Device for operating multiple functions in a motor vehicle
A device for operating multiple functions includes an operating element and a base. The base has side bearings and pins. The operating element has rotational axle end sections mounted in guide slots of the side bearings, respectively, to pivotably be mounted to the base about an axis of rotation to thereby be movable between at least two positions. At least one of the positions is assigned to a switching function. The operating element is further mounted to the base on a centered bearing between the side bearings of the base, and the operating element is supported on the pins of the base.
1. A device for operating multiple functions, the device comprising:
a base having side bearings and pins;
an operating element having rotational axle end sections mounted in guide slots of the side bearings, respectively, to pivotably be mounted to the base about an axis of rotation to thereby be movable between at least two positions, wherein at least one of the positions is assigned to a switching function;
wherein the operating element is further mounted to the base on a centered bearing between the side bearings of the base, and the operating element is supported on the pins of the base; and
wherein the operating element futher includes a force sensor disposed between the operating element and one of the pins of the base, the force sensor detects pressure forces pressing the operating element toward the base as the pressure forces cause the force sensor to press more against the one of the pins, the force sensor detects tensile forces pulling the operating element away from the base as the tensile forces cause the force sensor to press less against the one of the pins.
2. The device of claim 1 wherein:
the operating element further includes a receptacle, wherein the force sensor is disposed between the receptacle and an end section of the one of the pins.
3. The device of claim 1 further comprising:
a compression spring configured to pre-tension the operating element against the force sensor.
4. The device of claim 1 wherein:
the force sensor is disk-shaped.
5. The device of claim 1 wherein:
the force sensor functions according to a capacitive principle.
6. The device of claim 1 wherein:
the force sensor functions according to a piezoelectric principle.
7. The device of claim 1 wherein:
the base and the operating element each further include a respective centering wall section which form the centered bearing.
8. The device of claim 1 wherein:
the mounting of the operating element to the base on the centered bearing limits mobility of the operating element relative to the base in a vertical direction perpendicular to the axis of rotation.
9. The device of claim 1 wherein:
the operating element includes a surface opening and the base plate includes a centering element, the centering element extending through the surface opening to thereby limit movability of the operating element in a direction parallel to the axis of rotation.
10. The device of claim 1 wherein:
the operating element forms a switching strip having a plurality of touch-sensitive capacitive sensor surfaces that trigger different functions through a manual actuation.
11. A device for operating multiple functions, the device comprising:
a base having side bearings and pins;
an operating element having rotational axle end sections mounted in guide slots of the side bearings, respectively, to pivotably be mounted to the base an axis of rotation to thereby be movable between at least two positions, wherein at least one of the positions is assigned to a switching function;
wherein the operating element is further mounted to the base on a centered bearing between the side bearings of the base, and the operating element is supported on the pins of the base; and
wherein the operating element further includes a plurality of touch-sensitive capacitive sensor surfaces that trigger different functions through a manual actuation.
12. A device for operating multiple functions in a vehicle, the device comprising:
a base having two side bearings and two side pins, the side bearings having guide slots extending along a vertical axis;
an operating element spaced apart from the base along a vertical axis, the operating element having rotational axle end sections floatingly mounted in the guide slots of the side bearings, respectively, to pivotably be mounted to the base about an axis of rotation, perpendicular to the vertical axis, to thereby be movable between at least two positions, wherein at least one of the positions is assigned to a switching function;
wherein the operating element is further mounted over the base in a centered manner relative to the vertical axis on a centered bearing between the side bearings of the base, and the operating element is floatingly supported on the side pins of the base;
wherein the base and the operating element each further include a respective centering wall section which form the centered bearing.
13. The device of claim 12 wherein:
the operating element further includes force sensors respectively disposed between the operating element and the side pins of the base, the force sensors detect pressure forces pressing the operating element toward the base as the pressure forces cause the force sensors to press more against the side pins, the force sensors detects tensile forces pulling the operating element away from the base as the tensile forces cause the force sensors to press less against the side pins.
14. The device of claim 13 wherein:
the operating element further includes receptacles, wherein the force sensors are disposed between respective ones of the receptacles and end sections of the side pins.
15. The device of claim 13 further comprising:
compression springs configured to pre-tension the operating element against the force sensors.
16. The device of claim 12 wherein:
the mounting of the operating element to the base on the centered bearing limits mobility of the operating element relative to the base along the vertical axis.
17. The device of claim 12 wherein:
the operating element includes a surface opening and the base plate includes a centering element, the centering element extending through the surface opening to thereby limit movability of the operating element in a direction parallel to the axis of rotation.
18. The device of claim 12 wherein:
the operating element forms a switching strip having a plurality of touch-sensitive capacitive sensor surfaces that trigger different functions through a manual actuation.