Abstract:
An inner rotor 22 is rotated at a high speed, and if a pressure due to silicon oil S reaches a predetermined value or above, the pressure due to the silicon oil S traveling from a communicating passage 42 to a communicating passage 44, increases. Accordingly, a piston 52 is pressed toward a direction against an urging force of a coil spring 62, and abuts against a cap 64. Thereby, a circular groove 50 is divided, and the silicon oil S never flows to the circular groove 50 from a communicating opening 46, so that the communicating passage 42 and the communicating passage 44 become a non-communicated state. Then, a torque acting on the inner rotor 22 increases, and a damping force increases.
Abstract:
A door opening and closing device having a rotational mechanism configured to switch a door between a closed position and an open position relative to a base member. The rotational mechanism has a supporting arm integral with the door; a sector gear portion provided on the arm; a rotating gear disposed on the arm at essentially a center of the arc of the sector gear; a first rack portion on the base member and configured to engage the sector gear; and a second rack portion on the base member. The second rack is essentially parallel to the first rack portion and separated by predetermined distance therefrom, the second rack being configured to engage the rotating gear.
Abstract:
A device (15) for slowing the movement of a door (2) urged by unidirectional thrust means (4), including a casing (17) fixable to a structure (S) and defining a chamber (18) filled with a viscous fluid, and a rotor (31). The rotor (31) includes a disc portion (32) and a shaft portion (33) protruding through the lid (21) of the casing (17) in such a way as it can be associated with the door (2). The base surface (23a) of the chamber (18) has a recess (51) operable to house a pivotable arm (52). The arm (52) has a pin portion (54) protruding into the chamber (18). The lower surface (62) of the disc portion (32) of the rotor (31) has a groove (70) for engaging the pin portion (54) of the arm (52). At one end (73), the groove (70) has a cam (76) dividing it into a return path (75) and a forward path (74) for the pin portion (54) so as to define a locking position for the rotor (31) in cooperation with the thrust means (4).
Abstract:
The invention relates to a method for controlled braking of an electrically powered lifting action in the event of a failure, such that at least one of the nominal values for “rotational direction” and/or “operating speed” and/or “door position” and/or “motor capacity” and/or “motor current” is ascertained and compared with an actual value, and such that a motorized braking process or motorized stopping process is triggered by a departure of the actual value from the nominal value that lies outside a predetermined range. In addition the invention relates to a device for applying said method.
Abstract:
An active break release device externally attached to a door controller. The door controller includes a housing for receiving a first motor which rotates a rotary shaft to reel the door; a braking device installed around the periphery of the rotary shaft. The active break release device comprises: at least a brake releasing rod, one end of which is to activate the braking device while the other end of which extends to the outside of the door controller; at least a second motor, for moving the other end of the brake releasing rod; a circuit having a backup power source used to temperately supply electricity to the second motor if electricity fails, so that the one end releases the braking.
Abstract:
A drive mechanism includes an electric motor, a rotor driven by the electric motor, and a worm screw driven by the rotor. The drive mechanism further includes a wheel driven by the worm screw, the wheel transmitting movement of the electric motor to a vehicle closure, and a clutch on the rotor connecting the worm screw to the electric motor or disconnecting the worm screw from the electric motor.
Abstract:
A cushioning device for opening and closing of sliding shutters, particularly of sliding shutters for furniture, to be applied as a single item to each shutter or sliding partition, in order to be able to cushion an end part of their opening and closing movement. The cushioning device includes a cushioning box applied with brackets for support and sliding of the individual shutter; this box being equipped with two opposing braking devices of a rotary type, whose toothed hub directly meshes with a rack fixed to the box, each braking device being joined to its own slider guided by the box and being joined at one end by an elastic device with its opposite end joined to the other slider, both sliders being equipped with a hook for activating and deactivating the corresponding action of the final section of travel to be cushioned.
Abstract:
A system for dampening an opening motion of a door includes a frame, an access door and at least one dampening member. The access door is rotatably secured to the frame. The access door is configured to be moved with respect to the frame between closed and completely open positions. The at least one dampening member is secured to the access door or the frame. The dampening member(s) dampens movement of the access door toward the completely open position over a range of motion.
Abstract:
A system and method for minimizing door related injuries are disclosed. Briefly, a mechanism requiring little or no external power is used to vary the force needed to open a door. If an obstruction (i.e. a person, pet, etc) is within the sweep of the opening door, the force needed by the user to push open the door will be increased, to give the user tactile feedback that an accident may be imminent. The feedback mechanism can be implemented in a variety of ways, including embodiments that require no external power or battery. A sensor is used to detect the presence of an obstruction within the sweep of the door. In a further embodiment, a mechanism is used to slow or stop a door from closing if an obstruction (such as a finger) is in the return path of the door.
Abstract:
A powered sliding device includes a wire drum (16) connected to a vehicle sliding door (11) through wire cables (18, 19), a motor (14) for rotating the wire drum, a clutch mechanism (25) provided between the motor and the wire drum, a rotational member (85) rotated integrally with the wire drum, detection apparatus (86) for detecting the rotation of the rotational member, and a housing (74). The housing includes a first space (76) accommodating the wire drum and communicating with the outside of the housing through the wire cables and a second space accommodating the rotational member and the detection apparatus, and a housing body (73) provided between the first space and the second space which separates the first space and the second space.