M337752 八、新型說明: 【新型所屬之技術領域】 本創作係關於一種拼接式液晶顯示器,可滅少面板組合時之間隙,而 可應用於大型面板之組裝。 【先前技術】 現今液晶面板薇可量產的面板尺寸仍褐限在一百对以下,主要 原因在於大型面板造價偏面’良率又低,造成供給量受限。然而, 以目前液晶面板在廣告行銷上有顯著效益,市面上對於大型面板的 需求日趨殷切。既然,目前單一面板尺寸的開發存在相當的瓶頸, 因此,如何利用現有尺寸的面板進一步組裝成大型面板即為此技術 領域中之重要課題。 液晶面板大致可區分為顯像區(螢幕本體)及非顯像區(邊 框),因此,若直接採取並排方式組裝面板,則面板間之邊框將形 成顯像區間之明顯間隙,影響顯像的完整性。以常見的電視牆為 例,單一螢幕(即#一電視晝面)與其各相鄰的榮幕間皆因榮I奢 框(含電視本身之膠框、液晶面板本身之非顯像區之邊框) 在,使螢幕與螢幕間無法緊密接合,形成影像切割,嚴重影變顯: 品質與視覺效果;同樣地,當單—液晶面板欲組裝為包含複&個 晶面板之大型面板時,各液晶面板外緣之邊框亦同樣使相鄰杯 間無法完全緊密接合。此為液晶面板結構上既有之限制, 由扭接式面板所製造之顯_在顯像上的明顯缺失,若能突破: 瓶頸’則將為面板拼接技術之重大進展。 同日守,#能解消除或減小面板邊框在顯像上所形成之間 可利用現有小尺寸面板組裝成A型拼接式面板,料突破目前液曰曰 M337752 或較小段差之大型顯像區。 較佳地,前述液晶面板係與另一單一液晶面板橫向重疊或縱向 重疊。 較佳地,前述液晶面板係與另一單一液晶面板橫向並排或縱向 並排。 較佳地,前述液晶面板間係至少以一鎖接構件使重疊或並排之 液晶面板相互接合。 綜上所述可以得知,本創作之拼接式液晶顯示器具有可增加顯像 面積、減少拼接面板間隙、避免影像切割之優點;同時,由於其係利 用現有尺寸之面板進行組裝,可以降低該產品之市場風險,因而可以 具有相當成本優勢。因此,在此技術領域中極具發展潛力與前景。 【實施方式】 本創作將藉由以下實施例進一步詳細說明,但該等實施例僅係用於 .舉例說明,而非用於限定本創作之範疇。 • 請參閱第一圖,係顯示液晶面板間以邊框相堆疊時之立體透視 圖。在此較佳實施例中,本創作之拼接式液晶顯示器係包含一液晶 面板11,其具有四個侧邊11 a〜11 d ; —液晶面板12,其具有四個侧 邊12a〜12d ;及一液晶面板13,其具有四個側邊13a〜13d。將前述 液晶面板11之側邊11c (圖未顯示)與液晶面板12之側邊12a重 疊,使液晶面板11與液晶面板12相重疊為一拼接式液晶面板;同 樣地,液晶面板12之侧邊12c (圖未顯示)亦可與液晶面板13之 侧邊13a重疊而相互接合。 7 • M337752 、:r曰純亚排之#接式液晶面板,以側邊堆疊方式相接合之 液日日面板隶多可減少一半之間+M337752 VIII. New description: [New technical field] This creation is about a splicing liquid crystal display that can eliminate the gap when the panel combination is small, and can be applied to the assembly of large panels. [Prior Art] Today, the panel size of the liquid crystal panel can be limited to a hundred or less. The main reason is that the large panel cost is low, and the yield is limited. However, with the current significant benefits of LCD panels in advertising marketing, there is a growing demand for large panels on the market. Since the development of a single panel size currently has considerable bottlenecks, how to further assemble a large panel using a panel of an existing size is an important issue in this technical field. The liquid crystal panel can be roughly divided into a development area (screen body) and a non-image area (frame). Therefore, if the panel is assembled side by side, the frame between the panels will form a significant gap in the development interval, which affects the development. Integrity. Taking a common video wall as an example, a single screen (ie, a TV screen) and its adjacent glory screens are both sturdy and luxurious (including the frame of the TV itself and the border of the non-image area of the LCD panel itself). In this way, the screen and the screen can not be closely joined to form an image cut, which is severely changed: quality and visual effect; similarly, when the single-liquid crystal panel is to be assembled into a large panel including a complex & crystal panel, each liquid crystal The bezel of the outer edge of the panel also prevents the adjacent cups from being completely tightly joined. This is a limitation of the structure of the liquid crystal panel, and the apparent illusion of the display made by the twisted-type panel, if it can break through: the bottleneck will be a significant advancement of the panel splicing technology. The same day, the # can solve the elimination or reduce the panel frame between the formation of the image can be assembled into a type A splicing panel using the existing small-sized panel, which is expected to break through the current large liquid imaging area of liquid 曰曰 M337752 or smaller step . Preferably, the liquid crystal panel is laterally overlapped or vertically overlapped with another single liquid crystal panel. Preferably, the liquid crystal panel is laterally side by side or longitudinally side by side with another single liquid crystal panel. Preferably, the liquid crystal panels are joined to each other by at least one of the locking members so as to overlap or side by side. In summary, the spliced liquid crystal display of the present invention has the advantages of increasing the imaging area, reducing the gap of the splicing panel, and avoiding image cutting; at the same time, since it is assembled by using the panel of the existing size, the product can be lowered. The market risk can therefore have a considerable cost advantage. Therefore, there is great potential and prospect in this technical field. [Embodiment] The present invention will be further described in detail by the following examples, but these examples are for illustrative purposes only and are not intended to limit the scope of the present invention. • Refer to the first figure, which shows a perspective view of the LCD panels stacked with a frame. In the preferred embodiment, the spliced liquid crystal display of the present invention comprises a liquid crystal panel 11 having four sides 11 a to 11 d; a liquid crystal panel 12 having four sides 12a to 12d; A liquid crystal panel 13 having four side edges 13a to 13d. The side edge 11c (not shown) of the liquid crystal panel 11 is overlapped with the side 12a of the liquid crystal panel 12, so that the liquid crystal panel 11 and the liquid crystal panel 12 are overlapped to form a spliced liquid crystal panel; similarly, the side of the liquid crystal panel 12 is 12c (not shown) may be overlapped with the side edges 13a of the liquid crystal panel 13 to be joined to each other. 7 • M337752, :r曰 pure sub-row of the #-connected LCD panel, the side-by-side stacking method can reduce the liquid daily panel by half.
Jim曰η 千之間歸、,亦即,將相鄰兩塊單一面板利用 ::,重豐後’該兩面板之間隙最多可減少一個邊框的寬度,使 :肉眼可見之間隙明顯降低。以二十六忖面板組裝為 ==邊的邊框寬度約8·9 mm,若將液晶面板以並排方式 直㈣曲接,助鄰兩面板之_可達兩倍邊框寬度(難 之多。 因此’本創作之方法係利用現有尺寸之面板(如:二十六忖 二十一对等)’以面板邊框相互堆疊組合而成,不但可增加顯像區, 亦可明顯減少非顯像區在顯像區間所造成之_,拼接成—近乎無 接缝之大型面板。 請參閱第二圖,係顯示具有拼接式面板之顯示器示意圖。以液 晶面板U為例,其係以其侧邊llc (圖未顯示)與相鄰之液晶面 板之側12a&向重璺,或以其側邊Ud與相鄰之液晶面板14 之侧邊14b(圖未顯示)縱向重疊,以達成相鄰面板相接合之目的。 將液曰曰,板11〜19所組合而成的拼接式面板與外覆之保護層 (圖未_tf)及外接之背光模組41進_步結合後,形成—顯示器 明簽閱第二圖,係顯示相鄰面板堆疊後之切面圖。將,鎖件23 置於保護層31之上’其中,鎖件23及鎖件22係位於液晶面板12 之下表面及上表面,鎖件22及鎖件21係位於液晶面板n之下表 面及上表面,並分別以鎖接構件(例如:螺絲,圖未顯示)將邊框 堆璺之液晶面板11與液晶面板12加以固定。 在另一較佳實施例中,本創作提出一種利用截除邊角、具有較 小段差之拼接式液晶面板所組成的顯示器。若面板各側邊皆以邊框 • M337752 相重疊的方式來減少與相鄰面板的間隙,則因各面板處於不同平 面,相鄰面板間的段差過大。為進一步解決此一問題,使相鄰面板 之段差達到最小,可利用精密治具或是專業切割機截去各面板之邊 角。請參閱第四圖,取三十二对液晶面板ln與液晶面板ιΐ2分別 削除其中-邊角形成第五侧邊111&與112a,再將前述兩側邊相併 合,形成一拼接式面板10〇在以複數截角面板進行拼接的情況下, 相鄰面板間係以其邊框相互重疊,形成上下交錯的排列;同時,同 一平面之面板則因已截去邊角而能相互併合不產生段差。 換言之,以四塊面板側邊重疊所形成的最小單位面板為例,未 截除邊角W,其他三塊面板的邊角係重疊於最底部面板的邊角之 上,扣除最底部面板本身的厚度,則此一單純利用四塊單一面板邊 框相重疊所組裝而成的拼接面板,其段差# 3塊面板之厚度(約 9mm)(請參考第五圖);但若湘本創作截除邊緖之拼接方式, 則因以截諸合後之面板係位於同—平面,重疊於其各側邊(即邊 框)的其,截角併合面板又相—平面,則前述上下交錯的拼接面 板間,其最大段差僅為-塊面板之厚度(約3mm)(請參考第六圖)。 即找加面板數目進行更大尺寸的面板拼接,利用邊框重疊後面板 間之取大段i仍僅為單塊面板之厚度(請參考第七圖),對於大型 顯示器的影像呈現效果有顯著之改善。當然,在不需考慮間隙(如: 位於顯像,邊緣)或針對不同顯示器用途的情況下,亦可將重疊或 亚排方式父替運用,以期能使本創作之顯示器發揮最大之效用。 、、由於本創作係利用面板邊框處相堆疊,使得邊框所造成的間隙 僅:進T步截除面板邊框的邊角’又可使拼接之相鄰面板 ^之U僅剩-個液晶面板厚度左右,因此在視覺上可形成一近似 無接^及無段差的麟平面。料,所赠之赠邊角烟邊框部 为,未損及液晶面板本體之封膠,並無使液晶㈣之虞,係為一安 9 .M337752 全且具有顯著功效之拼接式面板製造方法。 雖然本創作已揭露如上之較佳實施例,然其並非用以限定 本創作,任何熟悉此技藝者,在不脫離本創作之精神和範圍内, 當可作各種之變更與修飾,本創作之保護範圍,當視後附之申 請專利範圍所界定者為準。 【圖式簡單說明】 弟圖係顯不此根據本創作液晶面板間以邊框相堆疊之立體 透視圖。 弟一圖係顯示此根據本創作具有拼接式面板之顯示器示意 圖。 弟二圖係頒示此根據本創作相鄰面板重疊、鎖接之切面圖。 第四圖係顯示此根據本創作相鄰之截角面板以截角之侧邊相 接合之示意圖。 第五圖係顯示此根據本創作相鄰面板未截除邊角之拼接示意 圖。 第六圖係顯示此根據本創作相鄰面板已截除邊角之拼接示意 圖。 第七圖係顯示此根據本創作複數個面板截除邊角後重疊所形成 之拼接面板示意圖。 【主要元件符號說明】 1〇.........液晶面板 11 .........液晶面板 M337752Jim曰η thousand, between, that is, the use of adjacent two single panels to use ::, after the heavy weight, the gap between the two panels can reduce the width of a frame at most, so that the visible gap is significantly reduced. The width of the frame with the == side of the 26-inch panel is about 8·9 mm. If the liquid crystal panel is directly connected (four) in a side-by-side manner, the width of the adjacent two panels can be up to twice the width of the border. 'The method of this creation is to use the panel of the existing size (such as: twenty-six twenty pairs, etc.) to be stacked on the panel frame, which not only increases the development area, but also significantly reduces the non-image area. The photographic panel creates a large panel with almost no seams. Please refer to the second diagram for a display with a spliced panel. Take the LCD panel U as an example with its side llc ( The figure is not shown) and the side of the adjacent liquid crystal panel 12a& or the side Ud and the side 14b of the adjacent liquid crystal panel 14 (not shown) are longitudinally overlapped to achieve adjacent panel bonding. The purpose of the liquid raft, the combination of the panel 11~19 is combined with the outer protective layer (Fig. _tf) and the external backlight module 41 to form a display Read the second picture, which shows the cut-away view of the adjacent panels after stacking. The member 23 is disposed on the protective layer 31. The lock member 23 and the lock member 22 are located on the lower surface and the upper surface of the liquid crystal panel 12. The lock member 22 and the lock member 21 are located on the lower surface and the upper surface of the liquid crystal panel n. And fixing the liquid crystal panel 11 and the liquid crystal panel 12 which are stacked on the frame by a locking member (for example, a screw, not shown). In another preferred embodiment, the present invention proposes to utilize a cutting edge and have A display composed of a small-sized spliced LCD panel. If the sides of the panel are overlapped by the frame and M337752 to reduce the gap with the adjacent panel, the panel is in different planes and the difference between adjacent panels To solve this problem further, to minimize the difference between adjacent panels, you can use the precision fixture or professional cutting machine to cut off the corners of each panel. Please refer to the fourth figure for 32 pairs of LCD panels. And the liquid crystal panel ιΐ2 is respectively removed, wherein the corners form the fifth side edges 111 & and 112a, and then the two side edges are combined to form a spliced panel 10 〇 in the case of splicing with a plurality of truncated panels The adjacent panels are overlapped with each other to form an upper and lower staggered arrangement. At the same time, the panels of the same plane can be combined with each other due to the truncated corners without generating a step. In other words, the four panels are overlapped on one side. For example, the minimum unit panel is not cut off. The corners of the other three panels overlap the corners of the bottom panel. After subtracting the thickness of the bottom panel itself, this simple use of four single panel borders. The splicing panel assembled by overlapping, the thickness of the panel is #3 (about 9mm) (please refer to the fifth figure); but if the creation of the splicing method is removed, the splicing method is The panel is located in the same plane, overlapping the sides thereof (ie, the frame), and the truncated angle is combined with the plane and the plane, and the maximum difference between the above-mentioned upper and lower staggered splicing panels is only the thickness of the panel. About 3mm) (please refer to the sixth picture). That is to find the number of panels to make a larger panel splicing, using the border overlap, the large section between the panel is still only the thickness of a single panel (please refer to the seventh figure), the image display effect for large displays is significant improve. Of course, if you don't need to consider the gap (such as: at the image, edge) or for different display purposes, you can also use the overlap or sub-row method to make the display of this creation the most effective. Because the creation department uses the stacking of the panel borders, the gap caused by the frame is only: the corner of the panel frame is cut in step T, and the adjacent panel of the splicing is only left - the thickness of the liquid crystal panel Left and right, so it is visually possible to form a lining plane with no connection and no step. In addition, the gift box corner portion of the gift is not damaged to the seal of the liquid crystal panel body, and does not make the liquid crystal (4), which is a spliced panel manufacturing method with a total efficiency of 9. M337752. Although the present invention has been disclosed as a preferred embodiment of the present invention, it is not intended to limit the present invention, and any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. The scope of protection shall be subject to the definition of the scope of the patent application attached. [Simple description of the drawing] The brother figure is not based on the stereo perspective view of the LCD panel stacked by the frame. A picture of the display showing the spliced panel according to the present invention is shown. The second picture shows the cut-and-close view of the adjacent panels according to the creation. The fourth figure shows a schematic view of the tangent panels adjacent to the present creation joined by the sides of the truncated corners. The fifth figure shows a mosaic of the uncut corners of adjacent panels according to the present creation. The sixth figure shows a mosaic of the corners of the adjacent panels that have been cut according to the present creation. The seventh figure shows a schematic view of the splicing panel formed by overlapping the corners of the plurality of panels according to the present creation. [Main component symbol description] 1〇.........LCD panel 11 .........LCD panel M337752
111· 112· 12 · 13 14 . 15 · 16 17 18 19 21 22 23 31 41 100 液晶面板 液晶面板 液晶面板 液晶面板 液晶面板 液晶面板 液晶面板 液晶面板 •液晶面板 •液晶面板 •鎖件 •鎖件 •鎖件 •保護層 •背光模組 顯示器111· 112· 12 · 13 14 . 15 · 16 17 18 19 21 22 23 31 41 100 LCD panel LCD panel LCD panel LCD panel LCD panel LCD panel LCD panel LCD panel • LCD panel • LCD panel • Locks • Locks • Locking device • Protective layer • Backlit module display