Integrated device for resistive torque generation
US-2017363159-A1 · Dec 21, 2017 · US
US10502271B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10502271-B2 |
| Application number | US-201816014223-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 21, 2018 |
| Priority date | Sep 15, 2010 |
| Publication date | Dec 10, 2019 |
| Grant date | Dec 10, 2019 |
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Electronic devices, such as consumer electronics devices and control systems in vehicles are controlled by way of a haptic operating device with a rotating unit. Selectable menu items are displayed on a display unit, and a menu item is selected by rotating the rotating unit. The rotating unit latches at a number of haptically perceptible latching points during rotation. The number and rotational position of the haptically perceptible latching points is dynamically changed in accordance with a specific menu item selected by the user.
Opening claim text (preview).
The invention claimed is: 1. A haptic interface, comprising: a rotary element to be manually activated; an integrated rotary encoder associated with said rotary element and disposed to interpret a rotation of said rotary element upon manual activation thereof; and a display unit with a display for displaying a given selected menu; wherein at least one property of the haptic interface changes depending on a currently selected menu, wherein the at least one property of the haptic interface is a resistance of said rotary element against rotation thereof, and the resistance is variably set to provide a haptic feedback to the manual activation of said rotary element and in accordance with the currently selected menu; a sensor disposed to sense an angle change or an absolute angular position between said rotary unit and a basic body of a device to be controlled with the haptic interface; and a control device configured to rotate the display of said display unit in an opposite direction based on a signal from said sensor. 2. The haptic interface according to claim 1 , wherein said display unit is mounted inside said rotary element. 3. The haptic interface according to claim 1 , which comprises a settable end stop for said rotary element and wherein said end stop is set in dependence on the currently selected menu. 4. The haptic interface according to claim 1 , which further comprises a loudspeaker configured to provide audible feedback upon the manual activation of said rotary element and in accordance with the currently selected menu. 5. The haptic interface according to claim 1 , wherein said display is a display of a computing device selected from the group consisting of a mobile telephone, a PDA, a portable computer, a stationary computer, a display screen, a game console, and a tablet computer, and said rotary element is a rotary knob associated with said computing device and configured as an input device for said computing device. 6. The haptic interface according to claim 1 , wherein said display is a display of a computing device selected from the group consisting of a smart phone and a laptop computer, and said rotary element is a rotary knob associated with said computing device and configured as an input device for said computing device. 7. The haptic interface according to claim 1 , wherein the resistance of the rotary element against the rotation thereof is dynamically variable. 8. The haptic interface according to claim 7 , wherein the dynamically variable resistance is provided for haptic feedback to a user controlling a smart device and for enabling actuation of the rotary element without visual inspection, and the dynamically variable resistance is provided by an electronically controlled resistance against the rotation of the rotary element. 9. The haptic interface according to claim 8 , which comprises a magnet device disposed to provide the electronically controlled resistance or wherein an electrical resistance is set that converts to a mechanical resistance of the rotary element. 10. The haptic interface according to claim 8 , which comprises a magnetorheological transmission apparatus functionally disposed between said rotary element and the smart device for providing the electronically controlled resistance. 11. The haptic interface according to claim 1 , wherein said display unit is surrounded by said rotary unit, at least in sections of said display unit.
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