This application claims benefit of priority to Japanese Patent Application No. 2013-106217 filed on May 20, 2013, which is hereby incorporated by reference in its entirety.
1. Field of the Disclosure
The present disclosure relates to an electrostatic capacitance-type input device utilizing an algorithm for low signal detection in cases of operating with a glove, and so forth.
2. Description of the Related Art
Japanese Unexamined Patent Application Publication No. 2009-181232 discloses an invention relating to a touch switch that sets a first threshold value for judging the presence or absence of a touch operation and a second threshold value lower than the first threshold value and determines each of two cases to be the touch operation. One of the two cases is a case of exceeding the first threshold value, the other thereof is a case where a characteristic value of a detection value is high and the second threshold value is exceeded while the first threshold value is not exceeded. Here, the characteristic value of the detection value means a touch operation time.
In addition to a case of performing a touch operation with a bare hand, in a case of performing a touch operation with, for example, a glove, a signal intensity output based on a change in electrostatic capacitance becomes smaller than in the case of the bare hand.
Therefore, a case where, in addition to the first threshold value, the second threshold value lower than the first threshold value is set, a signal intensity exceeding the second threshold value while falling below the first threshold value is obtained, and furthermore, the signal intensity is obtained during a predetermined touch operation time is regarded as being in an operation state with wearing a glove or the like.
However, in Japanese Unexamined Patent Application Publication No. 2009-181232, since whether or not the touch operation is judged based only on comparison between the signal intensity and the threshold values, there has been an problem that if a finger unintentionally exists in the vicinity of a touch switch without the intention of an operator and a weak signal intensity between the first threshold value and the second threshold value is obtained during a predetermined time at that time, it is determined to be the same touch operation as an operation state with wearing a glove. In other words, in the algorithm for low signal detection in Japanese Unexamined Patent Application Publication No. 2009-181232, in some case it is difficult to distinguish between an operation with wearing a glove or the like and a case where a finger happens to unintentionally exist in the vicinity of a touch sensor without the intention of an operator, and there has been a possibility that an erroneous input occurs.
An input device capable of detecting, based on a change in electrostatic capacitance, an operation in a state of being in contact with or located near an operation screen. The input device includes a control unit configured to have a first threshold value for a signal intensity, a second threshold value lower than the first threshold value, and a third threshold value for a fluctuation in a coordinate within a predetermined time, wherein the third threshold value has a predetermined range, and in the control unit, in a case where the signal intensity exceeding the first threshold value is obtained or a case where the signal intensity is situated between the first threshold value and the second threshold value and the fluctuation in a coordinate falls within the range of the third threshold value, an operation is recognized as the operation for the operation screen.
Not only the signal intensity but also coordinate data is integrated into an algorithm for operation judgment for the operation screen.
In other words, the first threshold value for the signal intensity and the second threshold value lower than the first threshold value are set, and in a case of performing a contact operation on the operation screen with a bare hand, a signal intensity higher than the first threshold value is obtained, and the contact operation may be judged to be an operation for the operation screen.
In addition, in a case where the signal intensity exceeds the second threshold value while falling below the first threshold value, it is judged, using the coordinate data, whether or not an operation for the operation screen.
As for the coordinate data, a fluctuation in a coordinate within a predetermined time is used, and it is judged whether or not the fluctuation in a coordinate falls within the range of the third threshold value.
As illustrated in
The operation screen 2 is configured using a transparent resin sheet, glass, plastic, or the like.
The sensor unit 3 is an electrostatic capacitance-type sensor, and a large number of first electrodes 6 and a large number of second electrodes 7 are disposed so as to intersect with each other. The individual electrodes 6 and 7 are formed using indium tin oxide (ITO) or the like. The individual first electrodes 6 are formed in linear arrangements so as to be headed in a Y direction, and disposed at regular intervals in an X direction. In addition, the individual second electrodes 7 are formed in linear arrangements so as to be headed in the X direction, and disposed at regular intervals in the Y direction.
As illustrated in
Each of
In
As illustrated in
As illustrated in
In the retaining unit 10, a signal intensity and coordinate data obtained from the sensor unit 3 are retained. In the threshold value storage unit 11, a first threshold value LV1 and a second threshold value LV2 to be compared with the signal intensity are stored. In addition, a third threshold value LV3 to be compared with a fluctuation in a coordinate is stored. Note that the first threshold value LV1 is adjusted to a value larger than the second threshold value LV2.
In addition, in the calculation unit 12, a variance a and so forth are calculated based on the retained coordinate data. In the comparison unit 13, the signal intensity is compared with the first threshold value LV1 and the second threshold value LV2, and the value of a fluctuation in a coordinate is compared with the third threshold value LV3.
Using a flowchart illustrated in
First, in a step ST1 illustrated in
Next, in a case of not satisfying the condition of the step ST1, the processing proceeds to a step ST3 illustrated in
The signal intensity Z obtained in a case where each of the operations in
In the step ST4 illustrated in
A case where, as illustrated in
On the other hand, a case the variances a of the X coordinate and the Y coordinate do not converge within the predetermined time t (measurement time t) is judged not to be an operation for the operation screen 2 (step ST9).
As illustrated in the step ST6 in
Alternatively, a fluctuation in a coordinate is not calculated with the variance σ, the fluctuation amount (movement distance) of a coordinate within the predetermined time t is calculated, and it may be determined whether or not the fluctuation amount falls within the range of a third threshold value LV3 (the third threshold value LV3 here is different from the third threshold value at the time of comparing the variance σ).
In a case where the operator unintentionally brings the finger F close to the operation screen 2, the motion of the finger F is unstable, and a fluctuation in a coordinate is out of the range of the third threshold value LV3. Therefore, based on a fluctuation in a coordinate, it may be judged whether or not the operation of
In this way, in the present embodiment, not only the signal intensity but also the coordinate data is integrated into the algorithm for operation judgment for the operation screen.
In a case where, as illustrated in, for example,
For example, in a case where the operator unintentionally brings the finger F close to the operation screen, or the like, the coordinate data becomes unstable. Therefore, a fluctuation in a coordinate is out of the range of the third threshold value LV3, and the case may be determined not to be an operation for the operation screen 2.
In this way, even in a case where the operator unintentionally brings the finger F close to the operation screen 2, the signal intensity Z exists between the first threshold value LV1 and the second threshold value LV2 in some cases. However, in the present embodiment, the stability of the coordinate data is used as a condition, and hence, a trouble that a case where the operator unintentionally brings the finger F close to the operation screen 2 is recognized as an operation for the operation screen may be suppressed, and an operation with wearing a glove 15 (
As described above, in the present embodiment, the algorithm for the low signal detection (the signal intensity exists between the first threshold value and the second threshold value) is improved using the signal intensity and the coordinate data, and hence, the erroneous input of the input device 1 may be suppressed compared with the related art.
Note that, in the step ST1 in
In addition, the signal intensity Z2 illustrated in
Note that while, in the present embodiment, the input device 1 capable of detecting the X coordinate and the Y coordinate is adopted, a configuration of being capable of only detecting, for example, one coordinate thereof may be adopted. In that case, using detectable coordinate data, it is determined whether or not an operation for the operation screen 2.
In addition, in a case of the input device 1 capable of detecting the X coordinate and the Y coordinate, at least one of the X coordinate and the Y coordinate may be used only for the coordinate data used for operation judgment for
Note that the individual threshold values LV1, LV2, and LV3 may be variously modified based on a desired input sensitivity, a model equipped therewith, or the like.
The input device 1 in the present embodiment may be incorporated in an electronic device such as a personal computer, a portable device, a game machine, or the like, and in particular, may be effectively applied as a device for a vehicle.
For example, even in a case of driving with wearing driving gloves, an input operation for an input device may be performed.
Number | Date | Country | Kind |
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2013-106217 | May 2013 | JP | national |