WO2016127525A1 - 终端屏幕显示方法、装置及计算机存储介质 - Google Patents

终端屏幕显示方法、装置及计算机存储介质 Download PDF

Info

Publication number
WO2016127525A1
WO2016127525A1 PCT/CN2015/080300 CN2015080300W WO2016127525A1 WO 2016127525 A1 WO2016127525 A1 WO 2016127525A1 CN 2015080300 W CN2015080300 W CN 2015080300W WO 2016127525 A1 WO2016127525 A1 WO 2016127525A1
Authority
WO
WIPO (PCT)
Prior art keywords
terminal
display
area
screen
determining
Prior art date
Application number
PCT/CN2015/080300
Other languages
English (en)
French (fr)
Inventor
王伟立
许飞
Original Assignee
中兴通讯股份有限公司
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 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2016127525A1 publication Critical patent/WO2016127525A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures

Definitions

  • the present invention relates to the field of display technologies, and in particular, to a terminal screen display method, apparatus, and computer storage medium.
  • the screen display effect is enlarged by the following methods:
  • the font display By adjusting the font size in the setting and setting the large font size, the overall display effect of the mobile phone is enlarged.
  • the disadvantage is that whether the effect can meet the user's needs, the font display always adopts the preset size, and is only valid for the text, the picture is Other objects are invalid;
  • the mobile phone connects to the TV or the large-screen display through the HDMI interface, and the display interface of the mobile phone is synchronously outputted with the display or the television.
  • the disadvantage is that some artificial settings are needed, and if the user does not have a TV or fits around The large-screen display, or unfamiliar with the setting method, can not effectively use this way to enlarge the display.
  • the existing screen display content is enlarged, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in poor screen display amplification effect.
  • an embodiment of the present invention provides a terminal screen display method, device, and computer storage medium, which are intended to solve the existing method for amplifying the screen display content, and the operation is complicated, and the content cannot be displayed on the screen reasonably and effectively. Zooming in, causing the screen display to have a poor magnification effect.
  • a terminal screen display method provided by an embodiment of the present invention includes:
  • the display content of each display area is enlarged and displayed according to the enlarged parameter.
  • the determining, according to the operation area, an amplifying parameter of each display area of the terminal including:
  • the determining, according to the operation area, an amplifying parameter of each display area of the terminal including:
  • the method before determining the amplification parameter of each display area of the terminal according to the operation area, the method further includes:
  • the liquid crystal lattice is divided into a plurality of liquid crystal lattice grids according to a preset ratio, and each liquid crystal lattice grid corresponds to a display area.
  • the determining, according to the operation area, an amplifying parameter of each display area of the terminal including:
  • the method further includes:
  • the receiving screen displays an enlarged mode exit command
  • the current screen of the terminal is refreshed, and the display content of the screen is displayed in a normal scale.
  • an embodiment of the present invention further provides a terminal screen display device, including:
  • a receiving module configured to receive a touch operation based on the terminal
  • a determining module configured to determine an operation area of the touch operation when the terminal is currently in the screen display zoom mode, and determine, according to the operation area, an enlargement of each display area of the terminal parameter;
  • the display module is configured to display the display content of each display area in an enlarged manner according to the enlarged parameter.
  • the determining module is further configured to determine a distance between each display area of the terminal and the operation area, and is further configured to determine an amplification parameter corresponding to each display area of the terminal according to the distance.
  • the determining module is further configured to determine, according to the operation area, a heat sensing value and a heat receiving area corresponding to the heat sensing area of each display area of the terminal; and further configured to be according to the heat sensing value and the heat receiving The area determines an amplification parameter of each display area of the terminal.
  • the display device of the terminal screen further includes a dividing module
  • the determining module is further configured to determine a liquid crystal dot matrix of the terminal screen
  • the dividing module is configured to divide the liquid crystal lattice into a plurality of liquid crystal lattice grids according to a preset ratio, and each liquid crystal lattice grid corresponds to a display area.
  • the determining module is further configured to determine a liquid crystal lattice grid in which the operation area is located; and configured to determine a liquid crystal lattice grid of the terminal according to the determined liquid crystal lattice grid
  • the amplification parameter is used as an amplification parameter corresponding to the display area, and the determined amplification parameter is used as an amplification parameter of the corresponding display area.
  • the sending and receiving module is further configured to receive an on-screen display zoom mode exit instruction
  • the display module is further configured to refresh the current screen of the terminal, and display the display content of the screen according to a normal ratio.
  • an embodiment of the present invention further provides a terminal, where the terminal includes a processor, and the processor is configured to receive a touch operation based on the terminal; when the terminal is currently in the screen display zoom mode, determine An operation area of the touch operation, determining an amplification parameter of each display area of the terminal according to the operation area; and correspondingly magnifying the display according to the amplification parameter Shows the display content of each display area.
  • an embodiment of the present invention further provides a computer storage medium, where a computer program is stored, and the computer program is used to execute the terminal screen display method.
  • the terminal screen is divided into a plurality of display areas in advance, and when the touch operation is received and the screen display enlargement mode is received, the amplification parameters of the display areas of the terminal are determined according to the operation area, and then the terminal screen is further displayed.
  • the display content is enlarged. Effectively avoiding the enlargement of the existing screen display content, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in a problem that the screen display enlargement effect is poor.
  • the complexity of the display content enlargement operation is reduced, and the screen display content is effectively and reasonably enlarged, thereby improving the screen display enlargement effect.
  • the terminal screen display adopting the embodiment of the present invention may display a variability enlargement effect according to a user gesture (for example, a movement of a finger), and may cause a plurality of display areas of the terminal screen to exhibit a gradation according to different amplification parameters thereof.
  • the zoom effect enhances the user experience.
  • FIG. 1 is a schematic flow chart of a first embodiment of a method for displaying a screen of a terminal according to the present invention
  • FIG. 2 is a schematic flowchart of an embodiment of determining an amplification parameter of each display area according to each display area and the operation area of the terminal according to the present invention
  • FIG. 3 is a schematic flowchart diagram of a second embodiment of a method for displaying a screen of a terminal according to the present invention.
  • FIG. 4 is a schematic flow chart of a third embodiment of a method for displaying a screen of a terminal according to the present invention.
  • FIG. 5 is a schematic diagram of functional modules of a preferred embodiment of a terminal screen display device of the present invention.
  • the main solution of the embodiment of the present invention is: receiving a touch operation based on the terminal; determining an operation area of the touch operation when the terminal is currently in the screen display enlargement mode, and determining each display area of the terminal according to the operation area
  • the enlargement parameter of the display area is enlarged and displayed correspondingly according to the enlarged parameter.
  • an embodiment of the present invention provides a terminal screen display method.
  • FIG. 1 is a schematic flowchart of a first embodiment of a method for displaying a screen of a terminal according to the present invention.
  • the terminal screen display method includes:
  • Step S10 receiving a touch operation based on the terminal
  • the display mode of the display content of the terminal screen for example, including the normal display mode, that is, displaying the display content of the screen according to the normal ratio (general scale, font size, font color, etc.), the screen display enlargement mode, that is, the screen display content is enlarged and displayed. Wait for the display mode.
  • the corresponding application is opened and the display content is browsed.
  • the terminal-based touch operation is used. Trigger the above operation.
  • the touch operation may be a gesture operation, but is not limited to a gesture operation, and may also be a touch operation.
  • the gesture operation includes a touch operation directly on the screen of the terminal, and a gesture empty operation based on the terminal screen.
  • Receiving a touch operation based on the terminal that is, receiving a touch operation based on the terminal screen.
  • the open screen of the terminal setting displays the entrance of the enlarged operation, or the shortcut screen triggers the trigger of the zoom mode of the terminal screen display.
  • the terminal-based touch operation determines a corresponding response command, and responds to the response command to complete a corresponding operation, for example, turning a page, copying the display content, and the like.
  • the terminal when the terminal is not currently in the screen display zoom mode, it is prompted whether the screen display zoom mode needs to be turned on; and receiving response information based on the prompt, and when the received response information is required to be turned on, the screen is turned on.
  • the zoom mode is displayed; when the received response message is not required to be turned on, the normal display mode is entered.
  • Step S20 determining an operation area of the touch operation when the terminal is currently in the screen display enlargement mode, and determining an amplification parameter of each display area of the terminal according to the operation area;
  • the display content of the terminal screen needs to be enlarged and displayed based on the touch operation, the operation area of the touch operation is determined, and the enlargement of each display area of the terminal is determined according to the operation area. parameter.
  • the process of determining an amplification parameter of each display area of the terminal according to the operation area may include:
  • Step S21 determining a distance between each display area of the terminal and the operation area
  • Step S22 determining an amplification parameter corresponding to each display area of the terminal according to the distance.
  • the terminal When the terminal is currently in the screen display zoom mode, after receiving the touch operation and determining the operation area of the touch operation, determining the distance between each display area of the terminal and the operation area; determining each display of the terminal according to the distance The magnification parameter corresponding to the area. That is, the amplification parameter of each display area of the terminal is determined according to the distance between the display areas of the terminal and the operation area, for example, the amplification parameter of the distance is small, that is, the amplification ratio of the distance is small. In other embodiments of the present invention, the amplification parameter with a long distance may be large, that is, the amplification ratio of the distance is large, and the correspondence relationship between the amplification ratio and the distance is set according to the user instruction.
  • the screen of the terminal has a ratio of 16:9 or 4:3, and the selected basic is an LCD display, and the LCD display is imaged by a liquid crystal dot matrix, and the liquid crystal lattices are divided into preset ratios according to a preset ratio.
  • a plurality of liquid crystal lattice grids for example, when the preset ratio is 16:9, the terminal screen is divided into 16N*9N liquid crystal lattice grids, and when the preset ratio is 4:3, the terminal screen is divided into 4N* 3N liquid crystal lattice grids, where N is a natural number, and each liquid crystal lattice grid corresponds to one display area.
  • Determining a liquid crystal lattice grid in which the operation area is located determining an amplification parameter of each liquid crystal lattice grid of the terminal according to the determined liquid crystal lattice grid, and using the determined amplification parameter as an amplification parameter of the corresponding display area.
  • the enlarged display of the screen display content displays the display contents of the respective liquid crystal lattice grids in accordance with the enlarged scale of Table 1.
  • the scale of the display of the terminal screen display is not limited to the ratio shown in Table 1, but may be other ratios, and the performance setting may be displayed according to user needs and/or terminals.
  • Step S30 displaying the display content of each display area in an enlarged manner according to the amplification parameter.
  • the display content of each display area according to the enlarged parameter correspondingly that is, displaying the operation according to the determined enlargement ratio according to the determined enlargement ratio
  • the display content of other display areas in the vicinity of the area, and the display content thereof is displayed according to the enlargement parameter corresponding to the operation area.
  • the contents include, but are not limited to, objects such as text, pictures, videos, etc.
  • the enlarged display effects include, but are not limited to, effects such as plane enlargement or fisheye enlargement.
  • the terminal screen display adopting the embodiment of the present invention may exhibit a variable zooming effect along with the movement of the finger, and display the plurality of display areas of the terminal screen in a gradual manner according to the area of the gesture operation. Zoom in.
  • the terminal screen is divided into a plurality of display areas in advance, and when the touch operation is received and the screen display enlargement mode is received, the amplification parameters of the display areas of the terminal are determined according to the operation area, and then the terminal screen is displayed.
  • the content is enlarged. Effectively avoiding the enlargement of the existing screen display content, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in a problem that the screen display enlargement effect is poor.
  • the complexity of the display content enlargement operation is reduced, and the screen display content is effectively and reasonably enlarged, thereby improving the screen display enlargement effect.
  • the terminal screen display adopting the embodiment of the present invention may display a variability enlargement effect according to a user gesture (for example, a movement of a finger), and may cause a plurality of display areas of the terminal screen to exhibit a gradation according to different amplification parameters thereof.
  • the zoom effect enhances the user experience.
  • FIG. 3 is a schematic flowchart diagram of a second embodiment of a method for displaying a screen of a terminal according to the present invention. Based on the first embodiment of the terminal screen display method, the step S20 may further include:
  • Step S23 determining, according to the operation area, a heat sensing value and a heat receiving area corresponding to the heat sensing area of each display area of the terminal;
  • Step S24 determining an amplification parameter of each display area of the terminal according to the heat sensing value and the heat receiving area.
  • Providing a terminal screen structure comprising a terminal screen for effect display, located at an uppermost layer of the terminal, and a thermal element layer uniformly distributed under the entire terminal screen for sensing a heat sensing value of each display area of the screen,
  • An insulating layer is disposed under the thermal element layer, which is an insulating material that isolates the internal heat generated by the terminal PCB layout.
  • the heat sensing value and the heat receiving area of the heat sensing area corresponding to each display area of the terminal are determined according to the operation area, when the touch operation is received, That is, the thermal induction value near the operation area is large, and the heating area is large, and the amplification parameter of each display area of the terminal is determined according to the thermal induction value and the heating area. That is, the amplification parameter of each display area of the terminal is determined according to the heat sensing value and the size of the heat receiving area.
  • the larger the product of the heat sensing value and the heated area the larger the amplification parameter, that is, the larger the amplification ratio.
  • the larger the product of the thermal sensing value and the heated area, the smaller the amplification parameter, and the corresponding relationship between the amplification ratio and the thermal sensing value and the thermal sensing area is set according to the user instruction.
  • the thermal sensing value is detected by a thermal sensing device, which may be a thermal sensor or the like for detecting a thermal sensing value.
  • the amplification parameter may be determined only by the thermal induction value or the heated area. The larger the thermal induction value is, the larger the amplification ratio is, or the larger the value of the heating area is, the larger the amplification ratio is.
  • the screen of the terminal has a ratio of 16:9 or 4:3, and the selected basic is an LCD display, and the LCD display is imaged by a liquid crystal dot matrix, and the liquid crystal lattices are divided into preset ratios according to a preset ratio.
  • a plurality of liquid crystal lattice grids for example, when the preset ratio is 16:9, the terminal screen is divided into 16N*9N liquid crystal lattice grids, and when the preset ratio is 4:3, the terminal screen is divided into 4N* 3N liquid crystal lattice grids, where N is a natural number.
  • Determining a liquid crystal lattice grid in which the operation area is located determining an amplification parameter of each liquid crystal lattice grid of the terminal according to the determined liquid crystal lattice grid, and using the determined amplification parameter as an amplification parameter of the corresponding display area.
  • each liquid crystal lattice grid is an independent thermal sensing area, and the thermal sensing device can sense the thermal sensing value of each thermal induction of the screen. According to the thermal induction value reported by the thermal sensing device, it can be divided into several intervals according to actual values, such as (0, 10), (10, 100), (100, 200), (200, 300), and the like.
  • the heated area refers to the surface area of the terminal screen that is heated by the thermal sensing device, and the heated area can be calculated according to the number of liquid crystal lattice grids of the corresponding heated screen.
  • the amplification ratio of the heat-sensing zone is determined according to the heat-sensing value and the heated area, and the calculation result of the amplification ratio is obtained by multiplying the heat-sensing value reported by the heat-sensing device by the heat-receiving area value, specifically, referring to Table 2 Show.
  • the ratio of the display of the terminal screen display is not limited to the ratio shown in Table 2, but may be other ratios, which are set according to user needs and/or terminal display performance and/or detection capability of the thermal sensing device.
  • the heat sensing value detected by the heat sensing device is continuously reduced or increased, and according to the process of zooming in on the screen display content, the magnification ratio of each display area is obtained, and the respective area is pressed.
  • Scale up display When the user moves the heat source and performs the principle or close to the screen, the heat sensing value detected by the heat sensing device is continuously reduced or increased, and according to the process of zooming in on the screen display content, the magnification ratio of each display area is obtained, and the respective area is pressed.
  • the process of displaying the zooming comprises: extracting display content of the enlarged area, and displaying the zooming effect and the terminal screen according to the corresponding zoom ratio.
  • the terminal screen is divided into a plurality of display areas in advance, and when the touch operation is received and the screen display enlargement mode is received, the amplification parameters of the display areas of the terminal are determined according to the operation area, and then the terminal screen is displayed.
  • the content is enlarged. Effectively avoiding the enlargement of the existing screen display content, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in a problem that the screen display enlargement effect is poor. Reduces the complexity of the display content enlargement operation, Effectively and reasonably enlarge the screen display content, which improves the screen display magnification effect.
  • FIG. 4 is a schematic flowchart diagram of a third embodiment of a method for displaying a terminal screen according to the present invention. Based on the second embodiment of the terminal screen display method, after the step S30, the method may further include:
  • Step S40 the receiving screen displays an amplification mode exit instruction
  • step S50 the current screen of the terminal is refreshed, and the display content of the screen is displayed according to a normal scale.
  • the user who uses the terminal replaces, the replaced user does not need the zoom mode, selects the cancel screen display zoom function in the phone settings, issues the screen display zoom mode exit command, and receives the screen zoom mode exit command. , refresh the display screen, the screen returns to normal display, that is, the area without enlarged display, all areas display the same proportion of content.
  • the display content of the screen is displayed according to a normal scale, so that the screen display of the terminal is diversified, and the effect of the screen display is improved.
  • the scaling ratio of each display area of the terminal may be determined according to the foregoing manner, that is, the screen display content is scaled to meet the requirements of different users, and the specific process is similar to the foregoing process, for example, according to the operation area and each The display area determines the zoom ratio of each display area, that is, the farther the zoom ratio is, the more the user can browse the content that needs to be browsed by zooming the display content of the far display area.
  • the specific process will not be described here.
  • the execution bodies of the terminal screen display methods of the first to third embodiments described above may each be a terminal.
  • the terminal screen display method can be implemented by a client screen display program (terminal screen display software, etc.) installed on the terminal, wherein the automatic includes but is not limited to a mobile phone, a pad, a notebook computer, and the like.
  • the embodiment of the invention further provides a terminal screen display device.
  • FIG. 5 is a schematic diagram of functional modules of a preferred embodiment of a terminal screen display device of the present invention.
  • the terminal screen display device includes: a hair extension module 10, a determination module 20, a division module 30, and a display module 40.
  • the receiving module 10 is configured to receive a touch operation based on the terminal
  • the display mode of the display content of the terminal screen for example, including the normal display mode, that is, displaying the display content of the screen according to the normal ratio (general scale, font size, font color, etc.), the screen display enlargement mode, that is, the screen display content is enlarged and displayed. Wait for the display mode.
  • the corresponding application is opened and the display content is browsed.
  • the terminal-based touch operation is used. Trigger the above operation.
  • the touch operation may be a gesture operation, but is not limited to a gesture operation, and may also be a touch operation.
  • the gesture operation includes a touch operation directly on the screen of the terminal, and a gesture empty operation based on the terminal screen.
  • Receiving a touch operation based on the terminal that is, receiving a touch operation based on the terminal screen.
  • the open screen of the terminal setting displays the entrance of the enlarged operation, or the shortcut screen triggers the trigger of the zoom mode of the terminal screen display.
  • the terminal-based touch operation determines a corresponding response command, and responds to the response command to complete a corresponding operation, for example, turning a page, copying the display content, and the like.
  • the terminal when the terminal is not currently in the screen display zoom mode, it is prompted whether the screen display zoom mode needs to be turned on; and receiving response information based on the prompt, and when the received response information is required to be turned on, the screen is turned on.
  • the zoom mode is displayed; when the received response message is not required to be turned on, the normal display mode is entered.
  • the determining module 20 is configured to determine an operation area of the touch operation when the terminal is currently in the screen display enlargement mode, and determine an amplification parameter of each display area of the terminal according to the operation area;
  • the terminal When the terminal is currently in the screen display zoom mode, the terminal needs to be operated based on the touch operation.
  • the screen display content is displayed in an enlarged manner, and an operation area of the touch operation is determined, and an amplification parameter of each display area of the terminal is determined according to the operation area.
  • the determining module 20 is further configured to determine a distance between each display area of the terminal and the operation area, and is further configured to determine an amplification parameter corresponding to each display area of the terminal according to the distance.
  • the terminal When the terminal is currently in the screen display zoom mode, after receiving the touch operation and determining the operation area of the touch operation, determining the distance between each display area of the terminal and the operation area; determining each display of the terminal according to the distance The magnification parameter corresponding to the area. That is, the amplification parameter of each display area of the terminal is determined according to the distance between the display areas of the terminal and the operation area, for example, the amplification parameter of the distance is small, that is, the amplification ratio of the distance is small. In other embodiments of the present invention, the amplification parameter with a long distance may be large, that is, the amplification ratio of the distance is large, and the correspondence relationship between the amplification ratio and the distance is set according to the user instruction.
  • the screen of the terminal has a ratio of 16:9 or 4:3, and the selected one is basically an LCD display, and the LCD display is imaged by a liquid crystal dot matrix;
  • the dividing module 30 is configured to divide the liquid crystal lattice into a plurality of liquid crystal lattice grids according to a preset ratio. For example, when the preset ratio is 16:9, the terminal screen is divided into 16N*9N liquid crystal lattice grids. When the preset ratio is 4:3, the terminal screen is divided into 4N*3N liquid crystal lattice grids, where N is a natural number, and each liquid crystal lattice grid corresponds to one display area.
  • Determining a liquid crystal lattice grid in which the operation area is located determining an amplification parameter of each liquid crystal lattice grid of the terminal according to the determined liquid crystal lattice grid, and using the determined amplification parameter as an amplification parameter of the corresponding display area.
  • the enlarged display of the screen display content displays the display contents of the respective liquid crystal lattice grids in accordance with the enlarged scale of Table 1.
  • the scale of the display of the terminal screen display is not limited to the ratio shown in Table 1, but may be other ratios, and the performance setting may be displayed according to user needs and/or terminals.
  • the display module 40 is configured to display the display content of each display area in an enlarged manner according to the amplification parameter.
  • the display content of other display areas in the vicinity of the area, and the display content thereof is displayed according to the enlargement parameter corresponding to the operation area.
  • the display content includes, but is not limited to, objects such as text, pictures, videos, and the like, and the enlarged display effects include, but are not limited to, effects such as plane enlargement or fisheye enlargement.
  • the terminal screen display adopting the embodiment of the present invention may exhibit a variable zooming effect along with the movement of the finger, and display the plurality of display areas of the terminal screen in a gradual manner according to the area of the gesture operation. Zoom in.
  • the terminal screen is divided into a plurality of display areas in advance, and when the touch operation is received and the screen display enlargement mode is received, the amplification parameters of the display areas of the terminal are determined according to the operation area, and then the terminal screen is displayed.
  • the content is enlarged. Effectively avoiding the enlargement of the existing screen display content, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in a problem that the screen display enlargement effect is poor.
  • the complexity of the display content enlargement operation is reduced, and the screen display content is effectively and reasonably enlarged, thereby improving the screen display enlargement effect.
  • the terminal screen display adopting the embodiment of the present invention may display a variability enlargement effect according to a user gesture (for example, a movement of a finger), and may cause a plurality of display areas of the terminal screen to exhibit a gradation according to different amplification parameters thereof.
  • the zoom effect enhances the user experience.
  • the determining module 20 is further configured to determine, according to the operation area, a heat sensing value and a heat receiving area corresponding to the heat sensing area of each display area of the terminal; and further configured to determine, according to the heat sensing value and the heat receiving area, the terminal The magnification parameter of the display area.
  • Providing a terminal screen structure including a terminal screen, configured as an effect display, at the end
  • the uppermost layer of the end, the layer of the thermal element, evenly distributed under the entire terminal screen, is configured to sense the thermal sensing value of each display area of the screen, and is provided with an insulating layer under the thermal element layer, belonging to the heat insulating material, and isolating the terminal PCB layout. The reason for the internal heat generated.
  • the heat sensing value and the heat receiving area of the heat sensing area corresponding to each display area of the terminal that is, the heat sensing value near the operating area, according to the operating area.
  • the large area and the heated area are large, and the amplification parameters of the display areas of the terminal are determined according to the heat sensing value and the heat receiving area. That is, the amplification parameter of each display area of the terminal is determined according to the heat sensing value and the size of the heat receiving area.
  • the larger the product of the heat sensing value and the heated area the larger the amplification parameter, that is, the larger the amplification ratio.
  • the larger the product of the thermal sensing value and the heated area, the smaller the amplification parameter, and the corresponding relationship between the amplification ratio and the thermal sensing value and the thermal sensing area is set according to the user instruction.
  • the thermal sensing value is detected by a thermal sensing device, which may be a thermal sensor or the like for detecting a thermal sensing value.
  • the amplification parameter may be determined only by the thermal induction value or the heated area. The larger the thermal induction value is, the larger the amplification ratio is, or the larger the value of the heating area is, the larger the amplification ratio is.
  • the screen of the terminal has a ratio of 16:9 or 4:3, and the selected basic is an LCD display, and the LCD display is imaged by a liquid crystal dot matrix, and the dividing module 30 presets the liquid crystal lattices according to presets.
  • the ratio is divided into a plurality of liquid crystal lattice grids. For example, when the preset ratio is 16:9, the terminal screen is divided into 16N*9N liquid crystal lattice grids. When the preset ratio is 4:3, the terminal screen is divided. It is a 4N*3N liquid crystal lattice grid, where N is a natural number.
  • Determining a liquid crystal lattice grid in which the operation area is located determining an amplification parameter of each liquid crystal lattice grid of the terminal according to the determined liquid crystal lattice grid, and using the determined amplification parameter as an amplification parameter of the corresponding display area.
  • each liquid crystal lattice grid is an independent thermal sensing area, and the thermal sensing device can sense the thermal sensing value of each thermal induction of the screen. According to the thermal sensation reported by the thermal sensing device The value should be divided into several intervals according to the actual value, such as (0, 10), (10, 100), (100, 200), (200, 300), and the like.
  • the heated area refers to the surface area of the terminal screen that is heated by the thermal sensing device, and the heated area can be calculated according to the number of liquid crystal lattice grids of the corresponding heated screen.
  • the amplification ratio of the heat-sensing zone is determined according to the heat-sensing value and the heat-receiving area, and the calculation result of the amplification ratio is obtained by multiplying the heat-sensing value reported by the heat-sensing device by the heat-receiving area value, specifically, as shown in Table 2.
  • the ratio of the display of the terminal screen display is not limited to the ratio shown in Table 2, but may be other ratios, which are set according to user needs and/or terminal display performance and/or detection capability of the thermal sensing device.
  • the heat sensing value detected by the heat sensing device is continuously reduced or increased, and according to the process of zooming in on the screen display content, the magnification ratio of each display area is obtained, and the respective area is pressed.
  • Scale up display When the user moves the heat source and performs the principle or close to the screen, the heat sensing value detected by the heat sensing device is continuously reduced or increased, and according to the process of zooming in on the screen display content, the magnification ratio of each display area is obtained, and the respective area is pressed.
  • the process of displaying the zooming comprises: extracting display content of the enlarged area, and displaying the zooming effect and the terminal screen according to the corresponding zoom ratio.
  • the terminal screen is divided into a plurality of display areas in advance, and when the touch operation is received and the screen display enlargement mode is received, the amplification parameters of the display areas of the terminal are determined according to the operation area, and then the terminal screen is displayed.
  • the content is enlarged. Effectively avoiding the enlargement of the existing screen display content, the operation is complicated, and the screen display content cannot be reasonably and effectively enlarged, resulting in a problem that the screen display enlargement effect is poor.
  • the complexity of the display content enlargement operation is reduced, and the screen display content is effectively and reasonably enlarged, thereby improving the screen display enlargement effect.
  • the sending and receiving module 10 is further configured to receive an on-screen display zoom mode exit instruction
  • the display module 40 is further configured to refresh the current screen of the terminal and display the display according to a normal ratio.
  • the display content of the screen is further configured to refresh the current screen of the terminal and display the display according to a normal ratio.
  • the user who uses the terminal replaces, the replaced user does not need the zoom mode, selects the cancel screen display zoom function in the phone settings, issues the screen display zoom mode exit command, and receives the screen zoom mode exit command. , refresh the display screen, the screen returns to normal display, that is, the area without enlarged display, all areas display the same proportion of content.
  • the display content of the screen is displayed according to a normal scale, so that the screen display of the terminal is diversified, and the effect of the screen display is improved.
  • the scaling ratio of each display area of the terminal may be determined according to the foregoing manner, that is, the screen display content is scaled to meet the requirements of different users, and the specific process is similar to the foregoing process, for example, according to the operation area and each The display area determines the zoom ratio of each display area, that is, the farther the zoom ratio is, the more the user can browse the content that needs to be browsed by zooming the display content of the far display area.
  • the specific process will not be described here.
  • Each of the above modules and each unit may be implemented by a central processing unit (CPU, Central Processing Unit), or a microprocessor (MPU, MicroProcessor Unit) or a digital signal processor (DSP) located in a display device of the terminal screen. , Digital Signal Processor), or Field-Programmable Gate Array (FPGA) implementation.
  • CPU Central Processing Unit
  • MPU Microprocessor
  • DSP digital signal processor
  • FPGA Field-Programmable Gate Array
  • the embodiment of the present invention further provides a terminal, where the terminal includes a processor, and the processor is configured to receive a touch operation based on the terminal; and determine an operation of the touch operation when the terminal is currently in the screen display zoom mode And determining, according to the operation area, an amplification parameter of each display area of the terminal, and displaying, according to the amplification parameter, a display content of each display area.
  • the processor of the terminal performs the enlarged display on the screen display content according to the above process.
  • the specific enlarged display process is the same as the process of the foregoing embodiment, and details are not described herein again.
  • the terminal of the embodiment determines the terminal according to the operation area by dividing the terminal screen into a plurality of display areas in advance, when receiving the touch operation, and when in the screen display enlargement mode.
  • the zooming parameters of the display area, and then the display content of the terminal screen is enlarged.
  • the complexity of the display content enlargement operation is reduced, and the screen display content is effectively and reasonably enlarged, thereby improving the screen display enlargement effect.
  • the embodiment of the present invention further provides a memory configured to store the terminal screen display program, the memory is connected to a processor of the terminal, and the processor of the terminal invokes the The terminal screen display program performs the following steps:
  • the display content of each display area is enlarged and displayed according to the enlarged parameter.
  • the terminal call display program stored in the processor call memory may perform the following operations:
  • the terminal call display program stored in the processor call memory may perform the following operations:
  • the terminal call display program stored in the processor call memory may perform the following operations:
  • the terminal call display program stored in the processor call memory may perform the following operations:
  • the terminal call display program stored in the processor call memory may perform the following operations:
  • the receiving screen displays an enlarged mode exit command
  • the current screen of the terminal is refreshed, and the display content of the screen is displayed in a normal scale.
  • the apparatus for tracking the service signaling may also be stored in a computer readable storage medium if it is implemented in the form of a software function module and sold or used as a separate product.
  • the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions.
  • a computer device (which may be a personal computer, server, or network device, etc.) is caused to perform all or part of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • program codes such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • an embodiment of the present invention further provides a computer storage medium, wherein a computer program is stored, and the computer program is used to execute a terminal screen display method according to an embodiment of the present invention.

Abstract

公开了一种终端屏幕显示方法,包括:接收基于终端的触控操作(S10);在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数(S20);按照所述放大参数对应放大显示各个显示区域的显示内容(S30)。还公开了一种终端屏幕显示装置、终端及计算机存储介质。

Description

终端屏幕显示方法、装置及计算机存储介质 技术领域
本发明涉及显示技术领域,尤其涉及终端屏幕显示方法、装置及计算机存储介质。
背景技术
目前,由于某些特殊群体,如老年人或者在视力方面有障碍的人,因为自身视力问题,致使浏览手机屏幕显示的内容比较困难,急需一种方式能够将屏幕显示内容放大,增强这类特殊群体用户对手机屏幕显示内容的可识别性。
为解决上述问题,在现有技术中屏幕显示内容放大的实现过程中,是通过如下几种方法进行屏幕显示效果放大:
(1)通过调节设置中的字体大小,设置超大字号,使得手机整体显示效果放大,缺点是无论其效果是否能满足用户需求,字体显示一律采用预设的大小,而且只对文字有效,对图片等其他对象无效;
(2)通过屏幕放大镜应用,用户手动拖动放大镜的手柄,对需要放大的屏幕显示区域进行放大显示,缺点是放大镜手柄较小,对于视力有障碍的用户群体来说使用难度大,不能够准确对放大镜手柄进行拖拽,进而导致屏幕显示内容放大效果差;
(3)通过手势进行屏幕放大:一种方式是使用两个手指向对角的方向进行伸展,缺点是只适合特定的场景或者特定的手机界面,如照片浏览界面或者视频播放界面,但是对于主屏幕或者一些选项菜单界面,由于手机屏幕对自然放大适配的显示图片大小无法固定,所以通常情况下,无法满足手机所有界面下的显示内容的放大;另外一种方式是通过双击或者三个 手指同时点击屏幕,达到放大的效果,缺点是如果手机放入包中或者口袋中,就非常容易引起误操作,另外也需要频繁点触屏幕,点触位置对应的内容直接放大,点触操作阻挡用户视线;
(4)通过手机与电脑同步的方式,手机通过HDMI接口连接电视或者大屏显示器,达到手机的显示界面与显示器或者电视同步输出,缺点是需要进行一些人为设置,而且如果用户身边没有电视或者适合的大屏显示器,又或者不熟悉设置方式,也无法有效进行使用此种方式放大显示。
综上,现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差。
上述内容仅用于辅助理解本发明的技术方案,并不代表承认上述内容是现有技术。
发明内容
为解决上述技术问题,本发明实施例提供了一种终端屏幕显示方法、装置及计算机存储介质,旨在解决现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。
为实现上述目的,本发明实施例提供的一种终端屏幕显示方法,包括:
接收基于终端的触控操作;
在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
按照所述放大参数对应放大显示各个显示区域的显示内容。
在本发明实施例中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
确定所述终端各个显示区域与所述操作区域的距离;
根据所述距离确定所述终端各个显示区域对应的放大参数。
在本发明实施例中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;
根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
在本发明实施例中,所述根据所述操作区域确定所述终端各个显示区域的放大参数之前,所述方法还包括:
确定所述终端屏幕的液晶点阵;
按照预设比例将所述液晶点阵划分为多个液晶点阵网格,每个液晶点阵网格对应作为一个显示区域。
在本发明实施例中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
确定所述操作区域所在的液晶点阵网格;
根据所确定的液晶点阵网格确定所述终端的液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
在本发明实施例中,按照所述放大参数对应放大显示各个显示区域的显示内容之后,所述方法还包括:
接收屏幕显示放大模式退出指令;
刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
此外,为实现上述目的,本发明实施例还提供一种终端屏幕显示装置,包括:
接发模块,配置为接收基于终端的触控操作;
确定模块,配置为在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大 参数;
显示模块,配置为按照所述放大参数对应放大显示各个显示区域的显示内容。
在本发明实施例中,所述确定模块,还配置为确定所述终端各个显示区域与所述操作区域的距离;还配置为根据所述距离确定所述终端各个显示区域对应的放大参数。
在本发明实施例中,所述确定模块,还配置为根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;还配置为根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
在本发明实施例中,所述终端屏幕的显示装置还包括划分模块,
所述确定模块,还配置为确定所述终端屏幕的液晶点阵;
所述划分模块,配置为按照预设比例将所述液晶点阵划分为多个液晶点阵网格,每个液晶点阵网格对应作为一个显示区域。
在本发明实施例中,所述确定模块,还配置为确定所述操作区域所在的液晶点阵网格;还配置为根据所确定的液晶点阵网格确定所述终端的液晶点阵网格的放大参数作为对应显示区域的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
在本发明实施例中,所述接发模块,还配置为接收屏幕显示放大模式退出指令;
所述显示模块,还配置为刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
此外,为实现上述目的,本发明实施例还提供一种终端,所述终端包括处理器,所述处理器,配置为接收基于终端的触控操作;在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;按照所述放大参数对应放大显 示各个显示区域的显示内容。、
此外,为实现上述目的,本发明实施例还提供了一种计算机存储介质,存储有计算机程序,该计算机程序用于执行上述终端屏幕显示方法。
本发明实施例通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。另外,采用本发明实施例的终端屏幕显示可以随着用户手势(例如手指的移动)呈现出变化式的放大效果,又可使得终端屏幕的多个显示区域根据其各个不同的放大参数呈现出渐变式的放大效果,有效提升了用户体验。
附图说明
图1为本发明终端屏幕显示方法的第一实施例的流程示意图;
图2为本发明所述根据所述终端的各个显示区域及所述操作区域确定所述各个显示区域的放大参数一实施例的流程示意图;
图3为本发明终端屏幕显示方法的第二实施例的流程示意图;
图4为本发明终端屏幕显示方法的第三实施例的流程示意图;
图5为本发明终端屏幕显示装置的较佳实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明实施例的主要解决方案是:接收基于终端的触控操作;在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;按照所述放大参数对应放大显示各个显示区域的显示内容。通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据所述操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。
由于现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差。
基于上述问题,本发明实施例提供一种终端屏幕显示方法。
参照图1,图1为本发明终端屏幕显示方法的第一实施例的流程示意图。
在一实施例中,所述终端屏幕显示方法包括:
步骤S10,接收基于终端的触控操作;
提前设置终端屏幕显示内容的显示模式,例如,包括正常显示模式,即按照正常比例(通用的比例、字体大小、字体颜色等)显示屏幕的显示内容、屏幕显示放大模式,即将屏幕显示内容放大显示等显示模式。用户在需要浏览终端屏幕的显示内容时,打开相应的应用并浏览显示内容,在需要对显示内容需要放大显示时,或者在需要翻页或者需要复制显示内容时,通过基于终端的触控操作来触发上述操作。触控操作可以是手势操作,但不局限于手势操作,还可以是触摸操作。手势操作包括有直接在终端屏幕上的触控操作,以及基于终端屏幕的手势隔空操作。
接收基于终端的触控操作,即接收基于终端屏幕的触控操作。在接收 到基于终端的触控操作后,判断终端当前是否处于屏幕显示放大模式。用户在需要进入屏幕显示放大模式时,通过终端设置中的开启屏幕显示放大的操作的入口,或者通过快捷键触发终端屏幕显示放大模式的触发。在终端当前未处于屏幕显示放大模式时,基于终端的触控操作确定相应的响应指令,并响应所述响应指令,以完成相应的操作,例如,翻页、复制显示内容等。在本发明其他实施例中,在终端当前未处于屏幕显示放大模式时,提示是否需要开启屏幕显示放大模式;并接收基于所述提示的响应信息,在接收的响应信息为需要开启时,开启屏幕显示放大模式;在接收的响应信息为不需要开启时,进入正常显示模式。
步骤S20,在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
在终端当前处于屏幕显示放大模式时,需要基于所述触控操作对终端屏幕显示内容进行放大显示,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数。
具体的,参考图2,所述根据所述操作区域确定所述终端各个显示区域的放大参数的过程可以包括:
步骤S21,确定所述终端各个显示区域与所述操作区域的距离;
步骤S22,根据所述距离确定所述终端各个显示区域对应的放大参数。
在终端当前处于屏幕显示放大模式时,接收触控操作,并确定触控操作的操作区域后,确定所述终端各个显示区域与所述操作区域的距离;根据所述距离确定所述终端各个显示区域对应的放大参数。即根据所述终端各个显示区域与所述操作区域的距离的远近来确定所述终端各个显示区域的放大参数,例如,距离远的放大参数小,即距离远的放大比例小。在本发明其他实施例中,也可以是距离远的放大参数大,即距离远的放大比例大,根据用户指令相应设置放大比例与距离的对应关系。
具体的,所述终端的屏幕有16:9或4:3等比例,选用的基本为LCD显示屏,而LCD显示屏是由液晶点阵成像的,将这些液晶点阵按照预设比例划分为多个液晶点阵网格,例如,预设比例为16:9时,将终端屏幕划分为16N*9N个液晶点阵网格,预设比例为4:3时,将终端屏幕划分为4N*3N个液晶点阵网格,其中N为自然数,每个液晶点阵网格对应一个显示区域。确定所述操作区域所在的液晶点阵网格;根据所确定的液晶点阵网格确定所述终端各个液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
当触摸终端屏幕时,检测当前的触摸位置,确定所述触摸位置所在的液晶点阵网格,根据各个液晶点阵网格与所确定的液晶点阵网格的距离的远近,依次等比进行屏幕显示内容的放大显示,例如,参考表1,按照表1的放大比例显示各个液晶点阵网格的显示内容。
Figure PCTCN2015080300-appb-000001
表1
但终端屏幕显示放大的比例并不仅仅局限于表1中所示的比例,也还可以是其他比例,根据用户需要及/或终端显示性能设置。
步骤S30,按照所述放大参数对应放大显示各个显示区域的显示内容。
在确定所述终端所述各个显示区域对应的放大参数后,按照所述放大参数对应放大显示各个显示区域的显示内容,即按照所确定的放大比例,依次按照所确定的放大比例显示所述操作区域附近的其他显示区域的显示内容,且按照所述操作区域对应的放大参数显示其显示内容。所述显示内 容包括但不限于文字、图片、视频等对象,所述放大显示效果包括但不限于平面放大或者鱼眼放大等效果。在手势操作的实施例中,采用本发明实施例的终端屏幕显示可以随着手指的移动呈现出变化式的放大效果,又根据手势操作的区域将终端屏幕的多个显示区域呈现出渐变式的放大效果。
本实施例通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。另外,采用本发明实施例的终端屏幕显示可以随着用户手势(例如手指的移动)呈现出变化式的放大效果,又可使得终端屏幕的多个显示区域根据其各个不同的放大参数呈现出渐变式的放大效果,有效提升了用户体验。
参照图3,图3为本发明终端屏幕显示方法的第二实施例的流程示意图。基于上述终端屏幕显示方法的第一实施例,所述步骤S20还可以包括:
步骤S23,根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;
步骤S24,根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
提供一种终端屏幕的构造,包括终端屏幕,用于效果显示,位于终端的最上层,热敏元件层,均匀分布在整个终端屏幕之下,用于感应屏幕各个显示区域的热感应值,在热敏元件层下设置有绝缘层,属于隔热材料,隔绝终端PCB布局的原因产生的内部热量。
基于上述的终端屏幕的架构,在接收到触控操作时,根据所述操作区域确定所述终端各个显示区域对应的热感应区域的热感应值和受热面积, 即离操作区域近的热感应值大,且受热面积大,根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。即根据所述热感应值和受热面积的大小来确定所述终端各个显示区域的放大参数,热感应值和受热面积的乘积越大,放大参数越大,即放大比例越大。在本发明其他实施例中,也可以是热感应值和受热面积的乘积越大,放大参数越小,根据用户指令相应设置放大比例与热感应值和热感应面积的对应关系。
所述热感应值通过一热感应装置检测得到,所述热感应装置可以是热感器传感器等检测热感应值的设备。在本发明其他实施例中,也可以是只通过热感应值或受热面积来确定放大参数,热感应值越大,放大比例越大,或受热面积的值越大,放大比例越大。
具体的,所述终端的屏幕有16:9或4:3等比例,选用的基本为LCD显示屏,而LCD显示屏是由液晶点阵成像的,将这些液晶点阵按照预设比例划分为多个液晶点阵网格,例如,预设比例为16:9时,将终端屏幕划分为16N*9N个液晶点阵网格,预设比例为4:3时,将终端屏幕划分为4N*3N个液晶点阵网格,其中N为自然数。确定所述操作区域所在的液晶点阵网格;根据所确定的液晶点阵网格确定所述终端各个液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
当触摸终端屏幕时,检测当前的触摸位置,确定所述触摸位置所在的液晶点阵网格。每个液晶点阵网格都是一个独立的热感应区,通过热感应装置能够感应屏幕各个热感应去的热感应值。根据热感应装置上报的热感应值可以按实际值划分为几个区间,如(0,10)、(10,100)、(100,200)、(200,300)等。所述受热面积,是指终端屏幕通过热感应装置受热的表面积,根据对应的受热屏幕的液晶点阵网格的个数可以计算出受热面积。根据热感应值和受热面积确定热感应区的放大比例,放大比例计算结果是根据热感应装置上报的热感应值乘以受热面积值得到,具体,参考表2所 示。
Figure PCTCN2015080300-appb-000002
表2
但终端屏幕显示放大的比例并不仅仅局限于表2中所示的比例,也还可以是其他比例,根据用户需要及/或终端显示性能及/或热感应装置的检测能力设置。
当用户移动发热源,进行屏幕上下或者左右移动浏览时,重复屏幕显示内容放大的过程,得到各个显示区域的放大比例,对各个区域按比例放大显示。
当用户移动发热源,进行原理或靠近屏幕时,通过热感应装置检测到的热感应值不断减小或者增大,按照屏幕显示内容放大的过程,得到各个显示区域的放大比例,对各个区域按比例放大显示。
具体的,显示放大的过程包括:提取放大区域的显示内容,根据对应的放大比例,显示放大效果与终端屏幕。
本实施例通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度, 有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。
参照图4,图4为本发明终端屏幕显示方法的第三实施例的流程示意图。基于上述终端屏幕显示方法的第二实施例,所述步骤S30之后,还可以包括:
步骤S40,接收屏幕显示放大模式退出指令;
步骤S50,刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
在进入屏幕放大模式后,在使用终端的用户更换,更换后的用户不需要放大模式,在手机设置中选择取消屏幕显示放大功能,发出屏幕显示放大模式退出指令,接收所述屏幕放大模式退出指令,刷新显示屏幕,屏幕恢复正常显示,即无放大显示的区域,所有区域显示的内容的比例相同。
本实施例通过在接收到屏幕显示放大模式退出指令后重新刷新终端屏幕,按照正常比例显示所述屏幕的显示内容,使得终端屏幕显示多样化,提高了屏幕显示的效果。
在本发明其他实施例中,也可以是按照上述方式确定终端各个显示区域的缩放比例,即将屏幕显示内容进行缩放,满足不同用户的需求,具体过程与上述过程类似,例如,根据操作区域与各个显示区域确定各个显示区域的缩放比例,即越远的缩放比例越大,通过缩放远的显示区域的显示内容,使得用户能更好的浏览需要浏览的内容。具体过程在此不再赘述。
上述第一至第三实施例的终端屏幕显示方法的执行主体均可以为终端。该终端屏幕显示方法可以由安装在终端上的客户端屏幕显示程序(终端屏幕显示软件等)实现,其中,该自动包括但不限于手机、pad、笔记本电脑等。
本发明实施例进一步提供一种终端屏幕显示装置。
参照图5,图5为本发明终端屏幕显示装置的较佳实施例的功能模块示意图。
在一实施例中,所述终端屏幕显示装置包括:接发模块10、确定模块20、划分模块30及显示模块40。
所述接发模块10,配置为接收基于终端的触控操作;
提前设置终端屏幕显示内容的显示模式,例如,包括正常显示模式,即按照正常比例(通用的比例、字体大小、字体颜色等)显示屏幕的显示内容、屏幕显示放大模式,即将屏幕显示内容放大显示等显示模式。用户在需要浏览终端屏幕的显示内容时,打开相应的应用并浏览显示内容,在需要对显示内容需要放大显示时,或者在需要翻页或者需要复制显示内容时,通过基于终端的触控操作来触发上述操作。触控操作可以是手势操作,但不局限于手势操作,还可以是触摸操作。手势操作包括有直接在终端屏幕上的触控操作,以及基于终端屏幕的手势隔空操作。
接收基于终端的触控操作,即接收基于终端屏幕的触控操作。在接收到基于终端的触控操作后,判断终端当前是否处于屏幕显示放大模式。用户在需要进入屏幕显示放大模式时,通过终端设置中的开启屏幕显示放大的操作的入口,或者通过快捷键触发终端屏幕显示放大模式的触发。在终端当前未处于屏幕显示放大模式时,基于终端的触控操作确定相应的响应指令,并响应所述响应指令,以完成相应的操作,例如,翻页、复制显示内容等。在本发明其他实施例中,在终端当前未处于屏幕显示放大模式时,提示是否需要开启屏幕显示放大模式;并接收基于所述提示的响应信息,在接收的响应信息为需要开启时,开启屏幕显示放大模式;在接收的响应信息为不需要开启时,进入正常显示模式。
所述确定模块20,配置为在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
在终端当前处于屏幕显示放大模式时,需要基于所述触控操作对终端 屏幕显示内容进行放大显示,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数。
具体的,所述确定模块20,还配置为确定所述终端各个显示区域与所述操作区域的距离;还配置为根据所述距离确定所述终端各个显示区域对应的放大参数。
在终端当前处于屏幕显示放大模式时,接收触控操作,并确定触控操作的操作区域后,确定所述终端各个显示区域与所述操作区域的距离;根据所述距离确定所述终端各个显示区域对应的放大参数。即根据所述终端各个显示区域与所述操作区域的距离的远近来确定所述终端各个显示区域的放大参数,例如,距离远的放大参数小,即距离远的放大比例小。在本发明其他实施例中,也可以是距离远的放大参数大,即距离远的放大比例大,根据用户指令相应设置放大比例与距离的对应关系。
具体的,所述终端的屏幕有16:9或4:3等比例,选用的基本为LCD显示屏,而LCD显示屏是由液晶点阵成像的;
划分模块30,配置为将这些液晶点阵按照预设比例划分为多个液晶点阵网格,例如,预设比例为16:9时,将终端屏幕划分为16N*9N个液晶点阵网格,预设比例为4:3时,将终端屏幕划分为4N*3N个液晶点阵网格,其中N为自然数,每个液晶点阵网格对应一个显示区域。确定所述操作区域所在的液晶点阵网格;根据所确定的液晶点阵网格确定所述终端各个液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
当触摸终端屏幕时,检测当前的触摸位置,确定所述触摸位置所在的液晶点阵网格,根据各个液晶点阵网格与所确定的液晶点阵网格的距离的远近,依次等比进行屏幕显示内容的放大显示,例如,参考表1,按照表1的放大比例显示各个液晶点阵网格的显示内容。
但终端屏幕显示放大的比例并不仅仅局限于表1中所示的比例,也还可以是其他比例,根据用户需要及/或终端显示性能设置。
所述显示模块40,配置为按照所述放大参数对应放大显示各个显示区域的显示内容。
在确定所述终端所述各个显示区域对应的放大参数后,按照所述放大参数对应放大显示各个显示区域的显示内容,即按照所确定的放大比例,依次按照所确定的放大比例显示所述操作区域附近的其他显示区域的显示内容,且按照所述操作区域对应的放大参数显示其显示内容。所述显示内容包括但不限于文字、图片、视频等对象,所述放大显示效果包括但不限于平面放大或者鱼眼放大等效果。在手势操作的实施例中,采用本发明实施例的终端屏幕显示可以随着手指的移动呈现出变化式的放大效果,又根据手势操作的区域将终端屏幕的多个显示区域呈现出渐变式的放大效果。
本实施例通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。另外,采用本发明实施例的终端屏幕显示可以随着用户手势(例如手指的移动)呈现出变化式的放大效果,又可使得终端屏幕的多个显示区域根据其各个不同的放大参数呈现出渐变式的放大效果,有效提升了用户体验。
所述确定模块20,还配置为根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;还配置为根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
提供一种终端屏幕的构造,包括终端屏幕,配置为效果显示,位于终 端的最上层,热敏元件层,均匀分布在整个终端屏幕之下,配置为感应屏幕各个显示区域的热感应值,在热敏元件层下设置有绝缘层,属于隔热材料,隔绝终端PCB布局的原因产生的内部热量。
基于上述的终端屏幕的架构,在接收到触控操作时,根据所述操作区域确定所述终端各个显示区域对应的热感应区域的热感应值和受热面积,即离操作区域近的热感应值大,且受热面积大,根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。即根据所述热感应值和受热面积的大小来确定所述终端各个显示区域的放大参数,热感应值和受热面积的乘积越大,放大参数越大,即放大比例越大。在本发明其他实施例中,也可以是热感应值和受热面积的乘积越大,放大参数越小,根据用户指令相应设置放大比例与热感应值和热感应面积的对应关系。
所述热感应值通过一热感应装置检测得到,所述热感应装置可以是热感器传感器等检测热感应值的设备。在本发明其他实施例中,也可以是只通过热感应值或受热面积来确定放大参数,热感应值越大,放大比例越大,或受热面积的值越大,放大比例越大。
具体的,所述终端的屏幕有16:9或4:3等比例,选用的基本为LCD显示屏,而LCD显示屏是由液晶点阵成像的,划分模块30将这些液晶点阵按照预设比例划分为多个液晶点阵网格,例如,预设比例为16:9时,将终端屏幕划分为16N*9N个液晶点阵网格,预设比例为4:3时,将终端屏幕划分为4N*3N个液晶点阵网格,其中N为自然数。确定所述操作区域所在的液晶点阵网格;根据所确定的液晶点阵网格确定所述终端各个液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
当触摸终端屏幕时,检测当前的触摸位置,确定所述触摸位置所在的液晶点阵网格。每个液晶点阵网格都是一个独立的热感应区,通过热感应装置能够感应屏幕各个热感应去的热感应值。根据热感应装置上报的热感 应值可以按实际值划分为几个区间,如(0,10)、(10,100)、(100,200)、(200,300)等。所述受热面积,是指终端屏幕通过热感应装置受热的表面积,根据对应的受热屏幕的液晶点阵网格的个数可以计算出受热面积。根据热感应值和受热面积确定热感应区的放大比例,放大比例计算结果是根据热感应装置上报的热感应值乘以受热面积值得到,具体,参考表2所示。
但终端屏幕显示放大的比例并不仅仅局限于表2中所示的比例,也还可以是其他比例,根据用户需要及/或终端显示性能及/或热感应装置的检测能力设置。
当用户移动发热源,进行屏幕上下或者左右移动浏览时,重复屏幕显示内容放大的过程,得到各个显示区域的放大比例,对各个区域按比例放大显示。
当用户移动发热源,进行原理或靠近屏幕时,通过热感应装置检测到的热感应值不断减小或者增大,按照屏幕显示内容放大的过程,得到各个显示区域的放大比例,对各个区域按比例放大显示。
具体的,显示放大的过程包括:提取放大区域的显示内容,根据对应的放大比例,显示放大效果与终端屏幕。
本实施例通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各个显示区域的放大参数,进而将终端屏幕显示内容放大。有效避免现有的屏幕显示内容的放大方式,操作复杂,无法合理、有效地对屏幕显示内容进行放大,导致屏幕显示放大效果差的问题。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。
所述接发模块10,还配置为接收屏幕显示放大模式退出指令;
所述显示模块40,还配置为刷新终端当前屏幕,按照正常比例显示所 述屏幕的显示内容。
在进入屏幕放大模式后,在使用终端的用户更换,更换后的用户不需要放大模式,在手机设置中选择取消屏幕显示放大功能,发出屏幕显示放大模式退出指令,接收所述屏幕放大模式退出指令,刷新显示屏幕,屏幕恢复正常显示,即无放大显示的区域,所有区域显示的内容的比例相同。
本实施例通过在接收到屏幕显示放大模式退出指令后重新刷新终端屏幕,按照正常比例显示所述屏幕的显示内容,使得终端屏幕显示多样化,提高了屏幕显示的效果。
在本发明其他实施例中,也可以是按照上述方式确定终端各个显示区域的缩放比例,即将屏幕显示内容进行缩放,满足不同用户的需求,具体过程与上述过程类似,例如,根据操作区域与各个显示区域确定各个显示区域的缩放比例,即越远的缩放比例越大,通过缩放远的显示区域的显示内容,使得用户能更好的浏览需要浏览的内容。具体过程在此不再赘述。
上述各个模块及各个单元在实际应用中,均可由位于终端屏幕的显示装置中的中央处理器(CPU,Central Processing Unit)、或微处理器(MPU,MicroProcessor Unit)、或数字信号处理器(DSP,Digital Signal Processor)、或现场可编程门阵列(FPGA,Field-Programmable Gate Array)实现。
本发明实施例进一步提供一种终端,所述终端包括处理器,所述处理器,配置为接收基于终端的触控操作;在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;按照所述放大参数对应放大显示各个显示区域的显示内容。所述终端的处理器按照上述过程对屏幕显示内容进行放大显示,具体放大显示过程与上述实施例的过程相同,在此不再一一赘述。
本实施例的终端通过提前将终端屏幕划分为多个显示区域,在接收到触控操作时,且处于屏幕显示放大模式时,根据操作区域确定所述终端各 个显示区域的放大参数,进而将终端屏幕显示内容放大。降低了显示内容放大操作的复杂度,有效、合理地对屏幕显示内容进行放大,提高了屏幕显示放大效果。
本发明实施例还进一步提供一种存储器,所述存储器配置为存储所述终端屏幕显示程序,所述存储器与所述终端的处理器连接,所述终端的处理器调用所述存储器存储的所述终端屏幕显示程序执行如下步骤:
接收基于终端的触控操作;
在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
按照所述放大参数对应放大显示各个显示区域的显示内容。
在一个实施例中,处理器调用存储器中存储的所述终端屏幕显示程序可以执行以下操作:
确定所述终端各个显示区域与所述操作区域的距离;
根据所述距离确定所述终端各个显示区域对应的放大参数。
在一个实施例中,处理器调用存储器中存储的所述终端屏幕显示程序可以执行以下操作:
根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;
根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
在一个实施例中,处理器调用存储器中存储的所述终端屏幕显示程序可以执行以下操作:
确定所述终端屏幕的液晶点阵;
按照预设比例将所述液晶点阵划分为多个液晶点阵网格,每个液晶点阵网格对应作为一个显示区域
在一个实施例中,处理器调用存储器中存储的所述终端屏幕显示程序可以执行以下操作:
确定所述操作区域所在的液晶点阵网格;
根据所确定的液晶点阵网格确定所述终端的液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
在一个实施例中,处理器调用存储器中存储的所述终端屏幕显示程序可以执行以下操作:
接收屏幕显示放大模式退出指令;
刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
本发明实施例上述业务信令跟踪的装置如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机、服务器、或者网络设备等)执行本发明各个实施例所述方法的全部或部分。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read Only Memory)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。
相应地,本发明实施例还提供一种计算机存储介质,其中存储有计算机程序,该计算机程序用于执行本发明实施例的终端屏幕显示方法。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (14)

  1. 一种终端屏幕显示方法,该方法包括:
    接收基于终端的触控操作;
    在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
    按照所述放大参数对应放大显示各个显示区域的显示内容。
  2. 如权利要求1所述的终端屏幕显示方法,其中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
    确定所述终端各个显示区域与所述操作区域的距离;
    根据所述距离确定所述终端各个显示区域对应的放大参数。
  3. 如权利要求1所述的终端屏幕显示方法,其中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
    根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;
    根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
  4. 如权利要求1至3任一项所述的终端屏幕显示方法,其中,所述根据所述操作区域确定所述终端各个显示区域的放大参数之前,所述方法还包括:
    确定所述终端屏幕的液晶点阵;
    按照预设比例将所述液晶点阵划分为多个液晶点阵网格,每个液晶点阵网格对应作为一个显示区域。
  5. 如权利要求4所述的终端屏幕显示方法,其中,所述根据所述操作区域确定所述终端各个显示区域的放大参数,包括:
    确定所述操作区域所在的液晶点阵网格;
    根据所确定的液晶点阵网格确定所述终端的液晶点阵网格的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
  6. 如权利要求1至3任一项所述的终端屏幕显示方法,其中,按照所述放大参数对应放大显示各个显示区域的显示内容之后,所述方法还包括:
    接收屏幕显示放大模式退出指令;
    刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
  7. 一种终端屏幕显示装置,该装置包括:
    接发模块,配置为接收基于终端的触控操作;
    确定模块,配置为在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;
    显示模块,配置为按照所述放大参数对应放大显示各个显示区域的显示内容。
  8. 如权利要求7所述的终端屏幕显示装置,其中,所述确定模块,还配置为确定所述终端各个显示区域与所述操作区域的距离;还配置为根据所述距离确定所述终端各个显示区域对应的放大参数。
  9. 如权利要求7所述的终端屏幕显示装置,其中,所述确定模块,还配置为根据所述操作区域确定所述终端各个显示区域对应热感应区域的热感应值和受热面积;还配置为根据所述热感应值和受热面积确定所述终端各个显示区域的放大参数。
  10. 如权利要求7至9任一项所述的终端屏幕显示装置,其中,所述终端屏幕的显示装置还包括划分模块,
    所述确定模块,还配置为确定所述终端屏幕的液晶点阵;
    所述划分模块,配置为按照预设比例将所述液晶点阵划分为多个液晶点阵网格,每个液晶点阵网格对应作为一个显示区域。
  11. 如权利要求10所述的终端屏幕显示装置,其中,所述确定模块,还配置为确定所述操作区域所在的液晶点阵网格;还配置为根据所确定的液晶点阵网格确定所述终端的液晶点阵网格的放大参数作为对应显示区域的放大参数,将所确定的放大参数作为对应显示区域的放大参数。
  12. 如权利要求7至9任一项所述的终端屏幕显示装置,其中,所述接发模块,还配置为接收屏幕显示放大模式退出指令;
    所述显示模块,还配置为刷新终端当前屏幕,按照正常比例显示所述屏幕的显示内容。
  13. 一种终端,所述终端包括处理器,所述处理器,配置为接收基于终端的触控操作;在终端当前处于屏幕显示放大模式时,确定所述触控操作的操作区域,根据所述操作区域确定所述终端各个显示区域的放大参数;按照所述放大参数对应放大显示各个显示区域的显示内容。
  14. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,该计算机可执行指令配置为执行权利要求1-6任一项所述的终端屏幕显示方法。
PCT/CN2015/080300 2015-02-12 2015-05-29 终端屏幕显示方法、装置及计算机存储介质 WO2016127525A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201510073684.2 2015-02-12
CN201510073684.2A CN105988700B (zh) 2015-02-12 2015-02-12 终端屏幕显示方法及装置

Publications (1)

Publication Number Publication Date
WO2016127525A1 true WO2016127525A1 (zh) 2016-08-18

Family

ID=56614176

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2015/080300 WO2016127525A1 (zh) 2015-02-12 2015-05-29 终端屏幕显示方法、装置及计算机存储介质

Country Status (2)

Country Link
CN (1) CN105988700B (zh)
WO (1) WO2016127525A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111158502A (zh) * 2019-12-27 2020-05-15 上海金仕达软件科技有限公司 一种基于快搜键盘的输入方法
CN112005201A (zh) * 2018-03-20 2020-11-27 深圳市柔宇科技股份有限公司 触控感应电路、触控面板、触控装置及触控方法

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106933487A (zh) * 2017-03-15 2017-07-07 深圳市金立通信设备有限公司 一种图像缩放方法及终端
CN107291241A (zh) * 2017-06-30 2017-10-24 珠海市魅族科技有限公司 终端操作方法及装置、计算机装置和计算机可读存储介质

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1874407A (zh) * 2006-04-20 2006-12-06 中国海洋大学 手机屏幕上显示内容进行局部放大的方法
CN102298504A (zh) * 2011-09-27 2011-12-28 汉王科技股份有限公司 一种放大显示方法和系统
JP2014225163A (ja) * 2013-05-16 2014-12-04 株式会社リコー 情報処理装置、情報処理方法およびプログラム
CN104238863A (zh) * 2014-08-29 2014-12-24 广州视睿电子科技有限公司 基于Android的圈选缩放方法和系统

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2875662A1 (fr) * 2004-09-17 2006-03-24 Thomson Licensing Sa Procede de visualisation de document audiovisuels au niveau d'un recepteur, et recepteur apte a les visualiser
CN100375147C (zh) * 2005-09-15 2008-03-12 无敌科技(西安)有限公司 一种电子辞典的显示接口局部放大的方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1874407A (zh) * 2006-04-20 2006-12-06 中国海洋大学 手机屏幕上显示内容进行局部放大的方法
CN102298504A (zh) * 2011-09-27 2011-12-28 汉王科技股份有限公司 一种放大显示方法和系统
JP2014225163A (ja) * 2013-05-16 2014-12-04 株式会社リコー 情報処理装置、情報処理方法およびプログラム
CN104238863A (zh) * 2014-08-29 2014-12-24 广州视睿电子科技有限公司 基于Android的圈选缩放方法和系统

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112005201A (zh) * 2018-03-20 2020-11-27 深圳市柔宇科技股份有限公司 触控感应电路、触控面板、触控装置及触控方法
CN111158502A (zh) * 2019-12-27 2020-05-15 上海金仕达软件科技有限公司 一种基于快搜键盘的输入方法
CN111158502B (zh) * 2019-12-27 2023-07-14 上海金仕达软件科技股份有限公司 一种基于快搜键盘的输入方法

Also Published As

Publication number Publication date
CN105988700A (zh) 2016-10-05
CN105988700B (zh) 2019-12-27

Similar Documents

Publication Publication Date Title
US20220217303A1 (en) Display apparatus and control methods thereof
US9026946B2 (en) Method and apparatus for displaying an image
US9170728B2 (en) Electronic device and page zooming method thereof
TWI616803B (zh) 螢幕畫面的縮放及操作方法、裝置與電腦程式產品
US20130271447A1 (en) Apparatus and method for providing a digital bezel
US20130067400A1 (en) Pinch To Adjust
WO2015025460A1 (en) Using swipe gestures to change displayed applications
TWI494842B (zh) 網頁輔助放大系統和方法
WO2015139408A1 (zh) 一种管理应用程序图标的方法及终端
TW201126406A (en) Device, method & computer program product
TW201443764A (zh) 裝置中控制螢幕的設備及其方法
WO2016095429A1 (zh) 一种移动终端屏幕截图方法及装置
TWI510083B (zh) 電子設備及其圖片縮放方法
WO2015139469A1 (zh) 网页调整方法、装置及电子设备
WO2016127525A1 (zh) 终端屏幕显示方法、装置及计算机存储介质
WO2017059734A1 (zh) 一种图片缩放方法及电子设备
WO2017096854A1 (zh) 智能终端的图片预览方法及装置
CN106897321B (zh) 显示地图数据的方法及装置
TW201232325A (en) Methods of dynamically adjusting display data and display devices utilizing the same
US20120124468A1 (en) Electronic Apparatus Having a Touch-Controlled Interface and Method of Displaying Figures Related to Files within a certain Time Period
CA2782130C (en) Method and apparatus for displaying an image
WO2015078127A1 (zh) 一种文档呈现方法及用户终端
WO2016188199A1 (zh) 图片裁剪方法和装置
WO2022194211A1 (zh) 图像处理方法、装置、电子设备及可读存储介质
TWI607369B (zh) 調整畫面顯示的系統及方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 15881686

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 15881686

Country of ref document: EP

Kind code of ref document: A1