IP Library Granted Patent US 10,007,290
Granted Patent B2
US 10,007,290 · App. 15/200,918 · Granted Jun 26, 2018

Haptic operating device with a rotating element and method

Inventor: Stefan Battlogg (St. Anton I.M., AT)
Assignee: Inventus Engineering GmbH
G05G5/03A61F2/38F16C1/00F16D37/02F16D57/002G05G1/08F16D2037/002F16D2300/0214F16D2300/18F16H59/0204F16H59/044F16H59/08F16H2059/081
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Quick Facts
Patent No.
US 10,007,290
App. No.
15/200,918
Granted
Jun 26, 2018
Kind
B2
Abstract

Apparatus and method for operating vehicles by way of a haptic operating device having a rotating unit. Selectable menu items are displayed on a display unit, and a menu item being 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.

Claims (24)

1. A haptic operating device, comprising:

a basic body and a rotating unit;

a magnetorheological transmission apparatus with at least two components to be coupled to one another with a variable coupling intensity and disposed to form a channel therebetween;

a magnetorheological medium to be influenced by a magnetic field, said magnetorheological medium having magnetically polarizable particles and being disposed in said channel between said at least two components for influencing the coupling intensity between said at least two components;

a magnetic field generation device for generating the magnetic field in order to influence the magnetorheological medium, said basic body being coupled to one of said at least two components and said rotating unit being coupled to another of said at least two components;

at least one transfer element forming a magnetic field concentrator in said channel;

a sensor disposed to sense an angle change or an absolute angular position between said rotating unit and said basic body; and

a control device configured to dynamically control said magnetic field generation device and to dynamically generate the magnetic field from said magnetic field generation device on a basis of a rotational angle in order to provide a dynamic and angle-dependent haptic latching pattern.

2. The haptic operating device according to claim 1 , wherein said at least one magnetic field concentrator is at least one transfer element rotatably disposed and configured to rotate when one or both of said components are rotated.

3. The haptic operating device according to claim 1 , which comprises a display unit surrounded by said rotating unit, at least in sections of said display unit.

4. The haptic operating device according to claim 3 , wherein said display unit is connected to said basic body in a rotationally fixed manner, and said rotating unit is rotatably mounted with respect to said display unit, or said display unit is connected to said rotating unit in a rotationally fixed manner and is rotatable, together with said rotating unit, relative to said basic body.

5. The haptic operating device according to claim 3 , which further comprises a control device configured to rotate a display on said display unit in an opposite direction based on a signal from said sensor.

6. The haptic operating device according to claim 1 , which comprises at least one separate elastic contact element disposed between said two components.

7. The haptic operating device according to claim 1 , wherein said at least one transfer element is one of a plurality of rotating bodies disposed in said channel, and said electrical coil is arranged substantially axially adjacent said channel and said rotating bodies.

8. The haptic operating device according to claim 1 , wherein an acute-angled region between said at least one transfer element and one of said components tapers in a direction of a relative movement of said component relative to said transfer element.

9. A haptic operating device, comprising:

a basic body and a rotating unit;

a magnetorheological transmission apparatus with at least two components to be coupled to one another with a variable coupling intensity and disposed to form a channel therebetween;

a magnetorheological medium to be influenced by a magnetic field, said magnetorheological medium having magnetically polarizable particles and being disposed in said channel between said at least two components for influencing the coupling intensity between said at least two components;

a magnetic field generation device for generating the magnetic field in order to influence the magnetorheological medium, said basic body being coupled to one of said at least two components and said rotating unit being coupled to another of said at least two components; and

a magnetic field concentrator disposed in said channel;

a sensor disposed to sense an angle change or an absolute angular position between said rotating unit and said basic body;

a display unit surrounded by said rotating unit, at least in sections of said display unit; and

a control device configured to rotate a display on said display unit in an opposite direction based on a signal from said sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2017
From: BATTLOGG, STEFAN
To: INVENTUS ENGINEERING GMBH
Reel/Frame 042301/0488 →
Priority Claims (3)
DE 10 2010 045436 · Sep 15, 2010 · national
DE 10 2010 055833 · Dec 23, 2010 · national
DE 10 2015 110633 · Jul 1, 2015 · national
Continuity (3)
Continuation In Part 14747025 · Jun 23, 2015
Continuation In Part 13823781
Related Publication 20160378131A1 · Dec 29, 2016
Cited By (1)
US 12,447,823