Motor-vehicle operating device having a resiliently mounted actuating element and operating haptics
US-10106101-B2 · Oct 23, 2018 · US
US10418992B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10418992-B2 |
| Application number | US-201515327669-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 8, 2015 |
| Priority date | Jul 22, 2014 |
| Publication date | Sep 17, 2019 |
| Grant date | Sep 17, 2019 |
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An operating unit for an electrical apparatus is provided with a housing, an operating strip and a support element arranged in the housing. The operating strip is mounted on the support element about a tilt axis extending transversely to the longitudinal direction of the operating strip. The support element is tiltable parallel to the longitudinal direction of the operating strip. The support element is elastically prestressed, into a pivot position, which is detected by a pivot position sensor. Two tilt detection sensors detect a tilting of the operating strip about the tilt axis when it is actuated. The operating unit is provided with a controller for receiving signals and determining the operating field on which a finger is applied with an actuating force required for adopting the pivot position of the support element and triggering the function associated with the determined operating field.
Opening claim text (preview).
The invention claimed is: 1. An operating unit for an electrical apparatus, in particular for a vehicle component such as, for example, a heating, ventilation and/or air conditioning installation, the operating unit being provided with a housing having a front wall, an operating strip projecting beyond the front wall, the operating strip having an operating surface with a plurality of operating fields for triggering different apparatus functions, the operating fields being arranged side by side in a longitudinal direction of the operating strip and between two ends of the operating strip, a support element for the operating strip, which is arranged in the housing, wherein the operating strip is mounted on the support element about a tilt axis that extends transversely to the longitudinal direction of the operating strip, and wherein the support element is pivotable in at least one pivoting direction about a pivot axis that extends parallel to the longitudinal direction of the operating strip between a rest position into which the support element is elastically prestressed and a pivot position, at least one pivot position sensor for detecting the pivot position of the support element when the operating strip is actuated, two tilt detection sensors for detecting a tilting of the operating strip about the tilt axis when the operating strip is actuated by manually pressing against an operating field of the operating strip, wherein the tilt detection sensors detect a movement of the ends of the operating strip when the same is actuated, and a controller for receiving the signals of the pivot position sensor and the tilt detection sensors and for determining, on the basis of the signals emitted by the tilt detection sensors, the operating field on which, upon manual actuation of the operating strip, a finger of one hand is applied with an actuating force required for adopting the pivot position of the support element and for triggering the apparatus function that is associated with the determined operating field. 2. The operating unit of claim 1 , wherein the operating strip has its ends connected with the support element via flexible webs and that the tilt detection sensors detect a bending of the flexible webs when the operating strip is tilted about the tilt axis. 3. The operating unit of one of claim 1 , comprising a tilt axis sensor for the detection of a movement of the tilt axis in a normal movement direction extending perpendicularly to the tilt axis itself, as well as to the pivot axis. 4. The operating unit of claim 1 , wherein the tilt axis is defined by an elastic torsion spring. 5. The operating unit of claim 4 , wherein the torsion spring is flexurally rigid with respect to a bending in the normal movement direction. 6. The operating unit of claim 4 , wherein the torsion spring is designed as a connecting web which, similar to the flexible webs, protrudes to a common side from a transversal web, the flexible webs and the connecting web being fixed to the support element and bear the operating strip. 7. The operating unit of claim 6 , wherein for reasons of its geometry, its material and/or the position of its connection with the support element and/or with the operating strip, the connecting web is more rigid than the flexible webs. 8. The operating unit of claim 1 , wherein the support element is pivotable from the rest position in two opposite pivot directions and thus into two opposite pivot positions, and that the pivot position sensor detects the respective pivot position adopted, or that two pivot position sensors are provided for the detection of a respective other one of the two pivot positions. 9. The operating unit of claim 8 , wherein each tilt detection sensor detects a movement of the respective end of the operating strip and/or a moment acting on the respective end of the operating strip in each of two opposite movement directions. 10. The operating unit of claim 9 , wherein, in a rest position of the operating strip in which the operating strip is not actuated, every tilt detection sensor detects a prestressing of the respective flexible web, and that the movement direction of an end of the operating strip may be detected based on an increase or decrease of the signal of the tilt detection sensor outputted by this sensor when the operating strip is in the rest position.
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