Haptics panel and driving method thereof, and haptics apparatus
US-2024248535-A1 · Jul 25, 2024 · US
US2020171949A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020171949-A1 |
| Application number | US-201816615170-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 18, 2018 |
| Priority date | May 20, 2017 |
| Publication date | Jun 4, 2020 |
| Grant date | — |
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A haptic operating device for a motor vehicle has a base, a stationary central part connected thereto, a rotary knob which can be rotated about the stationary central part and which has a hollow design. A magnetorheological transmission device influences the rotational movement of the rotary knob in a controlled manner. The transmission device has two components which can be rotated relative to each other and one component of which is designed as a brake component that can be rotated relative to the base. The stationary central part is secured to the base by means of a support arm. The transmission device and the support arm are arranged adjacent each other and both are received radially within the rotary knob. The rotary knob is rotationally fixed to the rotatable brake component via a coupling device.
Opening claim text (preview).
1 - 30 . (canceled) 31 . A haptic operating device for a motor vehicle, the operating device comprising: a base plate, a stationary central part connected to said base plate, and a hollow rotary knob rotatably mounted about said stationary central part; a magnetorheological transfer apparatus for targeted influencing of a rotational movement of said rotary knob, said transfer apparatus having two components that are rotatable relative to one another, a first component being a brake component that is rotatable relative to the base plate; said stationary central part being fastened to said base plate by way of a carrier arm and said transfer apparatus and said carrier arm being disposed adjacent to one another and received radially within said rotary knob; and a coupling device rotationally conjointly coupling said rotary knob to said rotatable brake component. 32 . The operating device according to claim 31 , wherein said rotary knob is rotationally conjointly coupled to said rotatable brake component by said coupling device in such a way that a spatial alignment of said rotary knob and of said rotatable brake component with respect to one another changes during a rotational movement of said rotary knob. 33 . The operating device according to claim 31 , wherein said coupling device comprises coupling means at said rotary knob and said rotatable brake component. 34 . The operating device according to claim 33 , wherein said coupling device comprises one or more elements selected from the group consisting of teeth, gear wheels, friction surfaces, belts, chains, gears, and planetary gears. 35 . The operating device according to claim 31 , wherein internal teeth are formed on an internal contour of said rotary knob and external teeth coupled to said internal teeth are formed on an external contour of said rotatable brake component. 36 . The operating device according to claim 31 , which comprises electrical cables axially passing through said rotary knob. 37 . The operating device according to claim 31 , wherein said central part comprises a carrier arm having a first end connected to said base plate, and a second end supporting a carrier part. 38 . The operating device according to claim 37 , which comprises a user interface received at said carrier part. 39 . The operating device according to claim 38 , wherein said user interface comprises one or more of an operating panel, a display, a touch-sensitive display with or without haptic feedback, and/or at least one visual camera or a sensor. 40 . The operating device according to claim 31 , wherein said transfer apparatus has one side with a shaft output and an opposite side with a closed wall. 41 . The operating device according to claim 31 , wherein said rotary knob comprises two tubular parts that are axially displaceable with respect to one another, said tubular parts being rotationally conjointly coupled to one another by way of coupling pins. 42 . The operating device according to claim 31 , wherein said rotary knob is axially displaceable. 43 . The operating device according to claim 31 , wherein said rotary knob is axially displaceable and configured to provide haptic feedback at an end position thereof. 44 . The operating device according to claim 31 , further comprising at least one sensor associated with said rotary knob for detecting at least one of an axial actuation, an angle change, or an absolute angular position. 45 . The operating device according to claim 31 , wherein said transfer apparatus comprises a magnetic circuit and a magnetic field generating device with an electric coil, and wherein a magnetorheological medium is disposed in a gap formed between said stationary brake component and said rotational brake component. 46 . The operating device according to claim 45 , further comprising rotary bodies that are surrounded by the magnetorheological medium and that are disposed between said stationary brake component and said rotational brake component. 47 . The operating device according to claim 46 , further comprising a control device configured to cause a variable braking effect at said rotary knob by selectively energizing said electric coil. 48 . A haptic operating device for a motor vehicle, the haptic operating device comprising: a base plate, a hollow rotary knob, and a magnetorheological transfer apparatus for selectively braking a rotational movement of said rotary knob; a coupling device disposed to rotationally conjointly coupling said rotary knob to said transfer apparatus.
Mounting of cameras operative during drive; Arrangement of controls thereof relative to the vehicle · CPC title
Operations & Transport · mapped topic
Input arrangements with force or tactile feedback as computer generated output to the user · CPC title
Operations & Transport · mapped topic
characterised by magnetoviscosity, e.g. magnetorheological, magnetothixotropic, magnetodilatant liquids (electrorheological fluids C10M171/001) · CPC title
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