WO2013067776A1 - 一种终端显示界面的控制方法及终端 - Google Patents
一种终端显示界面的控制方法及终端 Download PDFInfo
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- WO2013067776A1 WO2013067776A1 PCT/CN2012/070793 CN2012070793W WO2013067776A1 WO 2013067776 A1 WO2013067776 A1 WO 2013067776A1 CN 2012070793 W CN2012070793 W CN 2012070793W WO 2013067776 A1 WO2013067776 A1 WO 2013067776A1
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- coordinate value
- terminal
- interface
- current interface
- display
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/26—Power supply means, e.g. regulation thereof
- G06F1/32—Means for saving power
- G06F1/3203—Power management, i.e. event-based initiation of a power-saving mode
- G06F1/3206—Monitoring of events, devices or parameters that trigger a change in power modality
- G06F1/3231—Monitoring the presence, absence or movement of users
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction 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
- G06F3/0488—Interaction 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
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/041—Indexing scheme relating to G06F3/041 - G06F3/045
- G06F2203/04101—2.5D-digitiser, i.e. digitiser detecting the X/Y position of the input means, finger or stylus, also when it does not touch, but is proximate to the digitiser's interaction surface and also measures the distance of the input means within a short range in the Z direction, possibly with a separate measurement setup
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D10/00—Energy efficient computing, e.g. low power processors, power management or thermal management
Definitions
- the present invention relates to the field of electronic devices, and in particular, to a method and a terminal for controlling a terminal display interface. Background technique
- the terminal includes various electronic devices provided with a display screen, such as a personal computer, a mobile terminal,
- the invention provides a terminal display interface control method and a terminal, and solves the intelligent control of the terminal display interface.
- the present invention adopts the following technical solutions:
- the invention provides a method for controlling a terminal display interface, and the method comprises:
- the display interface of the terminal display screen is controlled according to the coordinate value of the approaching object.
- the display interface of the display screen of the terminal is controlled according to the coordinate value of the approaching object: adjusting the current interface until the coordinate value of the center of the adjusted display interface is consistent with the coordinate value of the approaching object, or according to The rule is to enlarge and display the area to be adjusted corresponding to the coordinate value of the approaching object in the current interface.
- the adjusting the current interface is: adjusting the current interface by re-invoking a display function or a window function.
- the area to be adjusted corresponding to the coordinate value of the approaching object in the current interface is enlarged and displayed according to a preset rule, and is:
- the area to be adjusted is enlarged and displayed according to a preset magnification ratio.
- the display screen is a touch screen.
- the proximity object includes at least one of the following: a user's finger, a user's eyes, and a pen tip of the touch pen.
- the present invention provides a terminal, the terminal includes a detection module and a control module, wherein the detection module is configured to detect a proximity object around the terminal, and acquire coordinate values of the proximity object mapped on the display screen of the terminal;
- the control module is configured to control a display interface of the display screen of the terminal according to the coordinate value of the approaching object acquired by the detection module.
- control module is specifically configured to adjust the current interface until the coordinate value of the adjusted display interface is consistent with the coordinate value of the approaching object; or the current interface is in close proximity to the preset according to a preset rule.
- the coordinate value of the object corresponding to the area to be adjusted is enlarged
- the display screen is a touch screen; the proximity object includes at least one of the following: a user's finger, a user's eyes, and a pen tip of the touch pen.
- the detection module is a proximity sensor.
- the invention provides a terminal display interface control method and a terminal, detects a proximity object around the terminal, and acquires coordinate values of the proximity object mapped on the terminal display screen, and controls the display interface of the terminal display screen according to the coordinate value of the approaching object,
- the intelligent control of the terminal display interface is convenient for the user to use.
- FIG. 1 is a flowchart of a method for controlling a terminal display interface according to an embodiment of the present invention
- FIG. 3 is a flowchart of a method for controlling a terminal display interface according to another embodiment of the present invention
- a flowchart of a method for controlling a terminal display interface is provided.
- FIG. 4 is a schematic diagram of a video conference terminal according to an embodiment of the present invention. detailed description
- FIG. 1 is a flowchart of a method for controlling a terminal display interface according to an embodiment of the present invention, please refer to FIG. 1:
- Around the terminal refers to the range that the detection module can detect
- the method for controlling the display interface of the terminal display screen according to the coordinate value of the approaching object includes a plurality of methods, such as adjusting the current interface until the center coordinate value of the adjusted display interface is consistent with the coordinate value of the approaching object; or according to a preset rule In the interface, the area to be adjusted corresponding to the coordinate value of the approaching object is enlarged and displayed.
- FIG. 2 is a flowchart of a method for controlling a terminal display interface according to another embodiment of the present invention. Please refer to FIG. 2:
- the terminal is in a power on state, and any interface is displayed on the display screen;
- the terminal control module determines whether the current interface is a full-screen interface, and if so, proceeds to step S28, and if not, proceeds to step S23;
- the center coordinate value of the full-screen interface may be preset and fixed, that is, the coordinate value of the center point of the display screen, and does not need to be acquired; when the current interface is a non-full-screen interface, it needs to be acquired.
- the center coordinate value of the non-full screen interface may be preset and fixed, that is, the coordinate value of the center point of the display screen, and does not need to be acquired; when the current interface is a non-full-screen interface, it needs to be acquired.
- the center coordinate value of the current interface may be obtained by using a display function, a window function, or the like;
- the detection module detects whether there is a proximity object around the terminal, and if so, proceeds to step S25, and if not, proceeds to step S28;
- the detecting module acquires a coordinate value of the approaching object, and sends the coordinate value to the control module.
- control module determines whether the central coordinate value of the current interface and the coordinate value of the approaching object are consistent, if not, then proceeds to step S27, if they are consistent, then proceeds to step S28;
- the control module adjusts the current interface until the central coordinate value of the adjusted display interface is close to or completely consistent with the coordinate value of the approaching object.
- control module can adjust the current interface by recalling the display function, drawing a window function, and the like.
- the manner of controlling the display interface of the display screen of the terminal according to the coordinate value of the approaching object is to adjust the current interface until the central coordinate value of the adjusted display interface is close to or completely consistent with the coordinate value of the approaching object, and the adjusted After the center coordinate value of the display interface is close to or completely coincident with the coordinate value of the approaching object, if the display screen is a touch screen, the proximity object is a user's finger or The pen is the tip of the touch pen, and the effects achieved include: placing the tip of the user's finger or the touch pen on the center of the current interface, and the user can easily click on the interface without moving the finger or the touch pen over a wide range.
- the current interface can follow the move. If the approaching object is the user's eyes, the current interface can follow the user's eyes to move, which is convenient for the user to operate, and improves the user experience.
- FIG. 3 is a flowchart of a method for controlling a terminal display interface according to another embodiment of the present invention. Please refer to FIG. 3:
- the terminal is in a power on state, and any interface is displayed on the display screen;
- the detection module detects whether there is a proximity object around the terminal, and if so, proceeds to step S33, and if not, proceeds to step S36;
- the detecting module acquires coordinate values of the approaching object and sends the coordinate values to the control module.
- the control module determines, according to the coordinate value of the approaching object and a preset offset, an area to be adjusted corresponding to a coordinate value of the proximity object in the current interface.
- the control module enlarges and displays the area to be adjusted according to a preset amplification ratio. S36, the process ends.
- step S34 it is determined that the process of the region to be adjusted corresponding to the coordinate value of the approaching object in the current interface may be: assuming that the coordinate value of the approaching object is (xl, yl), and the preset offsets are a and b, wherein a is the offset on the X axis relative to xl, b is the offset on the y axis relative to yl, the size of a and b can be adjusted according to the actual situation; confirm the current interface according to the preset offset
- the area to be adjusted corresponding to the coordinate value of the approaching object is a square area, and the width of the square area is from (xl+a, yl) to (xl-a, yl), and the length is (xl, yl+b) ) to ( xl , yl-b ).
- step S35 the square area is enlarged and displayed according to a preset magnification ratio d.
- step S34 it is determined that the process to be adjusted corresponding to the coordinate value of the approaching object in the current interface may be: assuming that the coordinate value of the approaching object is (xl, yl), and the preset offset is C; Set the offset to confirm that the current interface corresponds to the coordinate value of the approaching object.
- the adjustment area is a circular area bounded by a circle with a radius of c as the center of (xl, yl).
- step S35 the circular area is enlarged and displayed according to a preset magnification ratio d.
- the manner of controlling the display interface of the display screen of the terminal according to the coordinate value of the approaching object is to enlarge the display of the to-be-adjusted area corresponding to the coordinate value of the approaching object in the current interface according to a preset rule, such as a display screen.
- a preset rule such as a display screen.
- the proximity object is the user's finger, the user's eyes or the tip of the touch pen, etc.
- the area to be adjusted corresponding to the coordinate value of the finger of the household finger, the eye or the touch pen of the current interface is enlarged and displayed, which is convenient for the user.
- a preset rule such as a display screen.
- the present invention also includes a terminal, the device comprising a detection module and a control module, wherein the detection module is configured to detect a proximity object around the terminal, and acquire coordinate values of the proximity object mapped on the terminal display screen;
- control module configured to control a display interface of the terminal display screen according to the coordinate value of the approaching object acquired by the detection module.
- FIG. 4 is a schematic diagram of a video conference terminal according to an embodiment of the present invention.
- a terminal includes a display screen 41, a detection module 42 and a control module 43.
- the detection module 42 is configured to detect An approaching object around the terminal, and acquiring coordinate values of the proximity object mapped on the terminal display screen 41;
- the control module 43 is specifically configured to adjust the current interface until the coordinate value of the adjusted display interface is consistent with the coordinate value of the approaching object; or corresponding to the coordinate value of the approaching object in the current interface according to a preset rule.
- the area to be adjusted is enlarged and displayed.
- control module 43 is configured to adjust the current interface until the center coordinate value of the adjusted display interface is consistent with the coordinate value of the approaching object, specifically for:
- Determining whether the current interface is a full-screen interface if not, acquiring a central coordinate value of the current interface; determining whether the central coordinate value of the current interface is consistent with the coordinate value of the approaching object, if If they are inconsistent, the current interface is adjusted until the center coordinate value of the adjusted display interface coincides with the coordinate value of the approaching object.
- the control module 43 is configured to: in the process of enlarging and displaying the to-be-adjusted area corresponding to the coordinate value of the approaching object in the current interface according to a preset rule, specifically for:
- the area to be adjusted is enlarged and displayed according to a preset magnification ratio.
- the display screen 41 is a touch screen
- the proximity object includes one or more of a user's finger, a user's eyes, and a pen tip of the touch pen.
- the detection module is a proximity sensor.
- the detecting module may be a proximity sensor, as long as the approaching object is within the range that the proximity sensor can detect, whether it is a proximity object approaching or away from the terminal, or a stationary approaching object, the proximity sensor can Detecting, and obtaining the coordinate value of the proximity object mapped on the terminal display screen; the coordinate value of the approaching object and the central coordinate value of the current interface refer to the coordinate value in the same coordinate system, preferably in the same two-dimensional coordinate system Coordinate value.
- the terminal can be any electronic device with a display, such as a personal computer, a mobile terminal or an MP3 player. It is to be understood that the specific embodiments of the invention are limited only by the description. It is to be understood by those skilled in the art that the present invention may be practiced without departing from the spirit and scope of the invention.
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Abstract
本发明公开了一种终端显示界面的控制方法,检测终端周围的接近物体,并获取接近物体映射在终端显示屏上的坐标值,根据接近物体的坐标值控制终端显示屏的显示界面;本发明同时还公开了一种终端,通过本发明的方案,能够实现对终端显示界面的智能化控制,方便用户的使用。
Description
一种终端显示界面的控制方法及终端 技术领域
本发明涉及电子设备领域, 尤其涉及一种终端显示界面的控制方法及 终端。 背景技术
终端包括各种设置有显示屏的电子设备, 如个人计算机、 移动终端、
MP3播放器等。 随着电子技术的发展, 各种新功能、 新技术不断地应用到 这类终端中, 使得终端的功能越来越强大, 但是对于终端的显示界面, 仍 旧没有实现智能化的控制。 发明内容
本发明提供一种终端显示界面的控制方法及终端, 解决对终端显示界 面的智能化控制。
为解决上述技术问题, 本发明采用以下技术方案:
本发明提供的一种终端显示界面的控制方法, 该方法包括:
检测终端周围的接近物体, 并获取所述接近物体映射在终端显示屏上 的坐标值;
根据所述接近物体的坐标值控制终端显示屏的显示界面。
上述方案中, 所述根据所述接近物体的坐标值控制终端显示屏的显示 界面为: 调整当前界面, 直至调整后的显示界面的中心坐标值与所述接近 物体的坐标值一致, 或者按照预设规则将当前界面中, 与所述接近物体的 坐标值相对应的待调整区域进行放大显示。
上述方案中, 所述调整当前界面, 直至调整后的显示界面的中心坐标
值与所述接近物体的坐标值一致, 为:
判断当前界面是否为全屏界面, 在不为全屏界面时, 获取当前界面的 中心坐标值;
判断所述当前界面的中心坐标值与所述接近物体的坐标值是否一致, 在不一致时, 调整所述当前界面, 直至调整后的显示界面的中心坐标值与 所述接近物体的坐标值一致。
上述方案中, 所述调整所述当前界面为: 通过重新调用显示函数或画 窗口函数的方式调整所述当前界面。
上述方案中, 所述按照预设规则将当前界面中, 与所述接近物体的坐 标值相对应的待调整区域进行放大显示, 为:
根据所述接近物体的坐标值和预设的偏移量确定当前界面中, 与所述 接近物体的坐标值相对应的待调整区域;
根据预设的放大比例对所述待调整区域进行放大显示。
上述方案中, 所述显示屏为触摸屏。
上述方案中, 所述接近物体至少包括以下一种: 用户手指、 用户眼睛、 触摸笔的笔头。
本发明提供的一种终端, 该终端包括检测模块和控制模块, 其中, 所述检测模块, 用于检测终端周围的接近物体, 并获取所述接近物体 映射在终端显示屏上的坐标值;
所述控制模块, 用于根据所述检测模块获取的所述接近物体的坐标值 控制终端显示屏的显示界面。
上述方案中, 所述控制模块, 具体用于调整当前界面, 直至调整后的 显示界面的中心坐标值与所述接近物体的坐标值一致; 或者按照预设规则 将当前界面中, 与所述接近物体的坐标值相对应的待调整区域进行放大显
上述方案中, 所述显示屏为触摸屏; 所述接近物体至少包括以下一种: 用户手指、 用户眼睛、 触摸笔的笔头。
上述方案中, 所述检测模块为接近传感器。
本发明提供一种终端显示界面的控制方法及终端, 检测终端周围的接 近物体, 并获取接近物体映射在终端显示屏上的坐标值, 根据接近物体的 坐标值控制终端显示屏的显示界面, 实现了对终端显示界面的智能化控制, 方便用户的使用。 附图说明
图 1为本发明实施例实现一种终端显示界面的控制方法的流程图; 图 为本发明另一实施例实现一种终端显示界面的控制方法的流程图; 图 3为本发明另一实施例实现一种终端显示界面的控制方法的流程图; 图 4为本发明实施例实现一种视频会议终端的框架图。 具体实施方式
图 1 为本发明实施例实现一种终端显示界面的控制方法的流程图, 请 参考图 1:
511、 检测终端周围的接近物体, 并获取该接近物体映射在终端显示屏 上的坐标值;
512、 根据该接近物体的坐标值控制终端显示屏的显示界面。
终端周围指的是检测模块可以检测到的范围;
根据接近物体的坐标值控制终端显示屏的显示界面的方法包括多种, 如调整当前界面, 直至调整后的显示界面的中心坐标值与该接近物体的坐 标值一致; 或者按照预设规则将当前界面中, 与该接近物体的坐标值相对 应的待调整区域进行放大显示等。
下面通过具体实施方式结合附图对本发明作进一步详细说明。
图 2为本发明另一实施例实现一种终端显示界面的控制方法的流程图, 请参考图 2:
521、 终端处于开机状态, 显示屏上显示任意界面;
522、 终端控制模块判断当前界面是否为全屏界面, 若是, 则进入步驟 S28, 若否, 则进入步驟 S23;
具体的, 当前界面为全屏界面时, 全屏界面的中心坐标值可以是预先 设定并固定的, 也就是显示屏的中心点的坐标值, 不需要获取; 当前界面 为非全屏界面时, 需要获取非全屏界面的中心坐标值;
523、 获取当前界面的中心坐标值;
具体的, 可通过显示函数、 画窗口函数等实现方法获取当前界面的中 心坐标值;
524、检测模块检测终端周围是否有接近物体, 若是, 则进入步驟 S25 , 若否, 则进入步驟 S28;
525、 检测模块获取接近物体的坐标值, 发送给控制模块;
526、控制模块判断当前界面的中心坐标值与接近物体的坐标值是否一 致, 若不一致, 则进入步驟 S27, 若一致, 则进入步驟 S28;
527、 控制模块调整当前界面, 直至调整后的显示界面的中心坐标值与 该接近物体的坐标值接近或完全一致。
具体的, 控制模块可以通过重新调用显示函数、 画窗口函数等方法, 调整当前界面。
528、 流程结束。
本实施例中, 根据接近物体的坐标值控制终端显示屏的显示界面的方 式是调整当前界面, 直至调整后的显示界面的中心坐标值与该接近物体的 坐标值接近或完全一致, 调整后的显示界面的中心坐标值与该接近物体的 坐标值接近或完全一致之后, 如显示屏是触摸屏, 接近物体是用户手指或
者是触摸笔的笔头等, 所达到的效果包括: 将用户手指或者触摸笔的笔头 与当前界面的中心点对上, 用户不用大范围地移动手指或触摸笔, 就可以 轻易点击到界面上的选项; 当用户手指或者触摸笔的笔头移动时, 当前界 面可以跟随着移动。 如接近物体是用户眼睛, 则当前界面可以跟随着用户 眼睛移动, 方便用户操作的同时, 提升了用户体验度。
图 3为本发明另一实施例实现一种终端显示界面的控制方法的流程图, 请参考图 3:
531、 终端处于开机状态, 显示屏上显示任意界面;
532、检测模块检测终端周围是否有接近物体, 若是, 则进入步驟 S33 , 若否, 则进入步驟 S36;
533、 检测模块获取接近物体的坐标值, 发送给控制模块;
534、控制模块根据该接近物体的坐标值和预设的偏移量确定当前界面 中, 与该接近物体的坐标值相对应的待调整区域;
535、 控制模块根据预设的放大比例对该待调整区域进行放大显示。 S36、 流程结束。
步驟 S34 中确定当前界面中, 与该接近物体的坐标值相对应的待调整 区域过程可以是: 假设接近物体的坐标值是(xl , yl ), 预设的偏移量为 a 和 b, 其中 a为在 X轴上相对于 xl的偏移量, b为在 y轴上相对于 yl的偏 移量, a和 b的大小可根据实际情况进行调整; 根据预设的偏移量确认当前 界面中, 与该接近物体的坐标值相对应的待调整区域为一个方形区域, 该 方形区域的宽由 (xl+a, yl )到 ( xl-a, yl ), 长由 (xl , yl+b )到 ( xl , yl-b )。 步驟 S35中将该方形区域按照预设的放大比例 d进行放大显示。
步驟 S34 中确定当前界面中, 与该接近物体的坐标值相对应的待调整 区域过程还可以是: 假设接近物体的坐标值是(xl , yl ), 预设的偏移量为 C; 根据预设的偏移量确认当前界面中, 与该接近物体的坐标值相对应的待
调整区域为一个圆形区域, 该圆形区域是以 (xl , yl ) 为圆心, 以 c 为半 径的圆所覆盖的范围。 步驟 S35中将该圆形区域按照预设的放大比例 d进 行放大显示。
本实施例中, 根据接近物体的坐标值控制终端显示屏的显示界面的方 式是按照预设规则将当前界面中, 与该接近物体的坐标值相对应的待调整 区域进行放大显示, 如显示屏是触摸屏, 接近物体是用户手指、 用户眼睛 或者是触摸笔的笔头等, 将当前界面中, 与户手指、 眼睛或者是触摸笔的 笔头的坐标值相对应的待调整区域进行放大显示, 方便用户清楚地观看到 想要观看的内容。
本发明还包括一种终端, 该装置包括检测模块和控制模块, 其中, 检测模块, 用于检测终端周围的接近物体, 并获取接近物体映射在终 端显示屏上的坐标值;
控制模块, 用于根据检测模块获取的接近物体的坐标值控制终端显示 屏的显示界面。
图 4为本发明实施例实现一种视频会议终端的框架图, 请参考图 4: 一种终端, 该终端包括显示屏 41、 检测模块 42和控制模块 43 , 其中, 检测模块 42, 用于检测终端周围的接近物体, 并获取接近物体映射在 终端显示屏 41上的坐标值;
控制模块 43 , 具体用于调整当前界面, 直至调整后的显示界面的中心 坐标值与所述接近物体的坐标值一致; 或者按照预设规则将当前界面中, 与该接近物体的坐标值相对应的待调整区域进行放大显示。
进一步地, 控制模块 43用于调整当前界面, 直至调整后的显示界面的 中心坐标值与所述接近物体的坐标值一致的过程中, 具体用于:
判断当前界面是否为全屏界面, 若否, 则获取当前界面的中心坐标值; 判断该当前界面的中心坐标值与所述接近物体的坐标值是否一致, 若
不一致, 则调整该当前界面, 直至调整后的显示界面的中心坐标值与所述 接近物体的坐标值一致。
控制模块 43用于按照预设规则将当前界面中, 与该接近物体的坐标值 相对应的待调整区域进行放大显示的过程中, 具体用于:
根据该接近物体的坐标值和预设的偏移量确定当前界面中, 与该接近 物体的坐标值相对应的待调整区域;
根据预设的放大比例对该待调整区域进行放大显示。
进一步地, 显示屏 41为触摸屏;
进一步地, 接近物体包括用户手指、 用户眼睛、 触摸笔的笔头中的一 种或多种。
进一步地, 检测模块为接近传感器。
以上各实施例中, 优选的, 检测模块可以是接近传感器, 只要接近物 体在接近传感器能够检测的范围之内, 不论是正在靠近或远离终端的接近 物体, 还是静止的接近物体, 接近传感器都可以检测到, 并获取接近物体 映射在终端显示屏上的坐标值; 接近物体的坐标值与当前界面的中心坐标 值是指同一坐标系中的坐标值, 优选的为同一二维坐标系中的坐标值。 终 端可以是各种设置有显示屏的电子设备, 如个人计算机、 移动终端或 MP3 播放器等。 能认定本发明的具体实施只局限于这些说明。 对于本发明所属技术领域的 普通技术人员来说, 在不脱离本发明构思的前提下, 还可以做出若干简单 推演或替换, 都应当视为属于本发明的保护范围。
Claims
1、 一种终端显示界面的控制方法, 其特征在于, 该方法包括: 检测终端周围的接近物体, 并获取所述接近物体映射在终端显示屏上 的坐标值;
根据所述接近物体的坐标值控制终端显示屏的显示界面。
2、 如权利要求 1所述的方法, 其特征在于, 所述根据所述接近物体的 坐标值控制终端显示屏的显示界面为: 调整当前界面, 直至调整后的显示 界面的中心坐标值与所述接近物体的坐标值一致; 或者按照预设规则将当 前界面中, 与所述接近物体的坐标值相对应的待调整区域进行放大显示。
3、 如权利要求 2所述的方法, 其特征在于, 所述调整当前界面, 直至 调整后的显示界面的中心坐标值与所述接近物体的坐标值一致, 为:
判断当前界面是否为全屏界面, 在不为全屏界面时, 获取当前界面的 中心坐标值;
判断所述当前界面的中心坐标值与所述接近物体的坐标值是否一致, 在不一致时, 调整所述当前界面, 直至调整后的显示界面的中心坐标值与 所述接近物体的坐标值一致。
4、如权利要求 3所述的方法, 其特征在于, 所述调整所述当前界面为: 通过重新调用显示函数或画窗口函数的方式调整所述当前界面。
5、 如权利要求 2所述的方法, 其特征在于, 所述按照预设规则将当前 界面中, 与所述接近物体的坐标值相对应的待调整区域进行放大显示, 为: 根据所述接近物体的坐标值和预设的偏移量确定当前界面中, 与所述 接近物体的坐标值相对应的待调整区域;
根据预设的放大比例对所述待调整区域进行放大显示。
6、 如权利要求 1至 5任一项所述的方法, 其特征在于, 所述显示屏为 触摸屏。
7、 如权利要求 6所述的方法, 其特征在于, 所述接近物体至少包括以 下一种: 用户手指、 用户眼睛、 触摸笔的笔头。
8、 一种终端, 其特征在于, 该终端包括检测模块和控制模块, 其中, 所述检测模块, 用于检测终端周围的接近物体, 并获取所述接近物体 映射在终端显示屏上的坐标值;
所述控制模块, 用于根据所述检测模块获取的所述接近物体的坐标值 控制终端显示屏的显示界面。
9、 如权利要求 8所述的终端, 其特征在于, 所述控制模块, 具体用于 调整当前界面, 直至调整后的显示界面的中心坐标值与所述接近物体的坐 标值一致; 或者按照预设规则将当前界面中, 与所述接近物体的坐标值相 对应的待调整区域进行放大显示。
10、 如权利要求 8所述的终端, 其特征在于, 所述显示屏为触摸屏; 所述接近物体至少包括以下一种: 用户手指、 用户眼睛、 触摸笔的笔头。
11、 如权利要求 8至 10任一项所述的终端, 其特征在于, 所述检测模 块为接近传感器。
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