10 therethrough, and extending with a cylindrical shape so as to go through the slit and be led to an outside of the rail 2; and a mount portion 68 attached at the support body 3 so as to have a gap allowing motion in the widthwise direction of the rail 2.
Abstract:
This object aims to provide a wire cabling device which a case can be shared among a plurality of devices for cabling electric wires to a plurality of sliders provided on the right and left sides of an automobile. A wire cabling device (1) comprises electric wires (50) for connecting an electronic apparatus mounted onto the floor (2) of an automobile with an electronic apparatus mounted to a seat (3), a case (5) for housing the intermediate portions of the wires (50), a slider capable of moving in linkage with the seat (3) on a rail installed in the case (5) while holding the wires (50), and a regulation member (90) which is provided in the case (5) and regulates the cabling route of the wires (50) in the case (5) by defining the case (5). The case (5) is so formed as to have a predetermined tubular cross-section along the sliding direction of the seat (3) by roll-molding, and the regulation member (90) is formed independently from the case (5).
Abstract:
An electrical wire routing device for routing an electric wire between a floor in an automobile and a seat includes a case following parallel to a support rail to which a support body supporting the seat is slidably attached. The case includes a tubular movement section attaching the electric wire thereto, guiding the electric wire to the seat, to which a slider sliding in association with the movement of the seat is slidably attached, and a housing section accommodating the extra length of the electric wire. The movement section and the housing section are provided as separated parts and placed parallel to each other. The extra length of the electric wire extracted from one end portion of the movement section and drawn into the housing section is accommodated in the housing section with the electric wire bent in a U-shape. The electric wire is accommodated in the corrugated tube.
Abstract:
The wiring-harness routing device 1 includes two wiring harness 10, a support body 3 mounted slidably at a rail 2 and supporting a seat, and a protector 4 sliding interlockingly with the support body 3 and leading the two wiring harnesses 10 to the seat. The protector 4 includes a pair of wiring-harness hold portion 43 holding the two wiring harnesses 10 led through an opening 20 into the rail 2 to be arranged in parallel; portion arranged between the pair of wiring-harness hold portions 43, and passing the two wiring harnesses 10 therethrough, and extending with a cylindrical shape so as to go through the slit and be led to an outside of the rail 2; and a mount portion 68 attached at the support body 3 so as to have a gap allowing motion in the widthwise direction of the rail 2.
Abstract:
A wiring harness guiding apparatus guides a wiring harness 4 between a floor of a car and a seat arranged slidably at the floor, and includes a support body 7A supporting the seat; a protector 8A guiding the airing harness 4 toward the seat; a rail arranging the support body 7A and the protector 8A slidably therein; and an excess portion receiving section receiving a excess portion of the wiring harness 4. The protector 8A includes a wiring harness fixing member 80 fixing the wiring harness 4 led into the rail; a lead-out member 83 extending with a pipe shape from the wiring harness fixing member 80 and leading the wiring harness 4 therethrough toward the slide body; and a support body mount member 87 arranged at a mounted member of the support body so as to be movable along a widthwise direction of the rail by having a clearance.
Abstract:
A wiring harness guiding apparatus guides a wiring harness 4 between a floor of a car and a seat arranged slidably at the floor, and includes a support body 7A supporting the seat; a protector 8A guiding the airing harness 4 toward the seat; a rail arranging the support body 7A and the protector 8A slidably therein; and an excess portion receiving section receiving a excess portion of the wiring harness 4. The protector 8A includes a wiring harness fixing member 80 fixing the wiring harness 4 led into the rail; a lead-out member 83 extending with a pipe shape from the wiring harness fixing member 80 and leading the wiring harness 4 therethrough toward the slide body; and a support body mount member 87 arranged at a mounted member of the support body so as to be movable along a widthwise direction of the rail by having a clearance.
Abstract:
An electrical wire routing device for routing an electric wire between a floor in an automobile and a seat includes a case following parallel to a support rail to which a support body supporting the seat is slidably attached. The case includes a tubelar movement section attaching the electric wire thereto, guiding the electric wire to the seat, to which a slider sliding in association with the movement of the seat is slidably attached, and a housing section accommodating the extra length of the electric wire. The movement section and the housing section are provided as separated parts and placed parallel to each other. The extra length of the electric wire extracted from one end portion of the movement section and drawn into the housing section is accommodated in the housing section with the electric wire bent in a U-shape. The electric wire is accommodated in the corrugated tube.
Abstract:
This object aims to provide a wire cabling device which a case can be shared among a plurality of devices for cabling electric wires to a plurality of sliders provided on the right and left sides of an automobile. A wire cabling device (1) comprises electric wires (50) for connecting an electronic apparatus mounted onto the floor (2) of an automobile with an electronic apparatus mounted to a seat (3), a case (5) for housing the intermediate portions of the wires (50), a slider capable of moving in linkage with the seat (3) on a rail installed in the case (5) while holding the wires (50), and a regulation member (90) which is provided in the case (5) and regulates the cabling route of the wires (50) in the case (5) by defining the case (5). The case (5) is so formed as to have a predetermined tubular cross-section along the sliding direction of the seat (3) by roll-molding, and the regulation member (90) is formed independently from the case (5).
Abstract:
An image forming apparatus includes a photoconductor, an optical scanner, a development device, a movable density sensor, a density sensor driver, and a processor. The optical scanner includes a light source to emit light, and irradiates a surface of the photoconductor in a main scanning direction with the light to form a latent image on the surface of the photoconductor. The development device develops the latent image into a toner image. The density sensor detects unevenness in density of the toner image in the main scanning direction. The density sensor driver moves the density sensor in the main scanning direction. The processor corrects a driving signal for the light source according to image data to reduce the unevenness in density in the main scanning direction, according to positional data of the density sensor in the main scanning direction and an output value of the density sensor.
Abstract:
An image forming apparatus includes an image bearer; a toner image forming device; a transfer rotator; a transfer device; a rotation position detector; an image density detector; a density data acquisition unit to causes the toner image forming device to form an adjustment toner image equal to or greater in length than a circumferential length of the image bearer, cause a linear velocity difference between the image bearer and the transfer rotator in transfer of the adjustment toner image, and acquires, from a detected image density of the toner image transferred from the image bearer, detected by the image density detector, image density unevenness data with reference to detection of a reference rotation position of one of the image bearer and a rotator; and a correction unit to adjust an image forming condition according to the reference rotation position, the image density unevenness data, and the linear velocity difference.