CN105009038A - Electronic device having touch-sensitive user interface and related operating method - Google Patents

Electronic device having touch-sensitive user interface and related operating method Download PDF

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Publication number
CN105009038A
CN105009038A CN201480008476.8A CN201480008476A CN105009038A CN 105009038 A CN105009038 A CN 105009038A CN 201480008476 A CN201480008476 A CN 201480008476A CN 105009038 A CN105009038 A CN 105009038A
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CN
China
Prior art keywords
event
touch
enter key
screen
control module
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201480008476.8A
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Chinese (zh)
Inventor
刘同训
金佑根
郑惠顺
朴哲熙
洪淳烈
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Samsung Electronics Co Ltd
Original Assignee
Samsung Electronics Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Samsung Electronics Co Ltd filed Critical Samsung Electronics Co Ltd
Priority claimed from PCT/KR2014/001322 external-priority patent/WO2014129787A1/en
Publication of CN105009038A publication Critical patent/CN105009038A/en
Pending legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/0418Control or interface arrangements specially adapted for digitisers for error correction or compensation, e.g. based on parallax, calibration or alignment

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

A method and electronic device are provided to process a touch screen event detected from a touch screen and to process an input key event detected from an input key. The input key may be installed near the touch screen panel. The method comprises detecting a first event comprising one of an input key event from the input key of the electronic device and a touch screen event from the touch screen and detecting a second event within a given time after the detection of the first event, the second event comprising the other of an input key event from the input key of the electronic device and a touch screen event from the touch screen. The method further comprises performing a function corresponding to the touch screen event while ignoring the input key event.

Description

There is electronic installation and the related operating method of touch sensitive user interface
Technical field
The present invention relates in general to the electronic installation and related operating method with touch sensitive user interface.
Background technology
Recently, electronic installation provides various function, and comprises the user interface (UI) for providing such function to user.Although traditional electronic devices has been provided with simple UI (such as button or keypad), nearest various touch screen technologies have been applied to UI.
Such as, mobile device (such as smart phone or dull and stereotyped PC) is based on various touch screen technology.In addition, touch screen technology is also applied to various types of electronic installation or electrical equipment.
The electronic installation with touch-screen also can have and is placed in membrane keyboard near touch-screen as other input block.Such as, membrane keyboard can be installed near the bottom of touch-screen.Usually, membrane keyboard refers to the touch or close all types of input blocks that can identify human body or other object any, comprises Electronic Keying or secondary or physical bond.Here, term " membrane keyboard " can be replaced by term " enter key " sometimes.
When the lower boundary of user's touch screen, make the part and the screen contact that touch input tool (such as pointing) like this, another part contacts with membrane keyboard, the control module of mobile device can detect touchscreen events and membrane keyboard event respectively from touch panel and membrane keyboard, thus performs the specific function corresponding to these events.
Membrane keyboard event may occur regardless of the intention of user.Such as, when user expects to touch certain icon shown near the border of screen, to be positioned near this icon and the membrane keyboard being linked to restoring function may by mistake be touched together.Therefore, restoring function may be performed regardless of the intention of user.
Summary of the invention
Technical matters
The object of specific embodiment of the present invention is to provide a kind of electronic installation, the validity of the membrane keyboard event detected determined by described electronic installation when membrane keyboard event is detected, if this event is invalid, then described electronic installation does not respond the membrane keyboard event that detects to prevent any faulty operation unintentionally.
Another object of specific embodiment of the present invention is to provide a kind of method and electronic installation (such as, mobile device), described method and electronic installation for processing the incoming event of user, and the touchscreen events that detects from the touch panel be arranged on screen of process and from the membrane keyboard panel detection be arranged near screen to membrane keyboard event.
Technical scheme
According to a first aspect of the invention, provide a kind of method for operating the electronic installation with touch-screen and enter key, described method comprises: detect the first event, wherein, the first event comprises from the enter key event of the enter key of electronic installation with from the event of in the touchscreen events of touch-screen; Detect second event detecting in the preset time after the first event, wherein, second event comprises from the enter key event of the enter key of electronic installation with from another event in the touchscreen events of touch-screen; Perform the function corresponding to touchscreen events and ignore enter key event.
According to a second aspect of the invention, provide a kind of electronic installation, comprising: touch-screen; Enter key; Control module, is configured to detect from the enter key event of enter key and the touchscreen events from touch-screen; Wherein, if control module detects second event detecting in the preset time after the first key events, then control module is also configured to the enter key event ignored from the enter key of electronic installation and also performs the function corresponding to the touchscreen events from touch-screen, wherein, first key events comprises from the enter key event of the enter key of electronic installation with from the event of in the touchscreen events of touch-screen, and second event comprises from the enter key event of the enter key of electronic installation with from another event in the touchscreen events of touch-screen.
According to embodiments of the invention, provide a kind of method for operating the electronic installation with touch panel.Described method comprises: the enter key event detecting the enter key from electronic installation; The touchscreen events from touch panel is detected within preset time enter key event being detected; Perform the function corresponding to touchscreen events and ignore enter key event.
According to another embodiment of the present invention, a kind of method for operating the electronic installation with touch panel is provided.Described method comprises: detect the touchscreen events from touch panel; The enter key event of the enter key from electronic installation is detected in preset time after touchscreen events being detected; Perform the function corresponding to touchscreen events and ignore enter key event.
According to another embodiment of the present invention, provide a kind of electronic installation, described electronic installation comprises: touch panel; Be arranged on the enter key near touch panel; Control module, be configured to from enter key and touch panel Received signal strength, detect the touchscreen events from touch panel in preset time after detecting from the enter key event of enter key, ignore enter key event and perform the function corresponding to touchscreen events.
According to another embodiment of the present invention, provide a kind of electronic installation, described electronic installation comprises: touch panel; Be arranged on the enter key near touch panel; Control module, be configured to from enter key and touch panel Received signal strength, detect the enter key event from enter key in preset time after detecting from the touchscreen events of touch panel, ignore enter key event and perform the function corresponding to touchscreen events.
According to another embodiment of the present invention, provide a kind of electronic installation, described electronic installation comprises: touch-screen; Be arranged on the enter key near touch-screen; Control module, be configured to from enter key and touch-screen Received signal strength, wherein, control module counts being also configured to when enter key event being detected from enter key, before exceeding the predetermined critical time at gate time, when touch-screen detects touchscreen events, determine whether enter key event is effective, when enter key event is invalid, ignores enter key event and perform the function corresponding to touchscreen events.
According to another embodiment of the present invention, provide a kind of electronic installation, described electronic installation comprises: touch-screen; Be arranged on the enter key near touch-screen; Control module, be configured to from enter key and touch-screen Received signal strength, wherein, control module counts being also configured to when touchscreen events being detected from touch-screen, before exceeding the predetermined critical time at gate time, when enter key detects enter key event, determine whether enter key event is effective, when enter key event is invalid, ignores enter key event and perform the function corresponding to touchscreen events.
An aspect of of the present present invention provides a kind of computer program comprising instruction, and described instruction is arranged to the method for any one aspect realized upon being performed according to above-mentioned aspect.Provide a kind of machine readable memory storing such program on the other hand.
Beneficial effect
The present invention can provide a kind of electronic installation, the validity of the membrane keyboard event detected determined by described electronic installation when membrane keyboard event is detected, if this event is invalid, then described electronic installation does not respond the membrane keyboard event that detects to prevent any faulty operation unintentionally.
The present invention can provide a kind of method and electronic installation (such as, mobile device), described method and electronic installation for processing the incoming event of user, and the touchscreen events that detects from the touch panel be arranged on screen of process and from the membrane keyboard panel detection be arranged near screen to membrane keyboard event.
Accompanying drawing explanation
Below in conjunction with in the detailed description that accompanying drawing carries out, above-mentioned and other side, the feature and advantage of specific embodiment of the present invention will be more obvious, in the accompanying drawings:
Fig. 1 is the block diagram that mobile device is according to an embodiment of the invention shown;
Fig. 2 is the process flow diagram that touch event disposal route is according to an embodiment of the invention shown.
Fig. 3 and Fig. 4 is the forth screen view that the situation ignoring membrane keyboard event is according to an embodiment of the invention shown;
Fig. 5 and Fig. 6 is the forth screen view that the situation performing membrane keyboard event is according to an embodiment of the invention shown;
Fig. 7 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention;
Fig. 8 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention;
Fig. 9 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention.
Embodiment
There is provided description referring to accompanying drawing to help complete understanding to the of the present invention various embodiment be defined by the claims.This description comprises various specific detail to help to understand, but these specific detail will be regarded as being only example.Therefore, those of ordinary skill in the art will recognize and can make various changes and modifications the embodiments described herein without departing from the scope of the invention.In addition, for clarity and brevity, the description to known function and structure can be omitted.
The term used in description below and claim and word are not limited to their dictionary meanings, but are only used to can have clear and consistent understanding to the present invention.Therefore, should be apparent that for a person skilled in the art, below providing to the description of various embodiment of the present invention only for illustrative purposes, instead of in order to limit the object of the present invention by claim and equivalents thereof.
To understand, situation contrary unless the context clearly dictates, otherwise singulative comprises plural referents.Therefore, such as, relate to " signal " to comprise and relate to one or more such signal.
Run through instructions and claims of the application's document, word " comprises " and being meant to " including but not limited to " of various distortion of " comprising " and this word, is not intended (no) and gets rid of other assembly, entirety or step.
To understand, unless incompatible, otherwise any other side described herein, embodiment or example can be applied in conjunction with feature, entirety or the characteristic that particular aspects of the present invention, embodiment or example describe.
Also will understand, run through instructions and claims of the application's document, there is common form " X for Y " (wherein, Y is certain action, activity or step, and X is certain instrument for implementing this action, activity or step) language comprise by adaptive especially or arrange that (but not being special) is the instrument X of execution Y.
Here, electronic installation refers to the device of any type with touch panel.Particularly, electronic installation can comprise mobile phone, smart phone, dull and stereotyped PC, visual telephone, E-book reader, Desktop PC, notebook PC, PC on knee, net book computing machine, personal digital assistant (PDA), portable media player (PMP), media player (such as, MP3 player), portable medical device, digital camera, digital broadcast terminal, portable game machine, electronic dictionary, electronic schedule device, wearable device (such as, head-mounted device (HMD) (such as electronic glasses), electronics clothes, electronics bracelet, electronics necklace, electronics accessories, electronics tattoo, intelligent watch etc.), household electrical appliance and other equivalent any.
Fig. 1 is the block diagram that mobile device is according to an embodiment of the invention shown.
With reference to Fig. 1, mobile device 100 can comprise display unit 110, key input unit 120, memory cell 130, wireless communication unit 140, audio treatment unit 150, loudspeaker SPK, microphone MIC and control module 160.
Display unit 110 can show data under the control of control module 160 on screen.Namely, when control module 160 pairs of data process (such as, decoding) and when the data after process being stored in a buffer subsequently, the data stored in a buffer can be converted to simulating signal by display unit 110, and on screen, show data subsequently.Particularly, when electric energy is supplied to display unit 110, display unit 110 can show lock image on its screen.If predetermined unlock events is detected, then control module 160 can perform and unlock process, and controls display unit 110 and show other predetermined image any (such as main screen image).Multiple icons that such main screen image can comprise background image (photograph image such as, selected by user) and show thereon and arrange.Each icon can indicate specific application or content (such as, photo files, video file, recording file, document, message etc.).If user selects the icon (such as, application icon) in such icon, then control module 160 can perform the application-specific of the icon being linked to selection.Subsequently, display unit 110 can receive the execution image of application from control module 160 and is presented at display unit 110 by this execution image.
Display unit 110 can show image according to sandwich construction under the control of control module 160.Such as, the execution image (such as, webpage) of application can be presented on screen by display unit 110, and also can show keypad on this execution image.
Display unit 110 can comprise LCD (liquid crystal display), OLED (Organic Light Emitting Diode), AMOLED (Activematric OLED), flexible display or transparent display.
Display unit 110 can comprise the touch panel 111 on the screen being arranged on display unit 110.Particularly, touch panel 111 can be disposed in the screen of display unit 110 (such as, is called as add-on type) or is inserted in display unit 110 and (such as, be called as on-cell type or in-cell type).
Touch panel 111 can create touch event in response to the gesture of user on screen, performs analog to digital conversion, and digital signal is sent to control module 160.Touch event can comprise at least one group of touch coordinate (x, y).Such as, the touch IC (integrated circuit) of touch panel 111 can detect user and touch, and determines the region touched in response to the touch detected, and the touch coordinate will comprised in the region of touch
(x, y) is sent to control module 160.Here, touch coordinate can use pixel unit.Such as, when screen have width be 640 pixels and be highly the resolution of 480 pixels, coordinate covers 0 to 640 in X-axis, in Y-axis cover 0 to 480.If receive any touch coordinate from touch panel 111, then control module 160 can be determined on touch panel 111, to create touch by touching input tool (such as, finger or pen).If no longer receive touch coordinate from touch panel 111, then control module 160 can determine that touch is released from touch panel 111.In addition, if such as touch coordinate is from (x0, y0) (x1 is changed into, y1), and if its variables D (such as, D2=(x0-x1) 2+ (y0-y1) 2) exceedes predetermined critical (such as, 1mm), then control module 160 can determine that touching input tool moves, that is, touch panel 111 occurs touch to move.Move in response to such touch, control module 160 can calculate the location variable (dx, dy) of touch and touch the speed of movement.Particularly, based on touch coordinate, touch whether be released, touch whether be moved, the location variable that touches and touch the speed of movement, control module 160 can be determined to touch from the gesture of user, to touch more, click, double-click, length is hit, hit tactile (tap-and-touch), pull, flick, press, mediate (pinch-in), pinch one that puts (pinch-out) etc.
The gesture touching input tool and contact with the arbitrfary point on screen is instigated in touch, and many touches are the gestures with two or more point cantact while of instigating two or more touch input tool (such as, thumb and forefingers).Click and refer to arbitrfary point in touch screen and the gesture touching input tool subsequently when not moving and touching input tool from touch point release (that is, touch put), double-click the gesture referring to and the same point on screen clicked to twice.Length hits the gesture referring to and also discharge touch input tool than point touching relative to the longer time subsequently when not moving and touching input tool.Hit to touch and refer to that the arbitrfary point clicked on screen also touches the gesture of same point subsequently within preset time (such as, 0.5 second).Pull the gesture referring to and move touch input tool by any direction while keeping the touch on screen.Flick and refer to and mobilely quickly touch input tool and release touches the gesture of input tool subsequently than pulling.Pressing refers to arbitrfary point in touch screen and keeps touch to be greater than the gesture of preset time (such as, 2 seconds).Mediate two somes while of referring in touch screen and the gesture making the distance between touch point narrow subsequently.Pinch two points put the while of referring in touch screen and the gesture making the distance between touch point broaden subsequently.
Touch panel 111 can by the finger touch panel plate for detecting finger gesture and the composite touch panel plate formed for the pen touch panel plate of detecting pen gesture.Finger touch panel plate can be formed condenser type, resistance-type, infrared type or ultrasonic type.Finger touch panel plate creates touch event by the finger gesture of user or other equivalent any (action of the conduction instrument that electric capacity such as can be caused to change).Meanwhile, pen touch panel plate can be formed induction.Therefore, pen touch panel plate by the pointer for the formation of magnetic field of producing specially to create touch event.Particularly, the touch event created from pen touch panel plate can comprise the value and touch coordinate that are used to indicate touch type.Such as, when receiving the first voltage level values from pen touch panel plate, control module 160 can consider that touch is indirect touch (being also referred to as hovering).If receive the second magnitude of voltage being greater than the first magnitude of voltage from pen touch panel plate, then control module 160 can consider that touch is direct touch.In addition, the touch event created from pen touch panel plate also can comprise the particular value being used to indicate any key installed pen and whether being pressed.If such key is pressed, then the magnetic field produced from the coil pen can change.Pen touch panel plate can create tertiary voltage level value subsequently, and this value is sent to control module 160.
Key input unit 120 can have at least one membrane keyboard 121, and membrane keyboard 121 typically refers to and can identify human body or the touch of other object or close all types of input blocks arbitrarily.Particularly, membrane keyboard 121 can comprise human body or have conductive arbitrarily other object close to and the infrared type membrane keyboard etc. that inputs of the optical profile type membrane keyboard that this push type membrane keyboard inputted close to the capacitance touch key being considered as inputting, the change detecting physical pressure from resistive layer this change being considered as, the change this change being considered as of amount that detects incident ray are inputted, the change this change is considered as of amount that detects incident infrared.In addition, membrane keyboard 121 can comprise soft key, and wherein, soft key is virtual presence on touch panel, and the software process undertaken by the part in the physically contiguous list face to touch panel and be used as independent input block.In addition, membrane keyboard 121 can comprise other Electronic Keying or secondary or physical bond arbitrarily.Membrane keyboard 121 also can be called as enter key.
Membrane keyboard 121 can create particular event in response to the touch gestures of user, and this particular event is sent to control module 160.In addition, membrane keyboard 121 can be positioned near screen or on screen the bottom of screen (such as, near).Such as, in response to the event from the first membrane keyboard (such as, key opened by menu), control module 160 can control the bottom display menu of display unit 110 at screen.In addition, in response to the event from the second membrane keyboard (such as, clear key), control module 160 can control display unit 110 and show previous image.Such as, if produce the event of the second membrane keyboard when showing keypad on searched page, then keypad disappear and searched page still keep display.
Key input unit 120, except the key comprising touch type, also can comprise the key of any type.Such as, key input unit 120 can have at least one dome (dome) key.If user presses dome key, then dome key is out of shape and thus is contacted with printed circuit board (PCB).Therefore, key events is created from printed circuit board (PCB), and is sent to control module 160.Such dome key can be positioned near the side of mobile device 100 or screen the bottom of screen (such as, near).
This key events can comprise power supply opening/close event, volume adjustment event, screen opening/closing event, shutter event etc.Control module 160 can control the listed above various element of mobile device 100 in response to such key events.Meanwhile, the key of key input unit 120 can be called as hardkey, and the virtual key be presented on display unit 110 can be called as soft key.
Memory cell 130 can comprise dish, RAM, ROM, flash memory etc.Memory cell 130 can be stored in the data created in mobile device 100 or the data received from any external entity (such as, server, Desktop PC, dull and stereotyped PC etc.) by wireless communication unit 140 under the control of control module 160.In addition, memory cell 130 can store the data that the user that pasted by desired replication copies from message, photo, webpage, document etc. temporarily.In addition, memory cell 130 can various settings needed for the operation of storing mobile device 100 (such as, screen intensity, automatic rotation etc. in response to the feedback vibration touched, screen).
Memory cell 130 can store start-up routine, at least one operating system (OS) and various application.OS be not only used as between hardware and each application and each apply between interface, go back supervisory computer resource (such as CPU, GPU, main storage unit and memory cell 130).Application can be classified as Embedded Application and third-party application.Such as, Embedded Application can comprise web browser, e-mail program, instant courier etc.When electric energy is supplied to control module 160 from battery, start-up routine is loaded on the main storage unit of control module 160.Subsequently, OS is loaded on main storage unit by start-up routine, and OS is loaded into by the application selected on main storage unit.
Wireless communication unit 140 can be performed and the audio call of any external entity, video call or data communication by network under the control of control module 160.Usually, wireless communication unit 140 can comprise and carries out up conversion to the frequency sending signal and amplify RF (radio frequency) transmitter of this signal subsequently and carry out low noise amplification to received signal and the frequency of this signal carried out to the RF receiver of down conversion.In addition, wireless communication unit 140 can comprise mobile communication module (such as, 3 third-generation mobile communication modules, 3.5 third-generation mobile communication modules, 4 third-generation mobile communication modules etc.), digital broadcasting module (such as, DMB module) and/or short-range communication module (such as, Wi-Fi module, bluetooth module or NFC (near-field communication) module).
Audio treatment unit 150 can perform the input and output for speech recognition, voice record, digital recording and the sound signal (such as, speech data) in conjunction with the calling of loudspeaker SPK and microphone MIC.Particularly, the sound signal received from control module 160 received audio signal, can be converted to simulating signal by digital-to-analog conversion by audio treatment unit 150, this simulating signal is amplified subsequently and outputs to loudspeaker SPK.In addition, the sound signal received from microphone MIC received audio signal, can be converted to digital signal by analog to digital conversion, subsequently this digital signal be sent to control module 160 by audio treatment unit 150.The sound signal received from audio treatment unit 150 can be converted to sound wave by loudspeaker SPK, and exports sound wave subsequently.Microphone MIC can be converted to sound signal by from people or other sound source is collected arbitrarily sound wave.
Control module 160 can control the integrated operation of mobile device 100, and the signal stream between the intraware of control mobile device 100, performs data processing, and controls the power supply from battery to each assembly.
In addition, control module 160 can comprise at least one central processing unit (CPU).As everyone knows, CPU is the calculating of the execution data of computer system and compares and the critical control units of the explanation of ordering and operation.CPU also can comprise the various registers of temporary storaging data or order.Control module 160 can comprise at least one image processor (GPU).GPU replaces CPU to perform the calculating of graphics-related data and to compare and the explanation of related command and the graphic control unit of operation.Each in CPU and GPU can be formed by the single package bag as single integrated circuit (IC) being integrated with two or more individual core (such as, four cores).That is, CPU can be integrated into single polycaryon processor, and GPU can be integrated into single polycaryon processor.Alternatively, CPU and GPU can be integrated into one single chip (that is, SOC (system on a chip) (SoC)).Alternatively, CPU and GPU can be packed according to the form of multilayer.The structure with CPU and GPU can be called as application processor (AP), and application processor also can comprise ISP.
Control module 160 can comprise main storage unit, such as, and RAM.Main storage unit can store various program, the start-up routine such as loaded from memory cell 130, operating system and application.That is, control module 160 (such as, AP) may have access to such program, explains the order of such program, and performs specific function (such as, for detecting and process the function of touch event) based on the result explained.In addition, control module 160 also can comprise cache memory, and wherein, cache memory stores the data be written in memory cell 130 and the data read from memory cell 130 temporarily.
Control module 160 can comprise touch event detection device 161 and touch event processor 162.Touch event detection device 161 can detect touchscreen events from touch panel 111.In addition, touch event detection device 161 can detect membrane keyboard event from membrane keyboard 121.
According to an embodiment, when membrane keyboard event and touchscreen events are detected simultaneously, touch event detection device 161 can determine that whether membrane keyboard event is effective.Here, detect simultaneously and can represent membrane keyboard event and touchscreen events detected within preset time.Such as, when detect touchscreen events detected in the 100ms after membrane keyboard event time, this can be regarded as detecting simultaneously.
Similarly, when membrane keyboard event being detected in the 100ms after touchscreen events being detected, this can be regarded as detecting simultaneously.Meanwhile, touch coordinate can be used to determine that whether membrane keyboard event is effective.Detailed description will be provided below.
When membrane keyboard event is invalid, touchscreen events only can be sent to touch event processor 162 by touch event detection device 161.When membrane keyboard event is effective, two touch events can be all sent to touch event processor 162 by touch event detection device 161.Such as, touch event can be sent to touch event processor 162 according to detection ordering by touch event detection device 161.Touch event processor 162 can receive touch event, and performs corresponding function.
Meanwhile, mobile device 100 also can comprise other element, such as camera, earphone jack, GPS (GPS) module, vibrating motor, annex etc. arbitrarily.Annex is any article can dismantled from mobile device 100, such as, can be felt pen.
Fig. 2 is the process flow diagram of the touch event disposal route illustrated according to embodiment of the present disclosure.Fig. 3 to Fig. 6 is the forth screen view that touch event disposal route is according to an embodiment of the invention shown.
With reference to Fig. 2, in step 210, control module 160 determines whether membrane keyboard event is detected.
If membrane keyboard event is detected, then in step 220, control module 160 starts counting.In other words, if membrane keyboard event is detected, then the event detected can not be sent to the touch event processor 162 of control module 160 by the touch event detection device 161 of control module 160 immediately, but the event detected is stored in storer (such as, cache memory) temporarily.
In step 230, control module 160 detects gate time and whether exceedes the predetermined critical time (such as, 100ms).
If gate time exceedes the marginal time, then the membrane keyboard event temporarily stored is sent to touch event processor 162 by the touch event detection device 161 of control module 160, in step 240, touch event processor 162 performs the specific function corresponding to membrane keyboard event.
If gate time does not exceed the marginal time, then in step 250, control module 160 determines whether touchscreen events is detected.
If touchscreen events detected in the marginal time after membrane keyboard event is detected, then in step 260, control module 160 can determine that whether the interim membrane keyboard event stored is effective.
Such as, if control module 160 receives one or more touch coordinate from touch panel 111, then the quantity of touch coordinate that receives of control module 160 inspection.If this quantity exceedes predetermined critical, then control module 160 can determine that membrane keyboard event is invalid.Otherwise control module 160 can determine that membrane keyboard event is effective.
In another example, control module 160 uses the quantity of the touch coordinate received to calculate the area of touch area.If this area is greater than predetermined face product value, then control module 160 can determine that membrane keyboard event is invalid.Otherwise control module 160 can determine that membrane keyboard event is effective.
In another example, control module 160 uses the touch coordinate received to calculate the length of the comparatively major axis (such as, Y-axis) in touch area.If this length is greater than predetermined length value, then control module 160 can determine that membrane keyboard event is invalid.Otherwise control module 160 can determine that membrane keyboard event is effective.In this case, alternately calculate comparatively minor axis (such as, X-axis), the girth of touch area, the radius etc. of touch area, instead of calculate comparatively major axis.
In another example, if the panel calculated is greater than predetermined face product value, and if the length calculated is greater than predetermined length value, then control module 160 can determine that membrane keyboard event is invalid.Otherwise control module 160 can determine that membrane keyboard event is effective.
Similarly, touch coordinate can be used to determine that whether touch event is effective.Alternately use other technology arbitrarily to define validity, instead of use above-mentioned technology.Although in the examples described above, when length or area are greater than critical value, touch event is confirmed as effectively, and in other example, when length or area are less than critical value, touch event can be confirmed as effectively.That is, if the area calculated is less than predetermined face product value, then control module 160 can determine that membrane keyboard event is invalid, otherwise control module 160 determines that membrane keyboard event is effective.Similarly, if the length calculated is less than predetermined length value, then control module 160 can determine that membrane keyboard event is invalid, otherwise control module 160 determines that membrane keyboard event is effective.
If be invalid in step 260 membrane keyboard event, then in step 270, control module 160 ignores the interim membrane keyboard event stored, and only performs the function corresponding to touchscreen events.That is, membrane keyboard event can not be sent to touch event processor 162 by the touch event detection device 161 of control module 160, and deletes membrane keyboard event from storer.Therefore, touch event processor 162 only can receive touchscreen events, and performs the specific function corresponding to touchscreen events.
With reference to Fig. 3 and Fig. 4, virtual keypad is displayed on the bottom of screen, and membrane keyboard 310 and 320 is installed near the bottom of screen.In addition, non-touch key (such as, dome key 330) is installed between the first membrane keyboard 310 and the second membrane keyboard 320.Certainly, the key between membrane keyboard 310 and 320 can be touch key.
As shown in Figure 3, user touches specific region 340 by touching input tool (such as, pointing).Due to close with region 340, therefore may produce membrane keyboard event at the second membrane keyboard 320, and membrane keyboard event can be sent to control module 160.In addition, touchscreen events can produce at touch panel 111, and can be sent to control module 160.In this case, touchscreen events can comprise one or more touch coordinate.Touch event detection device 161 can postpone the transmission of the membrane keyboard event from the second membrane keyboard 320, and the touch coordinate received from touch panel 111 can be used to determine that whether membrane keyboard event is effective.
Such as, as shown in Figure 3, the area S1 of let us hypothesis touch area 340 is greater than predetermined face product value, and comparatively the length h1 of major axis (Y-axis) is greater than predetermined length value.If like this, then membrane keyboard event can not be sent to touch event processor 162 by detecting device 161, and only touchscreen events is sent to touch event processor 162.Subsequently, touch event processor 162 can perform the function corresponding to touchscreen events.Such as, as shown in Figure 4, touch event processor 162 can control display unit 110 show fullstop ". " in input window 410.
Return Fig. 2, if membrane keyboard event is effective, then in step 280, membrane keyboard event and touchscreen events are sent to touch event processor 162 by the touch event detection device 161 of control module 160.Therefore, touch event processor 162 performs each function corresponding to such event.Now, if the function corresponding to touchscreen events is uncorrelated with the function corresponding with membrane keyboard event, then touch event processor 162 does not perform the function corresponding to touchscreen events.
With reference to Fig. 5 and Fig. 6, virtual keypad is displayed on the bottom of screen, and membrane keyboard 510 and 520 is installed near the bottom of screen.In addition, another key (such as, dome key 530) is installed between the first membrane keyboard 510 and the second membrane keyboard 520.
As shown in Figure 5, user touches specific region 540 by touching input tool (such as, pointing).Subsequently, membrane keyboard event can produce at the second membrane keyboard 520, and can be sent to control module 160.In addition, touchscreen events can produce at touch panel 111, and can be sent to control module 160.Touch event detection device 161 can postpone the transmission of the membrane keyboard event from the second membrane keyboard 520, and the touch coordinate received from touch panel 111 can be used to determine that whether membrane keyboard event is effective.
Such as, as shown in Figure 5, the area S2 of let us hypothesis touch area 540 is less than predetermined face product value, and comparatively the length h2 of major axis (Y-axis) is less than predetermined length value.If like this, then membrane keyboard event and touchscreen events can be both sent to touch event processor 162 by touch event detection device 161.Subsequently, touch event processor 162 can perform each function corresponding to such event.
In this case, corresponding to touchscreen events function can not be performed.Such as, as shown in Figure 6, touch event processor 162 in response to the membrane keyboard event of the second membrane keyboard 520, can cut out the display of keypad.In addition, if the function corresponding to touchscreen events shows fullstop ". " in input window 610, then touch event processor 162 can determine that this function is uncorrelated with the second membrane keyboard 520, therefore can not respond touchscreen events.Therefore, as shown in Figure 6, fullstop ". " can not be shown in input window 610.
Fig. 7 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention.
With reference to Fig. 7, in step 710, the touch event detection device 161 of control module 160 detects enter key event.Subsequently, touch event detection device 161 can postpone preset time (such as, 100ms) by the transmission of the enter key event detected.In step 720, touch event detection device 161 detects touchscreen events within such preset time.Subsequently, in step 730, control module 160 ignores enter key event, and performs the function corresponding to touchscreen events.That is, enter key event is not sent to touch event processor 162 by touch event detection device 161, and only touchscreen events is sent to touch event processor 162.The touch event processor 162 receiving touchscreen events only performs the specific function corresponding to touchscreen events.
Fig. 8 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention.
With reference to Fig. 8, in step 810, the touch event detection device 161 of control module 160 detects touchscreen events detecting in the preset time after enter key event (such as, 100ms).
In this case, in step 820, touch event detection device 161 determines that enter key event is effective.Technology discussed above can be used to realize the determination of this validity.If enter key event is invalid, then in step 830, enter key event is not sent to touch event processor 162 by touch event detection device 161, therefore, touch event processor 162 only receives touchscreen events, and performs the function corresponding to touchscreen events.If enter key event is effective, then in step 840, enter key event and touchscreen events are both sent to touch event processor 162 by touch event detection device 161.Therefore, touch event processor 162 performs each function corresponding to such event.Now, if the function corresponding to touchscreen events is uncorrelated with the function corresponding with enter key event, then touch event processor 162 does not perform the function corresponding to touchscreen events.
Fig. 9 is the process flow diagram of the touch event disposal route illustrated according to another embodiment of the present invention.
With reference to Fig. 9, in step 910, in the touch event detection device 161 preset time after touchscreen events being detected (such as, 100ms) of control module 160, detect enter key event.
In this case, in step 920, touch event detection device 161 determines that whether enter key event is effective.Above can using, discussion technology is to realize the determination of this validity.If enter key event is invalid, then in step 930, enter key event is not sent to touch event processor 162 by touch event detection device 161.Therefore, touch event processor 162 only receives touchscreen events, and performs the function corresponding to touchscreen events.If enter key event is effective, then in step 940, enter key event and touchscreen events are both sent to touch event processor 162 by touch event detection device 161.Therefore, touch event processor 162 performs each function corresponding to such event.Now, if the function corresponding to touchscreen events is uncorrelated with the function corresponding with enter key event, then touch event processor 162 does not perform the function corresponding to touchscreen events.
To understand, embodiments of the invention can realize with the form of the combination of hardware, software or hardware and software.No matter whether any such software can be stored in that erasable or rewritable volatile storage or nonvolatile memory be (such as, picture ROM storage arrangement) form in, or be stored in the form of internal memory (such as RAM), memory chip, device or integrated circuit, or be stored in light computer-readable recording medium or magnetic computer-readable recording medium (such as, CD, DVD, disk or tape etc.).To understand, memory storage or storage medium are the embodiments of machine readable memory, and machine readable memory is applicable to store the program or multiple program that comprise instruction, and wherein, when this instruction is performed, this program performs embodiments of the invention.Particularly, with reference to the process flow diagram of user interface, method and computer program product according to an embodiment of the invention, method discussed above is described here.To understand, carry out the combination of the block in each piece of realization flow figure and process flow diagram by computer program instructions.These computer program instructions can be provided to the processor of multi-purpose computer, special purpose computer or other programmable data processing device to produce machine, and the instruction that the processor via computing machine or other programmable data processing device is performed creates the instrument for realizing the function of specifying in the block of process flow diagram or multiple pieces.These computer programs instruction also can be stored in computing machine can storer or computer-readable storer in, wherein, computing machine can storer or the bootable computing machine of computer-readable storer or other programmable data processing device by ad hoc fashion n-back test, make to be stored in computing machine can storer or computer-readable storer in instruction produce the product that comprises the instruction instrument realizing the function of specifying in the block of process flow diagram or multiple pieces.Computer program instructions also can be loaded in computing machine or other programmable data processing device, make the sequence of operations step performed on computing machine or other codified data processing equipment produce computer implemented process, make the instruction performed on computing machine or other programmable device be provided for the function realizing specifying in the block of process flow diagram or multiple pieces.
Each piece of process flow diagram can representation module, segmentation or partial code, each piece of one or more executable instruction comprised for realizing specific logical function.It should also be noted that, in some optional implementations, the function recorded in block can not according to occurring in sequence of illustrating.Such as, in fact two blocks illustrated continuously can be performed substantially simultaneously, or block can be performed by contrary order according to comprise functional sometimes.
Therefore, embodiment provides the program comprised for realizing as any one claim equipment required for protection of the application's document or the code of method, and provides the machine readable memory storing such program.In addition, such program can via arbitrary medium (such as, the signal of communication carried by wired or wireless connection) by electrical transmission, and embodiment suitably comprises identical content.
Although specifically illustrate with reference to specific embodiment of the present invention and describe the present invention, it will be apparent to one skilled in the art that when not departing from the scope of the present invention be defined by the claims, the various changes in form and details can be carried out wherein.

Claims (10)

1. the method for operating the electronic installation with touch-screen and enter key, described method comprises:
Detect the first event, wherein, the first event comprises from the enter key event of the enter key of electronic installation with from the event of in the touchscreen events of touch-screen;
Detect second event detecting in the preset time after the first event, wherein, second event comprises from the enter key event of the enter key of electronic installation with from another event in the touchscreen events of touch-screen;
Perform the function corresponding to touchscreen events and ignore enter key event.
2. the method for claim 1, also comprises:
When detect second event detected in the preset time after the first event time, determine that enter key event is effective or invalid.
3. method as claimed in claim 2, wherein, effective or invalid step comprises to determine enter key event:
By the area using one or more touch coordinate comprised in touchscreen events to calculate the region that is touched on touch-screen, and determine that the area calculated is greater than or is less than predetermined face product value;
Calculate the length based on the region that is touched on touch-screen by one or more touch coordinate comprised in use touchscreen events, and determine that the length calculated is greater than or is less than predetermined length value; Or
By using one or more touch coordinate comprised in touchscreen events to calculate the area in the region that is touched on touch-screen and the length based on the region that is touched on touch-screen, and determine whether the area calculated is greater than predetermined face product value and whether the length calculated is greater than predetermined length value.
4., as claim 2 or method according to claim 3, also comprise:
When enter key event is effective, perform the function corresponding at least enter key event in enter key event and touchscreen events.
5. an electronic installation, comprising:
Touch-screen;
Enter key;
Control module, is configured to detect from the enter key event of enter key and the touchscreen events from touch-screen;
Wherein, if control module detects second event detecting in the preset time after the first key events, then control module is also configured to the enter key event ignored from the enter key of electronic installation and also performs the function corresponding to the touchscreen events from touch-screen, wherein, first key events comprises from the enter key event of the enter key of electronic installation with from the event of in the touchscreen events of touch-screen, and second event comprises from the enter key event of the enter key of electronic installation with from another event in the touchscreen events of touch-screen.
6. electronic installation as claimed in claim 5, wherein, enter key is installed near touch-screen.
7. as claim 5 or electronic installation according to claim 6, wherein, when detect second event detected in the preset time after the first event time, control module is also configured to determine that enter key event is effective or invalid.
8. electronic installation as claimed in claim 7, wherein, control module is also configured to determine that enter key event is effective or invalid by following process:
By the area using one or more touch coordinate comprised in touchscreen events to calculate the region that is touched on touch-screen, and determine that the area calculated is greater than or is less than predetermined face product value;
Calculate the length based on the region that is touched on touch-screen by one or more touch coordinate comprised in use touchscreen events, and determine that the length calculated is greater than or is less than predetermined length value; Or
By using one or more touch coordinate comprised in touchscreen events to calculate the area in the region that is touched on touch-screen and the length based on the region that is touched on touch-screen, and determine whether the area calculated is greater than predetermined face product value and whether the length calculated is greater than predetermined length value.
9., as claim 7 or electronic installation according to claim 8, wherein, when enter key event is effective, control module is also configured to perform the function corresponding at least enter key event in enter key event and touchscreen events.
10. the electronic installation as described in any one in claim 5 to claim 9, wherein, control module is also configured to by starting when the first event being detected to count and determining whether second event detected before gate time exceedes the predetermined critical time, determines detecting in the preset time after the first event whether second event detected.
CN201480008476.8A 2013-02-22 2014-02-19 Electronic device having touch-sensitive user interface and related operating method Pending CN105009038A (en)

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PCT/KR2014/001322 WO2014129787A1 (en) 2013-02-22 2014-02-19 Electronic device having touch-sensitive user interface and related operating method

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