Patent classifications
B60Y2400/402
SHIFT-BY-WIRE SHIFT ELEMENT INTEGRATED INTO A MOTOR VEHICLE HAND REST
A rest element extends along a transverse direction from a passenger side to an opposite driver side and has a rest surface, which faces in a vertical direction, for a user's hand. A shift element is arranged at a driver-side end of the rest element and between the rest surface and an opposite lower side of the rest element, for operating a shift-by-wire gear selection controller. The shift element is configured to be movable along the transverse direction between a stowage position and a shift position. The shift element is arranged immovably with respect to a longitudinal direction in the stowage position and is mounted movably unidirectionally or bidirectionally in the shift position.
Impact separation type pedal
The present disclosure provides a pedal 1 that includes a left bracket and right bracket that are combined such that a portion coupled to a hinge of a pedal arm and another portion fixed to a vehicle body are fitted to each other in an X-shape. A cover bracket is welded to the left and right brackets and over the X-shaped portion. A fixing pin welded to the left and right brackets and at a cross-point of the X-shape. The pedal arm is separated due to deformation in an impact direction in an oblique collision as well as a front, offset, or small overlap collision of a vehicle. Thus, the pedal makes it possible to prevent a driver from being injured by the pedal.
Shared clutch control for manual transmission with a hybrid drive
Systems and methods of controlling a clutch in a hybrid vehicle with a manual transmission, are provided. With the goal of enabling autonomous/assisted clutch control in a hybrid vehicle, while preserving the familiar mechanical feeling at the clutch pedal that driving enthusiasts prefer, embodiments of the disclosed technology use a shuttle valve to blend control of clutch engagement between a driver and an ECU. In these embodiments, a clutch pedal in the vehicle may be mechanically connected to a piston in a first hydraulic cylinder (just like in a traditional mechanical/hydraulic clutch actuation system), and an ECU may actuate a second hydraulic cylinder. Accordingly, a shuttle valve may be used to route the fluid coming from the cylinder with the greater pressure (i.e. the driver actuated cylinder or the ECU actuated cylinder), to a third hydraulic cylinder which adjusts engagement of a clutch by a mechanical linkage.
FAIL-SAFE LATCH MECHANISM
A latch and fail-safe mechanism suitable for use with an industrial cart, dolly, trailer or other types mobile platforms or carriers. According to an embodiment, the latch comprises a housing or enclosure, a latch mechanism, a hitch hook and a fail-safe mechanism. The housing includes a back-plate configured to attach the latch to a mounting bracket or frame plate on the cart. The latch mechanism is operatively coupled to the hitch hook and configured to bias the hitch hook in a closed or engaging position. The fail-safe mechanism is operatively coupled to the hitch hook and configured to bias and maintain the hitch hook in the closed position in the event of failure of the latch mechanism.
Fail-safe latch mechanism
A latch and fail-safe mechanism suitable for use with an industrial cart, dolly, trailer or other types mobile platforms or carriers. According to an embodiment, the latch comprises a housing or enclosure, a latch mechanism, a hitch hook and a fail-safe mechanism. The housing includes a back-plate configured to attach the latch to a mounting bracket or frame plate on the cart. The latch mechanism is operatively coupled to the hitch hook and configured to bias the hitch hook in a closed or engaging position. The fail-safe mechanism is operatively coupled to the hitch hook and configured to bias and maintain the hitch hook in the closed position in the event of failure of the latch mechanism.