Patent classifications
F16D28/00
POWER TRANSMISSION PATH SWITCHING DEVICE AND TWO-STAGE TRANSMISSION
A power transmission path switching device has a friction engaging device; a rotation transmission state switching device comprising a first member and a second member arranged coaxial with each other and having: a free mode and/or a one-way clutch mode allowing rotation of the first member with respect to the second member, and a lock mode preventing rotation of the first member with respect to the second member; and a control device that, when connecting the friction engaging device and setting the rotation transmission state switching device to the lock mode, has a function of connecting the friction engaging device, and then while maintaining the friction engaging device in a connected state, switches the rotation transmission state switching device to the lock mode.
ROTATING MECHANISM FOR ORIENTATING CAMERA IN MULTIPLE DIRECTIONS WITH SINGLE MOTOR
An image-capturing device includes a camera and a rotating mechanism for orienting the camera in multiple directions. The rotating mechanism includes a motor; a driving gear; a first transmission module including a first input gear, which is selectively engaged with and transmitted to rotate by the driving gear at a first position, and transmitting the camera to rotate in a first direction with rotation of the first input gear; a second transmission module including a second input gear, which is selectively engaged with and transmitted to rotate by the driving gear at a second position, and transmitting the camera to rotate in a second direction with rotation of the second input gear; and a clutch mechanism including a clutch device for driving the driving gear to switch between the first position and the second position. The clutch device includes a solenoid.
METHOD FOR IMMOBILIZATION, CLUTCH, VEHICLE TRANSMISSION, DRIVE UNIT, AND VEHICLE
A method for immobilizing a vehicle, in particular an electric bicycle. A drive train of the vehicle includes a clutch that includes a first clutch component and a second clutch component that are situated coaxially with respect to one another and configured to be rotatably fixedly connected to one another by mechanical contact in at least one predefined rotational direction. The method includes: detecting an input of a user for activating an immobilizer, and actuating an actuator as a function of the detected input, as the result of which the first clutch component and/or the second clutch component are/is displaced in the axial direction, as the result of which the mechanical contact between the first clutch component and the second clutch component is separated.
METHOD FOR IMMOBILIZATION, CLUTCH, VEHICLE TRANSMISSION, DRIVE UNIT, AND VEHICLE
A method for immobilizing a vehicle, in particular an electric bicycle. A drive train of the vehicle includes a clutch that includes a first clutch component and a second clutch component that are situated coaxially with respect to one another and configured to be rotatably fixedly connected to one another by mechanical contact in at least one predefined rotational direction. The method includes: detecting an input of a user for activating an immobilizer, and actuating an actuator as a function of the detected input, as the result of which the first clutch component and/or the second clutch component are/is displaced in the axial direction, as the result of which the mechanical contact between the first clutch component and the second clutch component is separated.
CLUTCH OR BRAKE SYSTEM FOR A TORQUE TRANSMISSION WITH A PLANETARY GEAR
A clutch or brake system for a torque transmission. The clutch or brake system includes a first rotatable unit connectable to an input or output, including at least one first abutment surface and a second rotatable unit connectable to an output or input, respectively, including at least one second abutment surface arranged for selectively engaging the first abutment surface. The first and second abutment surfaces are adapted to each other so as to allow disengaging under load. The system includes a third rotatable unit including at least one retaining member, the third unit being arranged for selectively being in a first rotational position or a second rotational position relative to the second rotatable unit, wherein the at least one retaining member in the first rotational position locks the at least one second abutment surface for rotationally coupling the second rotatable unit to the first rotatable unit.
CLUTCH ASSEMBLY HAVING INTEGRATED CLUTCHES
A clutch assembly includes a first clutch in the form of a dynamically controllable clutch (DCC) and a second clutch in the form of an electrically actuated Controllable Mechanical Diode (“CMD”) clutch. The CMD clutch functions as and may be referred to as a park-lock, hill hold clutch (“park-lock clutch”). The DCC and the CMD clutch each have a pocket plate and share a notch plate. The DCC pocket plate and the shared notch plate are supported for rotation in first and second directions about a rotational axis. The pocket plate of the CMD clutch is fixed in position. The DCC includes a translator to move a DCC locking element to a deployed position in which the DCC locking element mechanically couples the DCC pocket plate and the shared notch plate. The CMD clutch includes first and second actuators configured to move the first and second locking elements of the CMD clutch to a deployed position in which the first and second locking elements mechanically couple the shared notch plate to the pocket plate of the CMD clutch.
Electronic CVT with friction clutch
A continuously variable transmission (“CVT”) is provided for use on a recreational or utility vehicle. The CVT is electronically controlled by a control unit of the vehicle. The CVT includes a primary clutch having a first sheave, a second sheave movable relative to the first sheave, and a friction clutch. An actuator assembly is configured to actuate the primary clutch and cause movement of the second sheave.
DRIVE DEVICE
A drive device includes: an actuator rotating, around a rotation axis, a shift drum having a lead groove formed on an outer peripheral surface; and an angle correction unit correcting a detection value of a rotation angle sensor that detects a rotation angle of the shift drum. The angle correction unit calculates the rotation angle of the shift drum at a reference position as a learning angle based on a correspondence between a displacement amount of a first engaging portion and a change amount of the rotation angle of the shift drum per a predetermined time of rotation of the shift drum at a predetermined speed. Then, the angle correction unit corrects the detection value of the rotation angle sensor based on an amount of deviation between the learning angle and a design angle.
TRANSMISSION SYSTEM
A transmission system, such as for a two wheeled bicycle, having an input and an output, wherein the input is arranged to be connected to a crank and/or an electric motor and/or a user input, and wherein the output is arranged to be connected to a driven wheel. The system includes at least two parallel transmission paths from the input to the output, at least one of the transmission paths including at least one transmission, at least one of the transmission paths including at least one transmission clutch. At least one of the transmission paths includes at least one load-shifting clutch, the at least one load-shifting clutch being a form closed clutch arranged to transfer torque in at least one rotational direction.
Axle disconnect assembly with blocked mode transition
An axle disconnect assembly, including: a housing; a shaft; a sleeve non-rotatably connected to the shaft and including teeth; a shift assembly; and at least one resilient element directly connected to the shift assembly. In a first blocked mode, the teeth of the sleeve contact the power output without meshing with teeth of the power output, the shift assembly deflects the at least one resilient element to at least one first shape, and the at least one resilient element urges the sleeve against the power output. In a second blocked mode, the teeth of the sleeve are meshed with the teeth of the power output, a force blocks disengagement of the sleeve from the power output, the shift assembly deflects the at least one resilient element to at least one second, and the at least one resilient element urges the sleeve away from the power output without displacing the sleeve.