CN106059558B - The method and its touch recognition system of touch action can not be identified by solving touch key-press - Google Patents

The method and its touch recognition system of touch action can not be identified by solving touch key-press Download PDF

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Publication number
CN106059558B
CN106059558B CN201610474173.6A CN201610474173A CN106059558B CN 106059558 B CN106059558 B CN 106059558B CN 201610474173 A CN201610474173 A CN 201610474173A CN 106059558 B CN106059558 B CN 106059558B
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touch
press
key
value
touch key
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CN106059558A (en
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姚宗付
佟国增
叶欣
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Suzhou Juyuan Microelectronics Ltd By Share Ltd
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Suzhou Juyuan Microelectronics Ltd By Share Ltd
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    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K17/00Electronic switching or gating, i.e. not by contact-making and –breaking
    • H03K17/94Electronic switching or gating, i.e. not by contact-making and –breaking characterised by the way in which the control signals are generated
    • H03K17/96Touch switches
    • H03K17/962Capacitive touch switches
    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03KPULSE TECHNIQUE
    • H03K2217/00Indexing scheme related to electronic switching or gating, i.e. not by contact-making or -breaking covered by H03K17/00
    • H03K2217/94Indexing scheme related to electronic switching or gating, i.e. not by contact-making or -breaking covered by H03K17/00 characterised by the way in which the control signal is generated
    • H03K2217/96Touch switches
    • H03K2217/9607Capacitive touch switches
    • H03K2217/960735Capacitive touch switches characterised by circuit details

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  • Electronic Switches (AREA)
  • Position Input By Displaying (AREA)
  • Input From Keyboards Or The Like (AREA)

Abstract

The invention discloses a kind of methods that solution touch key-press can not identify touch action, including 1) give system electrification, and system takes multiple scan touch key-press, set out suitable high threshold values VH and low valve valve VL;2) system enters low-power consumption mode, continues to test touch key-press to determine whether wake-up system;3) enter normal mode after system is waken up, make to be compared with high threshold values VH and low valve valve VL respectively by the capacitor conversion value for scanning touch key-press to judge in a manner of system wake-up;4) if system wakes up since finger touches, identifies which specific key is touched simultaneously comprehensive analysis and goes out the behavior touched, then execute specific touch behavior operation;5) if system wakes up since finger is taken away, touch key-press is taken multiple scan, new more suitable high threshold values and low valve valve is set out, enters step 2).

Description

The method and its touch recognition system of touch action can not be identified by solving touch key-press
Technical field
The present invention relates to capacitance type touch key fields, it particularly relates to which a kind of solution touch key-press can not identify touching Touch the method and its touch recognition system of movement.
Background technique
Compared to traditional mechanical key, capacitance touch induced key is not only durable, long service life but also takes into account The advantages that safety, beauty, it has changed the method for traditional mechanical key, only needs gently touch, so that it may very square Just reach key control effect, and have more more flexible control methods, such as slip gesture control etc..It is wide It is general to be applied to the multiple fields such as mobile phone, household electrical appliances, smart home even Industry Control.In user experience, capacitance touch sense Answering the false triggering of key or triggering insensitive is most important problem, and normal initialization of the system when powering on rises among these To important role, be otherwise likely to occur initialization after operation irregularity the case where, the power-up initializing for how reaching stable is It has to consider the problems of.
Firstly, take off capacitance touch induced key basic functional principle, as shown in Figure 1, when no touch, on key There is equivalent parasitic capacitance C0, when finger touches, it will introduce a capacitor C1 and be parallel on key, because of finger and the earth Between equivalent capacity Cbody it is very big, corresponding capacitive reactance can be ignored, thus the potential of finger and the earth it is of substantially equal, this Sample has been equivalent on key a capacitor C1 in parallel, and capacitor increases, and corresponding conversion value becomes larger, so there is no touch two A suitable threshold value is chosen between conversion value in the case of kind, so that it may touch action is correctly identified, when capacitor conversion value is less than When this threshold value, it is judged as key no touch, and when capacitor conversion value is greater than this threshold value, then it is judged as touch action;
The disturbed condition in view of ambient noise is wherein needed in given threshold, because the capacitor on key is about tens Pico farad, the capacitance variations that finger introduces are smaller (within 10pf), so noise jamming cannot ignore, it is general corresponding The situation of change of capacitor conversion value on to key is reflected in the value that continuous several times scan, and can change within the scope of one, Change namely between peak and minimum, it is random when noise jamming, it is possible to by highest within the regular hour The average value of value and minimum regards capacitor conversion value as, when finger touch, noise jamming it is also the same follow presence, Average value can follow finger to touch and become larger.
In being normally applied system, currently used recognition methods is: upon power-up of the system, first sweeping one for touch key-press Group conversion value chooses suitable threshold value according to the class value, then sets good threshold, at this time in order to meet the needs of low-power consumption, one As require system to enter low-power consumption mode, while the detection work of touch key-press carries out always, when having detected touch behavior It is normal since waking up system under low-power consumption mode when (touch key-press conversion value is higher than given threshold), one group is then swept again The capacitor conversion values of membrane keyboard identify which specific key is touched according to this class value, then execute corresponding operating.
In above-mentioned application scenarios, it requires to be the behavior that cannot have touch when system electrification, otherwise just will appear System cannot be waken up after entering low-power consumption by touch action, and subsequent touch action also cannot identified situation.Cause Touch behavior when to power on, will lead to the threshold value set for the first time is the value that key is under touch condition, is entered in system low After power consumption, it is difficult the behavior (threshold value is capacitor conversion values when touching at this time) that key range again is touched, such system is just It can be constantly in low-power consumption mode, the meaning of its application cannot be lost by the touch behavioral arousal of key.
For the problems in the relevant technologies, currently no effective solution has been proposed.
Summary of the invention
For above-mentioned technical problem in the related technology, the present invention proposes that a kind of solution touch key-press can not identify that touch is dynamic The method and its touch recognition system of work, when can reach even under touch condition, the touch behavior after powering on also can quilt The effect normally identified.
To realize the above-mentioned technical purpose, the technical scheme of the present invention is realized as follows:
A method of touch action can not be identified by solving touch key-press, comprising the following steps:
S1 gives system electrification, and system takes multiple scan touch key-press, sets out suitable high threshold VH and Low threshold VL;
S2, system enter low-power consumption mode, continue to test touch key-press to determine whether wake-up system;
S3, system enter normal mode after being waken up, and distinguish the capacitor conversion value by scanning to touch key-press It is compared with high threshold VH and Low threshold VL to judge in a manner of system wake-up;
S4 identifies which specific key is touched and comprehensive analysis goes out to touch if system wakes up since finger touches Behavior, then execute and specific touch behavior operation;
S5 takes multiple scan touch key-press if system wakes up since finger is taken away, and sets out new more suitable High threshold and Low threshold, enter step S2.
Preferably, step S1 further comprises:
S11 gives system electrification;
S12, Multiple-Scan touch key-press is corresponding to obtain multiple groups conversion value, takes maximum value Vhigh therein and minimum value VH and VL is calculated according to certain algorithm in Vlow;
S13 sets VH as high threshold, and VL is Low threshold.
Preferably, when being under touch condition, then the larger conversion value when threshold value set is touches is non-tactile when being in Smaller conversion value under state, then when the threshold value set is no touch.
Preferably, step S3 further comprises:
S31, system enter normal mode of operation after being waken up, and scan to obtain one group of capacitor conversion first to touch key-press Value, it is assumed that be VA;
S32 compares VA and the high-low threshold value of setting, and when VA is greater than VH, explanation is waken up since finger touches System;And when VA is less than VL, explanation is to have waken up system since finger is taken away.
Preferably, step S4 further comprises:
S41 needs after being judged as has finger touch key-press for each key scan, for identify it is specific which Key is touched;
S42, after recognizing the touch of specific key, comprehensive analysis goes out the behavior type touched;
S43 executes specific touch behavior operation.
Preferably, the behavior type of the touch includes short-press, long-pressing and sliding.
Preferably, it when identifying in the normal mode less than the behavior of touch, to meet low-power consumption demand, then to enter step S2, into low power mode of operation.
Preferably, step S5 further comprises:
S51 has waken up system because finger takes away when being judged as, in the state of no touch, continuous several times has been needed to scan Touch key-press, obtains enough capacitor conversion values, chooses peak and minimum, and be calculated new more suitable VH with VL;
High-low threshold value is respectively set as new VH and VL, enters step S2 by S52.
It is a kind of to identify the touch recognition system of touch action, including control chip, touch for solving touch key-press Circuit, ADC conversion circuit, high threshold decision circuitry, Low threshold decision circuitry and the logic sum gate for exporting touch signal;The touching Circuit is touched to be connected with the ADC conversion circuit, the ADC conversion circuit respectively with the high threshold decision circuitry and Low threshold Decision circuitry is connected, and the high threshold decision circuitry and Low threshold decision circuitry are connected with the logic sum gate, described Logic sum gate is connected by conducting wire with the control chip, wherein the ADC conversion circuit is to by the mould on touch key-press Quasi- signal is converted to digital signal, is further processed convenient for digital circuit;The high threshold decision circuitry is to convert electricity for ADC The digital value of road conversion is compared judgement with the high threshold set, when the digital value of ADC conversion circuit conversion is higher than high threshold When value, touch recognition signal is generated;The Low threshold decision circuitry to the digital value of converting ADC conversion circuit with set Low threshold be compared judgement, when ADC conversion circuit conversion digital value be lower than Low threshold when, generate touch recognition signal.
Further, the high threshold decision circuitry and Low threshold decision circuitry include that numerical value comparison module and threshold value are posted Storing module.
Beneficial effects of the present invention: by realizing the arousal function of two kinds of threshold values when realizing touch detection control circuit, Respectively high threshold wakes up and Low threshold wakes up, meet be greater than high threshold or lower than Low threshold condition when can wake up and be System, in this way after powering under key is in touch condition, is arranged suitable Low threshold, and then system enters low-power consumption mode, when After key finger unclamps, the conversion value of scanning is lower than the Low threshold set, so that it may which then normal wakeup system starts normal Identification operates, to solve the problems, such as that touch-control identifying system is constantly in low power consumpting state and cannot be waken up.
Touch recognition system of the present invention, the identification of touch action is realized using the judgment method of two threshold values, Touch signal is generated when capacitor conversion value is greater than high threshold or lower than Low threshold, the capacitor on such touch key-press increases Or capacitor becomes smaller and can be correctly validated out.
Detailed description of the invention
It in order to more clearly explain the embodiment of the invention or the technical proposal in the existing technology, below will be to institute in embodiment Attached drawing to be used is needed to be briefly described, it should be apparent that, the accompanying drawings in the following description is only some implementations of the invention Example, for those of ordinary skill in the art, without creative efforts, can also obtain according to these attached drawings Obtain other attached drawings.
Fig. 1 is touch key-press working principle diagram described in background technique according to the present invention;
Fig. 2 is described according to embodiments of the present invention can not to identify the touch recognition of touch action for solving touch key-press The structural schematic diagram of system;
Fig. 3 is that the key of the embodiment of the present invention is in the scene figure that works on power of touch condition;
Fig. 4 is that the key of the embodiment of the present invention is in the scene figure that works on power of non-tactile state;
Fig. 5 is the stream for the method that a kind of solution touch key-press described according to embodiments of the present invention can not identify touch action Cheng Tu.
In figure: 1, touch circuit;2, chip is controlled;3, ADC conversion circuit;4, Low threshold decision circuitry;5, high threshold is sentenced Deenergizing;6, logic sum gate.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, those of ordinary skill in the art's every other embodiment obtained belong to what the present invention protected Range.
As shown in Figs. 1-5, a kind of solution touch key-press according to embodiments of the present invention can not identify touch action Method, comprising the following steps:
S1 gives system electrification, and system takes multiple scan touch key-press, sets out suitable high threshold VH and Low threshold VL;
S2, system enter low-power consumption mode, continue to test touch key-press to determine whether wake-up system;
S3, system enter normal mode after being waken up, and distinguish the capacitor conversion value by scanning to touch key-press It is compared with high threshold VH and Low threshold VL to judge in a manner of system wake-up;
S4 identifies which specific key is touched and comprehensive analysis goes out to touch if system wakes up since finger touches Behavior, then execute and specific touch behavior operation;
S5 takes multiple scan touch key-press if system wakes up since finger is taken away, and sets out new more suitable High threshold and Low threshold, enter step S2.
Preferably, step S1 further comprises:
S11 gives system electrification;
S12, Multiple-Scan touch key-press is corresponding to obtain multiple groups conversion value, takes maximum value Vhigh therein and minimum value VH and VL is calculated according to certain algorithm in Vlow;
S13 sets VH as high threshold, and VL is Low threshold.
Preferably, when being under touch condition, then the larger conversion value when threshold value set is touches is non-tactile when being in Smaller conversion value under state, then when the threshold value set is no touch.
Preferably, step S3 further comprises:
S31, system enter normal mode of operation after being waken up, and scan to obtain one group of capacitor conversion first to touch key-press Value, it is assumed that be VA;
S32 compares VA and the high-low threshold value of setting, and when VA is greater than VH, explanation is waken up since finger touches System;And when VA is less than VL, explanation is to have waken up system since finger is taken away.
Preferably, step S4 further comprises:
S41 needs after being judged as has finger touch key-press for each key scan, for identify it is specific which Key is touched;
S42, after recognizing the touch of specific key, comprehensive analysis goes out the behavior type touched;
S43 executes specific touch behavior operation.
Preferably, the behavior type of the touch includes short-press, long-pressing and sliding.
Preferably, it when identifying in the normal mode less than the behavior of touch, to meet low-power consumption demand, then to enter step S2, into low power mode of operation.
Preferably, step S5 further comprises:
S51 has waken up system because finger takes away when being judged as, in the state of no touch, continuous several times has been needed to scan Touch key-press, obtains enough capacitor conversion values, chooses peak and minimum, and be calculated new more suitable VH with VL;
High-low threshold value is respectively set as new VH and VL, enters step S2 by S52.
On the other hand, a kind of to identify the touch recognition system of touch action, including control for solving touch key-press Chip 7, touch circuit 1, ADC conversion circuit 3, high threshold decision circuitry 5, Low threshold decision circuitry 4 and output touch signal Logic sum gate 6;The touch circuit 1 is connected with the ADC conversion circuit 3, the ADC conversion circuit 3 respectively with the height Threshold decision circuit 5 is connected with Low threshold decision circuitry 4, the high threshold decision circuitry 5 and Low threshold decision circuitry 4 with The logic sum gate 6 is connected, and the logic sum gate 6 is connected by conducting wire with the control chip 2.
Wherein, the high threshold decision circuitry 5 and Low threshold decision circuitry 4 include that numerical value comparison module and threshold value are deposited Module.
The ADC conversion circuit 3 is convenient for digital circuit the analog signal on touch key-press is converted to digital signal It is further processed;The high threshold decision circuitry 5 is to the digital value for converting ADC conversion circuit 3 and the high threshold set It is compared judgement, when the digital value that ADC conversion circuit 3 is converted is higher than high threshold, generates touch recognition signal;The low threshold Value decision circuitry 4 is compared judgement with the Low threshold set to the digital value for converting ADC conversion circuit 3, when ADC turns When changing the digital value of the conversion of circuit 3 lower than Low threshold, touch recognition signal is generated;The logic sum gate 6 is to by the high threshold The touch recognition signal or get up that the touch recognition signal that value decision circuitry 5 generates is generated with Low threshold decision circuitry 4, two kinds of feelings Condition is effective touch recognition signal.
In conclusion by means of above-mentioned technical proposal of the invention, by realizing when realizing touch detection control circuit The arousal function of two kinds of threshold values, respectively high threshold wake up and Low threshold wakes up, and meet greater than high threshold or are lower than Low threshold Condition when can wake up system, in this way after powering under key is in touch condition, suitable Low threshold is set, then system Into low-power consumption mode, after key finger unclamps, the conversion value of scanning is lower than the Low threshold set, so that it may normal wakeup system Then system starts normally identification and operates, cannot be called out to solve touch-control identifying system and be constantly in low power consumpting state Awake problem.
Touch controller of the present invention with high-low threshold value judgement, the identification applied to capacitance touch induced key System realizes the identification of touch action using the judgment method of two threshold values, when capacitor conversion value is greater than high threshold or low Touch signal is generated when Low threshold, the capacitor on such touch key-press increases or capacitor becomes smaller and can be correctly validated Out.
The foregoing is merely illustrative of the preferred embodiments of the present invention, is not intended to limit the invention, all in essence of the invention Within mind and principle, any modification, equivalent replacement, improvement and so on be should all be included in the protection scope of the present invention.

Claims (10)

1. a kind of method for solving touch key-press and can not identifying touch action, which comprises the following steps:
S1 gives system electrification, and system takes multiple scan touch key-press, sets out high threshold VH and Low threshold VL;
S2, system enter low-power consumption mode, continue to test touch key-press to determine whether wake-up system;
S3, system enter normal mode after being waken up, make by capacitor conversion value that touch key-press is scanned respectively with height Threshold value VH and Low threshold VL is compared to judge in a manner of system wake-up;
S4 identifies which specific key is touched and comprehensive analysis goes out the row touched if system wakes up since finger touches Then to execute specific touch behavior operation;
S5 takes multiple scan touch key-press if system wakes up since finger is taken away, and sets out new high threshold and low threshold Value, enters step S2.
2. the method according to claim 1 for solving touch key-press and can not identifying touch action, which is characterized in that step S1 Further comprise:
S11 gives system electrification;
S12, Multiple-Scan touch key-press is corresponding to obtain multiple groups conversion value, takes maximum value Vhigh therein and minimum value Vlow, by the way that VH and VL is calculated;
S13 sets VH as high threshold, and VL is Low threshold.
3. according to claim 2 solve the touch key-press method that can not identify touch action, which is characterized in that when being in Under touch condition, then larger conversion value when the threshold value that sets is touches, under non-tactile state, then the threshold value that sets as Smaller conversion value when no touch.
4. the method according to claim 1 for solving touch key-press and can not identifying touch action, which is characterized in that step S3 Further comprise:
S31, system enters normal mode of operation after being waken up, scans to obtain one group of capacitor conversion value first to touch key-press, false It is set as VA;
S32 compares VA and the high-low threshold value of setting, and when VA is greater than VH, explanation is to have waken up since finger touches and be System;And when VA is less than VL, explanation is to have waken up system since finger is taken away.
5. the method according to claim 1 for solving touch key-press and can not identifying touch action, which is characterized in that step S4 Further comprise:
S41 is needed for each key scan, after being judged as has finger touch key-press for which specific key identified It is touched;
S42, after recognizing the touch of specific key, comprehensive analysis goes out the behavior type touched;
S43 executes specific touch behavior operation.
6. the method according to claim 5 for solving touch key-press and can not identifying touch action, which is characterized in that the touching The behavior type touched includes short-press, long-pressing and sliding.
7. the method according to claim 5 that certainly touch key-press can not identify touch action, which is characterized in that in normal mode When identification is less than the behavior of touch under formula, to meet low-power consumption demand, then S2 is entered step, into low power mode of operation.
8. the method according to claim 1 for solving touch key-press and can not identifying touch action, which is characterized in that step S5 Further comprise:
S51 has waken up system because finger takes away when being judged as, in the state of no touch, continuous several times scanning is needed to touch Key obtains enough capacitor conversion values, chooses peak and minimum, and new VH and VL is calculated;
High-low threshold value is respectively set as new VH and VL, enters step S2 by S52.
9. a kind of can not identify the touch recognition system of touch action for solving touch key-press, which is characterized in that including control Chip, touch circuit, ADC conversion circuit, high threshold decision circuitry, Low threshold decision circuitry and export touch signal logic or Door;The touch circuit is connected with the ADC conversion circuit, and the ADC conversion circuit judges electricity with the high threshold respectively Road is connected with Low threshold decision circuitry, the high threshold decision circuitry and Low threshold decision circuitry with the logic sum gate phase Connection, the logic sum gate are connected by conducting wire with the control chip, wherein the ADC conversion circuit will be will touch Analog signal on key is converted to digital signal, is further processed convenient for digital circuit;The high threshold decision circuitry to The digital value that ADC conversion circuit is converted is compared judgement with the high threshold set, when the number of ADC conversion circuit conversion When value is higher than high threshold, touch recognition signal is generated;The Low threshold decision circuitry is to the number of converting ADC conversion circuit It is worth and is compared judgement with the Low threshold set, when the digital value of ADC conversion circuit conversion is lower than Low threshold, generates touch Identification signal.
10. according to claim 9 can not identify the touch recognition system of touch action for solving touch key-press, special Sign is that the high threshold decision circuitry and Low threshold decision circuitry include numerical value comparison module and threshold value registration module.
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