CN1257426C - 用于安装平面型显示器的结构 - Google Patents
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Abstract
本发明披露了用来安装组成便携式计算机系统等的屏幕显示设备的平面型显示组件的结构,其中减少了显示设备的重量和厚度。为了这个目的,用来安装平面型显示器的结构包括:具有平面型显示板、背后照明部件、以及用来支持平面型显示板和背后照明部件的支持部件的显示组件;装配显示组件的后壳;以及装配到后壳的前边沿以覆盖显示组件的前边沿的前框。在这种结构中,支持部件在前框内侧与前框一体地形成。
Description
技术领域
本发明涉及平面型显示器,具体涉及用于安装平面型显示器的结构。
背景技术
通常,平面型显示器是实现诸如桌面型计算机、笔记本计算机、PDA便携式计算机和便携式电话终端的监视器的轻小系统的必需设备。平面型显示器设备包括LCD、等离子显示板(PDP)、场致发射显示器(FED)等。和CRT相比,平面型显示器设备具有优秀的视觉感受,和同样图像尺寸的CRT相比消耗的电能更少,并且具有更低的热量值,从而作为诸如便携式电话、计算机监视器和电视的下一代显示设备引起了人们的注意。
目前,装配了平面型显示器设备的便携式计算机系统为了易于携带变得更轻更薄。为了适应这种趋势,各种各样的装配方式得到发展,使得用来输出图像的显示组件和装配显示组件的外壳在一侧合并在一起。
图1至图3展示了用作便携式计算机的屏幕显示设备的平面型显示器设备的LCD。LCD设备包括:铰接装配到便携式计算机的具有计算设备、存储设备、外围设备和键盘的计算机体一端的后壳30;装配到后壳30用来实现所需图像的LCD组件20;以及装配到后壳30的边沿用来覆盖LCD组件20的所有边沿并提供支持的前框10。
LCD组件20包括:用来输出图像的LC板210;在LC板210的后部用来发射光的背后照明220;以及用来覆盖LC板210和背后照明部件220的边沿并用来装配它们的正方形的金属框230。
这里,背后照明部件220包括散射片226和229;棱柱片227和228;光导板224;反射片225;以及在一侧具有发射光的灯222的用来支持这些部件的正方形塑料模制框架221。
因此,在LCD设备中,LC板210和背后照明部件220由金属框230装配,它们构成了LCD组件20,并和后壳30通过螺纹装配。然后,前框10装配到后壳的前侧,从而完成了LCD板的制作。
然而,现有技术的LCD设备具有如下问题:由于LCD组件20的金属框230增加了LCD设备的整个重量,并且限制了厚度的减少。
发明内容
因此,本发明致力于一种用来装配平面型显示器的结构,它能充分消除由于现有技术的限制和缺点带来的一个或多个问题。
本发明的一个目的是提供用来装配平面型显示器设备的结构,其中改进了组成平面型显示器设备的显示组件和壳体之间的装配结构,以减小显示设备的整个重量和厚度,并在壳体中坚固地安装显示组件。
本发明的其它特征和优点将在以下的说明书中给出,部分地可以从说明书中理解,或者可以通过本发明的实践获得。通过说明书和权利要求以及附图中特别指出的结构可以实现和获得本发明的目的和其它优点。
正如这里实施和广义描述的那样,为了达到这些目的和别的优点并根据发明的目的,一种用来安装平面型显示器的结构,包括:用来输出图像的平面型显示组件;用来固定显示组件的后壳;和装配到后壳的前侧以覆盖显示组件的前边沿的前框,其中用来支持显示组件的各边沿的支持部件在前框的内部突出。
这里,显示组件包括:用来输出图像的LC板;在LC板的后部用来给LC板发射光的背后照明部件。LC板和背后照明部件彼此并不装配在一起,而是自由地重叠,使得前框的支持部件能支持LC板和背后照明部件。
因此,在本发明中,执行现有技术的金属框功能的支持部件与前框一体地形成,从而减少了LCD设备的整个重量和厚度。
应该理解,上述一般性说明和下面的详细说明都是示例性和解释性的,用于对本发明的权利要求提供进一步解释。
附图说明
作为本申请一部分包含在其中的用于提供本发明进一步理解的附图显示了本发明的实施例,并与说明书一起用于解释本发明的原理。
在附图中:
图1展示了在普通平面型显示器设备中的在便携式计算机中使用的现有技术的LCD设备的分解透视图;
图2A和图2B展示了在装配LCD设备的状态下的剖开侧面和底部而产生的剖视图;
图3展示了显示图1的LCD设备中的LCD组件结构的分解透视图;
图4展示了应用了用来根据本发明安装平面型显示器设备的结构的LCD设备的前视图;
图5展示了LCD设备中前框的后视图;
图6展示了显示沿着剖面线I-I剖开的用于安装图4的LCD设备的结构的剖视图;
图7展示了显示沿着剖面线II-II剖开的用于安装图4的LCD设备的结构的剖视图;和
图8展示了显示沿着剖面线III-III剖开的用于安装图4的LCD设备的结构的剖视图。
具体实施方式
下面参考附图中显示的示例,对本发明的实施例进行详细说明。在可能的情况下,在所有附图中使用相同标号来表示相同或相似部件。
图4到图8展示了应用了用于安装平面型显示器的结构的LCD设备。LCD设备包括:由合成树脂制成的铰接装配到笔记本计算机本体(未显示)的后端的后壳30,其中笔记本计算机本体具有计算设备、存储设备、外围设备和键盘等;装配到后壳30用来输出图像的LCD组件20;以及由合成树脂制成并装配到后壳30的前边沿的用来覆盖LCD组件20的边沿的前框100。
这里,LCD组件20包括:用来输出图像的LC板210;散射片226和229;棱柱片227和228;光导板224;反射片225;灯222;用来支持上述组件的由合成树脂制成的正方形模制框架221;以及用来向LC板210发射光的背后照明部件220。LC板210并不装配到背后照明部件220的前端,而是与其自由地重叠。
同时,LCD组件20装配到组成屏幕显示设备的后壳30和前框100。向内部突出的支持部件110作为一个单元形成,以在前框100的内部支持LCD组件20的LC板210和背后照明部件220的各边沿。
即,前框100的支持部件110支持和前框100内部自由重叠的LC板210和背后照明部件220的边沿,从而执行现有技术中LCD组件20中的用于装配LC板210和背后照明部件220的金属框230(参考图2)的功能。
因此,在本发明中,支持部件110由相比金属轻的合成树脂构造而成,并位于LCD组件20的外侧,从而和现有技术的金属框相比,减轻了LCD设备的整个重量并减小了厚度。
同时,位于前框100的两侧或者前框的上侧和下侧的支持部件110的尾部向内部弯曲。此时,当LCD组件20位于支持部件210内时,LCD组件20的外侧下部由弯曲部分支持,从而防止了LCD组件20和前框100分开,并坚固地支持LCD组件20。
而且,前框100的支持部件110可以如前所述形成为一个单元,还可以通过分离成多个部分而形成多个部件。
在后一种情况下,前框100的支持部件110和LCD组件20能更容易地相互装配。
下面将详细介绍用来制造LCD设备的过程。
首先,LC板210和LCD组件20的背后照明部件220并不彼此装配,而是自由重叠。然后,把前框100和LCD组件20装配到一起,使得前框100的支持部件可以支持LC板210和背后照明部件220的各边沿。
接着,将具有“匚”形状的金属加强支架305放置在位于前框100的一侧的支持部件110的外侧。然后,把前框100装配到后壳30,把螺钉302通过后壳30的一侧装配到加强支架305和前框100的侧部,从而完成LCD设备的制造。
当然,与此不同,可以在后壳30的整个表面上安装装配了LCD组件20的前框100,然后通过从后壳的后侧穿过螺钉来装配LCD组件20和后壳30。
同时,即使在前述实施例中将用来安装平面型显示器设备的结构应用到LCD设备,该结构还能应用到诸如PDP设备的不同设备中。
如前所述,在本发明中,执行用来固定组成了平面型显示组件的显示板和背后照明部件的现有技术金属框功能的支持部件作为一个单元形成到前框上,从而减少了整个显示设备的重量和厚度。
本领域技术人员应该理解,可以对本发明进行各种修改和变化。因此,本发明应覆盖所有落入所附权利要求及其等同物范围内的修改和变化。
Claims (4)
1.一种用来安装平面型显示器的结构,包括:
用来输出图像的平面型显示组件;
用来固定显示组件的后壳;和
装配到后壳的前侧以覆盖显示组件的前边沿的前框,其中用来支持显示组件的各边沿的支持部件在前框的内部突出。
2.根据权利要求1所述的用来安装平面型显示器的结构,其中显示组件是由用来输出图像的液晶板和在液晶板后侧形成的用来给液晶板发射光的背后照明部件组成的液晶显示器组件,并且液晶显示器组件的液晶板和背后照明部件彼此并不装配在一起,而是自由地重叠,从而由前框支持部件所支持。
3.根据权利要求1或2所述的用来安装平面型显示器的结构,其中支持部件沿着前框内侧与前框一体地形成。
4.根据权利要求1或2所述的用来安装平面型显示器的结构,其中支持部件沿着前框内侧分为多个部件。
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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KR10-2001-0041347A KR100425167B1 (ko) | 2001-07-10 | 2001-07-10 | 평판형 표시장치의 결합구조 |
KRP200141347 | 2001-07-10 |
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CN1396481A CN1396481A (zh) | 2003-02-12 |
CN1257426C true CN1257426C (zh) | 2006-05-24 |
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US (1) | US7106392B2 (zh) |
JP (1) | JP4068405B2 (zh) |
KR (1) | KR100425167B1 (zh) |
CN (1) | CN1257426C (zh) |
DE (1) | DE10228522B4 (zh) |
TW (1) | TWI281137B (zh) |
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-
2001
- 2001-07-10 KR KR10-2001-0041347A patent/KR100425167B1/ko active IP Right Grant
-
2002
- 2002-06-26 DE DE10228522A patent/DE10228522B4/de not_active Expired - Lifetime
- 2002-06-27 JP JP2002187693A patent/JP4068405B2/ja not_active Expired - Lifetime
- 2002-06-28 TW TW091114413A patent/TWI281137B/zh not_active IP Right Cessation
- 2002-06-28 CN CNB021403538A patent/CN1257426C/zh not_active Expired - Lifetime
- 2002-06-28 US US10/184,097 patent/US7106392B2/en not_active Expired - Lifetime
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US20030011550A1 (en) | 2003-01-16 |
KR100425167B1 (ko) | 2004-03-30 |
TWI281137B (en) | 2007-05-11 |
JP4068405B2 (ja) | 2008-03-26 |
CN1396481A (zh) | 2003-02-12 |
DE10228522A1 (de) | 2003-02-06 |
JP2003043943A (ja) | 2003-02-14 |
US7106392B2 (en) | 2006-09-12 |
DE10228522B4 (de) | 2010-09-02 |
KR20030005883A (ko) | 2003-01-23 |
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