TW201029022A - Injection molded touch panel - Google Patents

Injection molded touch panel Download PDF

Info

Publication number
TW201029022A
TW201029022A TW98102764A TW98102764A TW201029022A TW 201029022 A TW201029022 A TW 201029022A TW 98102764 A TW98102764 A TW 98102764A TW 98102764 A TW98102764 A TW 98102764A TW 201029022 A TW201029022 A TW 201029022A
Authority
TW
Taiwan
Prior art keywords
conductive film
touch panel
transparent substrate
injection
conductive
Prior art date
Application number
TW98102764A
Other languages
Chinese (zh)
Inventor
Kuang-Ta Chen
Wen-Jung Wu
Tsung-Min Tso
Jie-Bin Peng
Chang-Yu Chen
Original Assignee
Transtouch Technology Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Transtouch Technology Inc filed Critical Transtouch Technology Inc
Priority to TW98102764A priority Critical patent/TW201029022A/en
Publication of TW201029022A publication Critical patent/TW201029022A/en

Links

Landscapes

  • Position Input By Displaying (AREA)

Abstract

This invention provides an injection molded touch panel. The injection molded touch panel comprises: a first transparent base material which is formed by an injection molding process; a first conducting film and a non-conducting film region placed on the surface of the transparent base material, wherein the non-conducting film region has a first electrode circuit; and a second conducting film and a non-conducting film region placed on the other surface of the transparent substrate, wherein a second electrode circuit is arranged on the non-conducting film region. As a result, the first translucent substrate can be made into many different shapes through injection molding. Furthermore, dimension can be made accurately to satisfy customer needs.

Description

201029022 六、發明說明: 【發明所屬之技術領域】 本發明是有關於-鋪出成型之觸控面板 式可製作多樣化形狀之觸控面板,且尺寸精準可增 【先前技術】 右顯示器技術的發展,平面顯示器的顯示效果已 再者,由於製程技術的進步,帶動平面顯示201029022 VI. Description of the Invention: [Technical Field] The present invention relates to a touch panel type which can be formed into a variety of shapes and can be increased in size. [Prior Art] Right Display Technology Development, the display effect of flat panel display has been repeated, due to the advancement of process technology, driving the flat display

直發成ίτ降’使得平面顯示11在市場上受到廣大消費者的 二ϋ 了提昇使用上的便難,近年轉界更將觸控面板 ^口至平面顯示器,並且應用於各樣電子裝置置當中,例如 2於^動電話中,讓使用者可藉由直接在面板上點選畫面 來S各項’藉此提供更級人性化的操作模式。 p U各細馳面板之t,又以電阻式與電容摘控面板 ,為曰及,此乃因電阻式和電容式觸控面板之製造成本較 f且與終端產品尺寸相容性較佳,故能廣泛地制於 產品之中。 對於電阻式觸控面板之構造而言,主要包括第一透明基 材、第二透明基材、貼合層、及軟性電路板,第-透明基板 之了表面設置有第—導電膜、第-電極線、及第-導電迴 路,第一透明基板之一表面設置有第二導電膜、第二導電 線、及第二導電迴路;+間_雙轉絲分子聚合膠的貼 合層用以貼合第-翻基材與第二透材,並·軟性電 路板連接觸控面板之電路與1(^控制器。 板之構造而言主要在第_透明基材 之了表面分別設置第-導電膜、第—電極線、及第一導電迴 路;另-表面設置第二導電膜、第二電極線,並利用軟性電 201029022 路板連接觸控面板之電路與1(:控制器。 一般來說,習知的觸控面板其製造上,為了符合客戶結 構上的需求’都是利用刀模沖壓或雷射切割方式預留鏡頭與 通話的位置’並且有些手機結構為内嵌式…般係採用聚碳 ‘ 義作為下基板讀質,並且作為綱的設置位置,其雖然 . 便於加工’但其透光性不佳,但若下基板改為玻璃,其透光 性雖佳’但加過糊不料;狀,無論湖何種結構, 其兩者在加工過程中都易於傷害其表面設置之導電膜及產 生毛邊,降低其生產過程之良率,為其主要缺點。 _ 因鑑於上述習知觸控面板所存在之缺點,本案發明人經 多方研究、設計後,終於研製成功本發明。 【發明内容】 本發明之主要目的,在提供一種射出成型之觸控面板, 其係利用射出成型方式獲得複雜性形狀的透明基材,以符合 客戶之需求。 根據本發明,提出一種射出成型之觸控面板,其主要包 括:第一透明基材,係經由射出成型方式製成;第一導電膜 和非導電膜區,設置於該透明基材表面,其非導電膜區上設 嚤置有第一導電迴路,以及在該透明基材另一側表面設置第二 導電膜和非導電膜,並在其非導電膜區上設置一第二電極迴 路;藉此,可利用射出成型方式製作多樣化之形狀,且尺寸 精準、增加良品率’其結構並可廣用於各式不同實施態樣, 均可達到同等功效,可有效避免習式以沖壓方式製造易於產 生毛邊及傷害到表面所設導電膜之缺點。 【實施方式】 為使能進一步瞭解本發明之内容及其他特點,茲舉本發 明較具體之實施例’並配合附圖之實施例詳細說明如以下所 4 201029022 述。 請參第l圖所^係本發明之第一實施例,其觸控面板 主要包括:-第-透明基材(1 i)經由射出成型 式製作,並在其表面上設置—通話孔(1 1 9 )和一第一 電膜(1 Η ) ’係經由蒸鑛濺鑛、pld (pUise iaser :l!tl〇n)、化學氣相沉積、噴霧熱解法、溶膠凝膠法而製 一道個X轴導電膜區和數個非導電膜區;或者先形成一第 膜(1 Η )後再經由化學_彳或雷腳5刻等方法製 作成數個Χ軸柵條導電舰和數個鱗電·,再將一第一 路(1 1 3 )設置在-第一透明基材(丄工)之非導 、品利用雷射方式分隔出另一個導電膜、 印刷方謂料祕電舰,並觀_χ_^=墨 為可繞15)可為麵㈣賴方式製成或 為了繞生材料,並其表面設置一通話孔(工工9 )和一第三 導電膜(1 5 1 ),相同亦經由蒸顧錢、pLD (_⑻二 子;或== 製作出非導電,再將—第二導電迴路(1 1 6 )設置在 ί透U材之非導電膜區上’並聯結數個Y轴柵條導電膜 读明:Ζ、1 7),為一框形中空體,用以黏合於第-透月基材(11)與第二透明基材(15)之間,並利用敕 )連接觸控面板之電路與1 c控制器。為了 曰加美雛、產品價錄、及客戶f求, 可設置透光區(2 〇1)和非透明區(2 α 2)透月之表面 進一步說’如第2圖所示,其主要包括:一第一透明基 201029022 =(1 1)經_出成财式製作,並在其表面 話孔(1 1 9)和一第一導電膜(1 1 1 ),係經由基j 鑛、PLD (pulse iaser depositi〇n)、化學相…:费 熱解法、溶膠郷法而製作成_χ軸導電^和個= ,或雷射罐作成繼轴導(41區 迴路(113)設置在-第-(11)之非導電膜區、利用雷射方式分_另―個導』 軸印刷方式製作轉導電聽,並聯結數個X ,導電膜區。在該透明基板另—_表面設置—第二 1 1 8),相同亦經由蒸鍍機鍍、PLD (puise “ =tlon)、化學氣相沉積、噴 數個彻耽概形= )後再經由化學蝕刻或雷射蝕刻等方法製 電膜區、數個非導電膜區、及利用油墨印刷方 ,再將第二導電迴路(116)設置在非 (2 η 數個#導電膜區,並利用一軟性電路板 (2 1、)連接觸控面板之電路與〗⑽制器。 山^進一步說’其主要包括:一第一透明基材(11)經 由方式製作’並在其表面上設置一通話孔(1工9) 口 電膜(1 1 1 ) ’係經由蒸鐘麵、PLD (pulse laser dep〇slt 10n)、化學氣相沉 作,客戶所要求的圖形、按鍵、及非導;:凝 ^ 路(113)設置在一第—透明基材(1 膜區、利肖雷射方式分隔出另一個導電膜上、 μ 刷方式製作出非導電膜,並聯結數個客戶所要 二,一‘鍵。為了增加美觀性、產品價值性、及客戶需 ’ 、明之表面可設置透光區(201)和非透明區 201029022 (202)。 糾t ’謂造及躺上烟可制㈣ 之形狀’狀寸鮮,增加良品率之效果。_夕樣化 請參見第3圖所示,係本發明較佳第二實施 圖’ 一第-透明紐(1 1)是經由射出成型方式製作,該 . 基材的表面具有一通話孔(119)和一第一導電膜(工^ 1) ’在其表面上設置一第一電極線(丄丄2 ) 極 L結構之_,該圖⑽構具有—π 第一橫列部及一第二橫列部、複數個第二 • 第4圖所*,在非導電膜區上設置第一導電迴路 3 )。 一第二透明基材(15 )可為經由射出成型方式製成或 為可繞性材料,並在其表面設置一通話孔(2丄9)和一第 三導電膜(1 5 1 ),其導電膜上設置一第二電極線(工工 5 )。 一貼合層(1 7 ),為一框形中空體,用以黏合於第一 透明基板(11)與第二透明基板(15)之間,且一第一 導電膜(111)與一第三導電膜(151)之間有數個間 _ 隔物(1 8 ),以避免電性短路現象產生,一軟性電路板(2 1)連接觸控面板之電路與IC控制器。 更進一步說,如第5圖所示,一第一透明基材(11), 疋經由射出成型方式製作,該基材之表面具有一通話孔(1 1 9)和一第一導電膜(1 1 1 ),並在其表面上設置一第 一電極線(1 1 2),其電極線為第一橫向結構之内側, 該圖案結構具有一门形部、一第一橫列部及一第二橫 列部、複數個第二橫向結構如第4圖所示,在非導電 膜上設置一第一導電迴路(1 1 3 )。該透明基材的另一面 之表面設置一第二導電膜(1 1 8 )’並其導電膜上設置一 7 201029022 線(1 1 5 ),且利用-軟性電路板(2 1)連接 觸控面板之電路與Ic控制器。 射出^方2Λ、5圖所示’使觸控面板(1〇)可利用 . 率,有效多樣化之形狀,且尺寸精準可增加良品 .〗所方式製造㈣產生毛邊及傷害到表 请參第6、7圖所示,係本發明之第三實施例,其主要 包括: -第-透縣材(1 1 ),經由㈣成财式獲得,其 基板的表面具有—通話孔(119)和-第-導電膜(i1 1) ’在其導賴上設置—第三電極線(i i 7 ),其電極線 (117a)和(ii7b)為平行方式設置,並在非導電 膜上區、利用雷射方式分隔出另一個導電膜、及利用油墨印 刷方式製作出非導電廳上設置一第一導電迴路(i工3 ); 、一第二透明基材(1 5 )可為經由射出成型方式製成或 為可繞性材料,平行於第一透明基材(i i ),第二透明基 材(15)之表面上設置一通話孔(丄i 9)和一第三導電 膜(1 5 1 ),並在其第三導電膜(工5工)設置一第四電 ^線(1 5 2 )’其電極線Q52a)和(152b)為 平行方式以及;以及一貼合層(1 7 ),為一框形中空體, 用以黏合於第一透明基板(i 5)與第二透明基板(16) 之間,該貼合層(17)上具有貫穿孔(丄7丄),其孔内 以導電膠(17 2)灌注填滿;藉電性方式連接導通第一導 電迴路(113)與第二電極線(丄5 2)之電極走線,一 軟性電路板(21)連接觸控面板之電路與Ic控制器。 更進一步說,如圖7所示,一第一透明基材(1 1), 經由射出成型方式獲得,其表面具有一通話孔(丄丄9 )和 一第一導電膜(1 1 1 ),在其導電膜上設置一第三電極線 201029022 (117)’其1:極線(117 8)和(11713)為平行 方式設置,並在非導電膜區上設置第一導電迴路(丄丄3 ); -第二透明基材(1 5 )可為經由射出成型方式製成或 為可繞性材料’且平躲帛-㈣紐(! !)。此基板之 表面上設置-通話孔(1 1 9 )和—第三導電膜(1 5 1 ), . 並在導電膜上設置一第四電極線(1 5 2 ),其電極線(1 52a)和(152b)為平行方式;並在非導電膜上設置 第二導電迴路(1 1 6 );以及;以及一貼合層(i 7 ),為 一框形中空體’用以黏合於第一透明基材(i丄)與第二透 ❿ B月基材(1 5 ),其中貼合層為-光學膠、一雙面膠或一高 分子聚合膠,-軟性電路板(2 i ).連接觸控面板 1C控制器。 另外’請參見第6、7圖所示,本實施例之觸控面板(工 0)除了在第-導電膜(111)與第三導電膜(151) 兩者之間設有貼合層(1 7 )之外,還有數烟隔物(丄 以避免電性短路現象產生。 此外’帛8、9圖所示’為了增加美觀性、產品價值性、 $戶需求,-可撓性膜片(20)或—透明基材之表面具 有透光區(2 01)和非透明區(2 〇 2) :二設置在-第-透明基材(⑴或-第 (1^ )上’此外,黏著層(丄9 )為一光轉、一雙面膠 或一焉分子聚合膠。 綜合上述’本發明確實能達到所預期之目的與功效 ^艮制於電容式、四線、五線、六線、七線、及人線等電阻 式觸控面板’又其所揭露之結構,不僅未曾見諸於同類產品 :=曾公開於中請,’誠已符合發日月專利新酿及‘ 性之法疋創新要件’爰依法提出發明專利之申喑。 惟上列詳細說明僅係針對本發明之部分^佳實施例之 201029022 明’當不能以此限定本發明之實施範圍,凡熟悉此 之特微輯上舰明,雜町㈣翻範圍所裁=明技㈣神之料者,观⑽在树 【圖式簡單說明】 第1圖.為本發明第一實施例之立體分解圖 為本發明另一形式之實施例圖。 為本發明較佳第二實施例示意圖。 為本發明之電路放大圖。 為本發明另一形式之實施例圖。 為本發明之第三實施例圖。 為本發明第三實施例之另一示意圖 為本發明之組合圖。 第2圖 第3圖 第4圖 第5圖 第6圖 第7圖 第8圖 第9圖 為本發明之另一組合 ^要元件符號說明】(10). C1M. 圖 魯 11) 12) 13) 15) 16) 17) 17) 17) 18) 19) ••觸控面板 第一透明基材 .第一導電膜 .第一電極線 第一導電迴路 •第二電極線 第一導電迴路 •第三電極線 第三電極線a 第三電極線b .第一導電膜 •··通話孔 第一透明基材Straight hair into ίτ drop' makes the flat display 11 in the market by the vast number of consumers. It is difficult to use it. In recent years, the touch panel has been touched to the flat panel display and applied to various electronic devices. Among them, for example, in the mobile phone, the user can select a screen by directly clicking on the panel to provide a more user-friendly operation mode. The p U's fine-grained panel t is also made up of a resistive and capacitive touch-control panel. This is because the manufacturing cost of the resistive and capacitive touch panels is better than that of the end product. Therefore, it can be widely used in products. The structure of the resistive touch panel mainly includes a first transparent substrate, a second transparent substrate, a bonding layer, and a flexible circuit board. The surface of the first transparent substrate is provided with a first conductive film, and - An electrode line and a first conductive circuit, wherein a surface of one of the first transparent substrate is provided with a second conductive film, a second conductive line, and a second conductive circuit; and a bonding layer of +-double-filament molecular polymer adhesive is used for attaching The first-turning substrate and the second transparent material, and the flexible circuit board connecting the touch panel circuit and the 1 (^ controller. The structure of the board is mainly provided on the surface of the first transparent substrate a film, a first electrode line, and a first conductive loop; another surface is provided with a second conductive film, a second electrode line, and the circuit is connected to the touch panel by a soft electric 201029022 circuit board and a (: controller. In the manufacture of the conventional touch panel, in order to meet the customer's structural requirements, 'the position of the lens and the call is reserved by the die-cutting or laser cutting method' and some mobile phone structures are embedded. Polycarbonation And as the setting position of the outline, although it is easy to process 'but its light transmittance is not good, but if the lower substrate is changed to glass, its light transmittance is good, but it is not blunt; shape, no matter what structure of the lake, Both of them are easy to damage the conductive film on the surface and produce burrs during processing, which reduces the yield of the production process, which is its main disadvantage. _ In view of the shortcomings of the above conventional touch panel, the inventor of the present invention After extensive research and design, the present invention has been successfully developed. SUMMARY OF THE INVENTION The main object of the present invention is to provide an injection molded touch panel which is obtained by injection molding to obtain a transparent substrate of complicated shape to conform to According to the present invention, an injection molded touch panel is provided, which mainly comprises: a first transparent substrate, which is formed by injection molding; a first conductive film and a non-conductive film region are disposed on the transparent substrate. a surface of the material, wherein the non-conductive film region is provided with a first conductive loop, and a second conductive film and a non-conductive film are disposed on the other side surface of the transparent substrate, and A second electrode loop is disposed on the non-conductive film region; thereby, a variety of shapes can be produced by injection molding, and the size is accurate, and the yield rate is increased, and the structure can be widely used in various implementations. The utility model can achieve the same effect, and can effectively avoid the disadvantage that the conventional method is to manufacture the conductive film which is easy to generate burrs and damage the surface of the conductive film. [Embodiment] In order to further understand the contents and other features of the present invention, the present invention is more The specific embodiment of the present invention is described in detail with reference to the accompanying drawings. FIG. 1 is a description of the first embodiment of the present invention. The first embodiment of the present invention includes a first-transparent substrate. (1 i) is produced by injection molding, and is provided on the surface thereof - a call hole (1 1 9 ) and a first electric film (1 Η ) ' via steaming ore, pld (pUise iaser :l!tl 〇n), chemical vapor deposition, spray pyrolysis, sol-gel method to form an X-axis conductive film region and several non-conductive film regions; or first form a first film (1 Η) and then pass chemical 彳Or the method of making 5 feet of the thunder foot a Χ 栅 栅 导电 导电 导电 和 和 和 和 和 和 和 和 和 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电 导电Conductive film, printing is said to be the secret electric ship, and the view _ _ _ ^ = ink can be wound around 15) can be made for the surface (four) reliance or for the material around, and a call hole on the surface (worker 9) and a third conductive film (1 5 1 ), the same is also produced by steaming, pLD (_(8) two sub-; or == making non-conducting, and then - the second conductive loop (1 16) is placed in the U-material On the non-conductive film region, a plurality of Y-axis grid conductive films are connected in parallel to each other: Ζ, 17), which is a frame-shaped hollow body for bonding to the first-pervious substrate (11) and the second transparent substrate. Between the materials (15) and using 敕) to connect the circuit of the touch panel with the 1 c controller. In order to increase the beauty of the chick, the product price record, and the customer's request, the light-transmissive zone (2 〇 1) and the non-transparent zone (2 α 2) may be set to the surface of the moon to be further described as shown in Fig. 2, which mainly includes : a first transparent base 201029022 = (1 1) produced by the _ out of the financial formula, and on its surface hole (1 1 9) and a first conductive film (1 1 1), via the base j mine, PLD (pulse iaser depositi〇n), chemical phase...: pyrolysis method, sol method to make _χ axis conduction ^ and a =, or laser cans made as a relay guide (41 zone circuit (113) set in - - (11) non-conductive film area, using laser method to divide _ another "guide" shaft printing method to make conductive to listen, parallel connection of several X, conductive film area. On the transparent substrate another - surface setting - the first 2 1 8 8), the same is also through the vapor deposition machine, PLD (puise " = tlon), chemical vapor deposition, spray a number of general outline =) and then through the chemical etching or laser etching method The area, the plurality of non-conductive film regions, and the ink printing side, and then the second conductive circuit (116) is disposed in the non- (2 η number of # conductive film regions, and utilizes a flexible circuit board (2, ) Connect the circuit of the touch panel with the device of (10). The mountain further says that it mainly includes: a first transparent substrate (11) is made by way of ' and a call hole (1 work 9) is provided on the surface thereof. The electric film (1 1 1 ) ' is based on the steaming clock face, PLD (pulse laser dep〇slt 10n), chemical vapor deposition, the graphics, buttons, and non-guides required by the customer; In a first-transparent substrate (1 film area, Lishaw laser method separates another conductive film, μ brush method to produce a non-conductive film, parallel connection of several customers need two, one 'key. In order to increase the aesthetics , product value, and customer needs ', the surface of the surface can be set to light transmission area (201) and non-transparent area 201029022 (202). Correction 'because of making and lying on the smoke can be made (4) the shape of the shape, add good The effect of the rate is as shown in Fig. 3, which is a preferred second embodiment of the present invention. A first transparent core (1 1) is produced by injection molding, and the surface of the substrate has a The call hole (119) and a first conductive film (work 1) are provided with a first electrode line on the surface thereof (丄丄 2) The structure of the pole L structure, the figure (10) has a -π first row portion and a second row portion, a plurality of second and fourth figures*, and the first layer is disposed on the non-conductive film region Conductive circuit 3) A second transparent substrate (15) may be made by injection molding or a recyclable material, and a communication hole (2丄9) and a third conductive film are disposed on the surface thereof (1) 5 1 ), a second electrode line (worker 5) is disposed on the conductive film. A bonding layer (17) is a frame-shaped hollow body for bonding to the first transparent substrate (11) and the second Between the transparent substrate (15), and between the first conductive film (111) and a third conductive film (151), there are a plurality of spacers (1 8 ) to avoid electrical short circuit, and a flexible circuit The board (2 1) is connected to the circuit of the touch panel and the IC controller. Furthermore, as shown in FIG. 5, a first transparent substrate (11) is formed by injection molding, and the surface of the substrate has a call hole (1 19) and a first conductive film (1). 1 1 ), and a first electrode line (1 1 2) is disposed on the surface thereof, the electrode line is an inner side of the first lateral structure, the pattern structure has a gate portion, a first row portion and a first As shown in FIG. 4, a second horizontal portion and a plurality of second lateral structures are provided with a first conductive loop (1 1 3 ) on the non-conductive film. a surface of the other surface of the transparent substrate is provided with a second conductive film (1 18) and a 7201029022 line (1 15) is disposed on the conductive film, and the touch is connected by using a flexible circuit board (2 1). The circuit of the panel and the Ic controller. Shooting ^ square 2 Λ, 5 picture shown 'to make the touch panel (1 〇) available. Rate, effective diversification of the shape, and the size can be accurate to increase the good. 〗   manufacturing method (four) the production of burrs and damage to the table please refer to 6 and 7 are a third embodiment of the present invention, which mainly comprises: - a first-permeable material (1 1 ) obtained by a (four) financial formula, the surface of the substrate having a call hole (119) and - a first conductive film (i1 1) 'provided on its guide - a third electrode line (ii 7 ) whose electrode lines (117a) and (ii7b) are arranged in parallel and are used in the upper region of the non-conductive film The laser is separated from the other conductive film, and a first conductive loop is disposed on the non-conductive hall by ink printing; (i 3); and a second transparent substrate (15) can be formed by injection molding. Formed or a wrapable material, parallel to the first transparent substrate (ii), a communication hole (丄i 9) and a third conductive film (1 5 1) are disposed on the surface of the second transparent substrate (15) ), and in its third conductive film (work 5) set a fourth electrical line (1 5 2 ) 'its electrode lines Q52a) and (152b) are parallel And a bonding layer (17), which is a frame-shaped hollow body for bonding between the first transparent substrate (i5) and the second transparent substrate (16), the bonding layer (17) There is a through hole (丄7丄), and the hole is filled with a conductive adhesive (17 2); the electrode of the first conductive circuit (113) and the second electrode line (丄5 2) is electrically connected. A flexible circuit board (21) connects the circuit of the touch panel with the Ic controller. Further, as shown in FIG. 7, a first transparent substrate (1 1) is obtained by injection molding, and has a call hole (丄丄9) and a first conductive film (1 1 1 ) on the surface thereof. A third electrode line 201029022 (117)' is disposed on the conductive film. The first electrode lines (117 8) and (11713) are disposed in a parallel manner, and a first conductive loop is disposed on the non-conductive film region (丄丄3). - The second transparent substrate (15) can be made by injection molding or is a recyclable material' and is slid---four (!!). a surface of the substrate is provided with a --call hole (1 1 9 ) and a third conductive film (1 5 1 ), and a fourth electrode line (1 5 2 ) is disposed on the conductive film, and the electrode line (1 52a) And (152b) are in a parallel manner; and a second conductive loop (1 16) is disposed on the non-conductive film; and; a bonding layer (i 7 ) is a frame-shaped hollow body for bonding to the first a transparent substrate (i丄) and a second transparent substrate (15), wherein the bonding layer is an optical glue, a double-sided tape or a polymer glue, and a flexible circuit board (2 i ) Connect the touch panel 1C controller. In addition, as shown in FIGS. 6 and 7, the touch panel of the present embodiment has a bonding layer between the first conductive film (111) and the third conductive film (151). In addition to the 7 7), there are also several smoke partitions (to avoid electrical short-circuit phenomenon. In addition, '帛8, 9 picture shown' to increase aesthetics, product value, $ household demand, - flexible diaphragm (20) or - the surface of the transparent substrate has a light transmitting region (2 01) and a non-transparent region (2 〇 2): two are disposed on the -th transparent substrate ((1) or - (1^)' The adhesive layer (丄9) is a light-transfer, a double-sided adhesive or a molecular polymeric adhesive. The above-mentioned invention can indeed achieve the intended purpose and effect ^艮 in capacitive, four-wire, five-wire, six The resistive touch panel of the line, the seven-wire, and the human line, and the structure disclosed by it, have not only been seen in the same kind of products: = has been disclosed in the middle of the request, 'Sheng has been in line with the date of the patent and the new The 疋 疋 疋 疋 爰 爰 爰 提出 提出 提出 提出 提出 提出 提出 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑 喑This can be used to limit the scope of implementation of the present invention. Anyone familiar with this special micro-series on the ship Ming, Zao-cho (four) turn the scope of the cut = Ming technology (four) God of the material, view (10) in the tree [schematic description] Figure 1 The perspective view of the first embodiment of the present invention is a schematic view of another embodiment of the present invention. It is a schematic view of a second preferred embodiment of the present invention. It is an enlarged view of the circuit of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 3 is a combination view of a third embodiment of the present invention. FIG. 2 is a third view, FIG. 4, FIG. 5, FIG. Fig. 9 is a diagram showing another combination of the components of the present invention (10). C1M. Tulu 11) 12) 13) 15) 16) 17) 17) 17) 18) 19) • Touch First transparent substrate of the panel. First conductive film. First electrode line first conductive loop • Second electrode line first conductive loop • Third electrode line Third electrode line a Third electrode line b. First conductive film • ··call hole first transparent substrate

..第三導電膜 ••第四電極線 •第四電極線a .第四電極線b •···贴合層 •···貫穿孔 •···導電膠 •··間隔物件 •···黏著層 ••可繞性膜片 •···透光區 *非透光區塗層 •軟性電路板 11.. Third conductive film • Fourth electrode line • Fourth electrode line a. Fourth electrode line b •···Finishing layer •···through hole •···Conductive adhesive •··· spacer object•· ··Adhesive layer••Removable diaphragm•···Transparent area* Non-transparent area coating•Soft circuit board 11

Claims (1)

201029022 七、申請專利範圍: 1 ·一種射出成型之觸控面板,其主要包括: 第一透明基材,係經由射出成型方式製成,以及; 第一導電膜和非導電膜區,設置於其基材之表面, - 其非導電膜區上設置有第一導電迴路。 2·如申請專利範圍第1項所述的射出成型之觸控面板,更 包括: 第一透明基材之另一側表面設置第二導電膜和非導 電膜區,並在其非導電膜區上設置有第二導電迴路。 ❿ 3 ·如申請專利範圍第1、2所述的射出成型之觸控面板, 更包括: 第一導電膜上設置第一電極線;第二導電膜設置第 二電極線。 4·一種射出成型之觸控面板,其主要包括: 第一透明基材,係經由射出成型方式製成,於第一 透明基板表面設置第一導電膜和非導電膜區,其非導電 膜區上設置第一導電迴路, · 第二透明基材,可為經由射出成型方式製成或為可 ❹ 繞性材料,於第二透明基板表面設置第三導電膜和非導 電膜區,其非導電膜區上設置第二導電迴路,以及; 一貼合層,為一框形體,用以黏合於第一透明基材 與第二透明基材之間。 5. 如申請專利範圍第4項所述的射出成型之觸控面板,其 中該貼合層為光學膠、雙面膠或高分子聚合膠。 6. 如申請專利範圍第4項所述的射出成型之觸控面板,更 包括: 第一導電膜上設置第一電極線或第三電極線;第三 導電膜上設置第二電極線或第四電極線。 12 201029022 7·^申請專利範圍第4項所述的射出成型之觸控面板,兑 8 中^合層具衫少—貫穿赌敝稿導電膠,使第 一導電迴路與該第二電極線路藉此電性連接。 乐 .^申請專利範圍第4項所述的射出成型之觸控面板,其 物;ί第蚀膜與第二導電臈之間’並可增設數個間隔 物件,使兩者間維持一定間隙。 9·如專利範圍第1或4項所述的射出成型之觸控面板,其 =第-導電膜、第二導電膜、及第三導電膜可為複數 曰1隔柵條所構成’且其兩者互呈χ軸及γ軸交錯分佈。 11 10·如專=範圍第1、4、或9所述的射出成型之觸控面 板,其中該第一、第二導電膜係採用蒸鍍減鍍、PLD pulse laser depositi〇n、化學氣相沉積、喷霧熱解 法、溶膠轉法等方式製絲辦電廳、數個導 電膜區、客戶所要求的圖形、按鍵。 •如專利範園第1、4、或9所述的射出成型之觸控面 板,其甲該第一導電膜、第二導電膜及第三導電膜係 先製成整面,再經由化學蝕刻或雷射蝕刻等方式製成 數個導電膜區、數個非導電膜區、及客戶所要求 形、按鍵。 12 .如申請專利範圍第1或4項所述的射出成型之觸 板,更包括: ^ 可撓性膜片或透明基材經由黏著層貼附第一透明 基材或第二透明基材。 13 .如申請專利範圍第12項所述的射出成型之觸控面 板,其中該黏著層為光學膠、雙面膠或高分子聚合膠。 .如申請專利範圍第1、4或12項所述的射出成型之 觸控面板,第一透明基材、第二透明基材、可撓性膜 片、及透明基材之表面可設置透光區和非透光區。、 13 14 201029022 15·如申請專利範圍第1或4項所述的射出成型之觸控面 板,更包括: 一軟性電路板連接觸控面板電路與IC控制器。 16·如申請專利範圍第1或4項所述的射出成型之觸控面 板,其中非導電區可利用油墨印刷方式製造。 14201029022 VII. Patent application scope: 1 · An injection molded touch panel, which mainly comprises: a first transparent substrate, which is formed by injection molding, and a first conductive film and a non-conductive film region, disposed in The surface of the substrate, - a non-conductive film region is provided with a first conductive loop. The injection-molded touch panel of claim 1, further comprising: a second conductive film and a non-conductive film region disposed on the other side surface of the first transparent substrate, and in the non-conductive film region thereof A second conductive loop is disposed thereon. The injection-molded touch panel of the first and second embodiments of the invention further includes: a first electrode line disposed on the first conductive film; and a second electrode line disposed on the second conductive film. 4. An injection molded touch panel, comprising: a first transparent substrate, which is formed by injection molding, and a first conductive film and a non-conductive film region are disposed on a surface of the first transparent substrate, and a non-conductive film region is provided. The first conductive circuit is disposed on the second transparent substrate, and the second transparent substrate may be made by an injection molding method or a creasable material, and a third conductive film and a non-conductive film region are disposed on the surface of the second transparent substrate, and the non-conductive film is non-conductive. A second conductive loop is disposed on the membrane region, and a bonding layer is a frame shaped body for bonding between the first transparent substrate and the second transparent substrate. 5. The injection molded touch panel of claim 4, wherein the bonding layer is an optical glue, a double-sided tape or a polymer glue. 6. The injection-molded touch panel of claim 4, further comprising: providing a first electrode line or a third electrode line on the first conductive film; and providing a second electrode line or the third conductive film on the third conductive film Four electrode lines. 12 201029022 7·^ Apply for the injection-molded touch panel described in item 4 of the patent scope, with less than 8 layers in the layer--------------------------------------------------------------------------------------------------------------------------------------------------------- This electrical connection. The injection-molded touch panel described in claim 4 of the patent application is provided between the etched film and the second conductive ridge, and a plurality of spacers may be added to maintain a certain gap therebetween. The injection-molded touch panel according to the first or fourth aspect of the invention, wherein the first conductive film, the second conductive film, and the third conductive film are formed by a plurality of 隔1 barrier bars, and The two are interlaced with the x-axis and the γ-axis. The injection-molded touch panel of the first, second, and second conductive films, wherein the first and second conductive films are vapor-deposited, PLD pulse laser deposit, and chemical vapor phase. Sedimentation, spray pyrolysis, sol-transfer method, etc., wire making office, several conductive film areas, graphics and buttons required by customers. The injection-molded touch panel according to Patent No. 1, 4, or 9, wherein the first conductive film, the second conductive film, and the third conductive film are first formed on the entire surface, and then chemically etched. Or a plurality of conductive film regions, a plurality of non-conductive film regions, and a shape and a button required by the customer are formed by laser etching or the like. 12. The injection molded contact panel of claim 1 or 4, further comprising: ^ a flexible film or a transparent substrate attached to the first transparent substrate or the second transparent substrate via an adhesive layer. The injection-molded touch panel of claim 12, wherein the adhesive layer is an optical glue, a double-sided tape or a polymer glue. The injection-molded touch panel of claim 1, wherein the first transparent substrate, the second transparent substrate, the flexible film, and the transparent substrate are provided with a light-transmitting surface. Zone and non-light transmissive zone. The injection molding touch panel described in claim 1 or 4 further includes: a flexible circuit board connecting the touch panel circuit and the IC controller. The injection-molded touch panel of claim 1 or 4, wherein the non-conductive area is manufactured by ink printing. 14
TW98102764A 2009-01-23 2009-01-23 Injection molded touch panel TW201029022A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW98102764A TW201029022A (en) 2009-01-23 2009-01-23 Injection molded touch panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW98102764A TW201029022A (en) 2009-01-23 2009-01-23 Injection molded touch panel

Publications (1)

Publication Number Publication Date
TW201029022A true TW201029022A (en) 2010-08-01

Family

ID=44853903

Family Applications (1)

Application Number Title Priority Date Filing Date
TW98102764A TW201029022A (en) 2009-01-23 2009-01-23 Injection molded touch panel

Country Status (1)

Country Link
TW (1) TW201029022A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI475453B (en) * 2012-04-18 2015-03-01 Chunghwa Picture Tubes Ltd Touch panel and touch sensing method thereof
TWI485605B (en) * 2012-01-05 2015-05-21 Htc Corp Touch panel
TWI511017B (en) * 2014-01-09 2015-12-01 Quanta Comp Inc Capacitance touch panel
US9483139B2 (en) 2012-11-27 2016-11-01 Young Lighting Technology Inc. Touch device
TWI620103B (en) * 2012-11-27 2018-04-01 林志忠 Touch panel

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI485605B (en) * 2012-01-05 2015-05-21 Htc Corp Touch panel
TWI475453B (en) * 2012-04-18 2015-03-01 Chunghwa Picture Tubes Ltd Touch panel and touch sensing method thereof
US9483139B2 (en) 2012-11-27 2016-11-01 Young Lighting Technology Inc. Touch device
TWI620103B (en) * 2012-11-27 2018-04-01 林志忠 Touch panel
TWI511017B (en) * 2014-01-09 2015-12-01 Quanta Comp Inc Capacitance touch panel

Similar Documents

Publication Publication Date Title
US8633897B2 (en) Touch panel having curved surface and manufacturing process
CN103165227B (en) Transparent conductive film and connection method thereof
CN209434188U (en) OLED integrated digital converter
TW201417116A (en) Conductive structure of transparent conductive film, transparent conductive film and method for manufacturing the making same
TW201029022A (en) Injection molded touch panel
CN101907940A (en) Touch panel made by injection molding
CN203250547U (en) Transparent conductive film
CN104423677A (en) Touch control display and manufacturing method thereof
CN106527810A (en) Touch display device and back cover plate thereof
TWI344615B (en) A single layer of touch sensor structure and a touch display panel using the same
CN203250299U (en) Graphene capacitive touch screen
CN101447507A (en) Organic light-emitting display with touch screen function
CN201576268U (en) Arc curved projected capacitive touch screen
CN204790926U (en) Touch shows product
WO2014161246A1 (en) Conductive film, preparation method therefor, and touchscreen having conductive film
CN206058145U (en) A kind of flexible touch control layer, touching display screen and electronic equipment
CN111475046A (en) Touch substrate, display panel and touch display device
CN203299773U (en) Touch control module, touch control panel provided with touch control module and touch control display screen
CN106201040A (en) The manufacture method of touch screen, display device and touch screen
CN201594252U (en) Resistance-type touch screen
CN202502488U (en) Resistor type touch control panel
CN206805509U (en) Contact panel and display device
KR101173394B1 (en) The touch screen panel manufacturing method which uses the touch screen panel ITO films and the ITO films
CN103543889B (en) Monolayer capacitive touch screen preparation method
CN103440064B (en) Touch screen element and touch-screen