ROTARY SWITCH APPARATUS FOR A VEHICLE AND METHOD FOR DETERMINING A SWITCH POSITION OF A ROTARY SWITCH
A rotary switch apparatus contains a rotary switch that has a moving operating element that contains a magnetic device for generating a magnetic field. The rotary switch apparatus also contains a Hall sensor device that is configured to generate a sensor signal representing a characteristic of the magnetic field, to determine a position signal using the sensor signal, which indicates a rotation position of the operating element about an actuation axis and a longitudinal position of the operating element along the actuation axis.
1 . A rotary switch apparatus for a vehicle, the rotary switch apparatus comprising:
a rotary switch comprising a moving operating element configured to rotate about an actuation axis and move longitudinally along a longitudinal axis of the operating element, wherein the operating element comprises a magnetic device that generates a magnetic field;
a Hall sensor device configured to generate a sensor signal representing a characteristic of the magnetic field; and
a determination device configured to determine a position signal using the sensor signal, which indicates a rotational position of the operating element about the actuation axis and a longitudinal position of the operating element along the actuation axis.
2 . The rotary switch apparatus according to claim 1 , wherein the determination device is configured to determine the position signal using, at least in part, a temperature signal that indicates a current ambient temperature at the operating element.
3 . The rotary switch apparatus according to claim 2 , wherein the determination device is configured to determine a temperature-adjusted sensor signal using the sensor signal and the temperature signal, and is configured to determine the position signal using the temperature-adjusted sensor signal.
4 . The rotary switch apparatus according to claim 1 , wherein the determination device is configured to determine the position signal using a predetermined reference value assigned to at least one of a predetermined rotational position or a predetermined longitudinal position.
5 . The rotary switch apparatus according to claim 4 , wherein the determination device is configured to determine the predetermined reference value in response to a calibration signal using the sensor signal.
6 . The rotary switch apparatus according to claim 4 , wherein the determination device is configured to determine a temperature-adjusted reference value using the predetermined reference value and a temperature signal that indicates a current ambient temperature at the operating element, and is configured to determine the position signal using the sensor signal and the temperature-adjusted reference value.
7 . The rotary switch apparatus according to claim 1 , wherein the magnetic device is a ring magnet.
8 . The rotary switch apparatus according to claim 1 , wherein the Hall sensor device comprises at least one 3D Hall sensor.
9 . The rotary switch apparatus according to claim 8 , wherein the at least one 3D Hall sensor is configured to detect a change in the characteristic of the magnetic field caused by a rotational movement or by a longitudinal movement.
10 . A method for determining a switch position of a rotary switch that has a moving operating element configured to rotate about a rotational axis or move longitudinally along the rotational axis of the operating element, wherein the operating element contains a magnetic device for generating a magnetic field, and wherein the method comprises:
generating, by a Hall sensor device, a sensor signal representing a characteristic of the magnetic field;
inputting, by a determination device, the sensor signal via an interface; and
determining, by the determination device, a position signal using the sensor signal, wherein the position signal indicates a rotational position of the operating element about an actuation axis and a longitudinal position of the operating element along the actuation axis.
11 . The method according to claim 10 , further comprising:
determining, by the determination device, the position signal using, at least in part, a temperature signal that indicates a current ambient temperature at the operating element.
12 . The method according to claim 11 , further comprising:
determining, by the determination device, a temperature-adjusted sensor signal using the sensor signal and the temperature signal; and
determining, by the determination device, the position signal using the temperature-adjusted sensor signal.
13 . The method according to claim 10 , further comprising:
determining, by the determination device, the position signal using a predetermined reference value assigned to at least one of a predetermined rotational position or a predetermined longitudinal position.
14 . The method according to claim 13 , further comprising:
determining, by the determination device, the predetermined reference value in response to a calibration signal using the sensor signal.
15 . The method according to claim 13 , further comprising:
determining, by the determination device, a temperature-adjusted reference value using the predetermined reference value and a temperature signal that indicates a current ambient temperature at the operating element; and
determining, by the determination device, the position signal using the sensor signal and the temperature-adjusted reference value.
16 . The rotary switch apparatus according to claim 8 , wherein the at least one 3D Hall sensor comprises a single 3D Hall sensor.
17 . The rotary switch apparatus according to claim 6 , wherein the determination device is configured to determine the predetermined reference value in response to a calibration signal using the sensor signal.
18 . The rotary switch apparatus according to claim 2 , wherein the determination device is configured to determine the position signal using a predetermined reference value assigned to at least one of a predetermined rotational position or a predetermined longitudinal position.