Abstract:
A drive arrangement for moving a glass panel of a window of a vehicle has a motor and an input member connectable with the motor means for moving the glass panel. The input member is rotatable in two opposite directions so as to close or to open the glass panel. At the same time, the input member is displaceable between a first position in which it is coupled to a drive shaft of the motor and is rotated by the latter, and a second position in which the input member is uncoupled from the motor so as to be rotated by hand. A lock is provided which is inoperative in the position when the input member is coupled to the motor, and is operative in the position when the input member is uncoupled from the same. When the lock is operative permits rotation of the input member for closing the glass panel, but does not permit the rotation for opening of the latter so that unauthorized opening of the glass panel is prevented. The lock is formed as an overrunning lock provided with a locking element.
Abstract:
An actuator and a vehicle operation system with the actuator. The actuator includes a housing unit composed of a combination of internal components including a motor, a housing and a cover. A pair of terminals conveys external power to the motor. A terminal holder holds die pair of terminals. The terminal holder is accommodated in the housing unit as a sub-assembly separately from the housing unit.
Abstract:
A transmission system allowing a window to be opened in three directions includes a door hinge assembly, a guide wheel assembly, a lock assembly, a handle, a first transmission lever, a second transmission lever, an angle converter, a first gear tooth combination, a second gear tooth combination a and a second gear tooth combination b. The angle converter is connected at a position of the first transmission lever and a position of the second transmission lever located at corners of a window sash. The first gear tooth combination is arranged in the handle. The second gear tooth combination a and the second gear tooth combination b are connected to the top and the bottom of the window sash respectively. The lock assemblies are symmetrically provided at two sides of the second gear tooth combination a and the second gear tooth combination b.
Abstract:
Release mechanism (12) for an energy harvesting arrangement (10) for an electronic locking system (78), the release mechanism (12) comprising a drive device (18); a harvesting elastic element (30); at least one magnet (36); an input device (38); and an engaging profile (52); wherein the input device (38) is arranged to engage the drive device (18) by means of a magnetic force such that the drive device (18) can be displaced from a starting position (32) by movement of the input device (38) along a harvesting path (58); and wherein the engaging profile (52) is arranged to engage the drive device (18) at an engaging position (60) of the drive device (18), such that further movement of the input device (38) along the harvesting path (58) causes a relative inclination between a drive device surface (26) and a input device surface (42). An energy harvesting arrangement (10) and an electronic locking system (78) are also provided.
Abstract:
The present invention relates to a device (4) for closing a door (1) which is rotatably constrained to a relative anchoring structure (2) and movable between a closing position and a maximum opening position, said anchoring structure (2) being either a fixed structure or a further door. Said device (4) comprises: a first fixing element (5) fixable, in use, to the door (1) or to the anchoring structure (2) of the door (1); a second fixing element (6) fixable, in use, to the anchoring structure (2) of the door (1) or to the door (1); at least one elastic flexible element (11) which performs, due to its configuration, an elastic function when it is subjected to bending; fixing means (12) by which said at least one elastic flexible element (11) is fixed to said second fixing element (6); and engaging means (14) by which said at least one elastic flexible element (11) remains engaged to said first fixing element (5) during the relative motion between said first (5) and said second fixing element (6), which is caused by said door (1) moving between said closing position and said maximum opening position and between said maximum opening position and said closing position. In the configuration assumed by the device (4) when the door (1) is at least partially open, said at least one elastic flexible element (11) is subjected to bending and tending to automatically move said door (1) to said closing position.
Abstract:
A hatch actuating device can include a housing; a sliding portion received within the housing; a gear assembly at least partially received within the housing and movably coupled to the sliding portion; and a flexible drive element coupled to the gear assembly; wherein the gear assembly is configured to open a hatch lid of a hatch through rotation of a portion of the gear assembly by pulling of the drive element.
Abstract:
A display case door includes a door frame, a motor, and a torque rod. The door frame extends about and is coupled to a panel assembly. The motor is coupled to the door frame. The torque rod is coupled to the door frame and configured to couple with an enclosure for a display case. When the door is installed in an opening of the enclosure for the display case, the motor is operable to open the display case door, and the torque rod is configured to close the display case door.
Abstract:
An encoder driven non-handed electric door operator for operating a door comprises an encoder, shaft, coil spring and a motor. The motor is configured to receive an external set of predetermined instructions. A plurality of gear assemblies in communication with each other allow the door operator to function. The shaft is solid and has nondetachable gear/splines at each end that drives the door operator. A controller which may be at a remote location transmits an external set of predetermined instructions to the encoder motor for proper operation. The door operator also has top and bottom plates that are parallel to each other. The plates are spaced a distance sufficient from each other to accommodate the encoder motor, encoder motor mounting plate, first, second and third gear assemblies, shaft, and coil spring therebetween.
Abstract:
A door presenting device for a motor vehicle door element having an electric drive unit and an actuating means, wherein the actuating means can be adjusted by means of the drive unit and a gear mechanism arranged between the actuating means and the drive unit, with the result that a movement of the door element can be enabled, and further having a locking means. The door element can be maintained in position by means of the locking means and the locking means can be electrically actuated, namely indirectly, preferably manually, actuated.
Abstract:
A driving device for a door opener includes a motor driving a first transmission member to rotate. Rotation of the first transmission member causes lateral displacement of a sliding member which moves jointly with a connecting rod. A return spring is mounted around the connecting rod. An adjusting ring is in threading connection with the connecting rod and abuts against the return spring. When the first transmission member does not rotate, rotation of the adjusting ring causes displacement of the adjusting ring in the lateral direction to change an extent of pre-compression of the return spring. When the first transmission member rotates in a direction, the connecting rod and the adjusting ring together move in the lateral direction towards the first transmission member, and the return spring is compressed. When the first transmission member rotates in a reverse direction, and the return spring restores its length.