CN109308866A - 一种电子装置 - Google Patents
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- CN109308866A CN109308866A CN201811255016.1A CN201811255016A CN109308866A CN 109308866 A CN109308866 A CN 109308866A CN 201811255016 A CN201811255016 A CN 201811255016A CN 109308866 A CN109308866 A CN 109308866A
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- G09G3/20—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
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Abstract
本发明提供一种电子装置,该电子装置包括:显示屏,其包括像素阵列,其包括复用像素阵列,所述复用像素阵列包括多个复用子像素;所述显示屏输入有驱动信号;摄像头,设于所述显示屏的后方,且与所述复用子像素的位置对应;其中所述显示屏还包括控制单元,所述控制单元用于在接收到拍照指令时,控制所述复用子像素不接收驱动信号;以及在未接收到拍照指令时,控制所述复用子像素接收驱动信号。本发明的电子装置,能够增大显示区域的面积。
Description
【技术领域】
本发明涉及显示技术领域,特别是涉及一种电子装置。
【背景技术】
随着电子装置比如手机的发展,用户对于屏占比的要求越来越高。为实现较高的屏占比,目前出现异性切割技术,使显示屏10仅保留摄像头和听筒部分的非显示区域101。具体地,如图1所示,在显示屏10上开设有摄像头孔11和听筒孔12,以安装摄像头和听筒,而其余部分作为显示区域102使用。
但是,由于摄像头孔11和听筒孔12所在的区域101无法用于显示画面,从而导致显示区域的面积较小。
因此,有必要提供一种电子装置,以解决现有技术所存在的问题。
【发明内容】
本发明的目的在于提供一种电子装置,能够增大显示区域的面积,提高屏占比。
为解决上述技术问题,本发明提供一种电子装置,其包括:
显示屏,其包括像素阵列,其包括复用像素阵列,所述复用像素阵列包括多个复用子像素;所述显示屏输入有驱动信号;
摄像头,设于所述显示屏的后方,且与所述复用子像素的位置对应;
其中所述显示屏还包括控制单元,所述控制单元用于在接收到拍照指令时,控制所述复用子像素不接收驱动信号;以及在未接收到拍照指令时,控制所述复用子像素接收驱动信号。
在本发明的电子装置中,所述显示屏包括栅驱动芯片,所述复用子像素通过所述控制单元与所述栅驱动芯片电性连接。
在本发明的电子装置中,所述控制单元包括多个控制薄膜晶体管,每行复用子像素对应一所述控制薄膜晶体管;其中所述显示屏还包括多条扫描线;
所述控制薄膜晶体管的栅极输入控制信号,所述控制薄膜晶体管的源极与所述栅驱动芯片连接;其中所述控制信号根据所述拍照指令生成;
所述复用子像素包括驱动薄膜晶体管,所述驱动薄膜晶体管的栅极与对应的扫描线的一端连接,该扫描线的另一端与所述控制薄膜晶体管的漏极连接。
在本发明的电子装置中,当接收到所述拍照指令时,所述控制薄膜晶体管断开;
当未接收到所述拍照指令时,所述控制薄膜晶体管闭合。
在本发明的电子装置中,所述控制薄膜晶体管为P型薄膜晶体管,当接收到所述拍照指令时,所述控制信号为高电平;当未接收到所述拍照指令时,所述控制信号为低电平。
在本发明的电子装置中,所述控制薄膜晶体管为N型薄膜晶体管,当接收到所述拍照指令时,所述控制信号为低电平;当未接收到所述拍照指令时,所述控制信号为高电平。
在本发明的电子装置中,所述显示屏还包括多条数据线;所述驱动薄膜晶体管的源极与所述数据线连接。
在本发明的电子装置中,所述像素阵列还包括显示像素阵列,所述显示像素阵列包括多个显示子像素,所述显示子像素用于在所述显示屏工作时,接收驱动信号。
在本发明的电子装置中,所述电子装置还包括听筒和外壳,所述听筒设置在所述外壳的侧壁上。
在本发明的电子装置中,所述外壳的侧壁上设置有孔,所述孔的位置与所述听筒的位置对应。
本发明的电子装置,通过将前置摄像头设置在显示屏的后方,且与显示屏中的部分子像素的位置对应,减小了非显示区域的面积,从而增大了显示区域的面积,提高了屏占比。
【附图说明】
图1为现有显示屏的结构示意图;
图2为本发明实施例一的电子装置的结构示意图;
图3为图2中的A区域的放大结构示意图;
图4为本发明的复用像素阵列的电路图;
图5为本发明的复用像素阵列的具体电路图;
图6为本发明实施例二的电子装置的结构示意图;
图7为图6中外壳的结构示意图。
【具体实施方式】
以下各实施例的说明是参考附加的图式,用以例示本发明可用以实施的特定实施例。本发明所提到的方向用语,例如「上」、「下」、「前」、「后」、「左」、「右」、「内」、「外」、「侧面」等,仅是参考附加图式的方向。因此,使用的方向用语是用以说明及理解本发明,而非用以限制本发明。在图中,结构相似的单元是以相同标号表示。
请参照图2至7,图2为本发明实施例一的电子装置的结构示意图。
如图2所示,本发明的电子装置包括显示屏20和摄像头31、外壳40以及听筒(图中未示出)。
所述显示屏20输入有驱动信号,以使所述显示屏20显示画面。该驱动信号包括扫描信号和数据信号。结合图4,所述显示屏20还包括栅驱动芯片24和源驱动芯片25,以及多条扫描线26和多条数据线27。栅驱动芯片24通过扫描线26提供扫描信号,源驱动芯片25通过数据线27提供数据信号。
显示屏20包括像素阵列,也即R、G、B子像素组成的阵列,像素阵列包括显示像素阵列(A区域以外的像素阵列)和复用像素阵列22。
所述显示像素阵列包括多个显示子像素(A区域以外的子像素),所述显示子像素用于在显示屏工作时,接收驱动信号。也即所述显示子像素为正常子像素,在显示屏工作时,显示画面。
结合图3和5,所述复用像素阵列22包括多个复用子像素221。在一实施方式中,所述复用子像素221包括驱动薄膜晶体管T1。所述驱动薄膜晶体管T1的源极与所述数据线27连接。具体所述驱动薄膜晶体管T1的源极与数据线27的一端连接,数据线27的另一端与源驱动芯片25连接。所述驱动薄膜晶体管T1的漏极分别与液晶电容C1和存储电容C2连接。
图3中仅以摄像头与6个子像素对应为例,但是并不能对本发明构成限定,本发明的摄像头可以与2个或者2个以上的子像素的位置对应。
如图2所示,摄像头31设于所述显示屏20的后方,且与所述复用子像素221的位置对应。所述摄像头31为前置摄像头。所述摄像头31朝向显示屏。
如图4所示,所述显示屏20还包括控制单元23,所述控制单元23用于在接收到拍照指令时,控制所述复用子像素221不接收驱动信号;以及在未接收到拍照指令时,控制所述复用子像素221接收驱动信号。也即,当使用摄像头31时,所述复用子像素221不显示画面,当不使用摄像头31时,所述复用子像素221显示画面。
所述复用子像素221通过所述控制单元23与所述栅驱动芯片24电性连接。
如图4和5所示,所述控制单元23包括多个控制薄膜晶体管T2,每行复用子像素221对应一所述控制薄膜晶体管T2。所述控制薄膜晶体管T2的栅极输入控制信号S,所述控制薄膜晶体管T2的源极与所述栅驱动芯片24连接;其中所述控制信号S根据所述拍照指令生成。
所述驱动薄膜晶体管T1的栅极与对应的扫描线26的一端连接,该扫描线26的另一端与所述控制薄膜晶体管T2的漏极连接。
当接收到所述拍照指令时,所述控制薄膜晶体管T2断开;此时复用子像素22的驱动薄膜晶体管T1的栅极无法接收扫描信号,使得驱动薄膜晶体管T1断开,进而驱动薄膜晶体管T1的源极无法接收数据信号。
当未接收到所述拍照指令时,所述控制薄膜晶体管T2闭合。此时复用子像素22的驱动薄膜晶体管T1的栅极可以接收扫描信号,因而当扫描信号为高电平时,使得驱动薄膜晶体管T1的源极可以接收数据信号。
在一实施方式中,所述控制薄膜晶体管T2为P型薄膜晶体管,当接收到所述拍照指令时,所述控制信号S为高电平;当未接收到所述拍照指令时,所述控制信号S为低电平。
在另一实施方式中,所述控制薄膜晶体管T2为N型薄膜晶体管,当接收到所述拍照指令时,所述控制信号S为低电平;当未接收到所述拍照指令时,所述控制信号S为高电平。
显示屏20上设置有孔21,所述听筒的位置与孔21的位置对应。
所述外壳40包覆在所述显示屏20的周缘及背面。
显示像素阵列中的像素的具体驱动方式与现有的驱动方式相同。
本实施例的电子装置,通过将前置摄像头设置在显示屏的后方,且与显示屏中的部分子像素的位置对应,从而减小了非显示区域的面积,增大了显示区域的面积,提高了屏占比。
如图6和7所示,在另一实施例中,听筒设置在电子装置的侧壁上。本实施例的电子装置与上一实施例的区别在于,本实施例的电子装置的听筒设置在所述外壳40的侧壁41上。
所述外壳40包括位于显示屏20四周的侧壁41以及设置在显示屏20背面的本体部42。
其中,所述外壳40的侧壁41上设置有孔411,所述孔411的位置与所述听筒的位置对应。孔411的位置可以位于外壳40的任意一个侧壁41上。也即,一实施方式中,所述听筒设置在外壳的上侧壁或者下侧壁上。另一实施方式中,所述听筒设置在外壳的左侧壁或者右侧壁上。
本实施例的电子装置,在上一实施例的基础上,将听筒设置在电子装置的侧壁上,进一步减小了非显示区域的面积,从而进一步增大了显示区域的面积以及提高了屏占比。
综上所述,虽然本发明已以优选实施例揭露如上,但上述优选实施例并非用以限制本发明,本领域的普通技术人员,在不脱离本发明的精神和范围内,均可作各种更动与润饰,因此本发明的保护范围以权利要求界定的范围为准。
Claims (10)
1.一种电子装置,其特征在于,包括:
显示屏,其包括像素阵列,其包括复用像素阵列,所述复用像素阵列包括多个复用子像素;所述显示屏输入有驱动信号;
摄像头,设于所述显示屏的后方,且与所述复用子像素的位置对应;
其中所述显示屏还包括控制单元,所述控制单元用于在接收到拍照指令时,控制所述复用子像素不接收驱动信号;以及在未接收到拍照指令时,控制所述复用子像素接收驱动信号。
2.根据权利要求1所述的电子装置,其特征在于,
所述显示屏包括栅驱动芯片,所述复用子像素通过所述控制单元与所述栅驱动芯片电性连接。
3.根据权利要求2所述的电子装置,其特征在于,
所述控制单元包括多个控制薄膜晶体管,每行复用子像素对应一所述控制薄膜晶体管;其中所述显示屏还包括多条扫描线;
所述控制薄膜晶体管的栅极输入控制信号,所述控制薄膜晶体管的源极与所述栅驱动芯片连接;其中所述控制信号根据所述拍照指令生成;
所述复用子像素包括驱动薄膜晶体管,所述驱动薄膜晶体管的栅极与对应的扫描线的一端连接,该扫描线的另一端与所述控制薄膜晶体管的漏极连接。
4.根据权利要求3所述的电子装置,其特征在于,
当接收到所述拍照指令时,所述控制薄膜晶体管断开;当未接收到所述拍照指令时,所述控制薄膜晶体管闭合。
5.根据权利要求4所述的电子装置,其特征在于,
所述控制薄膜晶体管为P型薄膜晶体管,当接收到所述拍照指令时,所述控制信号为高电平;当未接收到所述拍照指令时,所述控制信号为低电平。
6.根据权利要求4所述的电子装置,其特征在于,
所述控制薄膜晶体管为N型薄膜晶体管,当接收到所述拍照指令时,所述控制信号为低电平;当未接收到所述拍照指令时,所述控制信号为高电平。
7.根据权利要求3所述的电子装置,其特征在于,
所述显示屏还包括多条数据线;所述驱动薄膜晶体管的源极与所述数据线连接。
8.根据权利要求1所述的电子装置,其特征在于,
所述像素阵列还包括显示像素阵列,所述显示像素阵列包括多个显示子像素,所述显示子像素用于在所述显示屏工作时,接收驱动信号。
9.根据权利要求1所述的电子装置,其特征在于,
所述电子装置还包括听筒和外壳,所述听筒设置在所述外壳的侧壁上。
10.根据权利要求1所述的电子装置,其特征在于,
所述外壳的侧壁上设置有孔,所述孔的位置与所述听筒的位置对应。
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