Abstract:
A drive device for opening and closing a slide body includes: a drum mating with a secondary cable end portion of a first cable and a secondary cable end portion of a second cable. The drum includes; a main drum mating with the secondary cable end portion of one of the first cable and the second cable, and a sub-drum mating with the secondary cable end portion of the other of the first cable and the second cable. An inner gear is formed on an inner face of one of the main drum and the sub-drum. An outer gear is formed on an outer face of the other of the main drum and the sub-drum. The inner gear meshing with the outer gear defines a position for adjusting a cable length of the first cable and a cable length of the second cable.
Abstract:
A non-contact sensor system controls movement of a door moving in a first direction by actuation of a device. The system includes a transmitter extending a predetermined distance beyond a leading edge of the door at a first door end for transmitting a signal toward a second door end. The transmitter is attached to the door by a first moveable member which is capable of engaging a surface when the door closes and moving to a retracted position. The sensor system further includes a receiver extending a predetermined distance beyond the leading edge of the door at the second door end in alignment with the transmitter for detecting the signal, and for generating an output signal when the signal is blocked. The receiver is attached to the door by a second moveable member which is capable of engaging the surface when the door closes and moving to the retracted position.
Abstract:
A clutch comprises a driving rotor (11; 52; 83; 202; 302) coupled to a driving source (2) such as a motor, and a driven rotor (12; 53; 85; 204; 303) directly engaged with the driving rotor. Both rotors are accommodated in a housing (13; 51; 82; 201; 301). A lock member (14; 54; 86; 119; 205; 304) comprised of rollers or balls is located between the driven rotor and the housing. When the driven rotor itself is rotated, the lock member is held between the driven rotor and the housing to block the rotation of the driven rotor relative to the housing. When the driving source rotates the driving rotor, the lock member is released from the held state to allow the driving rotor to rotate the driven rotor relative to the housing. Such a clutch can block the transmission of the rotation from the driven rotor to the driving rotor without fail, and can reduce the strength required to both rotors.
Abstract:
An improved door stop for a sliding door to reduce damage to vehicle tires passing over the door stop includes a vertically oriented housing to be embedded in the floor in alignment with the sliding door. A top block supported by a spring is slidable within the housing. A door guide is mounted to the top surface of the top block and extends above it to engage the bottom of the sliding door when the sliding door is moved to a position above the door stop. The top block remains flush with..the top of the housing and the ground surface when the spring is at rest.
Abstract:
An activation device for a functional component of motor vehicle equipment having an electric motor includes a transmission device connected on the one hand to an output shaft of the motor and on the other hand to said functional component, so that the transmission device and the motor exert mutual forces upon one another, and a safety device adapted for modifying the electrical supply of the motor according to an operating parameter significant of said mutual forces. The motor is mounted on the equipment with at least one degree of movement with respect thereto, and the safety device has means of measuring the movement of the motor delivering measurement signals which determine the operating parameter. The activation device is particularly applicable to electric window winder or sun-roof systems.
Abstract:
A resistance mechanism suitable for applications such as resistance exercise equipment, cable reels, garage doors and other equipment requiring a resistive force. Resistance packs include circular rims and central hubs connected by deformable spokes. The packs are stacked in pairs with the rims in each pair pinned together and the hubs rotatable relative to one another. Each hub has a spline connection with the hub of the next resistance pack in the adjacent pair. This provides a series arrangement of the resistance packs which allows a long extension of the actuator with the spokes of each pack being deformed only slightly. A spiral pay out pulley for the cord assists in avoiding varying resistance with extension of the cord. The mechanism includes a preload system for applying a preload force to the resistance packs and a visual indicator for indicating the level of the preload force. An alternative construction involves forming the resistance packs in a single base having a pair of the resistance devices housed together. The devices may include arms connected by peripheral portions to provide loops that are looped around walls on the base to avoid a need for a bonded connection of the arms to the rims.
Abstract:
A wheeled top guide for rolling movement of a door along an inverted U-shaped track includes a housing for mounting on the door with an upwardly extending axle and a roller thereon for rolling engagement with one side wall of the trace. A vertically oriented torsion member is seated in the housing and has a vertically extending elongated torsion rod having its lower end fixed on the housing, a horizontally extending arm having one end secured to the upper end of the torsion rod and extending away from the first shaft, and an upwardly extending axle adjacent the other end of the arm. A second roller on this axle is in rolling engagement with the other side wall of the track and is spaced from the first roller. The second roller and arm are resiliently displaceable about the longitudinal axis of the torsion rod towards the housing for insertion of the rollers into the track, and the resulting torque in the torsion rod produces a force biasing the arm and thereby the second roller to maintain the rollers in firm rolling contact with the side walls of the track.
Abstract:
An automatic door opening safety system particularly for use with garage doors is provided. The garage door includes a leading edge that moves from the open position, where the leading edge defines the top of the opening and a closed position, where the leading edge contacts the ground. A controller is provided for controlling movement of the door. An activation member provides an input to the controller to initiate movement of the door. A detection member is provided for detecting obstructions in the path of the garage door. The detection member includes an infrared transmitter for transmitting an infrared signal to the infrared receiver of the controller.
Abstract:
The window lifter (1) may, for example, be of the twisted cable type (3) driven by a motorized reduction gear (2) wound around return pulleys (4, 5) and sliding in a guide rail (6); a carriage (8) carrying the window pane (9) is fixed to the strand of the cable passing into the rail (6); damping elements (11) such as flat metal springs, for example, are fixed to the ends of the guide rail (6) and to the door panel (7), which makes it possible to damp out a hard impact against an obstacle encountered by the window pane (9).
Abstract:
A safety device, particularly intended to be used in roll-up doors to cause reversal of the door closing movements in case an obstacle obstructs the path of movement of the door. The device comprises at least a couple of photoelectric cells which are arranged at a certain distance from the closing edge of the door leaf in alignment with the door leaf on a support arm which is displaceable in the direction of closing of the door.