Abstract:
A deflection device for a motor vehicle window lift comprises a deflection element for deflecting a traction means pertaining to said window lift and spring means for tightening the traction means. The deflection element is moveably mounted on a receiving element and can be placed in a plurality of different positions on the receiving element by the spring means arranged on the receiving element. The receiving element, deflection element and spring means are fixable to the window lift in the form of a pre-mounted module.
Abstract:
A window lifter includes a window connecting element, a cable drive motor element offset from the path of travel of the window connecting element, a first and a second cable return which are superposed and arranged at one end of the path of travel of the window connecting element, and a third cable return arranged at another end of the path of travel of the window connecting element. A cable is secured to the window connecting element. The window lifter has, in particular, increased compactness.
Abstract:
A device for adjusting a window pane displaced by a double stranded cable window lifter comprises two cable turning devices arranged at the front and rear, relative to the driving direction of the vehicle along the adjusting direction of the window pane, and a cable, driven by the drive unit, which runs between the cable turning devices along the adjusting direction of the window pane in the two crossed bowden cables. Said cables are at least partly arranged in bowden sheaths, the length of which can be adjusted relative and opposed to each other by means of an adjustment device for altering the lengths of the bowden sheaths, which is arranged in the crossing region of the crossing bowden cables. The length of the bowden sheaths on the drive side bowden cable are changed inversely to the length of the bowden sheath on the non-driven bowden cable.
Abstract:
A drive arrangement (10) for a shaft (12), such as a shaft for driving a sectional door, roller shutter or the like, is in the form of a module, carried, in use, by the shaft (12) and including a motor (14), a driven wheel (16) fixed for rotation with the shaft (12) and drivable, in use, by the motor (14), and clutch means (18) and operable between the motor (14) and the wheel (16). The module further includes brace means (20) in the form of a limb attachable to a member which is fixed relative to the axis of the shaft (12), to brace the module against turning as the shaft (12) is driven.
Abstract:
A door glass raising and falling apparatus has a carrier plate 71 mounted onto a door glass 70. The door glass 70 is movable along sashes 41, 42 disposed on a door. The carrier plate 71 includes securing portions that are fixed to moving portions 67a, 67b of a wire-rope body 67. The carrier plate 71 also has a glass support portion 74 for supporting the door glass 70, and a pair of front and rear glass fixing portions 77, 78 each including a screw member 75. The door glass 70 has mounting holes supported by the glass fixing portions 77, 78, respectively. The dimension of the mounting holes is larger than the outside diameter of the shaft portion of each of the screw members 75 so that the door glass 70 is moveable with respect to the carrier plate 71. Also, a wire-rope body 150 extends over a plurality of pulleys. Some of the pulleys 142, 143 are rotatably mounted on frame members 136, 137 by pulley shafts 182 respectively. Rubber stoppers 184 are mounted on the pulley shafts 182, to limit the falling distance of the glass rising and falling body 162.
Abstract:
A four bar link is provided between a walled cargo area of a truck and a rigid rear cargo door. The effective length of the lower link of the four bar linkage is longer than that of the upper link such that the motion of the door is generally up and over the top of the truck body. An eccentric cam is joined to the upper link with a tensioned spring extending around the cam such that the spring slackens as the door opens. The cam is configured so that, as the door is opened, the spring slackens more slowly initially then more quickly. This allows the door to be moved initially mostly outwardly before moving significantly upwardly and still be effectively counterbalanced throughout its motion.
Abstract:
A powered sliding-door system of an automobile with a sliding-door drive device A and an automatic door closer B. The sliding-door drive device A has a box-like case body 1 opening downward, a case cover 2 covering the opening of the case body 1. A pair of guide pulleys are rotatably supported by axes, and each axis stands on the front end and the rear end of the case in slanting posture. A loop of cable is arranged between the pair of guide pulleys so that a working side is arranged outside of the case body and a return side is arranged in the case body. The loop of cable is driven by an motor driven actuator 12.
Abstract:
A tension apparatus of a vehicle door powered sliding device comprises a motor fixed to a base plate, a wire drum mounted to the base plate by a first shaft and rotated by the motor, a wire cable provided between a vehicle sliding door and the wire drum for pulling the sliding door forward or rearward when the wire drum rotates, first and second tension arms rotatably mounted on the first shaft and having tension rollers which makes contact with the wire cable, an intermediate lever rotatably mounted on the first shaft, an adjusting member for fixing the first tension arm and the intermediate lever so that an angle of the first tension arm and the intermediate lever can be adjusted, a tension spring provided between the intermediate lever and the second tension arm.
Abstract:
A window regulator employs a drive cable to regulate opening and closing of a window in a vehicle. The drive cable is attached to a glider which is attached to the window, and extends around a first and second guide means and a drive drum. Rotation of the drive drum causes movement of the cable which in turn causes movement of the window. One of the guide means is slidably mounted and coupled to a spring which causes the guide means to apply tension to the drive cable. The spring is positioned along substantially the same axis along which the slidably mounted guide means may travel.
Abstract:
A base member and a fascia are assembled to form a hollow door section which is filled with insulative material. Adjacent sections are coupled along respective longitudinal edges for angular and spatial displacement. The base member is extended from a selected plastic with male and female coupling components extending continuously along respective longitudinal edges. A plurality of mounting members projecting from the lateral edges of the sections matingly and slidably engage the semi-cylindrical guide surface of a tract for reciprocal vertical movement of the door. The door may be partially raised for spatial displacement of the sections whereby flow-through ventilation openings are exposed. In a specific embodiment, a flexible drive screw is rotatably carried within the track for powered operation of the door.