WO2020087291A1 - 交互方法、交互装置和电子设备 - Google Patents

交互方法、交互装置和电子设备 Download PDF

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Publication number
WO2020087291A1
WO2020087291A1 PCT/CN2018/112766 CN2018112766W WO2020087291A1 WO 2020087291 A1 WO2020087291 A1 WO 2020087291A1 CN 2018112766 W CN2018112766 W CN 2018112766W WO 2020087291 A1 WO2020087291 A1 WO 2020087291A1
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WO
WIPO (PCT)
Prior art keywords
display area
input signal
electronic device
area
display
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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.)
Ceased
Application number
PCT/CN2018/112766
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English (en)
French (fr)
Inventor
付洋
王金周
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.)
Shenzhen Royole Technologies Co Ltd
Original Assignee
Shenzhen Royole Technologies 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.)
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Publication date
Application filed by Shenzhen Royole Technologies Co Ltd filed Critical Shenzhen Royole Technologies Co Ltd
Priority to CN201880096108.1A priority Critical patent/CN112689984A/zh
Priority to PCT/CN2018/112766 priority patent/WO2020087291A1/zh
Publication of WO2020087291A1 publication Critical patent/WO2020087291A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

Definitions

  • the present application relates to the field of communication technology, and in particular, to an interaction method, interaction device, and electronic equipment.
  • the entire display screen of the terminal will light up to display the content of the message.
  • the battery life of the terminal especially when there are many messages, the battery life of the terminal Serious impact.
  • the embodiments of the present application provide an interaction method, an interaction device, and an electronic device, which can reduce the power consumed by the electronic device to display messages and improve the battery life of the electronic device.
  • the electronic device includes a touch display screen, and the touch display screen includes a secondary display area and a main display area.
  • the interaction method includes: after receiving a message, determine whether the touch display screen is in a breathing state, and When the touch display screen is in the breath-holding state, the secondary display area is controlled to display the content of the message, and the main display area is kept in the breath-holding state.
  • the present application also provides an interactive device, which is applied to an electronic device.
  • the electronic device includes a touch display screen, and the touch display screen includes a secondary display area and a main display area.
  • Control module The first judgment module is used to judge whether the touch display screen is in the breath-hold state after receiving the message; the first control module is used to control the auxiliary display when the touch display screen is in the breath-hold state The area displays the content of the message, and keeps the main display area in a screen-holding state.
  • the present application also provides an electronic device, which includes a touch display screen, an optical identification module, a power supply, and a processor.
  • the touch display screen is used to receive a touch operation to form an input signal
  • the touch display screen includes a sub display area and a main display area.
  • the optical identification module is used to identify the input signal to form corresponding identification information.
  • the power supply is used to power the electronic device.
  • the processor is used to determine whether the touch display screen is in the breath-hold state after receiving the message, and when the touch display screen is in the breath-hold state, control the secondary display area to display the content of the message and maintain The main display area is in the breath-hold state.
  • the interaction method, the interaction device and the electronic device only display the content of the message through the secondary display area after receiving the message, and consume less power than the entire touch screen is lit to display the content of the message , Even when there are many messages, it will not have a big impact on the endurance of electronic devices.
  • FIG. 1 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 2 is a schematic block diagram of an interactive device according to some embodiments of the present application.
  • FIG. 3 is a schematic structural diagram of an electronic device according to some embodiments of the present application.
  • FIG. 6 is a schematic structural diagram of an electronic device according to some embodiments of the present application.
  • FIG. 7 is a schematic flowchart of an interaction method according to some embodiments of the present application.
  • FIG. 8 is a schematic block diagram of an acquisition module in some embodiments of the present application.
  • FIG. 9 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 10 is a block diagram of an acquisition module of some embodiments of the present application.
  • FIG. 11 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 12 is a block diagram of an acquisition module of some embodiments of the present application.
  • FIG. 13 is a schematic diagram of a scenario of an interaction method in some embodiments of the present application.
  • 15 is a schematic block diagram of an acquisition module in some embodiments of the present application.
  • 16 is a schematic diagram of a scenario of an interaction method in some embodiments of the present application.
  • 17 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 18 is a block diagram of a display module of some embodiments of the present application.
  • 20 is a block diagram of a display module of some embodiments of the present application.
  • 21 to 23 are schematic diagrams of the interaction method of some embodiments of the present application.
  • 25 is a schematic block diagram of an interactive device according to some embodiments of the present application.
  • 26 is a schematic diagram of a scenario of an interaction method in some embodiments of the present application.
  • FIG. 27 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 28 is a block schematic diagram of a display module of some embodiments of the present application.
  • FIG. 29 is a schematic flowchart of an interaction method in some embodiments of the present application.
  • FIG. 30 is a schematic block diagram of an interactive device according to some embodiments of the present application.
  • FIG. 31 is a schematic diagram of an interaction method in some embodiments of the present application.
  • the interaction method according to the embodiment of the present application is applied to an electronic device 100.
  • the electronic device 100 includes a touch display 20.
  • the touch display 20 includes a sub-display area 22 and a main display area 24. :
  • the interactive device 10 is applied to the electronic device 100.
  • the interactive device 10 includes a first judgment module 11 and a first control module 12.
  • the first judging module 11 is used to judge whether the touch display screen 20 is in the state of resting screen after receiving the message.
  • the first control module 12 is used to control the secondary display area 22 to display the content of the message when the touch display screen 20 is in the breath hold state, and keep the main display area 24 in the breath hold state.
  • the electronic device 100 includes a touch display screen 20, an optical identification module 30, a power supply 40, and a processor 50.
  • the touch display screen 20 is used to receive a touch operation to form an input signal.
  • the optical identification module 30 is used to identify the input signal to form corresponding identification information.
  • the power supply 40 is used to supply power to the electronic device 100.
  • the processor 50 is used to determine whether the touch display screen 20 is in the breathing state after receiving the message, and when the touch display screen 20 is in the breathing state, control the sub display area 22 to display the content of the message, and keep the main display area 24 in the breathing state. Screen status.
  • step 011 and step 012 can be implemented by the processor 50.
  • the processor 50 when the electronic device 100 receives the message, the processor 50 will first determine whether the touch display screen 20 is in the screen-rest state, and when the touch display screen 20 is in the bright screen state, it indicates that the user is normally using, Then, the message can be displayed on the touch display screen 20. If the touch display screen 20 is in the breath-hold state, the sub-display area 22 is controlled to display the message, and the main display area 24 is kept in the breath-hold state.
  • the display area 24 is a part of the touch display 20, that is to say, the touch display 20 can control the lighting and extinction of different areas of itself, such as the touch display 20 using organic light-emitting diode (Organic Light-Emitting Diode, OLED) Can control the lighting and extinction of each pixel individually.
  • organic light-emitting diode Organic Light-Emitting Diode, OLED
  • the interaction method, the interaction device 10, and the electronic device 100 of the embodiment of the present application only display the content of the message through the secondary display area 22.
  • the entire display is lit to display the content of the message, which consumes The amount of power is less, and even when there are more messages, it will not have a greater impact on the battery life of the electronic device 100.
  • the interactive device 10 of the embodiment of the present application may be applied to the electronic device 100 of the embodiment of the present application, that is, the electronic device 100 of the embodiment of the present application may include the interactive device 10 of the embodiment of the present application.
  • the electronic device 100 includes a mobile phone, a tablet computer, a notebook computer, a smart wearable device, and so on.
  • the interaction method further includes the following steps:
  • the main display area 24 After receiving the interactive operation in the sub display area 22, the main display area 24 is controlled to light up.
  • the interaction device 10 further includes a second control module 13.
  • the second control module 13 is used to control the main display area 24 to light up after receiving the interactive operation in the sub display area 22.
  • the processor 50 is used to control the main display area 24 to light up after receiving the interactive operation in the sub display area 22.
  • step 013 may be implemented by the processor 50.
  • the electronic device 100 will light up the main display area 24 to receive subsequent input from the user.
  • the interaction method further includes the following steps:
  • 015 Display the information corresponding to the input signal on at least one of the sub display area 22 and the main display area 24.
  • the interaction device 10 further includes an acquisition module 14 and a display module 15.
  • the obtaining module 14 is used to obtain the input signal of the user.
  • the display module 15 is used to display information corresponding to the input signal on at least one of the sub-display area 22 and the main display area 24.
  • the electronic device 100 may receive user input.
  • the user input may be a touch operation on the touch display screen 20, voice input, gesture input, etc., without limitation.
  • the electronic device 100 converts the user's input into corresponding information and displays it in the sub-display area 22.
  • the user can send the information to complete the reply of the information.
  • the electronic device 100 will receive the user's input, and may display the corresponding information in the auxiliary display area 22 or the main display area 24 during the input to feedback the user's input and improve the input efficiency.
  • the corresponding message is displayed in the secondary display area 22, and after confirmation by the user, the message can be sent to complete the reply of the message.
  • step 013 includes the following steps:
  • 0142 Control the main display area 24 to receive input signals.
  • the acquisition module 14 includes a first control unit 141 and a second control unit 142.
  • the first control unit 141 is used to control the main display area 24 to display the input method interface.
  • the second control unit 142 is used to control the main display area 24 to receive the input signal.
  • the processor 50 is used to control the main display area 24 to display an input method interface, and to control the main display area 24 to receive input signals.
  • step 0141 and step 0142 can be implemented by the processor 50.
  • the electronic device 100 controls the main display area 24 to display the input method interface, where the input method interface may be a pinyin input interface, a stroke input interface, a handwriting input interface and many more. Then, the electronic device 100 receives the user's touch operation on the input method interface and converts it into a corresponding message to be displayed on the secondary display area 22. After the electronic device 100 receives the user input, the electronic device 100 controls the reply button to become a send button, and then the user confirms that the input content is correct and clicks the send button to complete the reply to the message. In this way, you can directly reply to the message without entering the application or the main interface, which is simple and fast.
  • step 014 includes the following steps:
  • 0143 determine whether the user performs a reply operation according to the input signal received by the sub display area 22;
  • the acquisition module 14 includes a first judgment unit 143 and a third control unit 144.
  • the first judging unit 143 is used to judge whether the user performs the reply operation according to the interactive operation received by the sub-display area 22; the third control unit 144 is used to control the main display area 24 to receive the input signal when the user performs the reply operation.
  • the processor 50 is also used to keep the main display area 24 holding the screen, determine whether the user performs the reply operation according to the interactive operation received by the secondary display area 22, and control the main display area 24 to receive the input signal when the user performs the reply operation.
  • step 0143 and step 0144 may be implemented by the processor 50.
  • the electronic device 100 controls the main display area 24 to hold the screen, and then the processor 50 determines whether the user performs a reply operation according to the interactive operation received by the sub-display area 22.
  • the sub-display area 22 The received interactive operation for judging whether the user performs the reply operation may be whether the user clicks the reply button in FIG. 5, when the user clicks the reply button, the secondary display area 22 receives the interactive operation and controls the main display area 24 to receive the input signal, That is to say, although the main display area 24 is not bright at this time, it can still receive an input signal, where the input signal refers to a user's touch operation, that is, a handwriting input operation.
  • the user may also perform other operations when he needs to reply in the secondary display area, such as double-clicking the secondary display area and performing a characteristic sliding operation in the secondary display area.
  • the main display area can still receive the user's handwriting input signal when the screen is not bright, and complete the selected handwriting input result and send the handwriting input in the secondary display area Results and other operations.
  • the electronic device 100 generally includes a display screen and a touch screen. The display screen and the touch screen are generally stacked on the electronic device 100, so the area corresponding to the main display area 24 on the display screen can be closed and only the display screen and the auxiliary display area 22 can be lit.
  • Corresponding area and then keep the touch screen to continue to receive user input to complete the reply to the message.
  • the main display area 24 is in the state of the screen, it is not feasible to enter the input method that requires a bright screen through pinyin input, stroke input, etc. Yes, but the touch screen can receive handwriting input in the state of holding the screen to reply to the message. In this way, it is not necessary to light up the main display area 24 during message display and reply process, which can greatly reduce power consumption.
  • step 015 includes the following steps:
  • the display module 15 includes a display unit 151.
  • the display unit is used to display information corresponding to the input signal in the sub-display area 22.
  • the processor 50 is also used to display the information corresponding to the input signal in the sub-display area 22.
  • step 0151 can be implemented by the processor 50.
  • the information corresponding to the input signal generated by receiving the user's input is directly displayed in the secondary display area, which can be adapted to the bright screen input method for input and breathing screen handwriting input. Feedback to improve user input efficiency.
  • the electronic device 100 further includes an optical identification module 30.
  • Step 0151 includes the following steps:
  • 0154 Display the identification information in the secondary display area.
  • the display unit 151 includes a first control subunit 152 and a first display subunit 154.
  • the control subunit 152 is used to control the optical recognition module 30 to recognize the input signal to form corresponding identification information.
  • the display subunit 154 is used to display the identification information on the sub display area 22.
  • the processor 50 is also used to control the optical recognition module 30 to recognize the input signal to form corresponding identification information, and display the identification information on the secondary display area 22.
  • step 0152 and step 0154 can be implemented by the processor 50.
  • the electronic device 100 when the user ’s handwriting input, the user ’s handwriting input in the main display area 22 (that is, the input signal) can be converted into a picture (for example, in reality we have written a After the word, take a picture and recognize it.
  • a picture of the word written by the user can be obtained according to the sliding track of the user's finger), and then optically recognized
  • the module 30 recognizes the picture containing the words written by the user to recognize the words in the figure to obtain the identification information.
  • the user can write one word at a time when handwriting and then the optical recognition module 30 recognizes. In this way, the optical recognition module 30 recognizes the user's handwriting input, and the recognition is relatively accurate.
  • the user may write multiple words at a time and then be recognized by the optical recognition module 30, thereby improving input efficiency.
  • the main display area 24 regardless of whether the main display area 24 is lit, it does not affect the main display area 24 to receive handwriting input. As shown in FIG. 15, when the main display area 24 is lit, the user will display the corresponding The handwriting of the handwriting plays a certain role in indicating; as shown in Figure 12, the handwriting input when the main display area 24 is not lit can save power, and can be applied to some special occasions such as meeting rooms or do not want others to see Reply to the message in the case of your own input.
  • the main display area 24 is held and the message is returned through voice input.
  • the electronic device 100 judges the amount of power of the power supply 40 in real time, and when the amount of power of the power supply 40 is below a predetermined threshold (for example, the predetermined threshold is 10%, 20% of the total amount of power of the power supply, etc.) 100 is in a low battery state and needs to save power to ensure continuous navigation. Therefore, when replying to a message, keep the 24 display screen in the main display area, and change the resume button to a voice button, press the voice button for voice input, and release the voice button That is, the voice input is ended, so that the message reply can be performed through the voice message, or the voice input recognition can be converted into text and then the message reply can be performed. Referring to FIG. 23, in other embodiments, regardless of whether the power is below a predetermined threshold, the voice button and the reply button are displayed, and the user can freely select the reply method.
  • a predetermined threshold for example, the predetermined threshold is 10%, 20% of the total amount of power of the power supply, etc.
  • the user can customize the reply method.
  • the user can freely set to reply to the message through the input method interface (such as the Pinyin input method interface, the stroke input method interface, the handwriting input method interface, etc.), and can also set the reply message through the breath screen handwriting method as shown in FIG. 12 to maximize savings Electricity to meet the different needs of different users.
  • the input method interface such as the Pinyin input method interface, the stroke input method interface, the handwriting input method interface, etc.
  • the secondary display area 22 includes an input area 26 and a candidate word area 28.
  • Step 015 includes:
  • 0156 display the words corresponding to the input signal in the candidate word area 28 according to the input signal
  • 0159 Select the corresponding word from the candidate word area 28 according to the input signal and display it in the input area 26.
  • the display unit 151 includes a second display subunit 156, a second control subunit 158, and a third display subunit 159.
  • the second display subunit 156 is used to display the words corresponding to the input signal in the candidate word area 28 according to the input signal.
  • the second control subunit 158 is used to control the sub display area 22 to receive the input signal.
  • the third display subunit 159 is used to select the corresponding word from the candidate word area 28 according to the input signal and display it in the input area 26.
  • the processor 50 is further used to display the words corresponding to the input signal in the candidate word area 28 according to the input signal, control the sub-display area 22 to receive the input signal, and select the corresponding words from the candidate word area 28 to display in the input area 26 according to the input signal.
  • Step 0156, step 0158, and step 0159 may be implemented by the processor 50.
  • the electronic device 100 displays related candidate words in the candidate word area 28 according to the user's input, such as inputting " "Zai", then the candidate word area 28 will display related words or words, such as "in”, “re”, “load”, “child”, etc., and then the user clicks on the candidate word area 28 to select the desired
  • the electronic device 100 displays the word selected by the user in the input area 26.
  • a sliding operation (such as sliding right) can be performed on the candidate word area 28 To display more words, thereby improving the user's input efficiency.
  • the electronic device 100 further includes a power supply 40.
  • the power supply 40 is used to supply power to the electronic device 100.
  • Step 014 further includes:
  • 0145 determine whether the power of the power supply 40 is below a predetermined threshold
  • the acquisition module 14 further includes a second judgment unit 145 and a holding unit 146.
  • the second determination unit 145 is used to determine whether the power of the power supply 40 is lower than a predetermined threshold.
  • the holding unit 146 is used to keep the main display area 24 in a breath-hold state when the power of the power supply 40 is lower than a predetermined threshold and to control the main display area 24 to receive an input signal.
  • the processor 50 is also used to determine whether the power of the power supply 40 is lower than a predetermined threshold, and when the power of the power supply 40 is lower than the predetermined threshold, keep the main display area 24 in the screen-hold state when the user inputs and control the main display area 24 to receive input signal.
  • step 015 and step 016 can be implemented by the processor 50.
  • the electronic device 100 judges the power state of the power supply 40 in real time, and when the power amount of the power supply 40 is lower than a predetermined threshold (for example, the predetermined threshold is 10%, 20% of the total power supply, etc.), the electronic device 100 is in a low power state at this time It needs to save power to ensure continuous navigation. Therefore, when replying to the message, as shown in FIG. 16, the processor 50 keeps the main display area 24 to hold the screen and controls the main display area 24 to receive the input signal, that is, the handwriting input through the screen Implement message reply.
  • a predetermined threshold for example, the predetermined threshold is 10%, 20% of the total power supply, etc.
  • the main display area 24 can be lit when the power is sufficient to display the input method interface to reply to the message, and in the case of low power, the screen can be handwritten in the main display area 24 to reply the message to improve the battery life, ensuring the user experience Hebao maintained a good balance on the voyage.
  • the interaction method further includes:
  • the interaction device 10 further includes a third judgment module 16 and a shutdown module 17.
  • the third judging unit 16 is used to judge whether the user performs the transmission operation according to the input signal received by the sub display area 22; the closing unit 17 is used to turn off the touch display 20 after the user performs the transmission operation.
  • the processor 50 is also used to determine whether the user performs the transmission operation according to the input signal received by the sub-display area 22, and to turn off the touch display screen 20 after the user performs the transmission operation.
  • Step 016 and step 017 can be implemented by the processor 50.
  • the electronic device 100 controls the reply button to become the send button, and the processor 50 determines whether the user performs a reply operation, that is, determines whether the user clicks the send button, and then the user confirms that the input content is correct Then click the send button to complete the reply of the message.
  • the processor 50 closes the touch display screen 20, which is conducive to saving power.
  • the delay time for the processor 50 to turn off the touch display screen 20 after completing the reply of the message can be set, for example, when the reply is completed and there is no subsequent operation, the display screen 20 is turned off after 5 seconds, in other embodiments You can set other times such as 10 seconds, 20 seconds, etc.
  • the display surface of the main display area 24 and the display surface of the sub display area 22 have different orientations.
  • the display surface of the main display area 24 and the display surface of the sub display area 22 have a certain angle, for example, the side curved surface of the curved screen in the electronic device 100 such as a mobile phone (the sub display area 22) and the main display area
  • the angle of the screen (main display area) becomes larger as the distance from the main screen increases.
  • the secondary display area 22 is bent and extends from the main display area 24.
  • the auxiliary display area 22 is bent and extended from the edge of the main display area 24, so that the touch display screen 20 becomes a curved screen, and the side surface of the curved screen serves as the auxiliary display area 22.
  • the message content is basically in line with the user's line of sight, and the message viewing experience is better.
  • the electronic device 100 further includes a camera 70. After receiving the message, the electronic device 100 controls the camera 70 to turn on to obtain an image of the current scene. The electronic device 100 according to the image of the current scene The relative position of the user and the electronic device 100 is determined to adjust the position of the sub-display area 22 on the touch display 20.
  • the electronic device 100 controls the camera 70 to turn on to obtain an image of the current scene, and then can roughly determine the relative position of the user and the electronic device 100 according to the position of the user in the image of the current scene, and then according to the user and the electronic device
  • the relative position of 100 adjusts the position of the auxiliary display area 22 on the touch display screen 20.
  • the surface of the touch display screen 20 is generally a rectangle with different lengths and widths.
  • the auxiliary display area 22 may be located on the touch display screen 20
  • the area corresponding to the two long sides of the electronic device 100 determines the long side of the two long sides of the touch display screen 20 closer to the user according to the relative position of the user and the electronic device 100, and then controls the distance from the user on the touch display screen 20
  • the area corresponding to the closer long side serves as the sub display area 22 to display the message content.
  • the message content is intelligently displayed so that the customer can conveniently view the message content without manually adjusting the holding direction of the electronic device 100.
  • the storage medium mentioned above may be a read-only memory, a magnetic disk or an optical disk.

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Abstract

一种交互方法、交互装置和电子设备。所述电子设备(100)包括触摸显示屏(20),所述触摸显示屏(20)包括侧边显示(22)和主显示区(24),交互方法包括:在接收到消息后判断所述触摸显示屏(20)是否处于息屏状态;在所述触摸显示屏(20)处于息屏状态时,控制所述副显示区(22)显示所述消息的内容,并保持主显示区(24)处于息屏状态。

Description

交互方法、交互装置和电子设备 技术领域
本申请涉及通信技术领域,特别涉及一种交互方法、交互装置和电子设备。
背景技术
通常,用户终端在接收到消息后,终端的整个显示屏会亮起以显示消息内容,于目前的智能手机等终端而言,会影响终端的续航,尤其在消息较多时,终端的续航会受到严重影响。
发明内容
本申请的实施例提供一种交互方法、交互装置和电子设备,能减少电子设备显示消息所消耗的电量,提升电子设备的续航。
本申请提供一种交互方法,应用于电子设备。所述电子设备包括触摸显示屏,所述触摸显示屏包括副显示区和主显示区,所述交互方法包括:在接收到消息后判断所述触摸显示屏是否处于息屏状态、及在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述主显示区处于息屏状态。
本申请的还提供一种交互装置,应用于电子设备,所述电子设备包括触摸显示屏,所述触摸显示屏包括副显示区和主显示区,所述交互装置包括第一判断模块和第一控制模块。所述第一判断模块用于在接收到消息后判断所述触摸显示屏是否处于息屏状态;所述第一控制模块用于在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述主显示区处于息屏状态。
本申请还提供一种电子设备,电子设备包括触摸显示屏、光学识别模块、电源、处理器。所述触摸显示屏用于接收触摸操作以形成输入信号,所述触摸显示屏包括副显示区和主显示区。所述光学识别模块用于识别所述输入信号以形成对应的识别信息。所述电源用于给所述电子设备供电。所述处理器用于在接收到消息后判断所述触摸显示屏是否处于息屏状态、及在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述主显示区处于息屏状态。
本申请实施方式的交互方法、交互装置和电子设备,在接收到消息后仅通过副显示区显示消息的内容,相较于整个触摸显示屏均亮起以显示消息的内容,消耗的电量较少,即使在消息较多时也不会对电子设备的续航产生较大影响。
本申请的实施方式的附加方面和优点将在下面的描述中部分给出,部分将从下面的描 述中变得明显,或通过本申请的实施方式的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施方式的描述中将变得明显和容易理解,其中:
图1是本申请某些实施方式的交互方法的流程示意图;
图2是本申请某些实施方式的交互装置的模块示意图;
图3是本申请某些实施方式的电子设备的结构示意图;
图4和图5是本申请某些实施方式的交互方法的场景示意图;
图6是本申请某些实施方式的电子设备的结构示意图;
图7是本申请某些实施方式的交互方法的流程示意图;
图8是本申请某些实施方式的获取模块的模块示意图;
图9是本申请某些实施方式的交互方法的流程示意图;
图10是本申请某些实施方式的获取模块的模块示意图;
图11是本申请某些实施方式的交互方法的流程示意图;
图12是本申请某些实施方式的获取模块的模块示意图;
图13是本申请某些实施方式的交互方法的场景示意图;
图14是本申请某些实施方式的交互方法的流程示意图;
图15是本申请某些实施方式的获取模块的模块示意图;
图16是本申请某些实施方式的交互方法的场景示意图;
图17是本申请某些实施方式的交互方法的流程示意图;
图18是本申请某些实施方式的显示模块的模块示意图;
图19是本申请某些实施方式的交互方法的流程示意图;
图20是本申请某些实施方式的显示模块的模块示意图
图21至图23是本申请某些实施方式的交互方法的场景示意图;
图24是本申请某些实施方式的交互方法的流程示意图;
图25是本申请某些实施方式的交互装置的模块示意图;
图26是本申请某些实施方式的交互方法的场景示意图;
图27是本申请某些实施方式的交互方法的流程示意图;
图28是本申请某些实施方式的显示模块的模块示意图;
图29是本申请某些实施方式的交互方法的流程示意图;
图30是本申请某些实施方式的交互装置的模块示意图;
图31是本申请某些实施方式的交互方法的场景示意图。
具体实施方式
下面详细描述本申请的实施方式,所述实施方式的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施方式是示例性的,仅用于解释本申请,而不能理解为对本申请的限制。
请参阅图1至图4,本申请实施方式的交互方法应用于电子设备100,电子设备100包括触摸显示屏20,触摸显示屏20包括副显示区22和主显示区24,交互方法包括以下步骤:
011:在接收到消息后判断触摸显示屏20是否处于息屏状态;及
012:在触摸显示屏20处于息屏状态时,控制副显示区22显示消息的内容,并保持主显示区24处于息屏状态。
本申请实施方式的交互装置10应用于电子设备100,交互装置10包括第一判断模块11和第一控制模块12。第一判断模块11用于在接收到消息后判断触摸显示屏20是否处于息屏状态。第一控制模块12用于在触摸显示屏20处于息屏状态时,控制副显示区22显示消息的内容,并保持主显示区24处于息屏状态。
本申请实施方式的电子设备100包括触摸显示屏20、光学识别模块30、电源40、处理器50。触摸显示屏20用于接收触摸操作以形成输入信号。光学识别模块30用于识别输入信号以形成对应的识别信息。电源40用于给电子设备100供电。处理器50用于在接收到消息后判断触摸显示屏20是否处于息屏状态、在触摸显示屏20处于息屏状态时,控制副显示区22显示消息的内容,并保持主显示区24处于息屏状态。
也即是说,步骤011和步骤012可以由处理器50实现。
具体地,请参阅图5,当电子设备100接收到消息后,处理器50会先判断触摸显示屏20是否处于息屏状态,而在触摸显示屏20处于亮屏状态时,表示用户正常使用,则在触摸显示屏20上显示消息即可,若触摸显示屏20处于息屏状态则会控制副显示区22显示消息,并保持主显示区24处于息屏状态,其中,副显示区22和主显示区24为触摸显示屏20的一部分,也即是说,触摸显示屏20分别可以控制自身不同区域的点亮与熄灭,如触摸显示屏20使用有机发光二极管(Organic Light-Emitting Diode,OLED)时可单独控制每个像素的点亮和熄灭。
本申请实施方式的交互方法、交互装置10和电子设备100,在接收到消息后仅通过副显示区22显示消息的内容,相较于整个触摸显示屏20均亮起以显示消息的内容,消耗的电量较少,即使在消息较多时也不会对电子设备100的续航产生较大影响。
请参阅图6,本申请实施方式的交互装置10可应用于本申请实施方式的电子设备100 中,也即是说,本申请实施方式的电子设备100可以包括本申请实施方式的交互装置10。
在某些实施方式中,电子设备100包括手机、平板电脑、笔记本电脑、智能穿戴设备等等。
请参阅图7和图8,在某些实施方式中,交互方法还包括以下步骤:
013:在接收到在副显示区22的交互操作后,控制主显示区24点亮。
在某些实施方式中,交互装置10还包括第二控制模块13。第二控制模块13用于在接收到在副显示区22的交互操作后,控制主显示区24点亮。
处理器50用于在接收到在副显示区22的交互操作后,控制主显示区24点亮。
也即是说,步骤013可以由处理器50实现。
具体地,在用户进行交互操作即点击图5中的回复按钮后,电子设备100会点亮主显示区24以接收用户的后续输入。
请参阅图9和图10,在某些实施方式中,交互方法还包括以下步骤:
014:获取用户的输入信号;及
015:将输入信号对应的信息显示在副显示区22及主显示区24中的至少一个。
在某些实施方式中,交互装置10还包括获取模块14和显示模块15。获取模块14用于获取用户的输入信号。显示模块15用于将输入信号对应的信息显示在副显示区22及主显示区24中的至少一个。
具体地,在副显示区显示消息后,电子设备100可接收用户的输入,用户的输入可以是对触摸显示屏20的触摸操作、语音输入、手势输入等,在此不做限制。电子设备100将用户的输入转化成对应的信息显示在副显示区22,用户进行确认后即可进行发送信息以完成信息的回复。例如,用户在点击回复按钮后,电子设备100会接收用户的输入,在输入时可显示对应的信息在副显示区22或主显示区24以对用户的输入进行反馈,提高输入效率。在输入完成后将对应的消息显示在副显示区22,由用户确认后即可进行发送信息以完成信息的回复。
请参阅图11和图12,在某些实施方式中,步骤013包括以下步骤:
0141:控制主显示区24显示输入法界面;及
0142:控制主显示区24接收输入信号。
在某些实施方式中,获取模块14包括第一控制单元141和第二控制单元142。第一控制单元141用于控制主显示区24显示输入法界面。第二控制单元142用于控制主显示区24接收输入信号。
处理器50用于控制主显示区24显示输入法界面、及控制主显示区24接收输入信号。
也即是说,步骤0141和步骤0142可以由处理器50实现。
具体地,请参阅图13,在用户点击图5中的回复按钮后,电子设备100控制主显示区24显示输入法界面,其中,输入法界面可以是拼音输入界面、笔画输入界面、手写输入界面等等。然后,电子设备100接收用户对输入法界面的触摸操作并转化成对应的消息显示在副显示区22。在电子设备100接收用户输入后,电子设备100控制回复按钮变为发送按钮,然后用户确认输入内容无误后点击发送按钮即可完成消息的回复。如此,可以在不进入应用程序或主界面的情况下直接回复消息,简单快捷。
请参阅图14和图15,在某些实施方式中,步骤014包括以下步骤:
0143:根据副显示区22接收的输入信号判断用户是否进行回复操作;及
0144:在用户进行回复操作时,控制主显示区24接收输入信号。
在某些实施方式中,获取模块14包括第一判断单元143和第三控制单元144。第一判断单元143用于根据副显示区22接收的交互操作判断用户是否进行回复操作;第三控制单元144用于在用户进行回复操作时,控制主显示区24接收输入信号。
处理器50还用于保持主显示区24息屏、根据副显示区22接收的交互操作判断用户是否进行回复操作、及在用户进行回复操作时,控制主显示区24接收输入信号。
也即是说,步骤0143和步骤0144可以由处理器50实现。
具体地,请参阅图16,电子设备100控制主显示区24保持息屏,然后处理器50根据副显示区22接收的交互操作判断用户是否进行回复操作,在本实施例中,副显示区22接收的用来判断用户是否进行回复操作的交互操作可以是用户是否点击图5中的回复按钮,当用户点击回复按钮时,副显示区22接收该交互操作并控制主显示区24接收输入信号,也即是说,此时主显示区24虽然不亮屏,但是仍可以接收输入信号,这里的输入信号是指用户的触摸操作即手写输入操作。可以理解的是,在其他实施例中,用户需要在副显示区进行回复时也可以有其他操作,例如双击副显示区、在副显示区进行特点滑动操作等。本实施例中,当用户通过副显示区进行回复时,主显示区在不亮屏的状态下,依然可以接收用户的手写输入信号,并在副显示区完成选定手写输入结果、发送手写输入结果等操作。电子设备100一般包括显示屏和触摸屏,显示屏和触摸屏一般为层叠设置在电子设备100上,所以可以关闭显示屏上与主显示区24对应的区域而仅点亮显示屏上与副显示区22对应的区域,然后保持触摸屏持续接收用户的输入以完成消息的回复,此时由于主显示区24为息屏状态,所以通过拼音输入、笔画输入等需要亮屏才可以实现的输入法是不可行的,但触摸屏可以通过息屏状态下接收手写输入以实现消息的回复。如此,对消息显示以及回复过程中均无需点亮主显示区24,可极大的减少功耗。
请参阅图17和图18,在某些实施方式中,步骤015包括以下步骤:
0151:将输入信号对应的信息显示在副显示区22中。
在某些实施方式中,显示模块15包括显示单元151。显示单元用于将输入信号对应的信息显示在副显示区22中。
处理器50还用于将输入信号对应的信息显示在副显示区22中。
也即是说,步骤0151可以由处理器50实现。
具体地,在用户进行回复时,接收用户输入产生的输入信号对应的信息直接显示在副显示区,可适配亮屏输入法进行输入以及息屏手写输入,在进行输入时都可以对输入进行反馈,从而提高用户的输入效率。
请参阅图3、图19和图20,在某些实施方式中,电子设备100还包括光学识别模块30,步骤0151包括以下步骤:
0152:控制光学识别模块30识别输入信号以形成对应的识别信息;及
0154:将识别信息显示在副显示区。
在某些实施方式中,显示单元151包括第一控制子单元152和第一显示子单元154。控制子单元152用于控制光学识别模块30识别输入信号以形成对应的识别信息。显示子单元154用于将识别信息显示在副显示区22。
处理器50还用于控制光学识别模块30识别输入信号以形成对应的识别信息、及将识别信息显示在副显示区22。
也即是说,步骤0152和步骤0154可以由处理器50实现。
具体地,请参阅图16和图21,在电子设备100接收用户手写输入时,可以将用户在主显示区22的手写输入(即输入信号)转化为一张图片(例如现实中我们写了一个字后,将这个字拍照然后识别,本申请实施方式中由于用户直接在主显示区24上进行手写操作,所以根据用户手指的滑动轨迹即可得到用户所写的字的图片),之后光学识别模块30识别包含用户所写的字的图片以识别图中的字从而得到识别信息,用户在手写时可以一次写一个字然后由光学识别模块30进行识别。如此,通过光学识别模块30对用户手写输入进行识别,识别较为准确。在其他实施方式中,用户可以一次写多个字然后由光学识别模块30识别,从而提高输入效率。
本实施方式中,不管主显示区24是否点亮,均不影响主显示区24接收手写输入,如图15所示,在主显示区24点亮时用户在手写时主显示区24会显示对应的手写笔迹,从而起到一定的指示作用;如图12所示,在主显示区24未点亮时进行手写输入,可以节省电量,且可适用某些特殊场合例如会议室或不想让他人看到自己的输入的场合下的消息回复。
在某些实施方式中,在电源40的电量低于预定阈值时保持主显示区24息屏并通过语音输入进行消息的回复。
具体地,请参阅图22,电子设备100实时判断电源40的电量情况,在电源40的电量 低于预定阈值(例如预定阈值为电源总电量的10%、20%等)时,此时电子设备100处于低电量状态,需要省电以保持续航,因此,在进行消息的回复时,保持主显示区24息屏,并将恢复按钮变更为语音按钮,按压语音按钮进行语音输入,放开语音按钮即结束语音输入,从而通过语音消息进行消息回复,或者将语音输入识别转化为文本后进行消息回复。请参阅图23,在其他实施方式,不论电量是否低于预定阈值,语音按钮和回复按钮均显示,由用户自由选择回复方式。
在某些实施方式中,用户可自定义设置回复方式。
具体地,用户可自由设置通过输入法界面回复消息(如拼音输入法界面、笔画输入法界面、手写输入法界面等),也可以设置通过如图12的息屏手写方式回复消息以最大化节省电量,满足不同用户的不同需求。
请参阅图24至图26,在某些实施方式中,副显示区22包括输入区域26和候选词区域28,步骤015包括:
0156:根据输入信号将输入信号对应的词语显示在候选词区域28;
0158:控制副显示区22接收输入信号;及
0159:根据输入信号从候选词区域28选择对应的词语显示在输入区域26。
在某些实施方式中,显示单元151包括第二显示子单元156、第二控制子单元158和第三显示子单元159。第二显示子单元156用于根据输入信号将输入信号对应的词语显示在候选词区域28。第二控制子单元158用于控制副显示区22接收输入信号。第三显示子单元159用于根据输入信号从候选词区域28选择对应的词语显示在输入区域26。
处理器50还用于根据输入信号将输入信号对应的词语显示在候选词区域28、控制副显示区22接收输入信号、及根据输入信号从候选词区域28选择对应的词语显示在输入区域26。
也即是说。步骤0156、步骤0158和步骤0159可以由处理器50实现。
具体地,在电子设备100接收到消息后,用户点击如图23的回复按钮,然后用户在进行输入时,电子设备100会根据用户的输入在候选词区域28显示相关的候选词,比如输入“zai”,那么候选词区域28会显示相关的字或词,如图中的“在”、“再”、“载”“仔”等等,然后用户通过在候选词区域28进行点击以选择想要回复的词语,电子设备100将用户点选的词语显示在输入区域26,在当前候选词区域28显示的词语没有找到想要的词语时,可进行滑动操作(如右滑)候选词区域28以显示更多的词语,从而提高用户的输入效率。
请参阅图3、图27和图28,在某些实施方式中,电子设备100还包括电源40,电源40用于给电子设备100供电,步骤014还包括:
0145:判断电源40的电量是否低于预定阈值;及
0146:在电源40的电量低于预定阈值时,在用户输入时后保持主显示区24处于息屏状态并控制主显示区24接收输入信号。
在某些实施方式中,获取模块14还包括第二判断单元145和保持单元146。第二判断单元145用于判断电源40的电量是否低于预定阈值。保持单元146用于在电源40的电量低于预定阈值时,在用户输入时保持主显示区24处于息屏状态并控制主显示区24接收输入信号。
处理器50还用于判断电源40的电量是否低于预定阈值、及在电源40的电量低于预定阈值时,在用户输入时保持主显示区24处于息屏状态并控制主显示区24接收输入信号。
也即是说,步骤015和步骤016可以由处理器50实现。
具体地,电子设备100实时判断电源40的电量情况,在电源40的电量低于预定阈值(例如预定阈值为电源总电量的10%、20%等)时,此时电子设备100处于低电量状态,需要省电以保持续航,因此,在进行消息的回复时,如图16所示,处理器50保持主显示区24息屏并控制主显示区24接收输入信号,即通过息屏手写输入来实现消息的回复。如此,可以在电量足够的时候点亮主显示区24显示输入法界面进行消息的回复,而在低电量情况下则在主显示区24进行息屏手写以回复消息来提升续航,在保证用户体验和保持续航上取得较好的平衡。
请参阅图29和图30,在某些实施方式中,交互方法还包括:
016:根据副显示区22接收的交互操作判断用户是否进行发送操作;及
017:在用户进行发送操作后熄灭触控显示屏20。
在某些实施方式中,交互装置10还包括第三判断模块16和关闭模块17。第三判断单元16用于根据副显示区22接收的输入信号判断用户是否进行发送操作;关闭单元17用于在用户进行发送操作后熄灭触控显示屏20。
处理器50还用于根据副显示区22接收的输入信号判断用户是否进行发送操作、及在用户进行发送操作后熄灭触控显示屏20。
也即是说。步骤016和步骤017可以由处理器50实现。
具体地,请再次参阅图22,在用户完成输入后,电子设备100控制回复按钮变为发送按钮,处理器50判断用户是否进行回复操作,即判断用户是否点击发送按钮,然后用户确认输入内容无误后点击发送按钮即可完成消息的回复,在用户完成消息的回复后,处理器50关闭触摸显示屏20,有利于省电。本实施例中,可以设置处理器50在完成消息的回复后关闭触摸显示屏20的延时时间,例如当完回复并无后续操作后,5秒后关闭显示屏20,在其他实施例中也可以设置其他时间如10秒、20秒等。
在某些实施方式中,主显示区24的显示面与副显示区22的显示面的朝向不同。
具体地,请参阅图31,主显示区24的显示面与副显示区22的显示面具有一定的夹角,例如手机等电子设备100中的曲面屏的侧曲面(副显示区22)与主屏幕(主显示区)的角度随着离主屏幕的距离越远变得越大。如此,使得手机等电子设备100在防止在水平桌面上时,在接收到消息后,副显示区22显示消息内容时,消息内容与用户的视线基本正对,消息的查看体验较好。
在某些实施方式中,副显示区22从主显示区24弯折延伸。
具体地,请继续参阅图31,副显示区22从主显示区24边缘弯折延伸,从而使得触摸显示屏20成为曲面屏,曲面屏的侧曲面作为副显示区22,在接收到消息后,副显示区22显示消息内容时,消息内容与用户的视线基本正对,消息的查看体验较好。
请参阅图6和图31,在某些实施方式中,电子设备100还包括摄像头70,电子设备100在接收到消息后控制摄像头70开启以获取当前场景的图像,电子设备100根据当前场景的图像判断用户与电子设备100的相对位置以调整副显示区22在触摸显示屏20的位置。
具体地,电子设备100在接收到消息后控制摄像头70开启以获取当前场景的图像,然后根据当前场景的图像中用户的位置可大致判断用户与电子设备100的相对位置,然后根据用户与电子设备100的相对位置调整副显示区22在触摸显示屏20的位置,以电子设备100是手机为例,触摸显示屏20的表面一般为长宽不同的矩形,副显示区22可位于触摸显示屏20的两条长边对应的区域,电子设备100根据用户与电子设备100的相对位置判断得到触摸显示屏20的两条长边中距离用户较近的长边,然后控制触摸显示屏20上距离用户较近的长边对应的区域作为副显示区22来显示消息内容。
如此,在接收到消息后智能显示消息内容以使客户无需手动调整电子设备100的握持方向即可便捷的查看消息内容。
上述提到的存储介质可以是只读存储器,磁盘或光盘等。尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制,本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (36)

  1. 一种交互方法,应用于电子设备,其特征在于,所述电子设备包括触摸显示屏,所述触摸显示屏包括副显示区和主显示区,所述交互方法包括:
    在接收到消息后判断所述触摸显示屏是否处于息屏状态;及
    在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述主显示区处于息屏状态。
  2. 根据权利要求1所述的交互方法,其特征在于,所述交互方法还包括:
    在接收到在所述副显示区的交互操作后,控制所述主显示区点亮。
  3. 根据权利要求1所述的交互方法,其特征在于,所述交互方法还包括:
    获取用户的输入信号;及
    将所述输入信号对应的信息显示在所述副显示区及所述主显示区中的至少一个。
  4. 根据权利要求3所述的交互方法,其特征在于,所述获取用户的输入信号,包括:
    控制所述主显示区显示输入法界面;及
    控制所述主显示区接收所述输入信号。
  5. 根据权利要求3所述的交互方法,其特征在于,所述获取用户的输入信号,包括:
    根据副显示区接收的交互操作判断用户是否进行回复操作;及
    在用户进行所述回复操作时,控制所述主显示区接收所述输入信号。
  6. 根据权利要求3所述的交互方法,其特征在于,所述将所述输入信号对应的信息显示在所述副显示区及所述主显示区中的至少一个,包括:
    将所述输入信号对应的信息显示在所述副显示区中。
  7. 根据权利要求6所述的交互方法,其特征在于,所述电子设备还包括光学识别模块,所述将所述输入信号对应的信息显示在所述副显示区,包括:
    控制所述光学识别模块识别所述输入信号以形成对应的识别信息;及
    将所述识别信息显示在所述副显示区。
  8. 根据权利要求6所述的交互方法,其特征在于,所述副显示区包括输入区域和候选词区域,所述将所述输入信号对应的信息显示在所述副显示区,包括:
    根据所述输入信号将所述输入信号对应的词语显示在所述候选词区域;
    控制所述副显示区接收所述输入信号;及
    根据所述输入信号从所述候选词区域选择对应的所述词语显示在所述输入区域。
  9. 根据权利要求6所述的交互方法,其特征在于,所述电子设备还包括电源,所述电源用于给所述电子设备供电,所述获取用户的输入信号,包括:
    判断所述电源的电量是否低于预定阈值;及
    在所述电源的电量低于预定阈值时,在用户输入时保持所述主显示区处于息屏状态并控制所述主显示区接收所述输入信号。
  10. 根据权利要求1所述的交互方法,其特征在于,所述交互方法还包括:
    根据所述副显示区接收的交互操作判断用户是否进行发送操作;及
    在用户进行所述发送操作后熄灭所述触控显示屏。
  11. 根据权利要求1所述的交互方法,其特征在于,所述主显示区的显示面与所述副显示区的显示面的朝向不同。
  12. 根据权利要求11所述的交互方法,其特征在于,所述副显示区从所述主显示区弯折延伸。
  13. 一种交互装置,应用于电子设备,其特征在于,所述电子设备包括触摸显示屏,所述触摸显示屏包括副显示区和主显示区,所述交互装置包括:
    第一判断模块,所述第一判断模块用于在接收到消息后判断所述触摸显示屏是否处于息屏状态;及
    第一控制模块,所述第一控制模块用于在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述主显示区处于息屏状态。
  14. 根据权利要求13所述的交互装置,其特征在于,所述交互装置还包括:
    第二控制模块,所述第二控制模块用于在接收到在所述副显示区的交互操作后,控制所述主显示区点亮。
  15. 根据权利要求13所述的交互装置,其特征在于,所述交互装置还包括:
    获取模块,所述获取模块用于获取用户的输入信号;及
    显示模块,所述显示模块用于将所述输入信号对应的信息显示在所述副显示区及所述主显示区中的至少一个。
  16. 根据权利要求15所述的交互装置,其特征在于,所述获取模块包括:
    第一控制单元,所述第一控制单元用于控制所述主显示区显示输入法界面;及
    第二控制单元,所述第二控制单元用于控制所述主显示区接收所述输入信号。
  17. 根据权利要求15所述的交互装置,其特征在于,所述获取模块包括:
    第一判断单元,所述判断单元用于根据副显示区接收的交互操作判断用户是否进行回复操作;及
    第三控制单元,所述第三控制单元用于在用户进行所述回复操作时,控制所述主显示区接收所述输入信号。
  18. 根据权利要求15所述的交互装置,其特征在于,所述显示模块包括:
    显示单元,所述显示单元用于将所述输入信号对应的信息显示在所述副显示区中。
  19. 根据权利要求18所述的交互装置,其特征在于,所述电子设备还包括光学识别模块,所述显示单元包括:
    第一控制子单元,所述第一控制子单元用于控制所述光学识别模块识别所述输入信号以形成对应的识别信息;及
    第一显示子单元,所述第一显示子单元用于将所述识别信息显示在所述副显示区。
  20. 根据权利要求18所述的交互装置,其特征在于,所述副显示区包括输入区域和候选词区域,所述显示单元包括:
    第二显示子单元,所述第二显示子单元用于根据所述输入信号将所述输入信号对应的词语显示在所述候选词区域;
    第二控制子单元,所述第二控制子单元用于控制所述副显示区接收所述输入信号;
    第三显示子单元,所述第三显示子单元用于根据所述输入信号从所述候选词区域选择对应的所述词语显示在所述输入区域。
  21. 根据权利要求18所述的交互装置,其特征在于,所述电子设备还包括电源,所述电源用于给所述电子设备供电,所述获取模块包括:
    第二判断单元,所述第二判断单元用于判断所述电源的电量是否低于预定阈值;及
    保持单元,所述保持单元用于在所述电源的电量低于预定阈值时,在用户输入时保持所述主显示区处于息屏状态并控制所述主显示区接收所述输入信号。
  22. 根据权利要求13所述的交互装置,其特征在于,所述交互装置还包括:
    第三判断模块,所述第三判断模块用于根据所述副显示区接收的交互操作判断用户是否进行发送操作;及
    关闭模块,所述关闭模块用于在用户进行所述发送操作后熄灭所述触控显示屏。
  23. 根据权利要求13所述的交互装置,其特征在于,所述主显示区的显示面与所述副显示区的显示面的朝向不同。
  24. 根据权利要求23所述的交互装置,其特征在于,所述副显示区从所述主显示区弯折延伸。
  25. 一种电子设备,其特征在于,所述电子设备包括:
    触摸显示屏,所述触摸显示屏用于接收触摸操作以形成输入信号,所述触摸显示屏包括副显示区和主显示区;
    光学识别模块,所述光学识别模块用于识别所述输入信号以形成对应的识别信息;
    电源,所述电源用于给所述电子设备供电;及
    处理器,所述处理器用于在接收到消息后判断所述触摸显示屏是否处于息屏状态、及在所述触摸显示屏处于息屏状态时,控制所述副显示区显示所述消息的内容,并保持所述 主显示区处于息屏状态。
  26. 根据权利要求25所述的电子设备,其特征在于,所述处理器还用于在接收到在所述副显示区的交互操作后,控制所述主显示区点亮。
  27. 根据权利要求25所述的电子设备,其特征在于,所述处理器还用于获取用户的输入信号、及将所述输入信号对应的信息显示在所述副显示区及所述主显示区中的至少一个。
  28. 根据权利要求27所述的电子设备,其特征在于,所述处理器还用于控制所述主显示区显示输入法界面、及控制所述主显示区接收所述输入信号。
  29. 根据权利要求27所述的电子设备,其特征在于,所述处理器还用于根据副显示区接收的交互操作判断用户是否进行回复操作、及在用户进行所述回复操作时,控制所述主显示区接收所述输入信号。
  30. 根据权利要求27所述的电子设备,其特征在于,所述处理器还用于将所述输入信号对应的信息显示在所述副显示区中。
  31. 根据权利要求30所述的电子设备,其特征在于,所述处理器还用于控制所述光学识别模块识别所述输入信号以形成对应的识别信息、及将所述识别信息显示在所述副显示区。
  32. 根据权利要求30所述的电子设备,其特征在于,所述副显示区包括输入区域和候选词区域,所述处理器还用于根据所述输入信号将所述输入信号对应的词语显示在所述候选词区域、控制所述副显示区接收所述输入信号、及根据所述输入信号从所述候选词区域选择对应的所述词语显示在所述输入区域。
  33. 根据权利要求15所述的电子设备,其特征在于,所述处理器还用于判断所述电源的电量是否低于预定阈值、及在所述电源的电量低于预定阈值时,在用户输入时保持所述主显示区处于息屏状态并控制所述主显示区接收所述输入信号。
  34. 根据权利要求25所述的电子设备,其特征在于,所述电子设备还包括光学识别模块,所述处理器还用于根据所述副显示区接收的所述输入信号判断用户是否进行发送操作、及在用户进行所述发送操作后熄灭所述触控显示屏并关闭所述光学识别模块。
  35. 根据权利要求25所述的电子设备,其特征在于,所述主显示区的显示面与所述副显示区的显示面的朝向不同。
  36. 根据权利要求25所述的电子设备,其特征在于,所述副显示区从所述主显示区弯折延伸。
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