Abstract:
An electric lock for a fold-down seat of a motor vehicle is situated inside a housing. The lock includes a locking means, a blocking element, a transmission lever attached to the blocking element so as to move it between a position of blocking the locking means in the catch retention position and a position in which it is effaced with respect to the movement of the locking means. The lock includes an actuator comprising an electric motor, the actuator being able to move the transmission lever. The transmission lever of the lock is able to move about an axis of rotation and has two arms extending radially from the axis, the first arm at its end having a handle and the second arm at its end having a means of attachment to the blocking element.
Abstract:
A modified OEM vehicle having an interior for accommodating a passenger in a wheelchair including a floor base assembly, a seat, and a seat base assembly operatively connected to the seat. The seat base assembly includes a lower seat base assembly configured to be coupled to the floor base assembly, an upper seat base assembly pivotably coupled to the lower seat base assembly, and an actuator coupled to the lower seat base assembly and to the upper seat assembly. The the actuator includes a retracted position in which the seat is located in a seated position and an extended position in which the seat is located in a tilted position, wherein the tilted position of the seat provides additional space for the wheelchair within the interior of the vehicle.
Abstract:
A seat locking mechanism comprises: a plurality of positional brake mechanisms including a longitudinal brake assembly, a lateral brake assembly, and a rotational brake assembly; and a carriage assembly operably connected to the plurality of positional brake mechanisms. The carriage assembly having a carriage tube and a carriage housing fixedly connected to the carriage tube. The carriage assembly in operation moves each of the plurality of positional brake mechanisms to at least one of a locked position and an unlocked position, when the carriage assembly rotates.
Abstract:
A seating assembly includes a seat frame. A first leg support is pivotally coupled with a forward portion of the seat frame. The first leg support is operable between raised and lowered positions. A first extendable member is disposed on a top portion of the first leg support and is operable between extended and retracted positions. A second leg support is adjacent to and independent of the first leg support and is pivotally coupled with the forward portion of the seat frame. The second leg support is operable between raised and lowered positions. A second extendable member is disposed on a top portion of the second leg support and is operable between extended and retracted positions.
Abstract:
A latch release actuator for a seat latch is configured to apply a tension onto a flexible latch release member to release the seat latch. The latch release actuator comprises a pulley mounted to be rotatable about a rotation axis between a rest position and a latch release position. The pulley comprises an attachment portion for attaching the flexible latch release member. The latch release actuator comprises a power drive mechanism to drive the pulley. The latch release actuator comprises a lock mechanism configured to selectively lock the pulley at the latch release position when the pulley reaches the latch release position.
Abstract:
A power seat operation device is configured in such a manner that, when a dial member is rotated and operated, a movable mechanism which is to be operated is selected from among movable mechanisms. When a switch member is rotated and operated, the selected movable mechanism is actuated. The switch member is rotated and operated about a rotation axis extending in the widthwise direction of the seat. Thus the direction of operation of the switch member can be aligned with or nearly aligned with both the direction of the actual movement of a seat back when a recliner mechanism is actuated and the direction of the actual movement of an ottoman when an ottoman mechanism is actuated. Also, in a state in which a seat slide mechanism is selected, the direction of the operation of the switch member is aligned with the front-rear direction of the seat.
Abstract:
A power adjusted seat assembly includes a seat, and is adapted for use when a resting load is present within the seat. The assembly further includes at least one reconfigurable seat structure shiftable between first and second permanent dimensions, orientations, positions, or conditions. An active material actuator is drivenly coupled to the structure. A mechanical transmission is drivenly coupled to the structure, so as to act in concert with the actuator, and is configured to receive and modify at least a portion of the load. The actuator and transmission are cooperatively configured to cause the structure to shift between the first and second permanent dimensions, orientations, positions, or conditions, when the resting load is present and the actuator is activated.
Abstract:
An apparatus for changing positions of a seat for vehicles includes mechanisms for adjusting the height of the seat for vehicles, adjusting reclining of the seat for vehicles, changing the seat for vehicles into a knee rest posture and changing the seat for vehicles into a relaxed comfort are integrated into one structure. Accordingly, a user selectively implements adjustment of the height of the seat for vehicles, adjustment of reclining of the seat for vehicles, change into the knee rest posture, and change into the relaxed comfort posture, etc., through operation of the switch.
Abstract:
A seat locking mechanism comprises a plurality of positional brake mechanisms including a longitudinal brake assembly, a lateral brake assembly, and a rotational brake assembly; and an electric motor assembly operably connected to each of the plurality of positional brake mechanisms. The electric motor assembly comprises: a drive motor; a clutch system located between the drive motor and the plurality of positional brake mechanisms; and a solenoid operably connected to the clutch system. The solenoid in operation engages the clutch system to operably connect the electric motor to the plurality of positional brake mechanisms when the electric motor assembly is activated and disengages the clutch system to operably disconnect the electric motor to the plurality of positional brake mechanisms when the electric motor assembly is deactivated. The electric motor assembly in operation moves the plurality of positional brake mechanisms to at least one of a locked position and unlocked position.
Abstract:
A weight sensing mechanism for an aircraft seat pan configured to adjust seat pan recline force and including a gas spring arranged between a fixed seat frame member and a movable seat pan member, the gas spring arranged to compress as the seat pan reclines in response to a load on the seat pan, and unloads upon removal of the load on the seat pan to assist in returning the seat pan to upright, and a helper spring positioned forward of and coaxially with the gas spring arranged to deflect under any load on the seat pan. A recline-capable seat pan assembly including a passenger body weight sensing mechanism.