Abstract:
An assembly for adjusting an adjustment element relative to a stationary portion of a vehicle, in particular of a vehicle door relative to a vehicle body comprises a drive motor for electromotively adjusting the adjustment element and an electrically actuatable locking device for locking the adjustment element with the stationary portion of the vehicle in a closed position, wherein the locking device has a locked condition in which the locking device is locked relative to the stationary portion for blocking the adjustment element in the closed position, and an unlocked condition in which the locking device is unlocked for adjusting the adjustment element relative to the stationary portion. A control device serves for controlling the drive motor and the locking device. It is provided that the control device is formed to actuate the drive motor for executing a diagnostic routine, while the locking device is in the locked condition.
Abstract:
An actuator for opening and closing a hinged device is provided. In particular, the actuator is a power tailgate actuator. The actuator comprises a motor with a rotor, and an output shaft that rotates on an axis which is substantially parallel to the axis on which lies the rotor of the motor. The actuator has a rotary position sensor such as a rotary potentiometer which positively identifies the position of the tailgate. The tailgate also comprises a clutch which can engage and disengage depending on the mode of operation.
Abstract:
An actuator for opening and closing a hinged device is provided. In particular, the actuator is a power tailgate actuator. The actuator comprises a motor with a rotor, and an output shaft that rotates on an axis which is substantially parallel to the axis on which lies the rotor of the motor. The actuator has a rotary position sensor such as a rotary potentiometer which positively identifies the position of the tailgate. The tailgate also comprises a clutch which can engage and disengage depending on the mode of operation.
Abstract:
The tailgate drive includes a motor assembly in operable communication with a pickup tailgate that is adjustable between a manual mode of operation and an automatic mode of operation, where the motor assembly permits free rotation of the tailgate between the open and closed positions during manual mode of operation and wherein the motor assembly drives the tailgate body between the open and closed position during the automatic mode of operation.
Abstract:
An electromechanical strut and method of moving a closure member of a vehicle between an open position and a closed position is provided. The electromechanical strut includes a power drive unit including a motor, a leadscrew, a planetary gearset operably connecting the motor to the leadscrew, and an electromechanical brake assembly. The electromechanical strut further includes a telescoping unit including an extensible tube and a drive nut for converting rotary motion of the leadscrew into linear motion of the telescoping unit. The electromechanical brake assembly is selectively moveable between an engaged state, wherein the leadscrew is prevented from rotating to prevent relative axial movement between the power drive unit and the telescoping unit, and a disengaged state, wherein the leadscrew is permitted to rotate to allow relative axial movement between the power drive unit and the telescoping unit.
Abstract:
A clutch switching device for electric rolling doors contains: a housing, a rotating plate, and a shifting bar. The rotating plate is provided in the housing for connecting with the clutch pulling cord. The shifting bar is coupled with the rotating plate and is pulled to drive the rotating plate to move toward a manual mode position or an automatic mode position. The rotating plate has a wrenching portion for matching with a wrench tool so as to wrench the rotating plate. The housing includes a movable fixing element, the rotating plate has a first positioning aperture and a second positioning aperture, such that when the rotating plate is located at a manual mode position, the first positioning aperture aligns and retains with the movable fixing element; when the rotating plate is located at the automatic mode position, the second positioning aperture aligns and retains with the movable fixing element.
Abstract:
An electromechanical strut is provided for moving a pivotal closure member between an open position and a closed position relative to a motor vehicle body. The electromechanical strut includes a housing connected to one of the closure member and the motor vehicle body. An extensible shaft is connected to the other of the closure member and the motor vehicle body for slidable movement relative to the housing. A motor-gear assembly operably drives a rotatable power screw. A drive mechanism converts rotary motion of the power screw into linear motion of the extensible shaft to move the extensible shaft between a retracted position corresponding to the closed position of the closure member and an extended position corresponding to the open position of the closure member. A clutch/coupling assembly is operably disposed between the motor-gear assembly and the power screw and integrates a slip clutch device and a flexible coupling into a common unit.
Abstract:
The invention relates to a clutch assembly (8) for providing selective engagement with a rotatable shaft, in particular for selecting between manual and powered driving of an output drive such as a door, shutter or gate. The clutch assembly (8) comprises a stop (16) arranged to rotate with the shaft (18), a cam (20) arranged to move relative to the shaft (18), and a follower (24) arranged to rotate around the shaft (18) and axially movable along the shaft in and out of engagement with the stop (16). The follower (24) is operatively associated with the cam (20) so that movement of the follower relative to the cam brings the follower into engagement with the stop (16) by axial movement, so causing rotation of the shaft (18).
Abstract:
An ejection device for a movable furniture component disposed in or against a furniture body includes an electric motor, a lever having a free end for ejecting the movable furniture component, and a gear mechanism for transmitting force from the electric motor to the lever. The gear mechanism has a slipping clutch which includes a spring washer and driving dogs. The spring washer extends upon overload and slips over the driving dogs. The ejection device may also include a path measuring device which activates the ejection device. The path measuring device can be a potentiometer directly coupled to the lever such that slipping of the slipping clutch does not change a position of the potentiometer relative to the lever.
Abstract:
A drive apparatus for boarding and unboarding devices, in particular for passenger doors, boarding ramps, retractable steps and the like on public transport vehicles having an electric drive motor the driven element of which is connected to the input element of a first reduction gear the output element of which is coupled to the actuation devices for the boarding and unboarding devices where the drive apparatus is constructed as a compact drive where the electric drive motor, the first reduction gear and a second reduction gear as well as an energizable clutch are disposed axially behind each other inside a tubular housing between the first reduction gear and the second reduction gear.