WO2019104486A1 - 显示触控装置及其交互方法 - Google Patents

显示触控装置及其交互方法 Download PDF

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Publication number
WO2019104486A1
WO2019104486A1 PCT/CN2017/113404 CN2017113404W WO2019104486A1 WO 2019104486 A1 WO2019104486 A1 WO 2019104486A1 CN 2017113404 W CN2017113404 W CN 2017113404W WO 2019104486 A1 WO2019104486 A1 WO 2019104486A1
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WO
WIPO (PCT)
Prior art keywords
display
camera module
bent portion
touch device
flexible
Prior art date
Application number
PCT/CN2017/113404
Other languages
English (en)
French (fr)
Inventor
蒋超
Original Assignee
深圳市柔宇科技有限公司
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 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 CN201780095824.3A priority Critical patent/CN111213110A/zh
Priority to PCT/CN2017/113404 priority patent/WO2019104486A1/zh
Publication of WO2019104486A1 publication Critical patent/WO2019104486A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules

Definitions

  • the present invention relates to the field of consumer electronics, and in particular, to an interactive method for displaying a touch device and a display touch device.
  • a front camera and a rear camera are simultaneously provided, and the front camera is mostly used for self-timer, and the rear camera is mostly used for general shooting.
  • the front camera is usually on the same side of the display screen. Therefore, the front cover of the display touch device needs to have a wider frame to place the front camera, and the screen ratio is not high.
  • Embodiments of the present invention provide a display touch device.
  • the display touch device includes a flexible housing, a flexible display screen, a camera module, and a processor.
  • the flexible housing includes a first shell surface and a second shell surface opposite to each other, and the flexible shell can be bent and form a first bent portion and a second bent portion that are in contact with each other.
  • the flexible display screen is disposed on the first shell surface, and the flexible display screen is bendable and forms a first display area and a second display area, wherein the first display area is located at the first bending
  • the second display area is located on the second bent portion.
  • the camera module is disposed on the second shell surface and located on the second bent portion.
  • the processor can control the first display area to display the preview of the camera module when the flexible housing and the flexible display screen are bent and the camera module is exposed relative to the first bending portion Image.
  • An embodiment of the present invention further provides an interaction method using the above display touch device, where the interaction method includes:
  • the display touch device and the interaction method thereof can flex and form a first display screen and a second display screen, and the first bending portion and the first connecting portion
  • the two bending portions, the camera module disposed on the second shell surface of the flexible housing is exposed to the first bending portion to perform pre-shooting, and the first display area displays an image previewed by the camera module. Therefore, it is only necessary to provide a set of camera modules on the second shell surface of the flexible casing for pre-shooting and post-shooting, and it is not necessary to reserve a wider frame on the first shell surface to place the front camera, thereby improving The screen ratio.
  • FIG. 1 is a schematic view showing a display touch device in a flat state according to an embodiment of the present invention
  • FIG. 2 is a schematic view showing a display touch device in a bent state according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 5 is a schematic view showing a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 6 is a schematic view showing a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 7 is a schematic view showing a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 8 is a schematic view showing a display touch device in a bent state according to an embodiment of the present invention.
  • FIG. 9 is a schematic diagram of a fingerprint recognition gesture in which a display touch device is in a bent state according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a display touch device in a flat state according to an embodiment of the present invention.
  • FIG. 11 is a schematic diagram of a display touch device in a flat state according to an embodiment of the present invention.
  • the touch device 100 the flexible housing 10, the first shell surface 11, the second shell surface 12, the first bent portion 13, the second bent portion 14, the first side edge 15, the second side edge 16, and the through The hole 17, the button 18, the flexible display 20, the first display area 21, the second display area 22, the camera module 30, the processor 40, the fill light 50, the microphone 60, and the fingerprint recognition module 70.
  • the display touch device 100 of the present invention includes a flexible housing 10 , a flexible display screen 20 , a camera module 30 , and a processor 40 .
  • the flexible housing 10 includes a first shell surface 11 and a second shell surface 12 opposite each other.
  • the flexible housing 10 can be bent and form the first bent portion 13 and the second bent portion 14 that are in contact with each other.
  • the flexible display screen 20 is disposed on the first casing surface 11.
  • the flexible display screen 20 can be bent and form the first display area 21 and the second display area 22 that are in contact with each other.
  • the first display area 21 is located on the first bent portion 13 and the second display area 22 is located on the second bent portion 14.
  • the camera module 30 is disposed on the second shell surface 12 and located on the second bent portion 14 .
  • the processor 40 can control the first display area 21 to display an image previewed by the camera module 30 when the flexible housing 10 and the flexible display screen 20 are bent and the camera module 30 is exposed relative to the first bending portion 13 .
  • FIG. 1(a) is a front view of a touch display device 100 according to an embodiment of the present invention
  • FIG. 1(b) is a bottom view of the touch device 100 of FIG. 1(a).
  • FIG. 1 when the user faces the flexible display screen 20 and the camera module 30 disposed on the second shell surface 12 of the flexible casing 10 faces the user, the user can perform rear shooting (photographing) The scene that the user is facing, hereinafter referred to as: rear shooting scene).
  • the processor 40 controls the flexible display 20 to display an image previewed by the camera module 30 (shown in FIG. 1(a)). Therefore, the user can adjust the rear shooting according to the previewed image, for example, selecting the focusing subject of the rear shooting scene.
  • the flexible housing 10 and the flexible display 20 are bent together.
  • the flexible housing 10 forms the first bent portion 13 and the second bent portion 14 that are in contact with each other.
  • the flexible display screen 20 forms a first display area 21 and a second display area 22 that are adjacent to each other.
  • the first display area 21 is located on the first bent portion 13 and the second display area 22 is located on the second bent portion 14.
  • the first display area 21 is opposite to the second display area 22.
  • the camera module 30 is disposed on the second shell surface 12 and located on the second bent portion 14 .
  • the exposed camera module 30 also faces the user.
  • the user can perform front shooting (a scene including the user and the scene behind the user, which can be photographed as a front shooting scene).
  • the processor 40 controls the first display area 21 to display an image previewed by the camera module 30 (as shown in FIG. 2(a)). Therefore, the user can adjust the front shot according to the previewed image, such as adjusting his face during self-timer Facial expressions, etc.
  • the display device 100 can still perform post-shooting by the camera module 30 when the touch device 100 is in a bent state.
  • the exposed camera module 30 faces the user.
  • the processor 40 controls the second display area 22 to display an image previewed by the camera module 30 (shown in FIG. 3(a)). Therefore, the user can adjust the rear shooting according to the previewed image.
  • the exposure of the embodiment of the present invention means that the first bending part 13 does not block the camera module 30 in the bent state, so as not to affect the shooting.
  • 2(b) and 3(b) are bottom views corresponding to FIGS. 2(a) and 3(a) of the display touch device 100 according to an embodiment of the present invention.
  • the flexible display screen 20 of the display touch device 100 and the flexible housing 10 of the embodiment of the present invention can be bent together and form the first display area 21 and the second display area 22 that are in contact with each other, and the first bent portion that is in contact with each other. 13 and the second bent portion 14.
  • the camera module 30 disposed on the second shell surface 12 of the flexible casing 10 is exposed to the first bending portion 13 to perform pre-shooting, and the first display region 21 displays an image previewed by the camera module 30. Therefore, it is only necessary to provide a set of camera modules 30 on the second shell surface 12 of the flexible casing 10 for pre-shooting and post-shooting, without requiring a wider frame to be placed on the first shell surface 11 before being placed. Set the camera to increase the screen ratio.
  • the parameters of the front shooting are the same as those of the rear shooting, so that the image quality of the front shooting is the same as that of the rear shooting.
  • the display touch device 100 of the embodiment of the present invention includes a flexible housing 10 , a flexible display screen 20 , a camera module 30 , and a processor 40 .
  • the display touch device 100 includes a mobile phone, a tablet computer, a notebook computer, a smart bracelet, a smart watch, and the like.
  • the flexible housing 10 includes a first shell surface 11 and a second shell surface 12 opposite each other.
  • the flexible housing 10 can be bent along an asymmetrical axis to fold the first bent portion 13 to the second bent portion 14.
  • the flexible housing 10 includes a first side 15 and a second side 16 that are respectively located on opposite sides of the axis of the asymmetry.
  • the first side 15 is the outermost side of the first bent portion 13 away from the second bent portion 14
  • the second side 16 is the outermost side of the second bent portion 14 away from the first bent portion 13 . side.
  • the camera module 30 is disposed adjacent to the second side 16 . When the first bent portion 13 is folded to the second bent portion 14 , the first side 15 and the second side 16 are offset to expose the camera module 30 .
  • the flexible display screen 20 divides the first display area 21 and the second display area 22 according to an asymmetrical axis.
  • the flexible casing 10 is entirely made of a flexible material such as PET (poly(p-ethylene glycolate)), PEN (polyethylene naphthalate), PC (polycarbonate) or PMMA (polymethyl Methyl acrylate), silicone-based flexible materials, and the like. Therefore, the flexible casing 10 can be bent and can be restored to a flat state.
  • the structure of the flexible casing 10 may also be a support structure disposed on the first bent portion 13 and the second bent portion 14 and a flexible structure at which the first bent portion 13 and the second bent portion 14 meet. composition.
  • the material of the support structure may be PC (polycarbonate), ABS (acrylonitrile-butadiene-styrene copolymer), PC and ABS synthetic material, metal, etc.
  • the material of the flexible structure may be the above flexible material. Therefore, the flexible housing 10 having a certain supporting strength can protect the electronic components and structures (such as the main board and the circuit board) inside the flexible housing 10 in addition to being bent.
  • the flexible display screen 20 can be bent together with the flexible housing 10 along the axis of asymmetry and form the first display area 21 and the second display area 22 that are in contact with each other.
  • the display touch device 100 can include long sides and short sides that are perpendicular to each other.
  • the asymmetrical axis can be parallel to the long side or parallel to the short side.
  • the asymmetric axis of the display touch device 100 provided by the embodiment of the present invention is parallel to the short side. In this way, the user can bend the display touch device 100 according to preferences or needs.
  • the camera module 30 includes a Charge-coupled Device (CCD) image sensor or a Complementary Metal Oxide Semiconductor (CMOS) image sensor.
  • CCD Charge-coupled Device
  • CMOS Complementary Metal Oxide Semiconductor
  • the processor 40 is disposed inside the flexible housing 10.
  • the processor 40 controls the flexible display 20 to display a first application interface, such as an image previewed by the camera module 30 during rear shooting.
  • a first application interface such as an image previewed by the camera module 30 during rear shooting.
  • the processor 40 can control the first display area 21 to display the first application interface, and can control the second display.
  • Area 22 displays a second application interface.
  • the first application and the second application are different applications, and the first application and the second application do not interfere with each other.
  • the second application remains running and displayed.
  • the first application is a browser and the second application is WeChat.
  • the processor 40 controls the second display area 22 to keep displaying the WeChat interface (such as a display dialog), instead of the processor 40 controlling the WeChat to exit. .
  • the first application remains running when the user operates on the second application interface.
  • the first application is a browser and the second application is WeChat.
  • the processor 40 controls the first display area 21 to keep displaying the browser interface (such as displaying a certain web page) instead of The processor 40 controls the browser to exit the run.
  • FIG. 3 and FIG. 4 Please refer to FIG. 3 and FIG. 4 together, and take the first application as a camera for detailed description.
  • Camera shooting includes front shooting and rear shooting.
  • the first application is post-shooting
  • the second application is a webpage, WeChat, reader, player, and the like.
  • FIG. 3 is that the user faces the second display area 22 for rear shooting, and at this time, the second The display area 22 displays an image previewed by the camera module 30 that is taken rearward (shown in FIG. 3(a)).
  • the first display area 21 displays an application interface such as a corresponding web interface, a WeChat interface, a reader interface, a player interface, and the like. (shown in Figure 4(a)).
  • the first display area 21 displays an image previewed by the pre-shooting camera module 30, and the second display area 22 can display other application interfaces, such as displaying a webpage interface, WeChat interface, Application interface such as reader interface and player interface.
  • the second application is a background application and the first application is an application other than the background application.
  • the first application is pre-shooting and the second application is an application that displays the background.
  • the first display area 21 displays an image previewed by the front camera module 30, and the second display area 22 displays a static background (static desktop). , solid color pictures, no display, etc.).
  • the processor 40 can control the first The display area 21 and the second display area 22 together display an application interface.
  • the application can be a reader.
  • the reader's interface allows for virtual pages, electronic journals, e-books, and more.
  • the first display area 21 displays the contents of a certain page of the reader, and the second display area 22 displays the contents of the next page of the reader.
  • the application is displayed for the desktop.
  • the flexible display 20 displays the desktop content (shown in FIG. 1(a)).
  • the first display area 21 and the second display area 22 respectively display a part of the content of the desktop content (shown in FIGS. 5( a ) and 6 ( a )).
  • the flexible display screen 20 of the display touch device 100 and the flexible housing 10 of the embodiment of the present invention can be bent together to form the first display area 21 and the second display area 22, and the first bending part 13 and the second bending part. Part 14.
  • the camera module 30 disposed on the second shell surface 12 of the flexible casing 10 is exposed to the first bending portion 13 to perform pre-shooting, and the first display region 21 displays an image previewed by the camera module 30. Therefore, it is only necessary to provide a set of camera modules 30 on the second shell surface 12 of the flexible casing 10 for pre-shooting and post-shooting, without requiring a wider frame to be placed on the first shell surface 11 before being placed. Set the camera to increase the screen ratio.
  • the parameters of the front shooting are the same as those of the rear shooting, so that the image quality of the front shooting is the same as that of the rear shooting.
  • the display touch device 100 of the present invention has the following beneficial effects:
  • the first display area 21 and the second display area 22 can simultaneously display two different application interfaces, so that the user can view the application on the display touch device 100 in the first display area 21 and the second display area 22 at the same time.
  • the program is easier to do without first exiting the current application interface and then opening other application interfaces.
  • the user bends the display touch device 100 according to the preference or the demand, thereby improving the user experience.
  • the first bending part 13 is provided with a through hole 17 , and when the first bending part 13 is folded to the second bending part 14 , the camera module 30 Aligned with the through hole 17.
  • a through hole 17 is formed in the first bent portion 13.
  • the through hole 17 is a notch in the first bent portion 13; or the through hole 17 is a through hole formed in a plurality of sides of the first bent portion 13.
  • the orthographic projection of the camera module 30 at the first bent portion 13 falls within the through hole 17.
  • the position of the through hole 17 corresponds to the position of the camera module 30, and the size of the through hole 17 corresponds to the size of the camera module 30.
  • the camera module 30 can be disposed at the second bending portion 14 Any position of the second shell surface 12. For example, when the camera module 30 is disposed at a midpoint on the second bent portion 14, the through hole 17 is correspondingly disposed at a midpoint on the first bent portion 13.
  • the flexible housing 10 and the flexible display screen 20 can be symmetrically bent (shown in FIG. 7), or asymmetrically bent (shown in FIG. 8). In this way, the user can bend the display touch device 100 according to preferences or needs.
  • the flexible housing 10 includes a first side 15 and a second side 16 that are respectively located on opposite sides of the asymmetrical axis.
  • the first side 15 is the outermost side of the first bent portion 13 away from the second bent portion 14
  • the second side 16 is the outermost side of the second bent portion 14 away from the first bent portion 13 . side.
  • the camera module 30 is disposed adjacent to the second side 16 . When the first bent portion 13 is folded to the second bent portion 14, the first side edge 15 is flush with the second side edge 16 (shown in FIG. 7(b)).
  • the camera module 30 is disposed at a position close to the second side 16 , and the through hole 17 is a notch or a through hole disposed on the first side 15 .
  • the camera module 30 can realize alignment of the through holes 17 , and the operation is simpler.
  • the first side 15 and the second side 16 are not flush (shown in Figure 8(b)).
  • the size of the through hole 17 corresponds to the camera module 30.
  • the display touch device 100 further includes a fill light 50 .
  • the fill light 50 is disposed on the second shell surface 12 and on the second bent portion 14. When the flexible housing 10 and the flexible display screen 20 are bent and the camera module 30 is exposed relative to the first bending portion 13 , the fill light 50 is exposed from the first bending portion 13 to fill the camera module 30 .
  • the fill light 50 is exposed from the first bent portion 13.
  • One way is that the first side 15 and the second side 16 are offset to expose the camera module 30 and the fill light 50.
  • the first bent portion 13 is provided with a through hole 17 , and the camera module 30 and the fill light 50 are aligned with the through hole 17 to expose the fill light 50 .
  • the processor 40 can control the fill light 50 to fill the camera module 30 when the display touch device 100 is used for pre-shooting in a dimly lit environment. In this way, the applicable range of the camera module 30 is further expanded.
  • the display touch device 100 further includes a microphone 60.
  • the microphone 60 is disposed on the flexible housing 10.
  • the microphone 60 may be disposed on the second casing surface 12 and on the second bent portion 14.
  • the position of the microphone 60 corresponds to the position of the camera module 30. Bent in flexible housing 10 and flexible display screen 20 When the camera module 30 is folded out relative to the first bent portion 13, the microphone 60 is exposed from the first bent portion 13 so that the sound can be picked up when the camera module 30 captures a video.
  • the microphone 60 can also be disposed at any position on the flexible housing 10.
  • the microphone 60 is disposed at a position close to the second side 16 and corresponds to the position of the camera module 30.
  • the number of microphones 60 is also not limited.
  • the number of microphones 60 can be three.
  • the three microphones 60 are sequentially disposed on the first side 15 , the side of the camera module 30 , and the second side 16 to collectively be used to better pick up sound when the camera module 30 captures video.
  • the three microphones 60 are placed at different locations to achieve different functions, such as a microphone 60 disposed near the speaker for receiving a call; a microphone 60 is used in the handset for recording and noise reduction during recording, thus The usual recording does not require the bottom of the phone to face the speaker; there is also a microphone 60 disposed beside the camera module 30 (shown in Figure 2(a)) for picking up the sound when the camera module 30 is capturing video.
  • the touch sensing device 100 further includes a fingerprint recognition module 70 , and the fingerprint recognition module 70 is disposed on the second bending portion 14 .
  • the fingerprint recognition module 70 is exposed from the first bending portion 13 .
  • the fingerprint recognition module 70 is aligned with the through hole 17 to expose the fingerprint recognition module 70.
  • the fingerprint recognition module 70 can be disposed at any location near the second side edge 16. For example, the fingerprint recognition module 70 may be disposed on the center line on the second bent portion 14, or may be disposed at the top corner.
  • the fingerprint recognition module 70 includes an optical fingerprint recognition module, a capacitance sensor, a biometric identification module, and the like.
  • the flexible display 20 is a display integrated with a touch layer.
  • the processor 40 can control the camera module 30 according to the user's touch input to the flexible display 20.
  • the flexible display 20 can be an Organic Light Emitting Display (OLED).
  • OLED Organic Light Emitting Display
  • the OLED display includes an Active Matrix Organic Light Emitting Diode (AMOLED) display and a Passive Matrix Organic Light Emitting Diode (PMOLED) display.
  • AMOLED Active Matrix Organic Light Emitting Diode
  • PMOLED Passive Matrix Organic Light Emitting Diode
  • the user can touch the entire flexible display 20.
  • the processor 40 controls the camera module 30 according to the touch input on the flexible display screen 20, for example, to adjust the shooting parameters (brightness, aperture size, focus position, etc.).
  • the user can touch the second display area 22.
  • the processor 40 controls the camera module 30 according to the touch input on the second display area 22.
  • the user can touch the first display area 21.
  • the processor 40 controls the camera module 30 according to the touch input on the first display area 21.
  • the user can also perform the touch operation of other applications by using the flexible display 20 provided with the touch layer.
  • Work When the first display area 21 and the second display area 22 collectively display the same application interface, the user can perform a touch operation.
  • the flexible display 20 displays the interface of the reader, and the user can perform touch to perform virtual page turning operations on the read content.
  • the first display area 21 displays the first application interface
  • the second display area 22 displays the second application interface
  • the user can perform touch operations on the first display area 21 and the second display area 22, respectively.
  • the first display area 21 displays a WeChat interface and the second display area 22 displays a browser interface. The user can send a message by touching the dialog box on the WeChat interface or swiping the webpage in the browser interface.
  • the touch device 100 is further provided with a button 18 .
  • the user can trigger the function related to the camera module 30, and the button 18 can be used to trigger the function of the camera module 30, or a combination thereof.
  • the flexible display 20 and the button 18 trigger the functions associated with the camera module 30.
  • a button 18 is disposed on the first bending portion 13, and the processor 40 can control the camera module 30 according to the input of the button 18 by the user.
  • the first display area 21 faces the user, and the second display area 22 faces the user to allow the user to perform front shooting.
  • the functions of the button 18 include shutter, switching between front shooting and rear shooting, exit shooting, and the like.
  • the button 18 can be a physical button or a virtual button.
  • the button 18 is disposed on the first side 15. In this manner, when the user touches the touch device 100, the image previewed by the camera module 30 displayed in the first display area 21 can be adjusted to the shooting posture, and the hand holding the display touch device 100 can also be directly passed. Press button 18 is pressed to trigger the operation associated with camera module 30.
  • the button 18 is a virtual button, the button 18 can be disposed on the frame of the first bending portion 13 to facilitate the user's operation and improve the appearance of the display touch device 100.
  • the button 18 can also be disposed on the second bending portion 14, and the processor 40 can also control the camera module 30 according to the input of the button 18 by the user.
  • the second display area 22 faces the user, and the first display area 21 faces the user to allow the user to perform rear shooting.
  • the button 18 can be a physical button or a virtual button.
  • the button 18 is disposed on the second side 16. In this manner, when the user touches the touch device 100, the image previewed by the camera module 30 displayed in the second display area 22 can be adjusted to the shooting posture, and the hand holding the display touch device 100 can also be directly passed. Press button 18 is pressed to trigger the operation associated with camera module 30.
  • the button 18 is a virtual button, the button 18 can be disposed on the frame of the second bending portion 14 to facilitate the user's operation and improve the appearance of the display touch device 100.
  • the user can also use the button 18 to perform other application operations.
  • the physical button 18 can be a volume button or an on/off button.
  • the virtual button is the main page key, the return key, the menu key, and the like.
  • an embodiment of the present invention provides an interaction method using the above-described display touch device 100.
  • the interaction method includes the following steps:
  • the first display area 21 is controlled to display an image previewed by the camera module 30 to achieve pre-shooting.
  • the above steps are used to implement pre-shooting when the touch device 100 is in a bent state.
  • the flexible housing 10 and the flexible display screen 20 are bent to expose the camera module 30 relative to the first bent portion 13.
  • the exposed camera module 30 also faces the user.
  • the processor 40 controls the first display area 21 to display an image previewed by the camera module 30 (as shown in FIG. 2(a)).
  • the interaction method further includes:
  • the second display area 22 is controlled to display an image previewed by the camera module 30 to achieve post shooting.
  • the above steps are used to display the rear shooting when the touch device 100 is in a bent state. Specifically, the flexible housing 10 and the flexible display screen 20 are bent to expose the camera module 30 relative to the first bent portion 13. When the user faces the second display area 22 to the user, the exposed camera module 30 faces the user. At this point, the user can take a rear shot.
  • the processor 40 controls the second display area 22 to display an image previewed by the camera module 30 (shown in FIG. 3(a)).
  • the interaction method further includes:
  • the first display area 21 and the second display area 22 are controlled to display an image previewed by the camera module 30 to achieve post shooting.
  • the above steps are used to display the rear shooting when the touch device 100 is in the flat state.
  • the user faces the flexible display screen 20 and the camera module 30 disposed on the second casing surface 12 of the flexible casing 10 faces the user, the user can perform rear shooting.
  • the processor 40 controls the flexible display screen 20 to display an image previewed by the camera module 30 in full screen (shown in FIG. 1(a)).
  • the display touch device 100 further includes a fill light 50 .
  • the fill light 50 is disposed on the second shell surface 12 and on the second bent portion 14.
  • the interaction method further includes:
  • the fill light 50 is controlled to fill light.
  • the fill light 50 can fill the camera module 30 through the above steps.
  • the display touch device 100 further includes a microphone 60.
  • the microphone 60 is disposed on the flexible housing 10.
  • the interaction method further includes:
  • the microphone 60 is controlled to pick up the sound.
  • the microphone 60 records the video pickup sound in the camera module 30 through the above steps, regardless of whether the display touch device 100 is in a bent state or in a flat state.
  • the application scenario in which the camera module 30 records the video includes recording the video and saving the video on the display touch device 100 during the video call without saving the video on the display touch device 100.
  • the display touch device 100 further includes a fingerprint recognition module 70 .
  • the fingerprint recognition module 70 is disposed on the second bent portion 14.
  • the interaction method further includes:
  • the fingerprint recognition module 70 is controlled to perform fingerprint recognition.
  • the fingerprint recognition module 70 when the user faces the first display area 21 , the fingerprint recognition module 70 also faces the user.
  • the user can extend the thumb to the position of the fingerprint recognition module 70 of the second shell surface 12 of the second bending portion 14 for fingerprint recognition, which is very convenient to operate.
  • the fingerprint recognition module 70 faces the user.
  • the user can extend the middle finger or forefinger to the position of the fingerprint recognition module 70 of the second shell surface 12 of the second bending portion 14 for fingerprint recognition, and the operation is also very convenient.
  • the processor 40 triggers the display of the function service corresponding to the fingerprint identification of the user of the touch device 100 according to the touch electric signal generated by the fingerprint recognition module 70.
  • Functional services include one or more of on/off, payment verification, launching an application, and unlocking an encrypted file.
  • payment verification includes transfer between users and payment to merchants. Encrypt important documents such as photo and video.
  • the display touch device 100 enables fingerprint encryption in advance on/off, payment mode, startup application, and private space. Therefore, the user's fingerprint is required to perform on/off, payment verification, launching an application, and unlocking an encrypted file.
  • the fingerprint recognition module 70 can identify the user's fingerprint for any one or more of opening/closing, payment verification, launching an application, and unlocking an encrypted file.
  • the function service may only include one of opening/closing, payment verification, launching an application, and unlocking an encrypted file; or, the function service may include both on/off and payment verification, on/off, and launching the application.
  • Both programs, payment verification and launching applications, both on/off and unlocking encrypted files, launching applications and unlocking encrypted files, payment verification and unlocking encrypted files; or functional services can include both / Shutdown, payment verification and launch application, open/close, payment verification and unlock encryption files, open/close, launch application and unlock encrypted files, payment verification, launch application and unlock encrypted file
  • the function service can include both on/off, payment verification to launch the application, and unlock the encrypted file.
  • the user can quickly perform fingerprint recognition.
  • the fingerprint recognition module 70 faces the user.
  • the user can perform fingerprint recognition by extending the middle finger or forefinger of the hand holding the touch device 100 to the second shell surface 12 of the second bent portion 14 or using the thumb of the other hand.
  • the display touch device 100 in the flat state of the embodiment of the present invention includes two usage states. One state of use is placed along the long side (shown in Figure 10), and another state of use is placed along the short side (shown in Figure 11).
  • the display touch device 100 of the two states of use can be bent along an axis parallel to the long side or the short side. When the user uses the display touch device 100 of the embodiment of the present invention, the touch device 100 is selected according to preferences or needs. The state of use.

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Abstract

一种显示触控装置(100)。显示触控装置(100)包括柔性壳体(10)、柔性显示屏(20)、摄像模组(30)及处理器(40)。柔性壳体(10)包括相背的第一壳面(11)与第二壳面(12)。柔性壳体(10)能够弯折并形成相接的第一弯折部(13)及第二弯折部(14)。设置在第一壳面(11)的柔性显示屏(20)能够弯折并形成相接的位于第一弯折部(13)上的第一显示区(21)与位于第二弯折部(14)上的第二显示区(22)。摄像模组(30)设置在第二壳面(12)并位于第二弯折部(14)上。处理器(40)在柔性壳体(10)及柔性显示屏(20)弯折且摄像模组(30)相对第一弯折部(13)露出时,能够控制第一显示区(21)显示摄像模组(30)预览的图像。

Description

显示触控装置及其交互方法 技术领域
本发明涉及消费性电子领域,特别涉及一种显示触控装置及显示触控装置的交互方法。
背景技术
一般地,为了满足拍照多样化的需求,会同时设置有前置摄像头和后置摄像头,前置摄像头多用于自拍,后置摄像头多用于一般拍摄。然而,前置摄像头通常与显示屏同侧,因此,显示触控装置的前壳需要预留较宽的边框来放置前置摄像头,屏占比不高。
发明内容
本发明实施方式提供一种显示触控装置。所述显示触控装置包括柔性壳体、柔性显示屏、摄像模组、及处理器。所述柔性壳体包括相背的第一壳面与第二壳面,所述柔性壳体能够弯折并形成相接的第一弯折部及第二弯折部。所述柔性显示屏设置在所述第一壳面,所述柔性显示屏能够弯折并形成相接的第一显示区与第二显示区,所述第一显示区位于所述第一弯折部上,所述第二显示区位于所述第二弯折部上。所述摄像模组设置在所述第二壳面并位于所述第二弯折部上。所述处理器在所述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,能够控制所述第一显示区显示所述摄像模组预览的图像。
本发明实施方式还提供一种采用上述的显示触控装置的交互方法,所述交互方法包括:
弯折所述柔性壳体及所述柔性显示屏以使所述摄像模组相对所述第一弯折部露出;及
控制所述第一显示区显示所述摄像模组预览的图像以实现前置拍摄。
本发明实施方式的显示触控装置及其交互方法利用柔性显示屏与柔性壳体能够一起弯折并形成相接的第一显示屏与第二显示屏、相接的第一弯折部与第二弯折部,设置在柔性壳体的第二壳面上的摄像模组相对第一弯折部露出就能进行前置拍摄,并且第一显示区显示摄像模组预览的图像。因此,只需在柔性壳体的第二壳面设置一组摄像模组就能进行前置拍摄和后置拍摄,不需要在第一壳面预留较宽的边框来放置前置摄像头,提高了屏占比。
本发明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,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点可以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是本发明实施方式的显示触控装置处于平展状态的示意图;
图2是本发明实施方式的显示触控装置处于弯折状态的示意图;
图3为本发明实施方式的显示触控装置处于弯折状态的示意图;
图4为本发明实施方式的显示触控装置处于弯折状态的示意图;
图5是本发明实施方式的显示触控装置处于弯折状态的示意图;
图6是本发明实施方式的显示触控装置处于弯折状态的示意图;
图7是本发明实施方式的显示触控装置处于弯折状态的示意图;
图8是本发明实施方式的显示触控装置处于弯折状态的示意图;
图9是本发明实施方式的显示触控装置处于弯折状态的指纹识别手势示意图;
图10是本发明实施方式的显示触控装置处于平展状态的示意图;
图11是本发明实施方式的显示触控装置处于平展状态的示意图;
主要元件及符号说明:
显示触控装置100、柔性壳体10、第一壳面11、第二壳面12、第一弯折部13、第二弯折部14、第一侧边15、第二侧边16、通孔17、按键18、柔性显示屏20、第一显示区21、第二显示区22、摄像模组30、处理器40、补光灯50、麦克风60、指纹识别模组70。
具体实施方式
下面详细描述本发明的实施方式,实施方式的示例在附图中示出,其中,相同或类似的标号自始至终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,仅用于解释本发明,而不能理解为对本发明的限制。
在本发明的实施方式的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”、“顺时针”、“逆时针”等指示的方位或位置关 系为基于附图所示的方位或位置关系,仅是为了便于描述本发明的实施方式和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的实施方式的限制。此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个所述特征。在本发明的实施方式的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
请一并参阅图1、图2及图3,本发明实施方式提供的显示触控装置100包括柔性壳体10、柔性显示屏20、摄像模组30、及处理器40。柔性壳体10包括相背的第一壳面11与第二壳面12。柔性壳体10能够弯折并形成相接的第一弯折部13及第二弯折部14。柔性显示屏20设置在第一壳面11。柔性显示屏20能够弯折并形成相接的第一显示区21与第二显示区22。第一显示区21位于第一弯折部13上,第二显示区22位于第二弯折部14上。摄像模组30设置在第二壳面12并位于第二弯折部14上。处理器40在柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,能够控制第一显示区21显示摄像模组30预览的图像。
可以理解,在通常的状态下,显示触控装置100为平展状态。图1(a)为本发明实施方式提供的显示触控装置100的主视图,图1(b)为图1(a)的显示触控装置100的仰视图。如图1所示,当用户将柔性显示屏20面对用户,并将设置在柔性壳体10的第二壳面12的摄像模组30背对用户时,用户就能进行后置拍摄(拍摄用户正对的场景,下称:后置拍摄场景)。处理器40控制柔性显示屏20显示摄像模组30预览的图像(图1(a)所示)。因此,用户能根据预览的图像对后置拍摄进行调整,例如选取后置拍摄场景的对焦主体等。
如图2所示,当显示触控装置100为弯折状态时,柔性壳体10及柔性显示屏20一起弯折。此时,柔性壳体10形成相接的第一弯折部13及第二弯折部14。柔性显示屏20形成相接的第一显示区21及第二显示区22。第一显示区21位于第一弯折部13上,第二显示区22位于第二弯折部14上。第一显示区21与第二显示区22相背。摄像模组30设置在第二壳面12并位于第二弯折部14上。当柔性壳体10及柔性显示屏20弯折至摄像模组30相对第一弯折部13露出时,摄像模组30可以根据拍摄场景进行拍摄。具体地,当用户将第一显示区21面对用户时,露出的摄像模组30也朝向用户。此时,用户就能进行前置拍摄(可拍摄包括用户及用户身后景物的场景,下称:前置拍摄场景)。处理器40控制第一显示区21显示摄像模组30预览的图像(如图2(a)所示)。因此,用户能根据预览的图像对前置拍摄进行调整,例如自拍时调整自己的面 部表情等。另外,如图3所示,显示触控装置100在弯折状态时仍能利用摄像模组30进行后置拍摄。当用户将第二显示区22面对用户时,露出的摄像模组30背对用户。此时,用户就能进行后置拍摄。处理器40控制第二显示区22显示摄像模组30预览的图像(图3(a)所示)。因此,用户能根据预览的图像对后置拍摄进行调整。需要指出的是,本发明实施方式的露出指的是显示触控装置100在弯折状态下,第一弯折部13不会遮挡摄像模组30以免影响拍摄。图2(b)、图3(b)分别为本发明实施方式提供的显示触控装置100的图2(a)、图3(a)对应的仰视图。
本发明实施方式的显示触控装置100的柔性显示屏20与柔性壳体10能够一起弯折并形成相接的第一显示区21与第二显示区22、及相接的第一弯折部13与第二弯折部14。设置在柔性壳体10的第二壳面12上的摄像模组30相对第一弯折部13露出就能进行前置拍摄,并且第一显示区21显示摄像模组30预览的图像。因此,只需在柔性壳体10的第二壳面12设置一组摄像模组30就能进行前置拍摄和后置拍摄,不需要在第一壳面11预留较宽的边框来放置前置摄像头,提高了屏占比。另外,前置拍摄的参数与后置拍摄的参数一样,使前置拍摄的成像品质与后置拍摄的品质相同。
请再次参阅图1、图2及图3,本发明实施方式的显示触控装置100包括柔性壳体10、柔性显示屏20、摄像模组30、及处理器40。
显示触控装置100包括手机、平板电脑、笔记本电脑、智能手环、智能手表等。
柔性壳体10包括相背的第一壳面11及第二壳面12。柔性壳体10能够沿着非对称轴弯折以使第一弯折部13折叠至第二弯折部14。柔性壳体10包括分别位于非对称轴两侧的第一侧边15与第二侧边16。第一侧边15为第一弯折部13的远离第二弯折部14的最外侧边,第二侧边16为第二弯折部14的远离第一弯折部13的最外侧边。摄像模组30靠近第二侧边16设置。第一弯折部13折叠至第二弯折部14时,第一侧边15与第二侧边16错开并露出摄像模组30。柔性显示屏20根据非对称轴划分第一显示区21与第二显示区22。
其中,柔性壳体10整体由柔性材料制成,比如PET(聚对笨二甲酸乙二醇酯)、PEN(聚萘二甲酸乙二醇酯)、PC(聚碳酸酯)或PMMA(聚甲基丙烯酸甲酯)、硅胶类柔性材料等。因此,柔性壳体10能够进行弯折并且能恢复平整的状态。另外,柔性壳体10的结构还可以由设置在第一弯折部13与第二弯折部14上的支撑结构及第一弯折部13与第二弯折部14相接处的柔性结构组成。支撑结构的材料可以为PC(聚碳酸酯)、ABS(丙烯腈—丁二烯—苯乙烯共聚物)、PC与ABS合成材料、金属等,柔性结构的材料可以为上述柔性材料。因此,具有一定支撑强度的柔性壳体10除了能够弯折,还能保护柔性壳体10内部的电子器件及结构(比如主板、电路板)。
柔性显示屏20能够沿着非对称轴与柔性壳体10一起弯折并形成相接的第一显示区21与第二显示区22。显示触控装置100可包括互相垂直的长边和短边。非对称轴可以平行于长边,也可以沿平行于短边。本发明实施方式提供的显示触控装置100的非对称轴平行于短边。如此,用户可以根据喜好或者需求对显示触控装置100进行弯折。
摄像模组30包括电荷耦合元件(Charge-coupled Device,CCD)图像传感器或及互补金属氧化物半导体(Complementary Metal Oxide Semiconductor,CMOS)图像传感器。用户通过摄像模组30进行拍照、拍摄视频、视频通话。柔性显示屏20显示的摄像模组30预览的图像包括预览的拍照照片、当前的视频。用户在按下快门、停止录像键、结束当前视频通话键后,显示触控装置100进行存储拍照照片、存储拍摄视频、结束视频通话。
处理器40设置在柔性壳体10的内部。当显示触控装置100为平展状态时,处理器40控制柔性显示屏20显示第一应用程序界面,比如后置拍摄时摄像模组30预览的图像。当柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,处理器40能够控制第一显示区21显示第一应用程序界面、及能够控制第二显示区22显示第二应用程序界面。第一应用程序与第二应用程序为不同的应用程序,且第一应用程序与第二应用程序互不干扰。当用户在第一应用程序界面进行操作时,第二应用程序保持运行并显示。例如,第一应用程序为浏览器,第二应用程序为微信。在用户在第一显示区21进行网页浏览、网页切换、交易支付等操作时,处理器40控制第二显示区22保持显示微信界面(如显示对话框),而不是处理器40控制微信退出运行。当用户在第二应用程序界面进行操作时,第一应用程序保持运行。例如,第一应用程序为浏览器,第二应用程序为微信。当用户在第二显示区22在对话框进行输入对话、浏览朋友圈、浏览公众号等操作时,处理器40控制第一显示区21保持显示浏览器界面(如显示某一网页),而不是处理器40控制浏览器退出运行。
请一并参阅图3及图4,以第一应用程序为相机拍摄为例进行详细说明。相机拍摄包括前置拍摄及后置拍摄。第一应用程序为后置拍摄,第二应用程序为网页、微信、阅读器、播放器等应用程序。当柔性壳体10及柔性显示屏20弯折至图3及图4所示的状态并进行后置拍摄时,图3是用户面对第二显示区22进行后置拍摄,此时,第二显示区22显示的是后置拍摄的摄像模组30预览的图像(图3(a)所示)。当用户将显示触控装置100翻转90度,使得用户面对第一显示区21时,第一显示区21显示的是对应的网页界面、微信界面、阅读器界面、播放器界面等应用程序界面(图4(a)所示)。当图4中的第一应用程序为前置拍摄时,第一显示区21显示前置拍摄的摄像模组30预览的图像,第二显示区22可显示其他应用程序界面,例如显示网页界面、微信界面、 阅读器界面、播放器界面等应用程序界面。
在其他实施方式中,第二应用程序为背景应用程序,第一应用程序为除了背景应用程序以外的应用程序。例如,第一应用程序为前置拍摄,第二应用程序为显示背景的应用程序。当柔性壳体10及柔性显示屏20弯折至图2所示的状态时,第一显示区21显示前置拍摄的摄像模组30预览的图像,第二显示区22显示静态背景(静态桌面、纯色图片、无显示等)。
请一并参阅图5及图6,在某些实施方式中,柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,处理器40能够控制第一显示区21与第二显示区22共同显示一个应用程序界面。例如,该应用程序可以为阅读器。阅读器的界面可以进行虚拟翻页的电子报纸、电子期刊、电子书等。第一显示区21显示阅读器的某一页电子书的内容,第二显示区22显示阅读器的下一页电子书的内容。再比如,应用程序为桌面显示。显示触控装置100未弯折时,柔性显示屏20显示桌面内容(图1(a)所示)。显示触控装置100弯折后,第一显示区21与第二显示区22分别显示桌面内容的一部分内容(图5(a)及图6(a)所示)。
本发明实施方式的显示触控装置100的柔性显示屏20与柔性壳体10能够一起弯折并形成第一显示区21与第二显示区22、及第一弯折部13与第二弯折部14。设置在柔性壳体10的第二壳面12上的摄像模组30相对第一弯折部13露出就能进行前置拍摄,并且第一显示区21显示摄像模组30预览的图像。因此,只需在柔性壳体10的第二壳面12设置一组摄像模组30就能进行前置拍摄和后置拍摄,不需要在第一壳面11预留较宽的边框来放置前置摄像头,提高了屏占比。另外,前置拍摄的参数与后置拍摄的参数一样,使前置拍摄的成像品质与后置拍摄的品质相同。此外,本发明的显示触控装置100还具有以下有益效果:
1.第一显示区21与第二显示区22能够同时显示两个不同的应用程序界面,因此,用户可以同时在第一显示区21与第二显示区22查看显示触控装置100上的应用程序,而不用先退出当前应用程序界面,然后再打开其他应用程序界面,操作更加简便。
2.用户根据喜好或者需求对显示触控装置100进行弯折,提高了用户体验效果。
请一并参阅图7及图8,在某些实施方式中,第一弯折部13上开设有通孔17,第一弯折部13折叠至第二弯折部14时,摄像模组30与通孔17对准。
具体地,在第一弯折部13上开设通孔17。通孔17为第一弯折部13上的缺口;或者通孔17为第一弯折部13的多个侧边形成的贯通孔。摄像模组30在第一弯折部13的正投影落在通孔17内。换言之,通孔17的位置与摄像模组30的位置对应,而且通孔17的大小与摄像模组30的大小对应。摄像模组30可以设置在第二弯折部14的第 二壳面12的任意位置。例如,当摄像模组30设置在第二弯折部14上的中点处时,通孔17对应地设置在第一弯折部13上的中点处。当摄像模组30设置在第二弯折部14上的第二壳面12顶角处时,通孔17对应地设置在第一弯折部13上的顶角处。摄像模组30与通孔17对准。因此,柔性壳体10及柔性显示屏20可以进行对称性弯折(图7所示),也可以进行非对称性弯折(图8所示)。如此,用户可以根据喜好或者需求对显示触控装置100进行弯折。
具体地,柔性壳体10包括分别位于非对称轴两侧的第一侧边15与第二侧边16。第一侧边15为第一弯折部13的远离第二弯折部14的最外侧边,第二侧边16为第二弯折部14的远离第一弯折部13的最外侧边。摄像模组30靠近第二侧边16设置。第一弯折部13折叠至第二弯折部14时,第一侧边15与第二侧边16齐平(图7(b)所示)。
可以理解,摄像模组30设置在靠近第二侧边16的位置上,通孔17为设置在第一侧边15上的缺口或者贯通孔。
当显示触控装置100弯折至第一侧边15与第二侧边16齐平时,摄像模组30可以实现通孔17对准,操作更加简单。
在其他实施方式中,第一侧边15与第二侧边16不齐平(图8(b)所示)。通孔17的大小与摄像模组30对应。当柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,摄像模组30可从第一侧边15露出,摄像模组30也可由通孔17露出。如此,可以更加灵活地弯折显示触控装置100而不影响摄像模组30的正常拍摄。
请参阅图2,在某些实施方式中,显示触控装置100还包括补光灯50。补光灯50设置在第二壳面12并位于第二弯折部14上。在柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,补光灯50从第一弯折部13暴露以能为摄像模组30补光。
当柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,补光灯50从第一弯折部13露出的方式有两种。一种方式是第一侧边15与第二侧边16错开以露出摄像模组30及补光灯50。另外一种方式是第一弯折部13上开设有通孔17,摄像模组30及补光灯50与通孔17对准以露出补光灯50。无论是哪一种方式,在光线较暗的环境使用显示触控装置100进行前置拍摄时,处理器40均能控制补光灯50为摄像模组30补光。如此,进一步扩展摄像模组30的适用范围。
请再次参阅图2,在某些实施方式中,显示触控装置100还包括麦克风60。麦克风60设置在柔性壳体10上。麦克风60可以设置在第二壳面12并位于第二弯折部14上。麦克风60的位置与摄像模组30的位置对应。在柔性壳体10及柔性显示屏20弯 折且摄像模组30相对第一弯折部13露出时,麦克风60从第一弯折部13暴露以能在摄像模组30拍摄视频时拾取声音。另外,麦克风60还可以设置在柔性壳体10上的任意位置。例如,麦克风60设置在靠近第二侧边16的位置,并与摄像模组30的位置对应。麦克风60的数量也不受限制。例如,麦克风60的数量可为三个。三个麦克风60依次设置在第一侧边15、摄像模组30的旁边、及第二侧边16上,以共同用于在摄像模组30拍摄视频时更好地拾取声音。或者,三个麦克风60设置在不同的位置以实现不同的功能,例如一个麦克风60设置在扬声器附近以用于通话时收音;一个麦克风60在听筒内以用于录音的时候收音及降噪,因此平时录音才不需要用手机底部对着发言人;还有一个麦克风60设置在摄像模组30的旁边(图2(a)所示),以用于在摄像模组30拍摄视频时拾取声音。
请继续参阅图2,在某些实施方式中,显示触控装置100还包括指纹识别模组70,指纹识别模组70设置在第二弯折部14上。在柔性壳体10及柔性显示屏20弯折且摄像模组30相对第一弯折部13露出时,指纹识别模组70从第一弯折部13暴露。指纹识别模组70从第一弯折部13露出的方式有两种。一种方式是第一侧边15与第二侧边16错开以露出指纹识别模组70。另外一种方式是第一弯折部13上开设有通孔17。指纹识别模组70与通孔17对准以露出指纹识别模组70。指纹识别模组70可以设置在靠近第二侧边16处的任意位置。例如,指纹识别模组70可以设置在第二弯折部14上的中线上,也可以设置在顶角处。其中,指纹识别模组70包括光学指纹识别模组、电容传感器、生物射频识别模组等。
在某些实施方式中,柔性显示屏20为集成有触控层的显示屏。处理器40能够根据用户对柔性显示屏20的触控输入来控制摄像模组30。其中,柔性显示屏20可以为有机发光显示屏(Organic Light Emitting Display,OLED)。OLED显示屏包括主动矩阵有机发光二极管(Active Matrix Organic Light Emitting Diode,AMOLED)显示屏和被动矩阵有机发光二极管(Passive Matrix Organic Light Emitting Diode,PMOLED)显示屏。
当利用平展的显示触控装置100进行后置拍摄时,用户可以触控整个柔性显示屏20。处理器40根据柔性显示屏20上的触控输入来控制摄像模组30,比如,进行拍摄参数(亮度、光圈大小、对焦位置等)的调整。当利用弯折的显示触控装置100进行后置拍摄时,用户可以触控第二显示区22。处理器40根据第二显示区22上的触控输入来控制摄像模组30。当利用弯折的显示触控装置100进行前置拍摄时,用户可以触控第一显示区21。处理器40根据第一显示区21上的触控输入来控制摄像模组30。
当然,用户还可以利用设置有触控层的柔性显示屏20进行其他应用程序的触摸操 作。当第一显示区21及第二显示区22共同显示同一个应用程序界面时,用户可以进行触控操作。例如,柔性显示屏20显示阅读器的界面,用户可以进行触控以对阅读的内容进行虚拟翻页等操作。当第一显示区21显示第一应用程序界面、第二显示区22显示第二应用程序界面时,用户可以分别对第一显示区21及第二显示区22进行触控操作。例如,第一显示区21显示微信界面,第二显示区22显示浏览器界面。用户可以通过触控在微信界面的对话框发送消息或者在浏览器界面滑动网页。
请再一并参阅图7及图8,在其他实施方式中,显示触控装置100还设置有按键18。用户除了可以单独地利用集成有触控层的柔性显示屏20的触控操作来触发摄像模组30相关的功能,还可以单独地利用按键18来触发摄像模组30相关的功能,或者结合使用柔性显示屏20及按键18来触发摄像模组30相关的功能。具体地,在第一弯折部13上设置有按键18,处理器40能够根据用户对按键18的输入来控制摄像模组30。将第一显示区21面对用户,第二显示区22背对用户,以便让用户进行前置拍摄。按键18的功能包括快门、前置拍摄与后置拍摄的切换、退出拍摄等。按键18可以为实体按键,也可以为虚拟按键。当按键18为实体按键时,按键18设置在第一侧边15上。如此,用户在手持显示触控装置100的时候,可以通过第一显示区21显示出的摄像模组30预览的图像调整好拍摄姿态,同时还可以利用拿着显示触控装置100的手直接通过按下按键18以触发摄像模组30相关的操作。当按键18为虚拟按键时,按键18可以设置在第一弯折部13的边框上,方便用户操作的同时还提升显示触控装置100的美观。
相应地,在第二弯折部14上也可以设置按键18,处理器40也能够根据用户对按键18的输入来控制摄像模组30。将第二显示区22面对用户,第一显示区21背对用户,以便让用户进行后置拍摄。按键18可以为实体按键,也可以为虚拟按键。当按键18为实体按键时,按键18设置在第二侧边16上。如此,用户在手持显示触控装置100的时候,可以通过第二显示区22显示出的摄像模组30预览的图像调整好拍摄姿态,同时还可以利用拿着显示触控装置100的手直接通过按下按键18以触发摄像模组30相关的操作。当按键18为虚拟按键时,按键18可以设置在第二弯折部14的边框上,方便用户操作的同时还提升显示触控装置100的美观。
当然,用户还可以利用按键18进行其他应用程序的操作。比如,实体按键18可以为音量键、开/关机键。虚拟按键为主页面键、返回键、菜单键等。
请一并参阅图1及图2,本发明实施方式提供采用上述显示触控装置100的交互方法。该交互方法包括以下步骤:
弯折柔性壳体10及柔性显示屏20以使摄像模组30相对第一弯折部13露出;及
控制第一显示区21显示摄像模组30预览的图像以实现前置拍摄。
上述步骤用于显示触控装置100处于弯折状态时实现前置拍摄。具体地,弯折柔性壳体10及柔性显示屏20以使摄像模组30相对第一弯折部13露出。用户将第一显示区21面对用户时,露出的摄像模组30也朝向用户。此时,用户就能进行前置拍摄。处理器40控制第一显示区21显示摄像模组30预览的图像(如图2(a)所示)。
请参阅图3及图4,在某些实施方式中,该交互方法还包括:
控制第二显示区22显示摄像模组30预览的图像以实现后置拍摄。
上述步骤用于显示触控装置100处于弯折状态时实现后置拍摄。具体地,弯折柔性壳体10及柔性显示屏20以使摄像模组30相对第一弯折部13露出。当用户将第二显示区22面对用户时,露出的摄像模组30背对用户。此时,用户就能进行后置拍摄。处理器40控制第二显示区22显示摄像模组30预览的图像(图3(a)所示)。
请参阅图1,在某些实施方式中,该交互方法还包括:
控制第一显示区21及所述第二显示区22共同显示摄像模组30预览的图像以实现后置拍摄。
上述步骤用于显示触控装置100处于平展状态时实现后置拍摄。此时,当用户将柔性显示屏20面对用户,并将设置在柔性壳体10的第二壳面12上的摄像模组30背对用户时,用户就能进行后置拍摄。处理器40控制柔性显示屏20全屏显示摄像模组30预览的图像(图1(a)所示)。
请参阅图2,在某些实施方式中,显示触控装100还包括补光灯50。补光灯50设置在第二壳面12并位于第二弯折部14上。此时,该交互方法还包括:
在摄像模组30工作时,控制补光灯50进行补光。
无论显示触控装置100是处于弯折状态,还是处于平展状态时,补光灯50都可以通过上述步骤为摄像模组30补光。
请再次参阅图2,在某些实施方式中,显示触控装置100还包括麦克风60。麦克风60设置在柔性壳体10上。此时,该交互方法还包括:
在采用摄像模组30录制视频时,控制麦克风60拾取声音。
无论显示触控装置100是处于弯折状态,还是处于平展状态时,麦克风60通过上述步骤在摄像模组30录制视频拾取声音。摄像模组30录制视频的应用场景包括录制视频并将视频保存在显示触控装置100上、视频通话时而不将视频保存在显示触控装置100上。
请继续参阅图2,在某些实施方式中,显示触控装置100还包括指纹识别模组70。指纹识别模组70设置在在第二弯折部14上。此时,该交互方法还包括:
控制指纹识别模组70进行指纹识别。
请一并参阅图2及图9(a),当用户面对第一显示区21时,指纹识别模组70也面对用户。用户可将大拇指伸至第二弯折部14的第二壳面12的指纹识别模组70的位置处以进行指纹识别,操作非常方便。
请一并参阅图3及图9(b),当用户面对第二显示区22时,指纹识别模组70背对用户。用户可将中指或食指伸至第二弯折部14的第二壳面12的指纹识别模组70的位置处以进行指纹识别,操作也非常方便。
具体地,处理器40根据指纹识别模组70产生的触控电信号触发显示触控装置100的与用户的指纹识别对应的功能服务。功能服务包括开/关机、支付验证、启动应用程序、解锁加密文件的任意一种或多种。其中,支付验证包括用户之间转账及向商家付款消费。加密文件照片、视频等重要资料。
可以理解,显示触控装置100预先对开/关机、支付方式、启动应用程序、私密空间均启用指纹加密。因此需要用户的指纹才能进行开/关机、支付验证、启动应用程序、解锁加密文件的操作。指纹识别模组70可以识别用户的指纹以进行开/关机、支付验证、启动应用程序、解锁加密文件的任意一种或多种。
也即是说,功能服务可以仅包括开/关机、支付验证、启动应用程序、解锁加密文件的一种;或者,功能服务可以同时包括开/关机及支付验证二者、开/关机及启动应用程序二者、支付验证及启动应用程序二者、开/关机及解锁加密文件二者、启动应用程序及解锁加密文件二者、支付验证及解锁加密文件二者;或者,功能服务可以同时包括开/关机、支付验证及启动应用程序三者、开/关机、支付验证及解锁加密文件三者、开/关机、启动应用程序及解锁加密文件三者、支付验证、启动应用程序及解锁加密文件三者;或者,功能服务可以同时包括开/关机、支付验证启动应用程序及解锁加密文件三者。
无论是哪一种功能服务,只要指纹识别模组70从第一弯折部13露出,用户都可以快速进行指纹识别。
另外,当显示触控装置100处于平展状态时,指纹识别模组70背对用户。用户可以通过将拿着显示触控装置100的手的中指或食指伸至第二弯折部14的第二壳面12或者使用另外一只手的大拇指来进行指纹识别。
本发明实施方式的显示触控装置100平展状态包括两种使用状态。一种使用状态是沿长边放置(图10所示),另外一种使用状态是沿短边放置(图11所示)。两种使用状态的显示触控装置100都可以沿平行于长边或者短边的轴线进行弯折。用户在使用本发明实施方式的显示触控装置100时,按照喜好或者需求选择显示触控装置100 的使用状态。
在本说明书的描述中,参考术语“一个实施方式”、“一些实施方式”、“示意性实施方式”、“示例”、“具体示例”或“一些示例”等的描述意指结合所述实施方式或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施方式或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或示例中以合适的方式结合。
尽管上面已经示出和描述了本发明的实施方式,可以理解的是,上述实施方式是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施实施进行变化、修改、替换和变型。

Claims (17)

  1. 一种显示触控装置,其特征在于,所述显示触控装置包括:
    柔性壳体,所述柔性壳体包括相背的第一壳面与第二壳面,所述柔性壳体能够弯折并形成相接的第一弯折部及第二弯折部;
    柔性显示屏,所述柔性显示屏设置在所述第一壳面,所述柔性显示屏能够弯折并形成相接的第一显示区与第二显示区,所述第一显示区位于所述第一弯折部上,所述第二显示区位于所述第二弯折部上;
    摄像模组,所述摄像模组设置在所述第二壳面并位于所述第二弯折部上;及
    处理器,所述处理器在所述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,能够控制所述第一显示区显示所述摄像模组预览的图像。
  2. 根据权利要求1所述的显示触控装置,其特征在于,所述柔性壳体能够沿着非对称轴弯折以使所述第一弯折部折叠至所述第二弯折部。
  3. 根据权利要求1所述的显示触控装置,其特征在于,所述柔性壳体包括分别位于所述非对称轴两侧的第一侧边与第二侧边,所述第一侧边为所述第一弯折部的远离所述第二弯折部的最外侧边,所述第二侧边为所述第二弯折部的远离所述第一弯折部的最外侧边,所述摄像模组靠近所述第二侧边设置,所述第一弯折部折叠至所述第二弯折部时,所述第一侧边与所述第二侧边错开并露出所述摄像模组。
  4. 根据权利要求1所述的显示触控装置,其特征在于,所述第一弯折部上开设有通孔,所述第一弯折部折叠至所述第二弯折部时,所述摄像模组与所述通孔对准。
  5. 根据权利要求4所述的显示触控装置,其特征在于,所述柔性壳体包括分别位于所述非对称轴两侧的第一侧边与第二侧边,所述第一侧边为所述第一弯折部的远离所述第二弯折部的最外侧边,所述第二侧边为所述第二弯折部的远离所述第一弯折部的最外侧边,所述摄像模组靠近所述第二侧边设置,所述第一弯折部折叠至所述第二弯折部时,所述第一侧边与所述第二侧边齐平。
  6. 根据权利要求1-5任意一项所述的显示触控装置,其特征在于,所述显示触控装置还包括补光灯,所述补光灯设置在所述第二壳面并位于所述第二弯折部上,在所 述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,所述补光灯从所述第一弯折部露出以能为所述摄像模组补光。
  7. 根据权利要求1-5任意一项所述的显示触控装置,其特征在于,所述显示触控装置还包括麦克风,所述麦克风设置在所述柔性壳体上。
  8. 根据权利要求1-5任意一项所述的显示触控装置,其特征在于,所述显示触控装置还包括指纹识别模组,所述指纹识别模组设置在所述第二弯折部上,在所述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,所述指纹识别模组从所述第一弯折部露出。
  9. 根据权利要求1所述的显示触控装置,其特征在于,所述柔性显示屏为集成有触控层的显示屏,所述处理器能够根据用户对所述柔性显示屏的触控输入来控制所述摄像模组;或
    所述第一弯折部上设置有按键,所述处理器能够根据用户对所述按键的输入来控制所述摄像模组。
  10. 根据权利要求1所述的显示触控装置,其特征在于,在所述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,所述处理器能够控制所述第一显示区显示第一应用程序界面、及能够控制所述第二显示区显示第二应用程序界面。
  11. 根据权利要求1所述的显示触控装置,其特征在于,在所述柔性壳体及所述柔性显示屏弯折且所述摄像模组相对所述第一弯折部露出时,所述处理器能够控制所述第一显示区与所述第二显示区共同显示一个应用程序界面。
  12. 一种采用根据权利要求1所述的显示触控装置的交互方法,其特征在于,所述交互方法包括:
    弯折所述柔性壳体及所述柔性显示屏以使所述摄像模组相对所述第一弯折部露出;及
    控制所述第一显示区显示所述摄像模组预览的图像以实现前置拍摄。
  13. 根据权利要求12所述的交互方法,其特征在于,所述交互方法还包括:
    控制所述第一显示区及所述第二显示区共同显示所述摄像模组预览的图像以实现后置拍摄。
  14. 根据权利要求12所述的交互方法,其特征在于,所述交互方法还包括:
    控制所述第二显示区显示所述摄像模组预览的图像以实现后置拍摄。
  15. 根据权利要求12所述的交互方法,其特征在于,所述显示触控装置还包括补光灯,所述补光灯设置在所述第二壳面并位于所述第二弯折部上,所述交互方法还包括:
    在所述摄像模组工作时,控制所述补光灯进行补光。
  16. 根据权利要求12所述的交互方法,其特征在于,所述显示触控装置还包括麦克风,所述麦克风设置在所述柔性壳体上,所述交互方法还包括:
    在采用所述摄像模组录制视频时,控制所述麦克风拾取声音。
  17. 根据权利要求12所述的交互方法,其特征在于,所述显示触控装置还包括指纹识别模组,所述指纹识别模组设置在所述第二弯折部上,所述交互方法还包括:
    控制所述指纹识别模组进行指纹识别。
PCT/CN2017/113404 2017-11-28 2017-11-28 显示触控装置及其交互方法 WO2019104486A1 (zh)

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