WO2020097798A1 - 终端设备及其触摸响应控制方法 - Google Patents

终端设备及其触摸响应控制方法 Download PDF

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Publication number
WO2020097798A1
WO2020097798A1 PCT/CN2018/115261 CN2018115261W WO2020097798A1 WO 2020097798 A1 WO2020097798 A1 WO 2020097798A1 CN 2018115261 W CN2018115261 W CN 2018115261W WO 2020097798 A1 WO2020097798 A1 WO 2020097798A1
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WIPO (PCT)
Prior art keywords
area
screen
touch
holding area
terminal device
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PCT/CN2018/115261
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English (en)
French (fr)
Inventor
叶泽钢
Original Assignee
深圳市柔宇科技有限公司
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Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to PCT/CN2018/115261 priority Critical patent/WO2020097798A1/zh
Priority to CN201880096031.8A priority patent/CN112703463A/zh
Publication of WO2020097798A1 publication Critical patent/WO2020097798A1/zh

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    • 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

Definitions

  • the present application relates to the field of touch control of smart terminals, and in particular, to a terminal device based on a flexible touch screen and a touch response control method thereof.
  • the flexible touch display screen is a new generation display screen after the liquid crystal display screen. It is made of soft materials and can be deformed and bent, so that electronic devices with flexible touch display screens have more use states. For example, The electronic device is fully opened and used in a flat shape, or the electronic device is bent into multiple small screens along a predetermined bending line for use. However, when this type of electronic device is bent so that its touch display surface is located at the front and back of the electronic device at the same time, no matter how the user holds the bent electronic device with a flexible touch display screen, it will be The electronic device is considered to be a touch operation, which generates a false touch, which leads to a disordered response of the system, which brings great inconvenience to the user.
  • the embodiments of the present application disclose a terminal device based on a flexible touch screen and a touch response control method thereof to solve the above problems.
  • a terminal device disclosed in an embodiment of the present application includes a processor, a flexible touch screen, and a proximity sensor.
  • the flexible touch screen is provided with at least one holding area, and the terminal device further includes each holding area.
  • the processor controls the screen area corresponding to the holding area to be prohibited when at least a preset number of proximity sensors in one of the holding areas simultaneously detect that the user touches the flexible touch screen Respond to touch operations.
  • a touch response control method disclosed in an embodiment of the present application is applied to a terminal device having a flexible touch screen, the flexible touch screen is provided with at least one holding area, and the terminal device further includes Several proximity sensors in the holding area, the touch response control method includes: several proximity sensors located in each holding area simultaneously detect whether a user is touching the flexible touch screen; at least one of the holding areas When a preset number of proximity sensors simultaneously detect that the user touches the flexible touch screen, the screen area corresponding to the grip area is controlled to prohibit response to touch operations.
  • the terminal device of the present application and the touch response control method thereof when at least a preset number of proximity sensors in one of the holding areas simultaneously detect that the user touches the flexible touch screen, control the corresponding to the holding area
  • the screen area is prohibited from responding to touch operations. Therefore, when the terminal device detects that the holding area of the flexible touch screen is held by the user, the screen area corresponding to the holding area is controlled to prohibit response to the touch operation, thereby effectively avoiding erroneous touches.
  • FIG. 1 is a schematic block diagram of a hardware module of a terminal device in an embodiment of this application.
  • FIG. 2 is a schematic diagram of a structure in which a grip area and a proximity sensor are provided on a flexible touch screen of a terminal device in an embodiment of this application.
  • FIG. 3 is a schematic flowchart of a touch response control method in an embodiment of this application.
  • FIG. 1 is a schematic block diagram of a hardware module of a terminal device in an embodiment of the present application.
  • the terminal device 100 may be, but not limited to, a bendable terminal device such as a mobile phone, a tablet computer, an e-reader, and a wearable electronic device.
  • the terminal device 100 includes but is not limited to a processor 10, and a memory 20 and a flexible touch screen 30 that are electrically connected to the processor 10, respectively.
  • FIG. 1 is only an example of the terminal device 100 and does not constitute a limitation on the terminal device 100.
  • the terminal device 100 may include more or less than that shown in FIG. Components, or a combination of certain components, or different components, for example, the terminal device 100 may further include an input and output device, a network access device, a data bus, and the like.
  • the processor 10 may be a central processing unit (Central Processing Unit, CPU), or other general-purpose processors, digital signal processors (Digital Signal Processor, DSP), and a dedicated touch screen controller (Application Specific Integrated Circuit, ASIC) , Field Programmable Gate Array (Field-Programmable GateArray, FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, etc.
  • the general-purpose processor may be a microprocessor or the general-purpose processor may also be any conventional processor or the like.
  • the processor 10 is a control center of the terminal device 100, and uses various interfaces and lines to connect various parts of the entire terminal device 100.
  • the memory 20 may be used to store computer programs and / or modules.
  • the processor 10 executes or executes the computer programs and / or modules stored in the memory 20 and calls the data stored in the memory 20 to achieve Various functions of the terminal device 100 will be described.
  • the memory 20 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, application programs required for multiple functions (such as a sound playback function, an image playback function, etc.), etc .; the storage data area may Data (such as audio data, image data, etc.) created according to the use of the terminal device 100 is stored.
  • the memory 20 may include a high-speed random access memory, and may also include non-volatile memory, such as a hard disk, a memory, a plug-in hard disk, a smart memory card (Smart, Media, Card, SMC), and a secure digital (Secure Digital, SD) card, flash memory card (Flash), multiple disk storage devices, flash memory devices, or other volatile solid-state storage devices.
  • non-volatile memory such as a hard disk, a memory, a plug-in hard disk, a smart memory card (Smart, Media, Card, SMC), and a secure digital (Secure Digital, SD) card, flash memory card (Flash), multiple disk storage devices, flash memory devices, or other volatile solid-state storage devices.
  • the flexible touch screen 30 has bendability along at least one bending line.
  • the flexible touch screen 30 is bendable along at least one bending line, including: the flexible touch screen 30 is bendable along the bending line and the flexible touch screen 30 is divided by The area other than the bending line cannot be bent; alternatively, the flexible touch screen 3 is bendable along the bending line and the flexible touch screen 30 is bendable except for the bending line .
  • the flexible touch screen 30 may be, but not limited to, a flexible flexible touch screen, a flexible touch display screen, or the like.
  • At least one holding area 32 is provided on the flexible touch screen 30.
  • the holding area 32 refers to an area where the flexible touch screen 30 is blocked by the user when the terminal device 100 is held by the user.
  • the "area blocked by the user” refers to an area blocked by the user's hand or any part of the body. It can be understood that the holding area 32 is the entire area or a partial area of the flexible touch screen 30.
  • the holding area 32 shown in FIG. 2 is only a schematic. It can be understood that in practical applications, the position of the holding area 32 can be set on the flexible touch screen 30 according to the user's conventional holding habits In the right place.
  • the terminal device 100 further includes several proximity sensors 40 provided in each holding area 32.
  • the processor 10 controls the grip when at least a preset number of proximity sensors 40 among the plurality of proximity sensors 40 in the grip area 32 simultaneously detect that the user touches the flexible touch screen 30 The screen area corresponding to the holding area 32 is prohibited from responding to touch operations.
  • the "contact” mentioned in the context of this application refers to a certain part of the user's body, for example, the palm of the user, and the distance between the flexible touch screen 30 and the flexible touch screen 30 is less than a preset distance.
  • “Simultaneously” means that at least a preset number of proximity sensors 40 detect that the time when the user touches the flexible touch screen 30 is within a preset time period, thereby avoiding misjudgment caused by unsynchronized operation .
  • the proximity sensor 40 includes at least an infrared light sensor.
  • the infrared light sensor is used to sense infrared light emitted by a human body within a preset distance and generate a corresponding detection signal.
  • four proximity sensors 40 are provided in each holding area 32, and the four proximity sensors 40 are arranged at intervals around the center point of the holding area 32. It can be understood that, in other embodiments, when the user holds the terminal device 100, a certain part of the user's body, for example, the user's hand, may simultaneously approach at least the pre-set of the proximity sensors 40.
  • a number of proximity sensors 40 are provided, for example, at least two proximity sensors 40 of the four proximity sensors 40, and at least a preset number of proximity sensors 40 of the plurality of proximity sensors 40 generate corresponding detection signals .
  • the processor 10 receives a detection signal generated from at least a preset number of proximity sensors 40 among the proximity sensors 40 in the holding area 32, it determines that the proximity sensors 40 The at least a preset number of proximity sensors 40 simultaneously detect that the user touches the flexible touch screen 30, and controls the screen area corresponding to the holding area 32 to prohibit response to touch operations.
  • the screen area corresponding to the holding area 32 may be a part or all of the screen area of the flexible touch screen 30.
  • the screen area corresponding to the grip area 32 is a screen area in the grip area 32, or further includes a screen area within a preset distance range around the grip area 32.
  • the holding area 32 may be disposed in at least one sub-screen, that is, the holding area 32
  • the holding area 32 may be set in one split screen, or both split screens.
  • the screen area corresponding to the holding area 32 includes all or part of the screen area of the split screen corresponding to the holding area. For example, as shown in FIG.
  • the flexible touch screen 30 is bent along the bending line 31 to form a first sub-screen 33 and a second sub-screen 34, and the first sub-screen 33 and the second sub-screen
  • the screen 34 is provided with one holding area 32 respectively. It can be understood that in other embodiments, when the flexible touch screen 30 is bent along at least two bending lines to form at least three sub-screens, when one of the at least three sub-screens is in use The probability of being held in the process is very small, and the holding area 32 may not be provided on the split screen, thereby reducing costs and increasing processing speed.
  • the screen area corresponding to the holding area 32 includes all or part of the partial screens corresponding to the holding area 32.
  • the split screen refers to a portion of the screen where the flexible touch screen 30 is currently on the same continuous plane.
  • the flexible touch screen 30 has two bending lines, and they are bent along the two bending lines, respectively
  • the flexible touch screen 30 includes three split screens, but if it is currently bent along only one of the bending lines, the flexible touch screen 30 currently includes only two split screens. Therefore, the split The screen is a dynamic concept, that is to say, the number of split screens and the size of each split screen of the flexible touch screen 30 are related to the folding state of the screen according to each bending line.
  • the screen folded state is one of a bent state and an unfolded state.
  • the bending state refers to a state where the flexible touch screen 30 is bent at a corresponding bending line.
  • the unfolded state refers to a state in which the flexible touch screen 30 is fully unfolded without bending at the corresponding bending line.
  • the processor 10 includes a touch screen controller and registers.
  • the processor 10 controls the screen area corresponding to the holding area 32 to prohibit response to touch operations, including: determining that the screen area corresponding to the holding area 32 is an invalid touch area, and determining an invalid scan channel according to the invalid touch area , And set a corresponding control instruction in the register according to the invalid scan channel, the control instruction is used to inform the touch screen controller about the invalid scan channel information, the touch screen controller does not receive in response to the control command A signal sent by the invalid scan channel, so that the screen area corresponding to the holding area 32 is prohibited from responding to touch operations.
  • the processor 10 controls the flexible touch screen 30 to respond to touch operations on other screen areas other than the screen area corresponding to the holding area 32. Specifically, the processor 10 determines that the screen area other than the screen area corresponding to the holding area 32 of the flexible touch screen 30 is an effective touch area, and determines an effective scanning channel according to the effective touch area, And set corresponding control instructions in the register according to the effective scanning channel, the control instructions are used to inform the touch screen controller about the effective scanning channels, and the touch screen controller responds to the control instructions to receive the The signal sent by the channel is effectively scanned to make other screen areas other than the screen area corresponding to the holding area 32 respond to the touch operation.
  • the processor 10 determining the effective scan channel according to the effective touch area includes: calculating an invalid scan area according to the invalid touch area, and converting the invalid scan area into an invalid scan channel.
  • the terminal device 100 further includes a connection screen 35 provided between two adjacent sub-screens.
  • the connection screen 35 is connected between the first sub-screen 33 and the second sub-screen 34.
  • the connection screen 35 corresponds to the bent portion of the flexible touch screen 30.
  • the terminal device includes a pressure sensor 50.
  • the pressure sensor 50 is provided on the connection screen 35 for detecting whether the user applies pressure to the connection screen 35 to hold the connection screen 35. It can be understood that, when the flexible touch screen 30 is bent into at least two split screens along the corresponding bending line, the user generally bends the flexible touch screen 30 in a bent state with his hand The folded portion, that is, the connection screen 35 to hold the flexible touch screen 30, the pressure sensor 50 can thus detect the corresponding pressure and generate a corresponding detection signal.
  • the processor 10 simultaneously detects at least a preset number of proximity sensors 40 in the holding area 32 that the user touches the flexible touch screen 30, and the pressure sensor 50 detects the user's connection to the When the screen 35 applies pressure to hold the connected screen 35, the screen area corresponding to the holding area 32 is controlled to prohibit response to touch operations.
  • the processor 10 only has less than the preset number of proximity sensors 40 in the holding area 32 to detect that the user touches the flexible touch screen 30, or the processor 10 is in the holding In the area 32, only the proximity sensors 40 smaller than the preset number detect that the user touches the flexible touch screen 30, and the pressure sensor 50 does not detect the holding pressure from the user, and controls the grip
  • the screen area corresponding to the holding area 32 responds to the touch operation.
  • the pressure sensor 50 may also be disposed in the holding area 32 for detecting whether the user applies pressure to the corresponding holding area 32.
  • the processor 10 simultaneously detects at least a preset number of proximity sensors 40 in the holding area 32 that a user touches the flexible touch screen 30, and the pressure sensor 50 detects a user When pressure is applied in the holding area 32, the screen area corresponding to the holding area 32 is controlled to be prohibited from responding to touch operations.
  • the processor 10 has only less than the preset number of proximity sensors 40 in the holding area 32 that detect that the user touches the flexible touch screen 30, and / or the pressure sensor 50 does not detect When pressure is applied from the user to the corresponding holding area 32, the screen area corresponding to the holding area 32 is controlled to respond to the touch operation.
  • the pressure sensor 50 may be provided on at least one of the connection screen 35 and the holding area 32.
  • the pressure sensor 50 When there are multiple pressure sensors 50, they are respectively provided in the connection screen 35 and the holding area 32. At this time, the case where the pressure sensor 50 provided in the connection screen 35 or the holding area 32 detects the external pressure is applicable to the above two cases, which will not be described in detail here.
  • the processor 10 has at least a preset number of proximity sensors 40 in the holding area 32 At the same time, when it is detected that the user touches the flexible touch screen 30, the screen area corresponding to the holding area 32 is controlled to prohibit response to the touch operation.
  • FIG. 3 is a flowchart of a touch response control method of the terminal device 100 in an embodiment of the present application.
  • the touch response control method is applied to the foregoing terminal device 100 having a flexible touch screen 30, the flexible touch screen 30 is bendable along at least one bending line, and the flexible touch screen 30 is provided with at least one grip Holding area 32.
  • the terminal device 100 further includes several proximity sensors 40 provided in each holding area 32. It can be understood that the execution order of the touch response control method is not limited to the order shown in FIG. 3. Specifically, the touch response control method includes the steps of:
  • Step 301 determine whether there is at least a preset number of proximity sensors in the holding area 32 and simultaneously detect that the user touches the flexible touch screen 30, if yes, go to step 302; otherwise, end.
  • step 302 it is determined whether at least a preset number of proximity sensors 40 in the grip area 32 generate a detection signal within a preset time period; if there is at least a preset number of proximity sensors 40 generating a detection signal , It indicates that there is at least a preset number of proximity sensors simultaneously detecting that the user touches the flexible touch screen 30, and proceeds to step 302; otherwise, it ends.
  • Step 302 Control the screen area corresponding to the holding area 32 to prohibit responding to touch operations, and control the flexible touch screen to respond to the touch operation on other screen areas other than the screen area corresponding to the holding area 32.
  • Controlling the screen area corresponding to the holding area 32 is prohibited from responding to touch operations includes: determining that the screen area corresponding to the holding area 32 is an invalid touch area, and determining an invalid scan channel according to the invalid touch area, and according to all The invalid scan channel sets a corresponding control command in the register, the control command is used to inform the touch screen controller about the invalid scan channel, and the touch screen controller does not receive the invalid scan channel in response to the control command. Scanning the signal sent by the channel, so that the screen area corresponding to the holding area 32 is prohibited from responding to touch operations.
  • determining an invalid scan channel according to the invalid touch area includes: calculating an effective scan area according to the effective touch area, and converting the effective scan area into an effective scan channel.
  • controlling the flexible touch screen to respond to a touch operation on a screen area other than the screen area corresponding to the holding area 32 includes:
  • Determine the effective scanning channel according to the effective touch area includes:
  • the invalid scan area is calculated according to the invalid touch area, and the invalid scan area is converted into an invalid scan channel.
  • At least a preset number of proximity sensors 40 in the holding area 32 simultaneously detect that the user touches the flexible touch screen 30, and the pressure sensor 50 detects that the user applies pressure to the connection screen 35 to When holding the connection screen 35, control the screen area corresponding to the holding area 32 to prohibit response to touch operations.

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  • Theoretical Computer Science (AREA)
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  • General Physics & Mathematics (AREA)
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Abstract

一种触摸响应控制方法和终端设备,所述终端设备包括处理器、柔性触控屏和接近传感器,所述柔性触控屏上设置有至少一握持区域(32),所述终端设备还包括设置在每个握持区域(32)中的若干接近传感器(40),所述处理器在其中一个握持区域(32)中的至少预设个数的接近传感器(40)同时侦测到用户接触所述柔性触控屏时,控制所述握持区域(32)对应的屏幕区域禁止响应触摸操作。在该方法中,在所述握持区域(32)中的至少预设个数的接近传感器(40)同时侦测到用户接触所述柔性触控屏以握持所述柔性触控屏时,控制所述握持区域(32)对应的屏幕区域禁止响应触摸操作,避免误操作。

Description

终端设备及其触摸响应控制方法 技术领域
本申请涉及智能终端的触控领域,尤其涉及一种基于柔性触控屏的终端设备及其触摸响应控制方法。
背景技术
柔性触控显示屏作为液晶显示屏之后的新生代显示屏,其通过柔软的材料制成,可变形可弯曲,使得具有柔性触控显示屏的电子设备具有了更多的使用状态,例如,将该种电子设备完全打开呈平板状使用,或者将该电子设备沿预定的弯折线弯折成多个小屏幕使用。然而,该种电子设备在相背弯折使得其触控显示面同时位于该种电子设备的前面和背面时,无论用户怎样握持弯折后的具有柔性触控显示屏的电子设备,都会被该电子设备认为是触摸操作,产生误触,导致系统乱响应,给用户带来了极大的不便。
发明内容
本申请实施例公开基于柔性触控屏的终端设备及其触摸响应控制方法,以解决上述问题。
本申请实施例公开的终端设备,包括处理器、柔性触控屏和接近传感器,所述柔性触控屏上设置有至少一握持区域,所述终端设备还包括设置在每个握持区域中的若干接近传感器,所述处理器在其中一个握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
本申请实施例公开的一种触摸响应控制方法,应用于一具有柔性触控屏的终端设备,所述柔性触控屏上设置有至少一握持区域,所述终端设备还包括设置在每个握持区域中的若干接近传感器,所述触摸响应控制方法包括:位于每个握持区域的若干接近传感器同时侦测是否有用户接触所述柔性触控屏;在其中一个握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
本申请的终端设备及其触摸响应控制方法,在其中一个握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。从而,当终端设备侦测到柔性触控屏的握持区域被用户握持时,控制所述握持区域对应的屏幕区域禁止响应触摸操作,从而能够有效避免误触摸。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1为本申请一实施例中的终端设备的硬件模块的示意框图。
图2为本申请一实施例中的终端设备的柔性触控屏上设置了握持区域和接近传感器的结构示意图。
图3为本申请一实施例中的触摸响应控制方法的流程示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
本申请的说明书和权利要求书及上述附图中的术语“包括”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”和“第三”等是用于区别不同对象,而非用于描述特定顺序。
请参阅图1,图1为本申请一实施例中的终端设备的硬件模块的示意框图。 所述终端设备100可以是但不限于手机、平板电脑、电子阅读器、穿戴式电子设备等可弯折的终端设备。所述终端设备100包括但不限于处理器10,以及分别与处理器10电性连接的存储器20和柔性触控屏30。本领域技术人员应当理解的是,图1仅是所述终端设备100的示例,并不构成对所述终端设备100的限定,所述终端设备100可以包括比图1所示更多或更少的部件,或者组合某些部件,或者不同的部件,例如,所述终端设备100还可以包括输入输出设备、网络接入设备、数据总线等。
所述处理器10可以是中央处理单元(Central Processing Unit,CPU),还可以是其它通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用触摸屏控制器(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable GateArray,FPGA)或者其它可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。所述通用处理器可以是微处理器或者通用处理器也可以是任何常规的处理器等。所述处理器10是所述终端设备100的控制中心,利用各种接口和线路连接整个所述终端设备100的各个部分。
所述存储器20可用于存储计算机程序和/或模块,所述处理器10通过运行或执行存储在存储器20内的计算机程序和/或模块,以及调用存储在所述存储器20内的数据,实现所述终端设备100的各种功能。所述存储器20可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、多个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据终端设备100的使用所创建的数据(比如音频数据、图像数据等)等。此外,所述存储器20可以包括高速随机存取存储器,还可以包括非易失性存储器,例如硬盘、内存、插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)、多个磁盘存储器件、闪存器件、或其它易失性固态存储器件。
所述柔性触控屏30沿至少一条弯折线具有可弯折性。其中,所述柔性触控屏30沿至少一条弯折线具有可弯折性,包括:所述柔性触控屏30沿所述弯折线具有可弯折性且所述柔性触控屏30除所述弯折线以外的区域不可弯折;或者,所述柔性触控屏3沿所述弯折线具有可弯折性且所述柔性触控屏30除所述弯折线以外的区域也具有可弯折性。在一些实施例中,所述柔性触控屏30可以是但 不限于柔性柔性触控屏、柔性触控显示屏等。
请一并参考图2,所述柔性触控屏30上设置有至少一握持区域32。其中,所述握持区域32是指所述终端设备100被用户握持时,所述柔性触控屏30被用户遮挡的区域。所述“被用户遮挡的区域”是指被用户手部或者身体的任何一个部位遮挡的区域。可以理解的是,所述握持区域32是所述柔性触控屏30的全部区域或者部分区域。图2中所示的握持区域32仅是一个示意,可以理解的是,在实际应用中,所述握持区域32的位置可以根据用户常规的握持习惯而设置在柔性触控屏30的适宜位置上。
所述终端设备100还包括设置在每个握持区域32中的若干接近传感器40。所述处理器10在所述握持区域32中的所述若干接近传感器40中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。
其中,本申请上下文中提到的“接触”,是指用户的身体某一部位,例如,用户的手掌,与柔性触控屏30之间的距离小于预设距离。“同时”是指所述至少预设个数的接近传感器40侦测到用户接触所述柔性触控屏30的时间点均在预设时间段内,从而,避免操作不同步带来的误判断。
其中,在一实施例中,所述接近传感器40至少包括红外光传感器。所述红外光传感器用于感测预设距离范围内的人体发出的红外光,并产生相应的侦测信号。本实施例中,每个握持区域32中设置四个接近传感器40,且该四个接近传感器40大致环绕所述握持区域32的中心点间隔设置。可以理解的是,在其它实施例中,当用户握持所述终端设备100时,用户的身体某一部位,例如,用户的手部,可能会同时接近所述若干接近传感器40中的至少预设个数的接近传感器40,例如,所述四个接近传感器40中的至少两个接近传感器40,所述若干接近传感器40中的至少预设个数的接近传感器40便产生相应的侦测信号。所述处理器10在接收到来自所述握持区域32中的所述若干接近传感器40中的至少预设个数的接近传感器40产生的侦测信号时,确定所述若干接近传感器40中的所述至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30,并控制所述握持区域32对应的屏幕区域禁止响应触摸操作。
其中,所述握持区域32对应的屏幕区域可以是所述柔性触控屏30的一部分 或者全部屏幕区域。在一实施例中,所述握持区域32对应的屏幕区域是所述握持区域32中的屏幕区域,或者还包括所述握持区域32周围预设距离范围内的屏幕区域。当所述柔性触控屏30沿所述至少一条弯折线弯折成至少两个分屏幕时,所述握持区域32可设置在至少一分屏幕中,也就是说,所述握持区域32可以设置在一个分屏幕中,或者两个分屏幕中都设置有所述握持区域32。其中,所述握持区域32对应的屏幕区域包括所述握持区域对应的所述分屏幕的全部或者部分屏幕区域。例如,如图2所示,所述柔性触控屏30沿所述弯折线31弯折形成第一分屏幕33和第二分屏幕34,且所述第一分屏幕33和所述第二分屏幕34分别设置一个所述握持区域32。可以理解的是,在其它实施例中,所述柔性触控屏30沿至少两条弯折线弯折形成至少三个分屏幕时,当所述至少三个分屏幕中的一个分屏幕在使用的过程中被握持的概率很小,则所述分屏幕上可以不设置所述握持区域32,从而能够降低成本,提高处理速度。所述握持区域32对应的屏幕区域包括所述握持区域32对应的所述分屏幕的全部或者部分屏幕。
需要说明的是,所述分屏幕是指柔性触控屏30当前处于同一连续平面上的屏幕部分,例如,当所述柔性触控屏30具有两条弯折线,且沿两条弯折线分别弯折时,所述柔性触控屏30包括三个分屏幕,但如果当前只沿其中一条弯折线弯折时,则所述柔性触控屏30当前只包括两个分屏幕,因此,所述分屏幕是一个动态概念,也就是说,所述柔性触控屏30具有的分屏幕数量和每个分屏幕的大小与根据每条弯折线处的屏幕折叠状态均相关。其中,所述屏幕折叠状态是弯折状态和展开状态中其中一种。所述弯折状态是指所述柔性触控屏30在对应弯折线处发生弯折的状态。所述展开状态是指所述柔性触控屏30在对应弯折线处没有弯折即完全展开的状态。
其中,所述处理器10包括触摸屏控制器和寄存器。所述处理器10控制所述握持区域32对应的屏幕区域禁止响应触摸操作,包括:确定所述握持区域32对应的屏幕区域为无效触摸区域,并根据所述无效触摸区域确定无效扫描通道,且根据所述无效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于无效扫描通道的信息,所述触摸屏控制器响应所述控制指令便不接收由所述无效扫描通道发出的信号,以使所述握持区域32对应的屏幕区域禁止响应触摸操作。
进一步地,所述处理器10控制所述柔性触控屏30在所述握持区域32对应的屏幕区域之外的其它屏幕区域响应触摸操作。具体地,所述处理器10确定所述柔性触控屏30在所述握持区域32对应的屏幕区域之外的其它屏幕区域为有效触摸区域,并根据所述有效触摸区域确定有效扫描通道,且根据所述有效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于有效扫描通道的信息,所述触摸屏控制器响应所述控制指令以接收所述有效扫描通道发出的信号,以使在所述握持区域32对应的屏幕区域之外的其它屏幕区域响应触摸操作。
进一步地,所述处理器10根据所述有效触摸区域确定有效扫描通道,包括:根据所述无效触摸区域计算无效扫描区域,且将无效扫描区域转换为无效扫描通道。
所述终端设备100还包括设置在相邻两个分屏幕之间的连接屏幕35,例如,连接屏幕35连接在第一分屏幕33和第二分屏幕34之间。所述连接屏幕35对应所述柔性触控屏30的弯折部分。所述终端设备包括压力传感器50。所述压力传感器50设置在所述连接屏幕35上,用于侦测用户是否向该连接屏幕35施加压力以握持所述连接屏幕35。可以理解的是,当所述柔性触控屏30沿着对应的弯折线弯折成至少两个分屏幕时,用户一般会用手抵着所述柔性触控屏30在弯折状态下的弯折部分,即,所述连接屏幕35,以握持所述柔性触控屏30时,所述压力传感器50因而能够侦测到相应的压力并产生相应的侦测信号。
所述处理器10在所述握持区域32中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30,且所述压力传感器50侦测到用户向该连接屏幕35施加压力以握持所述连接屏幕35时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。所述处理器10在所述握持区域32中只有小于所述预设个数的接近传感器40侦测到用户接触所述柔性触控屏30,或者,所述处理器10在所述握持区域32中只有小于所述预设个数的接近传感器40侦测到用户接触所述柔性触控屏30,且所述压力传感器50没有侦测到来自用户的握持压力时,控制所述握持区域32对应的屏幕区域响应触摸操作。
可选择地,所述压力传感器50还可设置在所述握持区域32中,用于侦测用户是否向对应的握持区域32中施加压力。所述处理器10在所述握持区域32中 的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30,且所述压力传感器50侦测到有用户向对应的握持区域32中施加压力时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。所述处理器10在所述握持区域32中只有小于所述预设个数的接近传感器40侦测到用户接触所述柔性触控屏30,和/或所述压力传感器50没有侦测到来自用户的向对应的握持区域32中施加的压力时,控制所述握持区域32对应的屏幕区域响应触摸操作。
可以理解的是,压力传感器50可以设置在连接屏幕35和握持区域32中的至少其中一个上。当压力传感器50有多个,且分别设置在连接屏幕35和握持区域32中。此时,当设置在连接屏幕35或者握持区域32内的压力传感器50侦测到外部压力的情况适用于上述两种情况,此处不再详述。当设置在连接屏幕35和握持区域32内的压力传感器50同时侦测到来自用户的外部压力,且所述处理器10在所述握持区域32中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。
从而,通过所述压力传感器50和所述接近传感器40所侦测到的数据的结合,能够更准确的判断是否有用户握持所述移动终端100的柔性触控屏30的对应握持区域,并控制对应的握持区域32禁止响应触摸操作,从而有效避免误操作。
请参阅图3,为本申请一实施例中的终端设备100的触摸响应控制方法的流程图。该触摸响应控制方法应用于前述具有柔性触控屏30的终端设备100,所述柔性触控屏30沿至少一条弯折线具有可弯折性,所述柔性触控屏30上设置有至少一握持区域32。所述终端设备100还包括设置在每个握持区域32中的若干接近传感器40。可以理解的是,触摸响应控制方法的执行顺序并不限于图3所示的顺序。具体地,所述触摸响应控制方法包括步骤:
步骤301:判断握持区域32中是否有至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏30,如果是,进入步骤302;否则,结束。
具体地,判断所述握持区域32中是否有至少预设个数的接近传感器40在预设时间段内产生侦测信号;如果有所述至少预设个数的接近传感器40产生侦测信号,则表明有至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏30,并进入步骤302;否则,结束。
步骤302:控制所述握持区域32对应的屏幕区域禁止响应触摸操作,及控制所述柔性触控屏在所述握持区域32对应的屏幕区域之外的其它屏幕区域响应触摸操作。
“控制所述握持区域32对应的屏幕区域禁止响应触摸操作”包括:确定所述握持区域32对应的屏幕区域为无效触摸区域,并根据所述无效触摸区域确定无效扫描通道,且根据所述无效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于无效扫描通道的信息,所述触摸屏控制器响应所述控制指令便不接收由所述无效扫描通道发出的信号,以使所述握持区域32对应的屏幕区域禁止响应触摸操作。
进一步地,“根据所述无效触摸区域确定无效扫描通道”包括:根据所述有效触摸区域计算有效扫描区域,且将有效扫描区域转换为有效扫描通道。
具体地,“控制所述柔性触控屏在所述握持区域32对应的屏幕区域之外的其它屏幕区域响应触摸操作”包括:
确定所述柔性触控屏在所述握持区域32对应的屏幕区域之外的其它屏幕区域为有效触摸区域,并根据所述有效触摸区域确定有效扫描通道,根据所述有效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于有效扫描通道的信息,所述触摸屏控制器响应所述控制指令以接收所述有效扫描通道发出的信号,以使在所述握持区域32对应的屏幕区域之外的其它屏幕区域响应触摸操作。
“根据所述有效触摸区域确定有效扫描通道”包括:
根据所述无效触摸区域计算无效扫描区域,且将无效扫描区域转换为无效扫描通道。
进一步地,所述终端设备100还包括设置在相邻二分屏幕之间的连接屏幕35。所述连接屏幕35对应所述柔性触控屏30的弯折部分。所述终端设备100包括压力传感器50。所述压力传感器50设置在所述连接屏幕35上,用于侦测用户是否向该连接屏幕35施加压力以握持所述连接屏幕35。所述触摸响应控制方法还包括步骤:
在所述握持区域32中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30,且所述压力传感器50侦测到用户向该连接屏幕35施加压力 以握持所述连接屏幕35时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。
所述压力传感器50还可设置在所述握持区域32中,用于侦测用户是否向对应的握持区域32中施加压力,所述触摸响应控制方法还包括:
在所述握持区域32中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30,且所述压力传感器50侦测到有用户向对应的握持区域32中施加压力时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。
从而,本申请的终端设备及其触摸响应控制方法,在柔性触控屏30的其中一个握持区域32中的至少预设个数的接近传感器40同时侦测到用户接触所述柔性触控屏30时,控制所述握持区域32对应的屏幕区域禁止响应触摸操作。从而,当终端设备100侦测到用户接触所述柔性触控屏30的握持区域32以握持所述终端设备100时,控制该握持区域32对应的屏幕区域禁止响应触摸操作,避免误触摸。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其它顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其它实施例的相关描述。
本申请实施例方法中的步骤可以根据实际需要进行顺序调整、合并和删减。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存取存储器(Random Access Memory,简称RAM)等。
以上对本申请实施例进行了详细介绍,本文中应用了具体个例对本申请的原理及实施例进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施 例及应用范围上均会有改变之处,综上,本说明书内容不应理解为对本申请的限制。

Claims (20)

  1. 一种终端设备,其特征在于,包括处理器、柔性触控屏和接近传感器,所述柔性触控屏上设置有至少一握持区域,所述终端设备还包括设置在每个握持区域中的若干接近传感器,所述处理器在其中一个握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  2. 如权利要求1所述的终端设备,其特征在于,所述握持区域是指用户握持所述终端设备时,所述柔性触控屏被用户遮挡的区域,所述握持区域是所述柔性触控屏的全部区域或者部分区域。
  3. 如权利要求1所述的终端设备,其特征在于,所述接近传感器至少包括红外光传感器。
  4. 如权利要求1所述的终端设备,其特征在于,所述终端设备包括压力传感器,所述压力传感器设置在所述握持区域中,用于侦测用户是否向对应的握持区域中施加压力,所述处理器在所述握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏,且所述压力传感器侦测到有用户向对应的握持区域中施加压力时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  5. 如权利要求1所述的终端设备,其特征在于,所述柔性触控屏包括至少一条弯折线,所述柔性触控屏沿所述至少一弯折线弯折形成至少两个分屏幕,所述握持区域设置在至少一分屏幕上,其中,所述握持区域对应的屏幕区域包括所述握持区域所在的所述分屏幕的全部或者部分屏幕区域。
  6. 如权利要求5所述的终端设备,其特征在于,所述终端设备还包括设置在相邻二分屏幕之间的连接屏幕,所述连接屏幕对应所述柔性触控屏的弯折部分,所述终端设备包括压力传感器,所述压力传感器设置在所述连接屏幕上,用于侦测用户是否向该连接屏幕施加压力以握持所述连接屏幕,所述处理器在所述握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏,且所述压力传感器侦测到用户向该连接屏幕施加压力以握持所述连接屏幕时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  7. 如权利要求1至6任一项所述的终端设备,其特征在于,所述处理器包括触摸屏控制器和寄存器,所述处理器控制所述握持区域对应的屏幕区域禁止响应 触摸操作,包括:确定所述握持区域对应的屏幕区域为无效触摸区域,并根据所述无效触摸区域确定无效扫描通道,且根据所述无效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于无效扫描通道的信息,所述触摸屏控制器响应所述控制指令便不接收由所述无效扫描通道发出的信号,所述握持区域对应的屏幕区域则禁止响应触摸操作。
  8. 如权利要求7所述的终端设备,其特征在于,所述处理器控制所述柔性触控屏在所述握持区域对应的屏幕区域之外的其它屏幕区域响应触摸操作。
  9. 如权利要求8所述的终端设备,其特征在于,所述处理器确定所述柔性触控屏在所述握持区域对应的屏幕区域之外的其它屏幕区域为有效触摸区域,并根据所述有效触摸区域确定有效扫描通道,且根据所述有效扫描通道在所述寄存器中设置对应的控制指令,该控制指令用以告知所述触摸屏控制器关于有效扫描通道的信息,所述触摸屏控制器响应所述控制指令以接收所述有效扫描通道发出的信号,所述握持区域对应的屏幕区域之外的其它屏幕区域响应触摸操作。
  10. 如权利要求9所述的终端设备,其特征在于,所述处理器根据所述无效触摸区域确定无效扫描通道,包括:根据所述无效触摸区域计算无效扫描区域,且将无效扫描区域转换为无效扫描通道;或,所述处理器根据所述有效触摸区域确定有效扫描通道,包括:根据所述有效触摸区域计算有效扫描区域,且将有效扫描区域转换为有效扫描通道。
  11. 一种触摸响应控制方法,应用于一具有柔性触控屏的终端设备,所述柔性触控屏上设置有至少一握持区域,所述终端设备还包括设置在每个握持区域中的若干接近传感器,其特征在于,所述触摸响应控制方法包括:
    位于每个握持区域的若干接近传感器同时侦测是否有用户接触所述柔性触控屏;
    在其中一个握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  12. 如权利要求11所述的触摸响应控制方法,其特征在于,所述握持区域是指用户握持所述终端设备时,所述柔性触控屏被用户遮挡的区域,所述握持区域是所述柔性触控屏的全部区域或者部分区域。
  13. 如权利要求11所述的触摸响应控制方法,其特征在于,所述接近传感器 至少包括红外光传感器。
  14. 如权利要求11所述的触摸响应控制方法,其特征在于,所述终端设备包括压力传感器,所述压力传感器设置在所述握持区域中,所述触摸响应控制方法还包括:
    所述压力传感器侦测用户是否向对应的握持区域中施加压力;
    在所述握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏,且所述压力传感器侦测到有用户向对应的握持区域中施加压力时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  15. 如权利要求11所述的触摸响应控制方法,其特征在于,所述柔性触控屏包括至少一条弯折线,所述柔性触控屏沿所述至少一弯折线弯折形成至少两个分屏幕,所述握持区域设置在至少一分屏幕上,其中,所述握持区域对应的屏幕区域包括所述握持区域所在的所述分屏幕的全部或者部分屏幕区域。
  16. 如权利要求15所述的触摸响应控制方法,其特征在于,所述终端设备还包括设置在相邻二分屏幕之间的连接屏幕,所述连接屏幕对应所述柔性触控屏的弯折部分,所述终端设备包括压力传感器,所述压力传感器设置在所述连接屏幕上,所述触摸响应控制方法还包括:
    所述压力传感器侦测用户是否向该连接屏幕施加压力以握持所述连接屏幕;
    在所述握持区域中的至少预设个数的接近传感器同时侦测到用户接触所述柔性触控屏,且所述压力传感器侦测到用户向该连接屏幕施加压力以握持所述连接屏幕时,控制所述握持区域对应的屏幕区域禁止响应触摸操作。
  17. 如权利要求11至16任一项所述的触摸响应控制方法,其特征在于,控制所述握持区域对应的屏幕区域禁止响应触摸操作,包括:
    确定所述握持区域对应的屏幕区域为无效触摸区域;
    根据所述无效触摸区域确定无效扫描通道;及
    控制不接收所述无效扫描通道发出的信号,以使所述握持区域对应的屏幕区域禁止响应触摸操作。
  18. 如权利要求17所述的触摸响应控制方法,其特征在于,所述触摸响应控制方法还包括:
    控制所述柔性触控屏在所述握持区域对应的屏幕区域之外的其它屏幕区域 响应触摸操作。
  19. 如权利要求18所述的触摸响应控制方法,其特征在于,“控制所述柔性触控屏在所述握持区域对应的屏幕区域之外的其它屏幕区域响应触摸操作”包括:
    确定所述柔性触控屏在所述握持区域对应的屏幕区域之外的其它屏幕区域为有效触摸区域;
    根据所述有效触摸区域确定有效扫描通道;及
    控制接收有效扫描通道发出的信号,以使在所述握持区域对应的屏幕区域之外的其它屏幕区域响应触摸操作。
  20. 如权利要求19所述的触摸响应控制方法,其特征在于,“根据所述无效触摸区域确定无效扫描通道”包括:根据所述无效触摸区域计算无效扫描区域,且将无效扫描区域转换为无效扫描通道;或,
    “根据所述有效触摸区域确定有效扫描通道”包括:根据所述有效触摸区域计算有效扫描区域,且将有效扫描区域转换为有效扫描通道。
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