Patent classifications
E05B81/25
Actuating unit for automotive applications
Actuating unit for automotive applications, especially motor vehicle door locks (1), comprising a drive (2) and with a linear actuator (3, 4) which can be pressurised by the drive (2), wherein the drive (2) and the linear actuator (3, 4) are arranged at an angle, and especially at a right angle, to one another.
ACTUATING APPARATUS FOR CONTROLLING A LOCKING SYSTEM OF A MOTOR VEHICLE AND METHOD FOR RELEASING A MANUALLY OPERATED EMERGENCY UNLOCKING DEVICE AND MOTOR VEHICLE
An actuating apparatus for controlling a locking system of a motor vehicle, including a circuit arrangement having a first input for receiving an operating signal and an output for providing a control signal to the locking system, the control signal being generated in dependence on the operating signal. The actuating apparatus further comprises a manually operated emergency unlocking device, and the circuit arrangement comprises a second input for receiving an event signal, wherein upon receipt of the event signal the manually operated emergency unlocking device is enabled for manual operation.
ADVANCING/RETREATING MOVEMENT DEVICE
An advancing/retreating movement mechanism 1 of an advancing/retreating member includes: a lifter 3; a coil spring 5; a lock pin 7 that limits the movement of the lifter 3; a case 2 that accommodates the lifter 3 and the coil spring 5; an advance/retreat position control mechanism 9 that controls an advance position, a retreat position, and a reciprocating movement of the lifter 3; and a receiving seat 11 that receives the coil spring 5 so that the lifter 3 is biased. The receiving seat 11 is arranged in a rearward position side of the lifter 3. An engaging part 27a engaging the lock pin 7 is arranged to the lifter 3. When the lifter 3 moves to the retreat position, the engaging part 27a moves to a rearward side beyond the receiving seat 11 and moves to a position where the engaging part 27a can be engaged with the lock pin 7. Therefore, the size of the advancing/retreating member in a protruding/withdrawing direction can be made small.
DOOR OPENING AND CLOSING APPARATUS FOR VEHICLE
A door opening and closing apparatus for a vehicle includes a transmission gear configured to be driven to rotate by a motor, a pulley arranged coaxially with the transmission gear and configured to open and close a vehicle door by moving a rope member with a rotation of the pulley, an output member arranged coaxially with the transmission gear and configured to bring a door lock to a holding state with a rotation of the output member, a first clutch housed in the pulley in a state being coaxial with the transmission gear, the first clutch selectively permitting and prohibiting a rotation transmission between the transmission gear and the pulley, and a second clutch housed in the transmission gear in a state being coaxial with the transmission gear, the second clutch selectively permitting and prohibiting a rotation transmission between the transmission gear and the output member.
Motor vehicle lock
A motor vehicle lock including a catch, a pawl, and a drivetrain arrangement with a drive element. When the catch is in the secondary closed position, the pawl is moveable from the engaged state the released state to release the catch. The drive element may be configured to move in a predefined drive direction. The motor vehicle lock may include a first coupling element, provided with a first coupling surface and a second coupling element, provided with a second coupling surface. During the cinching sequence, the first coupling surface and the second coupling surface may be engaged with one another to move the catch. During the release sequence the drive element is moved in the predefined drive direction such that the first coupling surface and the second coupling surface are disengaged from one another.
Actuating unit for a motor vehicle lock and corresponding method of production
The invention relates to an actuating unit for a motor vehicle lock, comprising a motor element and a drive for moving the motor element, a Bowden cable connected to the motor element and a connecting element for the Bowden cable. The invention further relates to a method of production. The aim of the invention is to simplify production of an actuating unit having a Bowden cable. According to the invention, the connecting element for the Bowden cable is angular, especially L-shaped, and a leg thereof, in the case of an L shape preferably the long leg thereof, is connected to the remainder of the housing. The angular form or L shape and the connection of one leg of such a shape to the remainder of the housing of the motor element results in a large surface or a large peripheral edge of the connecting part which can be connected to the remainder of the housing. As a result, the connecting element can be firmly secured to the remainder of the housing such that the latter withstands the forces of a motor element even when the movement of the motor element is not limited with the aid of a microswitch but with the aid of the connecting element.
Door handle assembly for vehicle compartment
A handle assembly is provided for use on storage compartment doors of a vehicle. The assembly includes inner and outer housings residing on opposite sides of the door. The handle assembly plunger resides on the inside of the door, rather than between the outside and inside door skins. An exterior handle can be grasped from either side for moving the plunger from an extended latched position to a retracted unlatched position for opening the door. An interior egress handle is provided to open the door from inside the compartment, as a safety feature. A key cylinder on the outer housing allows the handle assembly to be locked to preclude accidental or unauthorized opening of the door. The handle assembly allows the door to be opened by electric remote power and to be closed by slam action.
VEHICLE DOOR LOCK DEVICE
A vehicle door lock device includes: a door switch arranged in an actuator housing to which a locking mechanism is assembled; a switch lever; and a lever pivoting amount adjusting mechanism configured to adjust a pivoting amount of the switch lever so that a ratio of the pivoting amount of the switch lever to a pivoting amount of a latch is set smaller in a second pivot state in which the latch is pivoted within a range of from a switching position to an unlatched position than in a first pivot state in which the latch is pivoted within a range of from a fully-latched position to the switching position.
Motor vehicle door lock, particularly a backrest lock on a motor vehicle seat
The object of the invention is a motor vehicle door lock, particularly a backrest lock (4), on a motor vehicle seat (1). The basic construction of the motor vehicle door lock includes a locking mechanism (7, 8, 9) consisting essentially of a rotary latch (9), a ratchet pawl (7) and a blocking element (8) for the ratchet pawl (7). In addition, a drive unit (15, 16, 17) that acts on a triggering element (12) is provided. According to the invention, the drive unit (15, 16, 17) is constructed as a linear adjustment drive (15, 16, 17), which acts on the triggering element (12) so that it interacts in succession, first with the blocking element (8) and then with the ratchet pawl (7).
ELECTRIC LOCKING MECHANISM OF A DOOR LEAF COMPRISING A MECHANICAL BACKUP FUNCTION
A locking mechanism of a door leaf of a motor vehicle includes a latch, an electric actuator, and a transmission arrangement. The latch includes a pawl and a bolt configured to cooperate in such a manner to allow the locking or unlocking of the door leaf. The transmission arrangement is configured to transmit a movement of the electric actuator to the bolt in order to displace the bolt of the latch between an unlocking position in which the bolt is released from the pawl and a locking position in which the bolt is blocked by the pawl. The transmission arrangement includes a downstream transmission member configured to transmit a movement to the bolt, an upstream transmission member configured to transmit a movement of the actuator to the downstream transmission member; and a blocking member movable relative to the downstream transmission member and/or the upstream transmission member.