TWI299091B - Color filter substrate, liquid crystal display panel and manufactured method thereof - Google Patents

Color filter substrate, liquid crystal display panel and manufactured method thereof Download PDF

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TWI299091B
TWI299091B TW95126909A TW95126909A TWI299091B TW I299091 B TWI299091 B TW I299091B TW 95126909 A TW95126909 A TW 95126909A TW 95126909 A TW95126909 A TW 95126909A TW I299091 B TWI299091 B TW I299091B
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substrate
liquid crystal
display panel
color filter
crystal display
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TW95126909A
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TW200807041A (en
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De Jiun Li
Der Chun Wu
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Chunghwa Picture Tubes Ltd
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17570twf.doc/e 129909117570twf.doc/e 1299091

051032ITW 九、發明說明: 【發明所屬之技術領域】051032ITW Nine, invention description: [Technical field to which the invention belongs]

本發明是有關於一種濾光基板(filter substrate )、顯 示面板(display panel)及顯示面板的製造方法,且特別是 有關於一種彩色濾光基板(color filter substrate,CF substrate )、液晶顯示面板(HqUid crystal display panel,LCD panel)及液晶顯示面板的製作方法。 【先前技術】 平面顯示器之輕、薄、短、小的發展趨勢,使得其逐 漸取代了陰極射線管(cathode ray tube)。並且,在眾多 類型之平面顯示器中,由於液晶顯示器(liquid crystal display,LCD)之各種優越的性能,如應答速度、輝度、對 比值及可視角等,使得液晶顯示器已逐漸成為市場之主 流。一般而言,液晶顯示器是由一液晶顯示面板〇iquid crystal display panel,LCD panel)及一背光模組(backUght modde )所構成,其中,液晶顯示面板包括彩色濾光基板、 主動元件陣列基板(active device array substrate)及位於 兩基板之間的液晶層(liquid crystal layer)。而背光模組 提供液晶顯示面板所需之面光源。 特別是’液晶層之膜厚將會顯i地影響到液晶顯示器 ^顯不性能。因此’-般均會在彩⑸慮光基板及主動元科 2基板之間加人間隙物(spacer),進而嚴密地控制液 曰曰層之厚度。其中’間隙物可分為棒狀間隙物(也 、球狀間隙物(ball type啊⑽)與柱狀間隙物 (P 0t0-spacer)。棒狀與_間隙物均需要—散佈裝置而 l〇32IT\M 17570twf.doc/( 將其分佈於兩基板之間,但是此兩種間隙物易成團塊狀, 進而使得液晶層厚度無法均一。因此,必須實施額外的分 佈使其均勻分佈,所以將增加生產成本。然而,使用 微影製程所製作之柱狀間隙物,除了能夠控制其分佈位置 之外’並且也能控制其高度,進而使得液晶層厚度能夠保 持均一。因此,近年來受到業界相當的重視。 一般而言,間隙物之作用在於支撐彩色濾光基板及主 動元件陣列基板,所以通常將其製作為實心的柱狀體。並 且’隨著大面積尺寸之液晶顯示器的發展,除了在液晶顯 示面板的顯示區(display area)内需要設置間隙物以外, 因應組立及切裂(cutting)液晶顯示面板的需要,在液晶 顯示面板之外側的無效區((jummyarea),也需要設置多 數間隙物,以使兩基板之間的應力均勻分佈。 圖1繪示為習知一種大尺寸液晶顯示面板的剖面示意 圖。請參照圖1,此液晶顯示面板1〇〇具有一主動元件陣 列基板110、一彩色濾光基板120及位於兩基板之間的液 晶層130。其中,除了在液晶顯示面板1〇〇之顯示區1〇2 内設置多數間隙物140a外,也在液晶顯示面板1〇〇之無效 區104中設置了多數間隙物140b,因而能均勻地支撐兩基 板0 在大尺寸的液晶顯示面板100的製程中,會利用膠框 150定義出液晶層130所填入的區域,並藉由滴下注入製 程(one drop fill,ODF)將液晶層13〇填入到此區域中。 在填入液晶層130之後,會再繼續結合主動元件陣列基板 110與彩色濾光基板120,而形成液晶顯示面板1〇〇。然而, 1299091 O51032ITW 17570twf.doc/e 上述之液晶滴下製程是在真空環境下進行的,當欲加熱膠 框150而使其固化時,需將液晶顯示面板100從真空環境 取出,因此瞬間的壓力改變將會使得主動元件陣列基板 與彩色渡光基板120之間的貼合力(adhesive f〇rce) 下IV,而使液晶顯示面板1〇〇的邊緣產生翹曲的問題,如 圖1所緣不。另外,主動元件陣列基板110與彩色遽絲 板120之間也將產生錯位的問題。如此一 來,將不利於提昇大尺寸液晶顯示面板1〇〇之製作良率。 【發明内容】 有鑑於此,本發明的目的就是在提供一種彩色濾光基 板,其適於增加其與一主動元件陣列基板之間的貼合力, 進而提昇大尺寸面板之製作良率。 本發明的再一目的是提供一種液晶顯示面板,其利用 上述之彩色濾光i板,進而能提昇大尺寸面板之製作良率。 本發明的又一目的是提供一種液晶顯示面板的製作 方法’其適於提昇大尺寸面板之製作良率。 基於上述目的或其他目的,本發明提出一種彩色濾光 基板,包括基板、遮光層、彩色濾光層、導電層、多數第 間隙物及苐一間隙物。基板具有一顯示區與一無效區。 遮光層設置於基板上。彩色濾光層配置於基板上並覆蓋遮 光層,其中位於無效區之彩色濾光層具有至少一第一凹 槽。導電層配置於基板上,並覆蓋彩色濾光層與遮光層。 第一間隙物設置於導電層上且位於無效區内,每一第一間 隙物具有一固定部及位於固定部上的一支樓部,而固定部 1299091 051032ITW 17570twf.doc/e 是設置於第一凹槽内,且在每一第一間隙物中有一通孔。 第二間隙物没置於導電層上且位於顯示區内。 基於上述目的或其他目的,本發明再提出一種液晶顯 示面板,其包括主動元件陣列基板、彩色濾光基板及液晶 層。此彩色濾光基板例如是上述之彩色濾光基板。液晶層 位於彩色濾光基板與主動元件陣列基板之間。 在本發明之一貫施例中,上述之位於第一凹槽下方之 遮光層中更包括一第二凹槽,且固定部是同時設置於第一 凹槽與第二凹槽内。 在本發明之一實施例中,上述之導電層之材質可以是 銦錫氧化物或銦鋅氧化物。 在本發明之-實施例中,上述之第一間隙物與第二間 隙物之材質可以是光阻材料。 在本發明之-實施例中’上述之彩色滤光基板更包括 一膠框,設置於基板之顯示區的周圍。 在本發明之一實施例中,上述之通孔是位於每一第一 間隙物的中心位置。 度的尺寸於 在本發明之一實施例中,上述之通孔之寬 6〜200μιη之間。 在本發明之-實施例中,上述之每一第一間隙物 樓部的厚度與每一第二間隙物的厚度相同。 在本發明之-實施例中,上述之第一間隙物之 以是空心圓柱狀或空心方柱狀。 基於上述目的或其他目的,本發明又提出—種液 晶 顯 1299091 051032ITW 17570twf.doc/e 示面板的製作方法,其包括下列步驟。首先,提供一第一 基板,且該第一基板上已形成一元件層。接著,提供一第 二基板,其例如是上述之彩色濾光基板。再來,於該第二 基板上形成一膠框或於該第一基板上形成膠框,且使膠框 圍繞顯示區。繼之,於膠框所圍出之空間内填入一液晶層。 之後,結合第一基板與第二基板。接著,固化膠框,同時 該些第-間隙物會吸附固定該第一基板與該第二基板。之 後,移除第-間_與對應其位置之部分_第 該第二基板。 、 以 在本發明之一實施例中,上述之固化膠框之方法可 疋备'外線照射法或加熱法。 基於上述目的或其他目的,本發明再提出一種液 顯 晶 不面板’包括主動元件陣列基板、透明基板與液晶層。主 動=件陣雕板具有-顯示區與—無效區,且主動元件 列=板包括遮光層、彩色濾H多數第-_物,及多 =^間隙物。遮光層設置於主較件陣列基板上。彩色 屬光層配置於絲元⑽板上並覆 色渡光層具有至少—第-凹槽。多數第2 =:::及位於該固定部上的-支標部心 ,間隙物中有-通孔,而固定部是設置於第一凹 。液晶層配置於主動 二 1::隙物設置於彩色濾光層上且位於顯示區;。透 明基板位於主動元件陣列基板之上方 边 元件陣列基板與透明基板之間。 1299091 051032ITW 17570twf.d〇c/e ” 丄心心饮晶顯示面板更包括 一共用電極,其配置於該透明基板上。 在本發明之一實施例中,上述之位於第一凹枰下方之 遮光層中更包括m簡定部是同時^於第一 凹槽與第二凹槽内。 在本發明之一實施例中,上述之第_間 隙物之材質可以是光阻材料。 ,、弟一 在本發明之-實施财,上述之彩色濾光基板更包括 一膠框,設置於基板之顯示區的周圍。 在本發明之-實施例中,上述之通孔是位於每 間隙物的中心位置。 在本發明之-實施例中,上述之通孔之寬度的 6〜200μπι之間。 在本發明之-實施例中,上述之每一第一間隙物之支 撐部的厚度與每一第二間隙物的厚度相同。 、口在本發明之—實施例中,上述之第—間隙物之形狀可 以疋空心圓柱狀或空心方柱狀。 本發明之彩色濾光基板在無效區中設置多數第一 隙物、’並且第-_物具有通孔,所以利肢彩色丄 板而進仃大尺寸液晶顯示面板的製作時 可以發揮支禮的作用外,其更具有吸附兩基板的^匆除二 以,液晶顯不面板的基板邊緣不會產生翹曲,且彩 元件陣列基板之間不會產生錯位現象,故:提 歼大尺寸液晶顯示面板的製作良率。 1299091 051032ITW 17570twf.doc/e 為讓本發明之上述和其他目的、特徵和優點能更明顯 易懂,下文特舉較佳實施例,並配合所附圖式,作詳細說 明如下。 【實施方式】 圖2繪示為本發明較佳實施例之一種彩色濾光基板的 俯視示意圖。圖2A繪示為圖2中沿A-A,線之剖面示意圖。 請共同參照圖2與圖2A,此彩色濾光基板200包括基板 210、遮光層220、彩色濾光層230、導電層240、多數第 一間隙物250及第二間隙物260。基板210具有一顯示區 212與一無效區214。遮光層220設置於基板210上。彩色 濾光層230配置於基板210上並覆蓋遮光層220,其中位 於無效區214之彩色濾光層230具有至少一第一凹槽 230a。導電層240配置於基板210上,並覆蓋彩色濾光層 23Ό與遮光層220。第一間隙物250設置於導電層240上且 位於無效區214内,每一第一間隙物250具有一固定部252 及位於固定部252上的一支擇部254,而固定部252是設 置於第一凹槽230a内,且在每一間隙物250中有一通孔 250a。第二間隙物260設置於導電層240上且位於顯示區 212 内。 在本發明之一實施例中,在顯示區212内的遮光層220 會將顯示區212定義出多個次晝素區(未繪示),而彩色 濾光層230配置於次晝素區中,並覆蓋遮光層22〇。更詳 細而言,彩色濾光層230例如是由多個彩色光阻區塊所組 成,且彩色濾光層230例如是選自於紅色光阻區塊、綠色 12The present invention relates to a filter substrate, a display panel, and a method of manufacturing the display panel, and more particularly to a color filter substrate (CF substrate) and a liquid crystal display panel ( HqUid crystal display panel, LCD panel) and the method of manufacturing the liquid crystal display panel. [Prior Art] The trend of light, thin, short, and small flat-panel displays has gradually replaced the cathode ray tube. Moreover, in many types of flat panel displays, liquid crystal displays have gradually become the mainstream of the market due to various superior performances of liquid crystal displays (LCDs) such as response speed, luminance, contrast value, and viewing angle. In general, the liquid crystal display is composed of a liquid crystal display panel (LCD panel) and a backlight module (backUght modde), wherein the liquid crystal display panel includes a color filter substrate and an active device array substrate (active A device array substrate) and a liquid crystal layer between the two substrates. The backlight module provides a surface light source required for the liquid crystal display panel. In particular, the film thickness of the liquid crystal layer will significantly affect the performance of the liquid crystal display. Therefore, a spacer is added between the color (5) light-receiving substrate and the active element 2 substrate, and the thickness of the liquid layer is tightly controlled. Among them, the 'interstitial material can be divided into rod-shaped spacers (also, ball-shaped spacers (10) and columnar spacers (P 0t0-spacer). Both rod-shaped and _interstitial materials need to be scattered devices and l〇 32IT\M 17570twf.doc/ (distributed between the two substrates, but the two kinds of spacers are easy to form agglomerates, so that the thickness of the liquid crystal layer is not uniform. Therefore, an additional distribution must be implemented to make it evenly distributed, so The production cost will increase. However, the column spacers fabricated by the lithography process can control the height of the column spacers, and the thickness of the liquid crystal layer can be kept uniform. In general, the role of the spacer is to support the color filter substrate and the active device array substrate, so it is usually fabricated into a solid columnar body. And 'with the development of large-area liquid crystal displays, except In addition to the need to provide spacers in the display area of the liquid crystal display panel, in view of the need to form and cut the liquid crystal display panel, the liquid crystal display is required. In the ineffective area (jummyarea) on the outer side of the panel, it is also necessary to provide a plurality of spacers to evenly distribute the stress between the two substrates. Fig. 1 is a schematic cross-sectional view showing a conventional large-size liquid crystal display panel. 1. The liquid crystal display panel 1 has an active device array substrate 110, a color filter substrate 120, and a liquid crystal layer 130 between the two substrates, wherein, in addition to the display area 1 in the liquid crystal display panel 1 In addition to the majority of the spacers 140a, a plurality of spacers 140b are provided in the inactive area 104 of the liquid crystal display panel 1A, so that the two substrates can be uniformly supported. In the process of the large-sized liquid crystal display panel 100, it is utilized. The plastic frame 150 defines a region in which the liquid crystal layer 130 is filled, and fills the liquid crystal layer 13 into the region by a drop-filling process (ODF). After filling the liquid crystal layer 130, it continues. The liquid crystal display panel 1 is formed by combining the active device array substrate 110 and the color filter substrate 120. However, the liquid crystal dropping process described above is in a vacuum environment, 1299091 O51032ITW 17570twf.doc/e If the plastic frame 150 is to be heated and cured, the liquid crystal display panel 100 needs to be taken out from the vacuum environment, so that the instantaneous pressure change will cause the bonding force between the active device array substrate and the color light-emitting substrate 120 ( Adhesive f〇rce) IV, which causes the edge of the liquid crystal display panel 1 to warp, as shown in Fig. 1. In addition, misalignment between the active device array substrate 110 and the color reeling board 120 will also occur. The problem is that it will not be conducive to improving the production yield of the large-size liquid crystal display panel. SUMMARY OF THE INVENTION In view of the above, an object of the present invention is to provide a color filter substrate suitable for increasing the bonding force with an active device array substrate, thereby improving the fabrication yield of a large-sized panel. It is still another object of the present invention to provide a liquid crystal display panel which can improve the production yield of a large-sized panel by utilizing the color filter i-plate described above. It is still another object of the present invention to provide a method of fabricating a liquid crystal display panel which is suitable for improving the production yield of a large-sized panel. Based on the above objects or other objects, the present invention provides a color filter substrate comprising a substrate, a light shielding layer, a color filter layer, a conductive layer, a plurality of spacers, and a spacer. The substrate has a display area and an ineffective area. The light shielding layer is disposed on the substrate. The color filter layer is disposed on the substrate and covers the light shielding layer, wherein the color filter layer located in the ineffective area has at least one first recess. The conductive layer is disposed on the substrate and covers the color filter layer and the light shielding layer. The first spacer is disposed on the conductive layer and located in the inactive area, each first spacer has a fixing portion and a building portion located on the fixing portion, and the fixing portion 1129091 051032ITW 17570twf.doc/e is set in the first Inside a groove, and a through hole in each of the first spacers. The second spacer is not placed on the conductive layer and is located in the display area. Based on the above and other objects, the present invention further provides a liquid crystal display panel comprising an active device array substrate, a color filter substrate, and a liquid crystal layer. This color filter substrate is, for example, the above-described color filter substrate. The liquid crystal layer is located between the color filter substrate and the active device array substrate. In a consistent embodiment of the present invention, the light shielding layer located below the first recess further includes a second recess, and the fixing portion is disposed in the first recess and the second recess simultaneously. In an embodiment of the invention, the conductive layer may be made of indium tin oxide or indium zinc oxide. In an embodiment of the invention, the material of the first spacer and the second spacer may be a photoresist material. In the embodiment of the present invention, the color filter substrate further includes a plastic frame disposed around the display area of the substrate. In an embodiment of the invention, the through hole is located at a center of each of the first spacers. Dimensions of Degrees In one embodiment of the invention, the above-mentioned through holes are between 6 and 200 μm wide. In an embodiment of the invention, the thickness of each of the first spacer floor portions is the same as the thickness of each of the second spacers. In the embodiment of the invention, the first spacer is a hollow cylindrical shape or a hollow square column shape. Based on the above objects or other objects, the present invention further proposes a method for producing a liquid crystal display 1299091 051032ITW 17570twf.doc/e panel comprising the following steps. First, a first substrate is provided, and an element layer has been formed on the first substrate. Next, a second substrate is provided, which is, for example, the above-described color filter substrate. Then, a plastic frame is formed on the second substrate or a plastic frame is formed on the first substrate, and the plastic frame surrounds the display area. Then, a liquid crystal layer is filled in the space enclosed by the plastic frame. Thereafter, the first substrate and the second substrate are combined. Then, the plastic frame is cured, and the first spacers adsorb and fix the first substrate and the second substrate. Thereafter, the first-substrate_ and the portion corresponding to the position thereof are removed. In an embodiment of the invention, the method for curing the frame can be prepared by an external beam irradiation method or a heating method. Based on the above and other objects, the present invention further provides a liquid crystal display panel comprising an active device array substrate, a transparent substrate, and a liquid crystal layer. The active = piece array has a - display area and an inactive area, and the active element column = plate includes a light shielding layer, a color filter H majority -_ object, and more = ^ spacer. The light shielding layer is disposed on the main comparator array substrate. The color light layer is disposed on the filament element (10) and the coating light-passing layer has at least a first-groove. Most of the 2 =::: and the - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - The liquid crystal layer is disposed on the active second 1:: the spacer is disposed on the color filter layer and is located in the display area; The transparent substrate is located between the element array substrate and the transparent substrate above the active device array substrate. 1299091 051032ITW 17570twf.d〇c/e ” The heart-shaped crystal display panel further comprises a common electrode disposed on the transparent substrate. In an embodiment of the invention, the above-mentioned light shielding layer under the first concave layer In an embodiment of the invention, the material of the first spacer may be a photoresist material, and the other one is in the first recess and the second recess. In the present invention, the color filter substrate further includes a plastic frame disposed around the display area of the substrate. In the embodiment of the invention, the through hole is located at a center position of each spacer. In the embodiment of the present invention, the width of the through hole is between 6 and 200 μm. In the embodiment of the present invention, the thickness of the support portion of each of the first spacers and each of the second gaps The thickness of the object is the same. In the embodiment of the present invention, the shape of the first spacer may be a hollow cylindrical shape or a hollow square column shape. The color filter substrate of the present invention is provided with a plurality of first in the ineffective area. Gap, 'and the first -_ With through holes, so the color of the limbs and the large-size liquid crystal display panel can play the role of the ceremony, it also has the advantage of adsorbing the two substrates, the LCD edge of the panel is not Warpage is generated, and misalignment occurs between the color element array substrates, so that the production yield of the large-size liquid crystal display panel is improved. 1299091 051032ITW 17570twf.doc/e To make the above and other objects and features of the present invention The advantages and advantages of the present invention are described in detail below with reference to the accompanying drawings. FIG. 2 illustrates a color filter substrate according to a preferred embodiment of the present invention. 2A is a cross-sectional view along line AA of FIG. 2. Referring to FIG. 2 and FIG. 2A together, the color filter substrate 200 includes a substrate 210, a light shielding layer 220, a color filter layer 230, and a conductive layer. The first spacers 250 and the second spacers 260. The substrate 210 has a display area 212 and an ineffective area 214. The light shielding layer 220 is disposed on the substrate 210. The color filter layer 230 is disposed on the substrate 210 and covered. The light shielding layer 220, wherein the color filter layer 230 located in the ineffective area 214 has at least one first groove 230a. The conductive layer 240 is disposed on the substrate 210 and covers the color filter layer 23 and the light shielding layer 220. The first spacer 250 The first spacer 250 has a fixing portion 252 and a portion 254 located on the fixing portion 252, and the fixing portion 252 is disposed on the first groove 230a. There is a through hole 250a in each spacer 250. The second spacer 260 is disposed on the conductive layer 240 and located in the display area 212. In an embodiment of the present invention, the light shielding layer 220 in the display area 212 defines a plurality of sub-tenk regions (not shown), and the color filter layer 230 is disposed in the sub-tenk region. And cover the light shielding layer 22〇. In more detail, the color filter layer 230 is composed of, for example, a plurality of color photoresist blocks, and the color filter layer 230 is selected, for example, from a red photoresist block, green 12

1299091 051032ITW 17570twf.doc/e 光阻區塊及藍色光阻區塊等其中之一。此外,紅、綠與藍 色光阻區塊的排列方式,可以是馬賽克排列(Mosaic type)、條狀排列(stripe type)、四畫素排列(four pixels type) 及三角形排列(triangle type)等型態。而導電層240的材料 例如是銦錫氧化物或銦鋅氧化物,其形成的方法例如是濺 鑛法(sputtering )。 請繼續參照圖2與圖2A,在本發明之一實施例中, 彩色濾光基板200更包括一膠框27〇,設置於基板21〇之 顯示區212的周圍。利用膠框27〇之設置並配合液晶滴下 製程(one drop fill,〇DF),可快速地將液晶填入到顯示 區212中。而膠框270的材料例如是紫外線固化膠(uv glue)或熱固化膠,利用照射紫外光或加熱製程可使得膠 框270黏合彩色濾光基板2〇〇及主動元件陣列基板(未繪 示)〇 .:、7 . 值得注意的是,如圖2與圖2A所繪示之彩色濾光 板200具有一無效區214,其位於非顯示區216之^卜側 其中此非顯示區216之對向的主動元件陣列基板上,是 置控制液晶顯示φ板的電子元件。特 中設置了多個第一間隙物25〇,此第一間隙物二 通孔250a,使得此第一間隙物25〇具有吸盤的效果。如 :來’第-間隙物250除了有支撐基板的功能之外,更 J吸附及Μ基板的舰。此外,在本發明之 25。之形狀可以是如圖2所繪示之空二 或者疋工心方柱狀(未綠示)。 13 1299091 ^5l〇32ITW 175?0twf.doc/e 請繼續參照圖2A,第-間隙物25Q與第二間隙物26〇 之材質例如是光阻材料,且其是利用微影製程而製作,因 此,可精確地控制第-間隙物25〇與第二間隙物編在基 板210上之分佈位置。此外,每一第一間隙物25〇之支撐 部254的厚度dl與每一第二間隙物26〇的厚度汜相同。 特別是,第一間隙物250之通孔250a是位於每一第 —間隙物250的中心位置,且通孔25加之寬度wl的尺寸 於6〜200μιη之間,較佳的是,通孔25〇a之寬度wl的尺 寸介於30〜120μιη之間。如此一來,第一間隙物25〇可具 有較佳之吸附兩基板的效果。值得注意的是,如圖所 繪示,第一間隙物250的固定部252是設置在彩色濾光層 230的第一凹槽230a中。如此一來,不但可以增加第一間 隙物250的吸附空間(犯^叩Space)而增進其吸附並固 疋基板的肖b力’並且當面板遭受橫向應力(iateral stress) 時,第一間隙物250也比較不會發生脫落的情形。 圖2B繪示為本發明之較佳實施例另一種彩色濾光基 板的剖面示意圖。請參照圖2B,此彩色濾光基板202與圖 2A相類似的構件標示以同樣的標號,在此不再重述。值得 注意的是,位於第一凹槽230a下方之遮光層220中更包括 一弟'一凹槽220a ’且固定部252是同時設置於第^一凹槽 230a與第二凹槽220a内。因此,如圖2B所繪示之彩色濾 光基板202,其第一間隙物250將具有更大之吸附空間, 所以其吸附並固定基板的能力將會更好。此外,第一間隙 物250是同時附著在彩色濾光層230及遮光層220上,所 14 I299〇912itw 1757Otwf.doc/e 以其能夠承受更大的橫向應力,而更不容易發生脫落的情 形。 綜上所述,彩色濾光基板200、202在其無效區214 上設置了具有通孔250a的第一間隙物250,並且第一間隙 物250是部分地設置在彩色濾光層23〇及/或遮光層220 上。因此,在大尺寸液晶顯示面板的製作中,第一間隙物 250除了可以發揮支撐基板的作用外,其更具有吸附並固 定基板的能力’所以,基板的邊緣不會產生翹曲或是錯位 的現象。此外,第一間隙物250在遭受橫向應力時,也不 容易脫落’而可以降低基板產生之錯位的問題。 圖3緣示為本發明較佳實施例中一種液晶顯示面板的 剖面示意圖。請參照圖3,此液晶顯示面板3〇〇包括主動 兀件陣列基板310、彩色濾光基板32〇及液晶層33〇。其中, 衫色濾光基板320例如是上述之彩色濾光基板2〇〇、2〇2, 其類似的構件標示以相同的標號,在此不予以重述。而液 晶層330位於彩色濾光基板320與主動元件陣列基板310 之間。 夕^動元件陣列基板310具有多數主動元件(未繪示)、 多,掃瞒線(未I會示)與多數資料線(未緣示),掃瞒線 與貨料線會將主動元_縣板劃分成乡個晝素區(未繪 不)’亚且主動元件是分別設置每一個晝素區中。此主動 凡件例如是薄膜電晶體,並主動元件是透過掃瞄線與資料 線而驅動。 值知注意的是’在彩色濾光基板320上設置了具有通 15 1299091 051032ITW 17570twf.doc/e 孔250a之第一間隙物250,而其可以吸附並固定彩色濾光 基板320與主動元件陣列基板310。 在本發明之另一實施例中,第一間隙物250也可以設 置在主動元件陣列基板310上,也就是說,此時液晶顯示 面板 300 是一 COA 基板(color filter on array,COA)、一 透明基板與一液晶層的組合。更詳細而言,COA基板是將 如圖2A或圖2B中之彩色濾光層230、遮光層220、第一 間隙物250、第二間隙物260等元件都製作於主動元件陣 列基板310上,而另一基板320是具有一共用電極(未緣 示)的透明基板,並且,在此兩基板中再設置液晶層(未 繪示)。因此,此C0A形式的液晶顯示面板(未繪示) 也能利用上述之具有通孔250a的第一間隙物250,而吸附 固定C0A基板與透明基板,使基板的邊緣不會產生翹曲 或是錯位的現象。同樣地,有關第一間隙物250的所有實 施例與上述類似,在此不予以重述。 綜上所述,在大尺寸液晶顯示面板的製作中,若在無 效區214設置具有通孔250a之第一間隙物250,那麼第一 間隙物250除了可以發揮支撐的作用外,其更具有吸附並 固定基板的能力。如此一來,使得液晶顯示面板3〇〇的邊 緣不會產生翹曲或是錯位的現象,進而提昇液晶顯示面板 300的製作良率。 圖4A〜4F繪示為本發明較佳實施例中一種液晶顯示 面板的製作方法的步驟流程剖面示意圖。首先,請參照圖 4A,提供一第一基板41〇,且該第一基板41〇上已形成— 1299091 051032ITW 17570twf.doc/e 元件層412。此第一基板4i〇例如是薄膜電晶體陣列基板, 且此元件層412中具有多數掃瞄線(未繪示)、多數資料 線(未繪示)與多數薄膜電晶體(未繪示),而薄膜電晶 體是藉由掃瞄線與資料線而驅動。 接著,請參照圖4B,提供一第二基板420,其例如是 如圖2A或圖2B所繪示之彩色濾光基板2〇〇、2〇2,其類 似的構件標示以相同的標號。第二基板42〇具有一顯示區 422與一無效區424’並在無效區424内設置了多數第一間 隙物250,及在顯示區422内設置了多數第二間隙物26〇 (繪示於圖4C中)。 再來,請同時參照圖4C與圖4D,於第二基板420上 形成一膠框430 ’且使膠框430圍繞顯示區422。形成膠框 430之方法例如疋塗佈法,而膠框430之材料例如是紫外 線固化膠或是熱固化膠。並且,於膠框43〇所圍出之空間 内填入一液晶層440,如圖4D所繪示。此填入液晶層44〇 之製程例如是液晶滴下製程(one dr〇p fin,〇df)。值得 注意的是,上述之膠框430也可製作於第一基板41〇上, 並圍繞元件層412,此時,液晶層44〇即填入第一基板41〇 上之膠框430所圍出的空間之中(未繪示)。 之後,請參照圖4E,結合第一基板41〇與第二基板 420。此時,第一間隙物25〇可支撐第一基板41〇與第二基 板420,而防止膠框43〇產生形變,並且可防止第一基板 410與第二基板420之間產生錯位。 特別疋,由於上述之圖4A〜4E之步驟,是在真空環 17 1299091 051032ITW 17570twf.doc/e 境中實施的’為了使勝框430進一步固化而黏著第一基板 410與第二基板42〇’則必須將液晶顯示面板彻從真空環 境中取出,並進行對膠框43〇固化的步驟。 接著,明再繼績芩照圖4E,進行固化膠框43〇之步 驟。在-實施例中,固化膠框43〇的方法可以是紫外線照 躲或是加熱法。值得注意的是,由於此時液晶顯示面板 400亚未處在真空環境中,所以具有通孔%加之第一間隙 物f0的位置會產生一吸附力,而吸附並固定第-基板410 與第一基板420。所以,本發明之液晶顯示面板4〇〇就不 會產生4知中的基板邊緣龜曲的問題。並且,第一間隙物 250可以辅助膠框43〇支撐第一基板41〇與第二基板42〇, 因此,本發明之液晶顯示面板400可以防止膠框430未固 化前的支撐力不足而引起之基板錯位的現象。 之後’請參照圖4F,移除第一間隙物25〇與對應其位 置之部分的第一基板41〇與第二基板420。由於膠框430 固化後,液晶顯示面板4〇〇即具有足夠之支撐力,所以, ⑩ 即可以切除無效區424中的第一基板410、第二基板420 與第一間隙物250。所以,本發明之液晶顯示面板的製作 方法’利用第一間隙物250而防止基板邊緣翹曲及基板錯 位之問題,進而可以提昇大尺寸之液晶顯示面板4〇〇的製 作良率。 綜上所述,本發明之彩色濾光基板、液晶顯示面板及 液晶顯示面板的製作方法具有下列優點: (1)彩色濾光基板在無效區中設置多數第一間隙 18 1299091 051032ITW 17570twf.doc/e 物,此第一間隙物具有通孔,因此利用其進行大尺寸液曰曰 顯示面板的製作時,除了可以發揮支撐的作用外,其^ = 有吸附並固定兩基板的能力。 ’、八 (2) 本勒明之液晶顯示面板的基板邊緣不會產生為羽 曲,且彩色濾光基板與主動元件陣列基板之間不會產生= 位現象。 日 π (3) 本發明之液晶顯示面板的製作方法,可防止面 板邊緣產生翹曲,並且改善彩色濾光基板與主動元件陣列 基板之間的錯位問題。所以,可提昇大尺寸液晶顯示面 的製作良率。 雖然本發明已以較佳實施例揭露如上,然其並非用以 限^本發明,任何熟習此技藝者,在不脫離本發明之精神 和範圍内’當可作些許之更動與潤飾,因此本發明之保護 範圍當視後附之申請專利範圍所界定者為準。 【圖式簡單說明】 圖1綠示為習知一種大尺寸液晶顯示面板的剖面示意 圖。 圖2綠示為本發明較佳實施例之一種彩色濾光基板的 俯視示意圖。 圖2A繪示為圖2中沿A-A,線之剖面示意圖。 圖繪示為本發明之較佳實施例另一種彩色濾光基 板的剖面示意圖。 圖3繪示為本發明較佳實施例中一種液晶顯示面板的 剖面示意圖。 19 1299091 051032ITW 17570twf.doc/e 圖4A〜4F繪示為本發明較佳實施例中一種液晶顯示 面板的製作方法的步驟流程剖面示意圖。 【主要元件符號說明】 100、300、400 ·液晶顯不面板 102、212、422 :顯示區 104、214、424 :無效區 110、310 :主動元件陣列基板 120、200、202、320 :彩色濾光基板 130、330、440 :液晶層 140a、140b :間隙物 150、270、430 :膠框 210 :基板 216 :非顯示區 220 :遮光層 220a :第二凹槽 230 :彩色濾光層 230a :第一凹槽 240 :導電層 250 :第一間隙物 250a :通孔 252 :固定部 254 :支撐部 260 :第二間隙物 410 ··第一基板 20 1299091 051032ITW 17570twf.doc/e 412 :元件層 420 :第二基板 A-A’ :剖面線 dl、d2 ··厚度 wl ·見度1299091 051032ITW 17570twf.doc/e One of the photoresist block and the blue photoresist block. In addition, the arrangement of the red, green, and blue photoresist blocks may be a mosaic type, a stripe type, a four pixel type, and a triangle type. state. The material of the conductive layer 240 is, for example, indium tin oxide or indium zinc oxide, and the method of forming it is, for example, sputtering. With reference to FIG. 2 and FIG. 2A, in one embodiment of the present invention, the color filter substrate 200 further includes a plastic frame 27A disposed around the display area 212 of the substrate 21A. The liquid crystal can be quickly filled into the display area 212 by using a plastic frame 27 and a one drop fill (〇 DF) process. The material of the plastic frame 270 is, for example, a UV adhesive or a heat curing adhesive. The ultraviolet light or the heating process can be used to bond the plastic frame 270 to the color filter substrate 2 and the active device array substrate (not shown). 〇.:, 7. It is noted that the color filter 200 illustrated in FIGS. 2 and 2A has an ineffective area 214 located on the side of the non-display area 216, wherein the non-display area 216 is opposite. On the active device array substrate, electronic components for controlling the liquid crystal display φ plate are disposed. A plurality of first spacers 25A are disposed, and the first spacers have two through holes 250a, so that the first spacers 25b have the effect of sucking. For example, the 'interstitial spacer 250' has a function of supporting the substrate, and more is a ship that adsorbs and licks the substrate. Further, at 25 of the present invention. The shape may be a void two as shown in Fig. 2 or a square column (not shown in green). 13 1299091 ^5l〇32ITW 175?0twf.doc/e Referring to FIG. 2A, the material of the first spacer 25Q and the second spacer 26 is, for example, a photoresist material, and is fabricated by using a lithography process. The distribution position of the first spacer 25 〇 and the second spacer on the substrate 210 can be accurately controlled. Further, the thickness d1 of the support portion 254 of each of the first spacers 25 is the same as the thickness 汜 of each of the second spacers 26''. In particular, the through hole 250a of the first spacer 250 is located at a center position of each of the first spacers 250, and the size of the through hole 25 plus the width w1 is between 6 and 200 μm, and preferably, the through hole 25 is The width w of a is between 30 and 120 μm. In this way, the first spacer 25 〇 can have a better effect of adsorbing the two substrates. It should be noted that, as shown in the figure, the fixing portion 252 of the first spacer 250 is disposed in the first groove 230a of the color filter layer 230. In this way, not only can the adsorption space of the first spacer 250 be increased, but the Schiff force of the substrate can be increased and absorbed, and when the panel is subjected to the lateral stress, the first spacer 250 is also less likely to fall off. 2B is a cross-sectional view showing another color filter substrate according to a preferred embodiment of the present invention. Referring to FIG. 2B, components of the color filter substrate 202 that are similar to those of FIG. 2A are designated by the same reference numerals and will not be described again. It is to be noted that the light shielding layer 220 under the first recess 230a further includes a recess 220a and the fixing portion 252 is disposed in the second recess 230a and the second recess 220a at the same time. Therefore, as shown in FIG. 2B, the color filter substrate 202 has a larger space for the first spacer 250, so that the ability to adsorb and fix the substrate will be better. In addition, the first spacer 250 is simultaneously attached to the color filter layer 230 and the light shielding layer 220, and the 14 I299〇912itw 1757Otwf.doc/e can withstand greater lateral stress, and is less likely to fall off. . In summary, the color filter substrates 200, 202 are provided with a first spacer 250 having a through hole 250a on the ineffective area 214 thereof, and the first spacer 250 is partially disposed on the color filter layer 23 and/or Or on the light shielding layer 220. Therefore, in the fabrication of the large-size liquid crystal display panel, in addition to the function of supporting the substrate, the first spacer 250 has the ability to adsorb and fix the substrate. Therefore, the edge of the substrate does not cause warpage or misalignment. phenomenon. Further, the first spacer 250 does not easily fall off when subjected to lateral stress, and the problem of misalignment caused by the substrate can be reduced. Figure 3 is a cross-sectional view showing a liquid crystal display panel in accordance with a preferred embodiment of the present invention. Referring to FIG. 3, the liquid crystal display panel 3 includes an active element array substrate 310, a color filter substrate 32A, and a liquid crystal layer 33A. The shirt color filter substrate 320 is, for example, the above-mentioned color filter substrate 2〇〇, 2〇2, and the like members are denoted by the same reference numerals and will not be described again. The liquid crystal layer 330 is located between the color filter substrate 320 and the active device array substrate 310. The active device array substrate 310 has a plurality of active components (not shown), a plurality of broom lines (not shown) and a plurality of data lines (not shown), and the broom line and the stock line will be active elements _ The county board is divided into the township area (not painted), and the active components are set separately in each elementary area. The active component is, for example, a thin film transistor, and the active component is driven through the scan line and the data line. It is noted that the first spacer 250 having the opening 15 1299091 051032ITW 17570 twf.doc/e hole 250a is provided on the color filter substrate 320, and the color filter substrate 320 and the active device array substrate can be adsorbed and fixed. 310. In another embodiment of the present invention, the first spacer 250 may also be disposed on the active device array substrate 310, that is, the liquid crystal display panel 300 is a COA substrate (COA). A combination of a transparent substrate and a liquid crystal layer. In more detail, the COA substrate is formed on the active device array substrate 310 by using the color filter layer 230, the light shielding layer 220, the first spacer 250, and the second spacer 260 as shown in FIG. 2A or FIG. 2B. The other substrate 320 is a transparent substrate having a common electrode (not shown), and a liquid crystal layer (not shown) is further disposed in the two substrates. Therefore, the liquid crystal display panel (not shown) of the COA form can also utilize the first spacer 250 having the through hole 250a to adsorb and fix the COA substrate and the transparent substrate so that the edge of the substrate does not warp or Misplaced phenomenon. Similarly, all embodiments relating to the first spacer 250 are similar to those described above and will not be repeated here. In summary, in the fabrication of the large-size liquid crystal display panel, if the first spacer 250 having the through hole 250a is disposed in the ineffective area 214, the first spacer 250 has the function of supporting, and is more adsorbed. And the ability to fix the substrate. As a result, the edge of the liquid crystal display panel 3 is prevented from being warped or misaligned, thereby improving the yield of the liquid crystal display panel 300. 4A-4F are cross-sectional schematic cross-sectional views showing a method of fabricating a liquid crystal display panel in accordance with a preferred embodiment of the present invention. First, referring to FIG. 4A, a first substrate 41A is provided, and a layer 412 of 1299091 051032ITW 17570 twf.doc/e has been formed on the first substrate 41. The first substrate 4i is, for example, a thin film transistor array substrate, and the component layer 412 has a plurality of scanning lines (not shown), a plurality of data lines (not shown), and a plurality of thin film transistors (not shown). The thin film transistor is driven by the scan line and the data line. Next, referring to FIG. 4B, a second substrate 420 is provided, which is, for example, a color filter substrate 2, 2, 2 as shown in FIG. 2A or 2B, and like components are designated by the same reference numerals. The second substrate 42A has a display area 422 and an inactive area 424' and a plurality of first spacers 250 are disposed in the inactive area 424, and a plurality of second spacers 26 are disposed in the display area 422 (shown in Figure 4C). Then, referring to FIG. 4C and FIG. 4D, a plastic frame 430' is formed on the second substrate 420 and the plastic frame 430 is surrounded by the display area 422. The method of forming the plastic frame 430 is, for example, a enamel coating method, and the material of the plastic frame 430 is, for example, an ultraviolet curable adhesive or a thermosetting adhesive. Moreover, a liquid crystal layer 440 is filled in the space surrounded by the plastic frame 43A, as shown in Fig. 4D. The process of filling the liquid crystal layer 44 is, for example, a liquid crystal dropping process (one dr〇p fin, 〇df). It should be noted that the above-mentioned plastic frame 430 can also be fabricated on the first substrate 41 and surround the component layer 412. At this time, the liquid crystal layer 44 is filled in the plastic frame 430 on the first substrate 41. In the space (not shown). Thereafter, referring to FIG. 4E, the first substrate 41 and the second substrate 420 are combined. At this time, the first spacer 25 〇 can support the first substrate 41 〇 and the second substrate 420 to prevent the frame 43 from being deformed, and the misalignment between the first substrate 410 and the second substrate 420 can be prevented. In particular, since the steps of FIGS. 4A to 4E described above are carried out in the vacuum ring 17 1299091 051032ITW 17570 twf.doc/e, the first substrate 410 and the second substrate 42 are adhered in order to further cure the frame 430. Then, the liquid crystal display panel must be completely taken out from the vacuum environment, and the step of curing the plastic frame 43 is performed. Next, the process of curing the frame 43 is carried out according to Fig. 4E. In the embodiment, the method of curing the frame 43 may be ultraviolet irradiation or heating. It should be noted that, since the liquid crystal display panel 400 is not in a vacuum environment at this time, the position with the through hole % plus the first spacer f0 generates an adsorption force, and the first substrate 410 is adsorbed and fixed. Substrate 420. Therefore, the liquid crystal display panel 4 of the present invention does not cause the problem of the tortuous curvature of the substrate edge. Moreover, the first spacer 250 can assist the plastic frame 43 to support the first substrate 41 and the second substrate 42. Therefore, the liquid crystal display panel 400 of the present invention can prevent the insufficient support force before the plastic frame 430 is uncured. The phenomenon of misalignment of the substrate. Thereafter, referring to Fig. 4F, the first spacers 25 and the first substrate 41A and the second substrate 420 corresponding to the portions thereof are removed. Since the liquid crystal display panel 4 has sufficient supporting force after the plastic frame 430 is cured, the first substrate 410, the second substrate 420 and the first spacer 250 in the ineffective area 424 can be cut off. Therefore, the method for fabricating the liquid crystal display panel of the present invention utilizes the first spacers 250 to prevent the substrate edge from warping and the substrate from being displaced, and further improves the production yield of the large-sized liquid crystal display panel 4'. In summary, the color filter substrate, the liquid crystal display panel, and the liquid crystal display panel of the present invention have the following advantages: (1) The color filter substrate is provided with a plurality of first gaps in the ineffective area 18 1299091 051032ITW 17570twf.doc/ e, the first spacer has a through hole, so when it is used to manufacture a large-sized liquid helium display panel, in addition to the role of supporting, it has the ability to adsorb and fix the two substrates. '8' (2) The edge of the substrate of the LCD panel of Benleming does not appear to be feathered, and the position of the color filter substrate and the active device array substrate does not occur. Day π (3) The method of fabricating the liquid crystal display panel of the present invention prevents warpage of the edge of the panel and improves the problem of misalignment between the color filter substrate and the active device array substrate. Therefore, the production yield of the large-sized liquid crystal display surface can be improved. Although the present invention has been disclosed in the above preferred embodiments, it is not intended to limit the invention, and it is to be understood that those skilled in the art can make some modifications and refinements without departing from the spirit and scope of the invention. The scope of the invention is defined by the scope of the appended claims. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a schematic cross-sectional view showing a conventional large-size liquid crystal display panel. Figure 2 is a schematic top plan view of a color filter substrate in accordance with a preferred embodiment of the present invention. 2A is a schematic cross-sectional view taken along line A-A of FIG. 2. The figure shows a cross-sectional view of another color filter substrate according to a preferred embodiment of the present invention. 3 is a cross-sectional view showing a liquid crystal display panel in accordance with a preferred embodiment of the present invention. 19 1299091 051032ITW 17570 twf.doc/e FIGS. 4A to 4F are schematic cross-sectional views showing the steps of a method for fabricating a liquid crystal display panel according to a preferred embodiment of the present invention. [Main component symbol description] 100, 300, 400 · Liquid crystal display panel 102, 212, 422: display area 104, 214, 424: invalid area 110, 310: active device array substrate 120, 200, 202, 320: color filter Light substrate 130, 330, 440: liquid crystal layer 140a, 140b: spacer 150, 270, 430: plastic frame 210: substrate 216: non-display area 220: light shielding layer 220a: second groove 230: color filter layer 230a: First groove 240: conductive layer 250: first spacer 250a: through hole 252: fixing portion 254: support portion 260: second spacer 410 · first substrate 20 1299091 051032ITW 17570twf.doc / e 412: component layer 420: second substrate A-A': section line dl, d2 · thickness wl · visibility

Claims (1)

1TW,17570twf.doc/e 1299091 051032 +、申請專利範圍: l· 一種彩色濾、光基板’包括·· 一基板,具有一顯示區與一無效區·, 一遮光層,設置於該基板上; 一彩色濾光層,配置於該基板上並覆蓋該遮光層,其 中位於該無效區之該彩色濾光層具有至少一第_凹槽· ^ 一導電層,配置於該基板上,並覆蓋該彩色濾^層與 5玄遮光層; 夕數第一間隙物,設置於該導電層上且位於該無效區 内,每一第一間隙物具有一固定部及位於該固定部I的二 支撐部’且在每-第物中有—通孔, 設置於該第一凹槽内;以及 u疋邛疋 内。多數第二間隙物,設置於該導電層上且位於該顯示區 位;利範圍第1項所述之彩色濾、光基板,其中 該基板’其中 4·如申請專利範圍第j項所述 該些間叫㈣二 括:i置=¾周色r板,更包 申明專利範圍第1項所迷、。 該通孔是位於每—第—間隙物、、β色遽光基板,其中 T '位置。 22 1299091 051032ITW 17570twf.doc/e 該、Jit利範圍第1項所述之彩色濾光基板,其中 孔之見度的尺寸於6〜2〇〇μηι之間。 每」广利範圍第1項所述之彩色濾光基板,其中 該支撐部的厚度與每—第二間隙物的厚 ^二ϊ'ί利範圍第1項所述之彩色濾光基板,其中 〜弟- _物之形狀包括空心圓挺狀或空心方柱狀。 10·—種液晶顯示面板,包括·· 一主動元件陣列基板; ㈣1色遽光基板,其是為申請專利範圍第1項所述; Μ及 板之間 液晶層,位於該彩色濾光基板與該主動元件陣列基 Ο Φ」·如λΤ清專利範圍第10項所述之液晶顯示面板,其 1於該第-凹槽下方之該遮光層中更包括一第二凹槽, 该固定部是同時設置於該第—凹槽與該第二凹槽内。 如申晴專利範圍第10項所述之液晶顯示面板,其 ‘電層之材質包括銦錫氧化物或銦鋅氧化物。 13^如申請專利範圍第1〇項所述之液晶顯示面板,其 以些第一間隙物與該些第二間隙物之材質包括光阻材 料0 勹14·如申請專利範圍第1〇項所述之液晶顯示面板,更 匕一膠框,設置於該基板之該顯示區的周圍。 15·如申請專利範圍第1〇項所述之液晶顯示面板,其 ^通孔是位於每一第一間隙物的中心位置。 231TW, 17570twf.doc/e 1299091 051032 +, the scope of patent application: l · A color filter, optical substrate 'includes · a substrate, has a display area and an invalid area ·, a light shielding layer, is disposed on the substrate; a color filter layer disposed on the substrate and covering the light shielding layer, wherein the color filter layer located in the inactive area has at least one first conductive layer, disposed on the substrate, and covering the color filter layer a color filter layer and a 5th light-shielding layer; a first spacer of the first day, disposed on the conductive layer and located in the ineffective area, each first spacer has a fixing portion and two supporting portions located at the fixing portion I 'and in each of the - there are - through holes, disposed in the first groove; and u inside. a plurality of second spacers disposed on the conductive layer and located in the display area; the color filter and optical substrate of the first aspect, wherein the substrate 'the 4' is as described in item j of the patent application scope It is called (4) and two: i set = 3⁄4 week color r board, and it is also covered by the first paragraph of the patent scope. The through hole is located in each of the -interstitial, beta color light substrate, wherein the T' position. 22 1299091 051032ITW 17570 twf.doc/e The color filter substrate of the item J1, wherein the size of the hole is between 6 and 2 〇〇μηι. The color filter substrate of the first aspect of the invention, wherein the thickness of the support portion and the thickness of each of the second spacers are in accordance with the color filter substrate of the first item, wherein ~ Brother - _ shape of the object includes a hollow round shape or a hollow square column. 10. A liquid crystal display panel comprising: an active device array substrate; (4) a 1-color phosphor substrate, which is described in claim 1; a liquid crystal layer between the germanium and the plate, located on the color filter substrate The liquid crystal display panel according to the ninth aspect of the invention, wherein the light shielding layer under the first groove further comprises a second groove, the fixing portion is At the same time, the first groove and the second groove are disposed. The liquid crystal display panel of claim 10, wherein the material of the electric layer comprises indium tin oxide or indium zinc oxide. The liquid crystal display panel of claim 1, wherein the material of the first spacer and the second spacer comprises a photoresist material. 如14. The liquid crystal display panel is further provided with a plastic frame disposed around the display area of the substrate. The liquid crystal display panel of claim 1, wherein the through hole is located at a center of each of the first spacers. twenty three 法 1299091 051032ITW 1757Otwf.doc/e 16·如申請專利範圍第1〇 中該通孔之寬度的尺寸介板 中每—圍第10項所述之液晶顯示面板,其 厚度相同。曰μ之该支稽部的厚度與每-第二間隙物的 中料8=二〜2乾圍第10項所述之液晶顯示面板,其 二一一日永物之形狀包括空心圓柱狀或空心方柱狀。 / /一種5晶顯示面板的製作方法,包括: St 一 Ϊ 一基板’且該第一基板上已形成-元件層; 、Γ #弟—基板,其是如申請專利範圍第1項所述; 4暖,絲—基U形成—膠框或於該第—基板上形成 ^骖框,且使該膠框圍繞該顯示區; 於該膠框所圍出之空間内填人-液晶層; 結合該第一基板與該第二基板; ^固化该膠框,同時該些第一間隙物會吸附固定該 第一基板與該第二基板;以及 移除該些第一間隙物與對應其位置之部分的該第 一基板與該第二基板。 20·如申請專利範圍第19項所述之液晶顯示面板的製 作方法’其中固化該膠框之方法包括紫外線照射法或加熱 21· —種液晶顯示面板,包括: 一主動元件陣列基板,具有一顯示區與一無效區,該 24 1299091 051032ITW. 17570twf.doc/e 主動元件陣列基板包括: 一遮光層’設置於該主動元件陣列基板上. 一彩色濾光層,配置於該主動元件陣列基板上並 覆蓋該遮光層,其中位於該無效區之該彩色濾光 層具有至少一第一凹槽; ^ 多數第一間隙物,設置於該彩色濾光層上且位於 該無效區内,每一第一間隙物具有_固定部及位 於該固定部上的一支撐部,且在每一第一間隙物 中有一通孔,而該固定部是設置於該第一凹槽 内; 多數第二間隙物,設置於該彩色濾光層上且位於 該顯示區内; 一透明基板,位於該主動元件陣列基板之上方;以及 一液晶層,配置於該主動元件陣列基板與該透明基板 之間。 22.如申請專利範圍第21項所述之液晶顯示面板,更 包括'^共用電極,配置於該透明基板上。 23·如申請專利範圍第21項所述之液晶顯示面板,其 中位於該第一凹槽下方之該遮光層中更包括—第二凹槽, 且該固定部是同時設置於該第一凹槽與該第二凹槽内。 24.如申請專利範圍第21項所述之液晶顯示面板’其 中該些第一間隙物與該呰第二間隙物之材質包括光阻材 料。 25·如申請專利範圍第21項所述之液晶顯示面板,更 25 l29m 32ITW 17570twf.doc/e 包括-膠框’設置於該基板之該顯示 26.如申請專利範圍第21項所圍。 中該通孔是位於每—第一間隙物的中心:;顯示面板’其 27·如申請專利範圍第21項所 t該通孔之寬主度的尺寸介於6〜2〇〇脚之夜γ示面板,其 中每-第-間隙物之該支撐部的示面板,其 厚度相同。 、子母一弟二間隙物的 29·如申睛專利範圍第2丨 中該些第一間隙物之形壯、斤迩之液日日顯不面板,其 糸物之形狀包括空心圓柱狀或空心方柱狀。 26Method 1299091 051032ITW 1757Otwf.doc/e 16 The liquid crystal display panel of the size of the through-hole in the size of the through-hole is the same as the thickness of the through-hole. The thickness of the branch portion of the 曰μ and the middle material of each of the second spacers are 8=2~2 dry circumference. The liquid crystal display panel according to item 10, the shape of the permanent object on the 21st day includes a hollow cylindrical shape or Hollow square column. / / A method for fabricating a 5-crystal display panel, comprising: a substrate - and a component layer is formed on the first substrate; and a substrate is as described in claim 1; 4 warm, silk-based U formed - plastic frame or formed on the first substrate, and the plastic frame surrounds the display area; fills the space enclosed by the plastic frame - liquid crystal layer; The first substrate and the second substrate; curing the frame, and the first spacers adsorb and fix the first substrate and the second substrate; and removing the first spacers and corresponding positions thereof Part of the first substrate and the second substrate. The method for manufacturing a liquid crystal display panel according to claim 19, wherein the method for curing the plastic frame comprises ultraviolet irradiation or heating, and comprises: an active device array substrate having one The display area and the inactive area, the 24 1299091 051032ITW. 17570 twf.doc/e active device array substrate comprises: a light shielding layer disposed on the active device array substrate. A color filter layer disposed on the active device array substrate And covering the light shielding layer, wherein the color filter layer located in the ineffective area has at least one first groove; ^ a plurality of first spacers disposed on the color filter layer and located in the inactive area, each of the first a spacer has a fixing portion and a supporting portion on the fixing portion, and a through hole is formed in each of the first spacers, and the fixing portion is disposed in the first recess; and the plurality of second spacers And disposed on the color filter layer and located in the display area; a transparent substrate located above the active device array substrate; and a liquid crystal layer disposed on the main Between the element array substrate and the transparent substrate. 22. The liquid crystal display panel of claim 21, further comprising a '^ common electrode disposed on the transparent substrate. The liquid crystal display panel of claim 21, wherein the light shielding layer located under the first groove further comprises a second groove, and the fixing portion is simultaneously disposed in the first groove With the second groove. The liquid crystal display panel of claim 21, wherein the material of the first spacer and the second spacer comprises a photoresist. 25. The liquid crystal display panel of claim 21, further comprising: - the plastic frame being disposed on the substrate. 26. The scope of claim 21 is enclosed. The through hole is located at the center of each of the first spacers; the display panel '27' is as wide as the size of the through hole of the 21st item of the patent application range is 6~2 lame night The γ-display panel, wherein the display panel of the support portion of each of the first spacers has the same thickness. 29, such as the second child of the second parent, in the second part of the scope of the patent application, the shape of the first spacer is strong, and the liquid of the liquid is not visible on the day, and the shape of the object includes a hollow cylinder or Hollow square column. 26
TW95126909A 2006-07-24 2006-07-24 Color filter substrate, liquid crystal display panel and manufactured method thereof TWI299091B (en)

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