Abstract:
A control unit for controlling an electromotive drive unit has a housing (16), which can be connected to the drive unit by a mechanical interface device, and a plug-in device (17) provided on the housing, for plugging in a cable (20) that is guided to the hosing from the outside, wherein contact pins (6) of the plug-in device are arranged in at least one slot (18) of the plug-in device (17) and are electrically connected to conductor tracks of a circuit board (8), which is arranged on the inside of the housing.- The at least one slot (18) is arranged on the side (7) of the housing (16) facing away from the drive unit and is formed by a connector collar (5), which is configured as one piece with the housing (16) and made of the same polymer material.
Abstract:
A floor spring includes a housing for receiving a closing mechanism having a closing shaft. The closing shaft can support a door, and the housing has a region surrounding the closing shaft. The floor spring further includes a cover component for covering the region surrounding the closing shaft. The cover component has an essentially U-shaped base unit, and an insert which is insertable into the base unit.
Abstract:
A sliding door includes a frame comprising an elongated header member having a topwall, a backwall, an intermediate wall and a bottom wall. The bottom wall and intermediate wall are engageable with sliding door panel support rollers and the bottom wall and intermediate wall are interconnected by a separate support member to distribute door panel loads between such walls. A movable cover is attached to the header by a hinge part including spaced apart flanges and projections co-operable with projections on the header to support the cover in open and closed positions. The door operator is supported in the header by a single angle-shaped frame member supporting a power supply, a controller and a door operator motor. An adjustable torsion bar assembly supports the door panel against sagging.
Abstract:
Rotary drive, particularly for vehicle doors, in which the piston motion of a piston-power cylinder-unit 5 is converted into a rotary motion by means of roller pairs 14 which engage into oblique slots 10, 11. The oblique slots are provided in cylinders 4, 6 arranged coaxially inside each other and one of the cylinders is connected to the power output shaft 7. The slots exhibit an axial direction at their ends. Herein the cover 2 of a pot-shaped housing 1, through which cover the power output shaft 7 passes, exhibits a collar 15 projecting outwards and embracing the power output shaft. The power output shaft 7 is provided with a cup-type seal 17 seated firmly upon it, whose surface contour 18 overlaps outwardly the collar 15 and which with its edge 19 rests tightly at the cover 2. The cover is provided with an axially oriented groove 20 on its side facing away from the collar, into which groove the edge of the pot-shaped housing 1 is tightly fitted.
Abstract:
A device for driving a rope-like power transmission member for a window lifting mechanism, such as in a motor vehicle, includes a casing with a worm rotatably supported within the casing, a worm gear in the casing and in engagement with the worm and an electric motor driving the worm. A rope drum is positioned within the casing and a coupling part interconnects the drum and the worm gear. The casing has an opening for moving the rope out of the casing. A sealing plate is located between the worm gear and the coupling part and divides the interior of the casing into a first partial space containing the worm and worm gear and a second partial space containing the drum and the coupling part. The sealing plate is arranged in form-locking engagement with the worm gear and it has an annular area facing toward the drum which is in contact with an annular area on the inner surface of the casing.
Abstract:
An improved cement case for effecting the floor mounting of a door control unit, such as a door closer or door check, for controlling a swinging door. The case is made of impact resistant plastic material and supports metal anchors which, with the case, are embedded in cement. The door control unit which is disposed in the case is directly connectable with the metal anchors.
Abstract:
Universal rotary actuators (URAs) and door assemblies having the URAs are disclosed. In some embodiments, the URA includes a motor, a worm gear driven by the motor, a worm wheel having teeth that mesh with threads of the worm gear, a pinion gear attached to the worm wheel, drive gear rotatably connected to the pinion gear, an output shaft attached to the drive gear, and a controller assembly disposed between the drive gear and the motor, the controller selectively controlling direction and speed of the motor. In some embodiments, the URA additionally includes a quick release assembly that moves the pinion gear between an engaged position in which the pinion gear is rotatably connected to the drive gear and a disengaged position in which the pinion gear is not rotatably connected to the drive gear.
Abstract:
The present disclosure provides a lid lock for a refueling or charging port having: a lifting shaft; a worm wheel; and a worm shaft. The worm wheel and the worm shaft are configured such that the worm shaft rotates in a first direction to drive the worm wheel to rotate, thereby driving the lifting shaft to perform a descending movement in an axial direction of the lifting shaft and then perform a rotational movement to expose a refueling or charging port for supplying fuel or electricity. In some examples, the worm shaft rotates in a second direction to drive the worm wheel to rotate, thereby driving the lifting shaft to perform a rotational movement and then perform an ascending movement in the axial direction of the lifting shaft to close the refueling or charging port. The present disclosure provides an internally retractable lid lock for a refueling or charging port. An internal space between an outer sheet metal of a vehicle and a refueling and charging port is fully utilized, so that a lid can be opened in the internal space, which not only is not limited by an external environment, but also reduces the possibility of damaging parts.
Abstract:
An electronic lock includes a housing, and a locking system within the housing. The locking system includes electronics and a lock. More particularly, the housing contains therein, a controller and at least one electronic input device electrically coupled to the controller, where the controller causes the lock to transition between a locked position to an unlocked position responsive to input from the electronic input device.
Abstract:
The present invention relates generally to the field of cabinet locks. More specifically, the present invention relates to a cabinet lock device primarily comprised of a pendulum housing, a latch housing, a catch housing release, and a door plate that can be attached to a rear door surface of a cabinet door. The door plate further receives the catch housing release. The pendulum and latch housing is further comprised of a latch and a pendulum wherein the pendulum activates a series of internal mechanisms within the pendulum and latch housing when movement of the cabinet is detected, which ultimately releases the latch into the catch housing release such that the cabinet door automatically locks in an automatic fashion. The catch housing release is further comprised of a release lever that can be used to unlock the cabinet from the outside after the device has been locked.