SWITCHING DEVICE AND METHOD FOR DETECTING WHETHER SAID SWITCHING DEVICE IS BEING ACTUATED
20170221661 · 2017-08-03
Assignee
Inventors
Cpc classification
International classification
Abstract
A switch device is presented. The switch device comprises a magnet supported such that it can be tilted, a transmitter device coupled to the magnet, designed to cause a tilting movement of the magnet in response to a switch actuation of the switch device, and a sensor device, having a first sensor element and a second sensor element for detecting the tilting movement, wherein the first sensor element is designed to acquire a plurality of first magnetic field values of a magnetic field shift of a magnetic field generated by the magnet caused by the tilting movement, and the second sensor element is designed to acquire a plurality of second magnetic field values of a second magnetic field shift of the magnetic field generated by the magnetic caused by the tilting movement.
Claims
1. A switch device, the switch device comprising: a magnet supported such that it can tilt; a transmitter device coupled to the magnet and designed to cause a tilting movement of the magnet in response to a switch actuation of the switch device; and a sensor device having a first sensor element and a second sensor element for detecting the tilting movement; wherein the first sensor element is designed to acquire a plurality of first magnetic field values of a first magnetic field shift of a magnetic field generated by the magnet caused by the tilting movement; and wherein the second sensor element is designed to acquire a plurality of second magnetic field values of a second magnetic field shift of the magnetic field generated by the magnet caused by the tilting movement.
2. The switch device of claim 1, wherein the first sensor element is assigned to a magnetic north pole section of the magnet and the second sensor element is assigned to a magnetic south pole section of the magnet.
3. The switch device of claim 1, wherein the switch device further comprises an evaluation device coupled to the sensor device, which is designed to provide an actuation signal to indicate the switch actuation when one of the plurality of first magnetic field values corresponds to a predetermined first actuation value and/or one of the plurality of second magnetic field values corresponds to a predetermined second actuation value.
4. The switch device of claim 3, wherein the switch device further comprises a mechanical element, which is designed to indicate, haptically and/or acoustically, a switch actuation of the transmitter device sufficient for providing the actuation signal.
5. The switch device of claim 4, wherein the mechanical element comprises at least one snap disk.
6. The switch device of claim 3, wherein the evaluation device is designed to determine a curve of the first magnetic field values based on the plurality of first magnetic field values, to acquire a first current magnetic field value of the plurality of first magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined first actuation value to the first current magnetic field value and/or to determine a curve of the second magnetic field values based on the plurality of second magnetic field values, to acquire a second current magnetic field value of the plurality of second magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined second actuation value to the second current magnetic field value.
7. The switch device of claim 3, wherein the evaluation device is furthermore designed to modify the predetermined first actuation value to the first current magnetic field value when the first current magnetic field value lies within a predetermined first magnetic field value interval, and to modify the predetermined second actuation value to the second current magnetic field value when the second current magnetic field value lies within a predetermined second magnetic field value interval.
8. The switch device of claim 1, wherein the transmitter device is furthermore designed to cause a further tilting movement of the magnet, counter to the initial tilting movement, in response to a further switch actuation of the switch device, wherein, to detect the further tilting movement, the first sensor element is furthermore designed to acquire a plurality of further first magnetic field values of a further first magnetic field shift of the magnetic field generated by the magnet caused by further tilting movement, and the second sensor element is furthermore designed to acquire a plurality of further second magnetic field values of a further second magnetic field shift of the magnetic field generated by the magnet caused by the further tilting movement.
9. The switch device of claim 8, wherein the switch device further comprises a disk supporting the magnet and an axle passing through the disk to support the magnet such that it can tilt, and the transmitter device has a first transmitter element and a second transmitter element, wherein the first transmitter element is coupled to the disk at a first position, and is designed to cause the tilting movement and the second transmitter element is coupled to the disk at a second position, and is designed to cause the further tilting movement.
10. A method for detecting an actuation of a switch device, the method comprising: presenting a magnet supported such that it can tilt, a transmitter device coupled to the magnet, which is designed to cause a tilting movement of the magnet in response to a switch actuation of the switch device, and a sensor device, comprising a first sensor element and a second sensor element for detecting the tilting movement, wherein the first sensor element is designed to acquire a plurality of first magnetic field values of a first magnetic field shift of a magnetic field generated by the magnet caused by the tilting movement, and the second sensor element is designed to acquire a plurality of second magnetic field values of a second magnetic field shift of the magnetic field generated by the magnet caused by the tilting movement; and presenting an actuation signal to indicate the switch actuation when one of the plurality of first magnetic field values corresponds to a predetermined first actuation value, and one of the plurality of second magnetic field values corresponds to a predetermined second actuation value.
11. The method of claim 10, the method further comprising determining a curve of the first magnetic field values and a curve of the second magnetic field values; acquiring a first current magnetic field value of the plurality of first magnetic field values when the curve of the first magnetic field values has a predetermined characteristic, and a second current magnetic field value of the plurality of second magnetic field values when the curve of the second magnetic field values has a predetermined characteristic; modifying the predetermined first actuation value to the first current magnetic field value and the predetermined second actuation value to the second current magnetic field value.
12. A computer program product having programming code that is executed on a switch device for detecting an actuation of a switch device, the computer program product comprising: a magnet supported such that it can tilt; a transmitter device coupled to the magnet, which is designed to cause a tilting movement of the magnet in response to a switch actuation of the switch device; a sensor device comprising a first sensor element and a second sensor element for detecting the tilting movement, wherein the first sensor element is designed to acquire a plurality of first magnetic field values of a first magnetic field shift of a magnetic field generated by the magnet caused by the tilting movement, and the second sensor element is designed to acquire a plurality of second magnetic field values of a second magnetic field shift of the magnetic field generated by the magnet caused by the tilting movement; and an actuation signal to indicate the switch actuation when one of the plurality of first magnetic field values corresponds to a predetermined first actuation value, and one of the plurality of second magnetic field values corresponds to a predetermined second actuation value.
13. The switch device of claim 2, wherein the switch device further comprises an evaluation device coupled to the sensor device, which is designed to provide an actuation signal to indicate the switch actuation when one of the plurality of first magnetic field values corresponds to a predetermined first actuation value and/or one of the plurality of second magnetic field values corresponds to a predetermined second actuation value.
14. The switch device of claim 13, wherein the switch device further comprises a mechanical element, which is designed to indicate, haptically and/or acoustically, a switch actuation of the transmitter device sufficient for providing the actuation signal.
15. The switch device of claim 14, wherein the mechanical element comprises at least one snap disk.
16. The switch device of claim 4, wherein the evaluation device is designed to determine a curve of the first magnetic field values based on the plurality of first magnetic field values, to acquire a first current magnetic field value of the plurality of first magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined first actuation value to the first current magnetic field value and/or to determine a curve of the second magnetic field values based on the plurality of second magnetic field values, to acquire a second current magnetic field value of the plurality of second magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined second actuation value to the second current magnetic field value.
17. The switch device of claim 5, wherein the evaluation device is designed to determine a curve of the first magnetic field values based on the plurality of first magnetic field values, to acquire a first current magnetic field value of the plurality of first magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined first actuation value to the first current magnetic field value and/or to determine a curve of the second magnetic field values based on the plurality of second magnetic field values, to acquire a second current magnetic field value of the plurality of second magnetic field values when the curve has a predetermined characteristic, and to modify the predetermined second actuation value to the second current magnetic field value.
18. The switch device of claim 4, wherein the evaluation device is furthermore designed to modify the predetermined first actuation value to the first current magnetic field value when the first current magnetic field value lies within a predetermined first magnetic field value interval, and to modify the predetermined second actuation value to the second current magnetic field value when the second current magnetic field value lies within a predetermined second magnetic field value interval.
19. The switch device of claim 2, wherein the transmitter device is furthermore designed to cause a further tilting movement of the magnet, counter to the initial tilting movement, in response to a further switch actuation of the switch device, wherein, to detect the further tilting movement, the first sensor element is furthermore designed to acquire a plurality of further first magnetic field values of a further first magnetic field shift of the magnetic field generated by the magnet caused by further tilting movement, and the second sensor element is furthermore designed to acquire a plurality of further second magnetic field values of a further second magnetic field shift of the magnetic field generated by the magnet caused by the further tilting movement.
20. The switch device of claim 18, wherein the switch device further comprises a disk supporting the magnet and an axle passing through the disk to support the magnet such that it can tilt, and the transmitter device has a first transmitter element and a second transmitter element, wherein the first transmitter element is coupled to the disk at a first position, and is designed to cause the tilting movement and the second transmitter element is coupled to the disk at a second position, and is designed to cause the further tilting movement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The invention shall be explained in greater detail, in an exemplary manner, based on the attached drawings. Therein:
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION OF THE DRAWINGS AND THE PRESENTLY PREFERRED EMBODIMENTS
[0034] In the following description of preferred exemplary embodiments of the present invention, the same or similar reference symbols are used for the elements depicted in the various figures having similar functions, wherein there shall be no repetition of a description of these elements.
[0035]
[0036] In the exemplary embodiment shown in
[0037] In the exemplary embodiment of the switch device shown in
[0038] In the exemplary embodiment of the switch device 100 shown in
[0039] With the exemplary embodiment of the device 100 shown in
[0040] The exemplary switch device 100 in
[0041] As a further special feature, the exemplary embodiment of the switch device 100 shown in
[0042]
[0043] The curve 200 of the first magnetic field values 126 first exhibits an initial increase when the transmitter device of the switch device is actuated, such that an initial rate of change between successive first magnetic field values 126 is obtained. With further actuation, a resistance of the incorporated mechanical element to a pressure exerted by the actuator on the transmitter device increases, and the curve 200 of the first magnetic field values 126 levels off, whereby the rate of change between successive first magnetic field values 126 also decreases in relation to the first rate of change. When the mechanical element is overcome due to further actuation, the resistance is overcome, and the curve 200 exhibits a third increase, which is greater than the first increase. As a result, a third rate of change between successive first magnetic field values 126 occurs, which is greater than the first rate of change. A bend between the flat and steep sections of the curve 200 depicts a predefined characteristic in the curve 200, or a predefined characteristic in the rate of change between successive first magnetic field values 126, which is a sequence of a characteristic change in the curve of the tilting movement of the magnet caused by the mechanical element. When the predefined characteristic is detected, a current magnetic field value, which lies, for example, directly prior to the bend, on the bend, or following the bend, can be detected as the first current magnetic field value 202 of the plurality of first magnetic field values 126, and it can be used to acquire a defined switching point of the switch device. For this, an evaluation device or an appropriate control device of the switch device can set the predefined first actuation value to the first current magnetic field value 202.
[0044] The curve 204 of the second magnetic field values 128 corresponds, in terms of its values to the curve 200 of the first magnetic field values 126, but with an inverse sign. The curve 204 has a corresponding bend, at which a second current magnetic field value 206 of the plurality of magnetic field values 128 is acquired, and can be used to acquire a defined switching point of the switch device. For this, the evaluation device, or the appropriate control device of the switch device can set the second actuation value to the second current magnetic field value 206.
[0045] According to exemplary embodiments, an evaluation device or a control device of an exemplary switch device presented herein can be designed to modify the predefined first actuation value to the first current magnetic field value 202, when the first current magnetic field value 202 lies within a predefined first magnetic field value interval 208. Accordingly, the evaluation device, or the control device, can be designed to modify the predefined second actuation value to the second current magnetic field value 206, when the second current magnetic field value 206 lies within a predefined second magnetic field value interval 210. The functionality for acquiring the switching point presented on the basis of the diagram in
[0046]
[0047] Contrary to the exemplary embodiment shown in
[0048] The illustration in
[0049]
[0050]
[0051] In the second tilted position shown in
[0052] The disk 300 shown in the exemplary embodiments of
[0053] The illustrations in
[0054] The detection of the actuation of the transmitter elements 302, 304 of the transmitter unit is detected through a change in the magnetic field direction of both magnetic sensors 120, 122, such that the effects of external fields can be detected, or deducted therefrom, respectively. Analog Hall sensors are used primarily for the magnetic sensors 120, 122. The use of a “double-die” 3D sensor is also conceivable, wherein in this case, an external field effect is not necessarily detected under all conditions.
[0055] As has already been explained in reference to
[0056]
[0057] In a step 602, an actuation signal is provided, for indicating a switch actuation when a magnetic field value of a plurality of first magnetic field values acquired by a first sensor of the switch device corresponds to a predefined first actuation value, and a magnetic field value of the plurality of second magnetic field values acquired by a second sensor of the switch device corresponds to a predefined second actuation value. In a step 604, a curve of the first magnetic field values and a curve of the second magnetic field values, or a curve of a rate of change of the first magnetic field values and a curve of a rate of change of the second magnetic field values are determined. When the curves of the magnetic field values, or the curves of the rates of change have a predefined characteristic, a first current magnetic field value of the plurality of first magnetic field values, and a second current magnetic field value of the plurality of second magnetic field values are acquired in step 606. Based on the current magnetic field value acquisition, the predefined first actuation value is modified to the first current magnetic field value, and the predefined second actuation value is modified to the second current magnetic field value in step 608.
[0058] The exemplary embodiments described herein and shown in the figures are selected merely by way of example. Different exemplary embodiments can be combined with one another, either in their entirety or with respect to individual features. Moreover, one exemplary embodiment can be supplemented with features of another exemplary embodiment. Furthermore, method steps according to the invention can be repeated, and also executed in a sequence different from that described herein.
[0059] If an exemplary embodiment comprises an “and/or” conjunction between a first feature and a second feature, then this can be read to mean that the exemplary embodiment according to one embodiment comprises both the first feature and the second feature, and according to another embodiment, comprises either just the first feature or just the second feature.
REFERENCE SYMBOLS
[0060] 100 Switch device [0061] 102 magnet [0062] 104 transmitter device [0063] 106 sensor device [0064] 108 north pole section of the magnet [0065] 110 south pole section of the magnet [0066] 112 magnetic field [0067] 114 axle [0068] 116 tilting movement [0069] 118 printed circuit board [0070] 120 first sensor element [0071] 122 second sensor element [0072] 124 axis of symmetry [0073] 126 first magnetic field value [0074] 128 second magnetic field value [0075] 130 evaluation device [0076] 132 actuation signal [0077] 134 mechanical element [0078] 200 curve of the first magnetic field values [0079] 202 first current magnetic field value [0080] 204 curve of the second magnetic field values [0081] 206 second current magnetic field value [0082] 208 first magnetic field value interval [0083] 210 second magnetic field value interval [0084] 300 disk [0085] 302 first transmitter element [0086] 304 second transmitter element [0087] 306 first position on the disk [0088] 308 first actuation element [0089] 310 second position on the disk [0090] 312 second actuation element [0091] 500 further tilting movement [0092] 600 method for detecting an actuation of a switch device [0093] 602 step for the provision of an actuation signal [0094] 604 step for the determination of a curve of rates of change [0095] 606 step for acquiring a first and second current magnetic field value [0096] 608 step for modifying the predetermined actuation value to the current magnetic field value