TW200939088A - A touch-control screen system of automatically detecting sizes and its module - Google Patents

A touch-control screen system of automatically detecting sizes and its module Download PDF

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Publication number
TW200939088A
TW200939088A TW97108162A TW97108162A TW200939088A TW 200939088 A TW200939088 A TW 200939088A TW 97108162 A TW97108162 A TW 97108162A TW 97108162 A TW97108162 A TW 97108162A TW 200939088 A TW200939088 A TW 200939088A
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axis
module
controller
feedback controller
feedback
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TW97108162A
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Chinese (zh)
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TWI382335B (en
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rong-yu Cheng
jian-ping Sun
yi-de Jian
Wei-Lin Wang
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& T Technology Co Ltd
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Abstract

The invention relates to a touch-control screen system of automatically detecting sizes and its module. The system is disposed inside the module. Once the touch-control screen is assembled, the detection system will make a confirmation of orientation based on feedback signals respectively on plural x axes and y axes, and figure out whole specification sizes by way of calculating the oriented-point location for the convenience of connecting with input devices such as computers or embedded systems, so as to make the assembled touch-control screen module even more with developmental potential.

Description

200939088 九、發明說明: 【發明所屬之技術領域】 本發明係涉及一種組合式的觸控屏幕框技術領域,具有 自動偵測該觸控屏幕尺寸規格的能力,使得觸控屏幕不 但能適合DIY的方式自由組合大小規格,且能自動彳貞測 組合後的規格而易於與其他的配備作電性的聯結。 【先前技術】 按’觸控屏幕在目前市場的使用率有漸漸増多的趨 勢’主要是使用上十分便利且迅速’尤其是在商場、教育 場所或演講場合使用時,更可方便輸入及操作電腦,可減少傳統 鍵盤式輸入所帶來的誤動作、灰塵易嵌夾及易彈力疲乏等缺點, 因此,目前的大型觸控屏幕已然成為諸電腦大型顯示器機具的主 要配備之一。 惟,觸控屏幕的尺寸規格十分繁多,目前最常用的 視屏的規格約有:32”(697 x 392 mm)、42" (93〇χ 523 刪)、 46” X 572 ram)、52',(1152 X 648 mm)、56”(1244 Χ 699 mm)、65" (1430 χ 806 mm)等,因此為了製造這些規格的 觸控屏幕,就必需要開發不同尺寸的模組,一一製造這 些不同尺寸但功能相同的產品,在模具的成本上的支出 係十分的十分的龐大;另外,觸控屏幕(尤其是紅外線 200939088 觸控式屏幕裝置)係含有電路板等組件,故整個模組主 要係在製造廠内整體製造,因此製造以後,欲將該觸控 屏幕組件運送至客戶端時,就需要十分小心的運送,因 為每一觸控屏幕的框均佔有一定的尺寸,在運送時即佔 用了更大的送貨空間,使運輸成本增加。 又由於該觸控屏幕具有不同的尺寸規格,生產管理 及倉儲問題亦十分複雜,且將不同規格且已組成的觸控 U 屏幕交相疊置運送容易相互碰撞,若分開放置又更浪費 運輸工具的乘載空間,是習用製造業於運輸上所常見的 缺點。 針對上述的問題,設計一種良好的組合式觸控屏幕模組不 失為一項良好的解決方案,本發明人已對此提出另項專 利案的申請己能得到極佳的解決手段;但組合式觸控屏 幕模組之所以未能被大眾所廣泛使用,還有一項技術瓶 ❹ 頸未能突破,即是不同規格尺寸的觸控屏幕在聯接到電 腦時需要作一些系統的設定,若沒有自動偵測規格的功 能時,仍需要人工的設定,則人工技術成本無法降低, 故單純的組合式觸控屏幕尚無法使產品臻於完美,而本 發明即是針對此一技術再作研發並獲致良好的效果。 【發明内容】 200939088 本發明之主要目的,在設計一種適用於組合式觸控屏幕模 組的自動偵測尺寸系統,該系統能在觸控屏幕模組以相 對(含串接複數電路板的)複數個接頭及框架組合後,位於内部 的偵測系統即會分別以多個X轴及γ轴上的回饋訊號作定位確 認’並經計算該定位點的位置推算出整個規格尺寸,方便與電腦 或嵌入式系統等輸入裝置相聯接,而免除人工的設定;因此才能 有效發揮出組合式觸控屏幕模組的方便拆開運輸、快速的準確組 〇 合及節省人工和模具成本的優點。 【實施方式】 為使貴審查委員能更進一步明瞭本發明之内容,請配合參 看圖式簡單說明,詳細說明如后: 請參看第1圖所示,本發明主要包含有: 至少一組Y軸模組控制器(8 0)及γ轴光學控制器(8 1);能發出Y軸相對位置的訊號;請配合參看第1、3圖所示, 本發明應用於多個串接的電路板(5〇)(51)上時,則該γ 軸模組控制器(8 0 )及Y軸光學控制器(8 1)如第1圖所示, 了以具有1組以上,即由(1)、(2)、(3) · ·.至(η)組皆可。 至少一組Υ軸光學回饋控制器(8 2)及¥軸模組回饋控制 器(8 3 ):能接收γ軸的訊號並予回饋的訊息,亦相對γ軸具 有1組以上的設置,即由⑴、⑵、⑶·..至(11)組皆可。 200939088 至少一組X軸模組控制器(8 9)及X軸光學控制器 8);能發出X軸相對位置的訊號;請配合參看第1、3圖所示, 本發明應用於多個串接的電路板(5 0 ) ( 5丄)上時,則該χ 軸模組控制器(8 9 )及Y軸光學控制器(8 8 )如第丄圖所示, 可以具有1組以上,即由(1)、(2)、(3). · ·至(n)組皆可。 至少-組X軸光學回饋控制器(8 7 )及又轴模組回饋控制 器(8 6 ).庇》接收X軸的訊號並予回饋的訊息,亦相對X轴具 有1組以上的設置’即由(1)、(2)、(3). · ·至(n)組皆可。 一X/Y軸光學回饋處理單元(8 4),係與γ軸光學回饋 控制器(8 2)、X轴光學回饋控制n ( 8 7)相連接;另一χ /Υ軸光學回饋處理單;8 5 )’係與γ轴模組回饋控制器(8 3 )、X軸模組回饋控制器(8 6 )相連接;並將所有資料傳輸 至輸出/輸入控制器(7 3)。 -紕X/Y軸切換ϋ及光學控制驅動器(7 2 )及回饋信號 驅動器(7 4)係分別與輸出/輸入控制器(7 3)相連,並與b 前揭所有單元相連接。 ’、 一周邊編解 ( 7 1)係與輸出/輸人控㈣(7 3 ); 連接,再經-微控制處理器(7◦)將所有偵測的信號分析,^ 透過USB介面或助2介面的連接器(9 i ) ( g 2 ),而與電月 或嵌入式系統等輸入裝置(9 0)相聯接。 本發明在動作上係如第2圖所示,但請—併配合參看第1、 200939088 2圖所示,當本發明系統啟動開始,係由χ轴切換及送出回饋訊 號,此時會先侧回饋訊號,若偵測不到時,則該回饋訊號傳送 至下-個X軸模組回饋控制器·’糾貞測到回饋訊號時,則會收集 _回饋訊號並予記錄’並再行_下—個訊號;織光學控制 驅動器控制最後的X軸模組控制器及χ轴學控制器’並判斷又轴 光學回饋控㈣有多少光學_訊號,並將已知絲光學回饋控 制器及光學回饋訊號算出Χ軸尺寸;再以同一方法計算出γ_ ❹ 財’由此能得知X、γ軸尺寸,並據以推知觸控屏幕的大小。 本發明可制在如第3、4、5所補組合綱控屏幕結 構’該組合式觸控屏幕結構包含有:相對複數個接頭(1〇 )、 框架(20)及鎖固片(30)等結構,其中諸接頭(1〇)及 框架(2 0)均具有容置空間’且藉由不同長度的框架q 〇) 再配合接頭(1 0 )她成適當大小(規格尺寸)的框形體;而 鎖固片(3 0)係以兩端插人接頭(i Q)及框架(2 〇)的容 Ο 置空間(1 1)( 21)’以螺絲等鎖固件貫穿鎖緊連結成一框形 體’而接頭(10)及框架(2 〇)的内側組設有罩板(4 以形成基本的外框殼體。 本發明之系統係設於或大、或小的電路板(5 〇 )( 5 1) 該電路板(5Ό ) ( 5 1)係設有視屏幕所需的相_件,諸 路板(5 0 ) (51)能依框架(2 〇)的長度增加而串聯 諸電路板(5 0 )( 5 1 )_相連並不以軟性電線麵接,而 200939088 係各自以公、母連接器(60)(6 1),如圖中的a、B、c位 置所不’細相飾合為最佳實關,贱使諸電啸(5 ) ^ 5 1)上的公、母連接器(6 0)(6 1 )恰好對合組接,而 每個電路板(5 Q ) ( 5 1 )上’則設有如本發明第i圖所示 的諸單元構件’並隨著接頭(1〇)及框架(2 0)的組接所組 成的忙體,經由本發明的自動债測系、统,使組合式的觸控屏幕更 有開發的價值。 由於本發明之自動_尺寸的觸控屏幕系統,能夠適用在組 合式的觸控屏幕結構上’使該觸控屏幕能在Μ合後作電性聯結 時’即自動測知其基本的電訊資料,並予以自動聯結,且能把組 合式的觸控屏幕結構的方便拆開組裝、運輸節省空間及倉儲管理 方便的優點表現絲,且崎低人玉調節設定規格的成本,僅需 本發明一種模組配套組裝即可,實在是十分經濟而實用丨故而具 有產業上利用的價值。 本發明為一特殊而新穎的設計,結構具有巧思創意,若簡單 轉換與本發明雷同的電路,但整個特徵係運用本發明的特徵,僅 係簡單改變或附加時仍應屬本發明之内容,而本發明之說明書及 圖式,皆為本創作之較佳可行實施之酬,但並不能因此而^艮 本發明之申請專利範圍,故舉凡運用本發明說明書及圖式内容所 為之等效結構變化,仍應均屬於本創作申請專利範_,特予陳 200939088 本發明具有上述使用方便、運輸密唐拗 n倉辭理方便、 模具種類及成本降低等優點,為一新箱的 、J叹叶,又且右吝豐卜Μ 利用價值,又未見於公開的類似構造呆· *、、用,實符合發明 請要件,特提出專射請,並請 之申 利為感。 《委U日辭發明專 200939088 【圖式簡單說明】 第1圖 第2圖 第3圖 第4圖 第5圖 系統結構圖。 系統流程圖。 係本發明做巾的自動_尺寸的 係本發賴财的自_測尺寸的 係本發明做之平面分解示意圖。 係本發明模組之結構分解圖。 係本發明模組之組合外觀圖。200939088 IX. Description of the Invention: [Technical Field] The present invention relates to a combined touch screen frame technology field, which has the capability of automatically detecting the size of the touch screen, so that the touch screen can not only be suitable for DIY The method can freely combine the size specifications, and can automatically measure the combined specifications and easily connect with other equipments. [Prior Art] According to the trend of 'touch screens in the current market, there is a tendency to increase gradually' mainly because it is very convenient and fast to use, especially when used in shopping malls, educational places or lectures, it is more convenient to input and operate. The computer can reduce the shortcomings caused by the traditional keyboard input, dust and easy to insert clips and fatigue and fatigue. Therefore, the current large touch screen has become one of the main equipments of large computer display equipment. However, the size of the touch screen is very large. The most common screen specifications are: 32” (697 x 392 mm), 42" (93〇χ 523 deleted), 46” X 572 ram), 52' , (1152 X 648 mm), 56" (1244 Χ 699 mm), 65 " (1430 χ 806 mm), etc., in order to manufacture touch screens of these specifications, it is necessary to develop modules of different sizes, one by one. These different sizes of products with the same function have a very large expenditure on the cost of the mold. In addition, the touch screen (especially the infrared 200939088 touch screen device) contains components such as circuit boards, so the whole module Mainly manufactured in the manufacturing factory, so after the manufacture, when you want to transport the touch screen components to the client, you need to be very careful to transport, because each touch screen frame has a certain size, when transporting That is, it takes up more shipping space and increases transportation costs. Since the touch screen has different size specifications, the production management and storage problems are also very complicated, and the touch Us of different specifications and components are formed. The screens are stacked and transported easily to collide with each other. If they are placed separately and waste the transportation space of the transportation tool, it is a common shortcoming of the conventional manufacturing industry. For the above problems, a good combined touch screen mode is designed. The group is a good solution, and the inventor has already proposed an excellent solution for the application of the other patent case; but the combination touch screen module has not been widely used by the public, There is a technical bottle that fails to break through the neck. That is, touch screens of different sizes need to be set up when connecting to a computer. If there is no function to automatically detect the specifications, manual settings are still needed. The cost cannot be reduced, so a simple combined touch screen cannot make the product perfect, and the present invention is developed for this technology and has achieved good results. [Summary of the Invention] 200939088 The main purpose of the present invention is Design an automatic detection size system for a combined touch screen module that can be used in a touch screen module After a plurality of connectors and frames are combined with the serially connected circuit board, the internal detection system will perform positioning confirmation by using feedback signals on a plurality of X-axis and γ-axis respectively, and calculate the position of the positioning point. Out of the entire size, easy to connect with input devices such as computers or embedded systems, eliminating the need for manual settings; therefore, the combined touch screen module can be effectively utilized for easy disassembly and transportation, rapid and accurate group matching and saving. Advantages of labor and mold cost. [Embodiment] In order to enable the reviewing committee to further understand the contents of the present invention, please refer to the following description for a brief description, and the detailed description is as follows: Referring to FIG. 1, the present invention mainly includes There are: at least one set of Y-axis module controller (80) and γ-axis optical controller (8 1); signals capable of emitting relative positions of the Y-axis; please refer to Figures 1 and 3 for application of the present invention When a plurality of serially connected circuit boards (5 〇) (51) are provided, the γ-axis module controller (80) and the Y-axis optical controller (8 1) are as shown in FIG. 1 to have 1 Above the group, that is, (1), (2), (3) · ·. To (η) group can be. At least one set of x-axis optical feedback controller (82) and a ¥ axis module feedback controller (83): a message capable of receiving the signal of the γ-axis and feeding back, and having more than one set of settings with respect to the γ-axis, ie From (1), (2), (3), .. to (11) groups are acceptable. 200939088 At least one set of X-axis module controllers (8 9) and X-axis optical controllers 8); signals capable of emitting relative positions of X-axis; please refer to Figures 1 and 3 for application of the present invention to multiple strings When the circuit board (5 0 ) (5 丄) is connected, the 模组 axis module controller (8 9 ) and the Y-axis optical controller (8 8 ) may have more than one group as shown in the figure. That is, (1), (2), (3). · · to (n) groups are acceptable. At least - the set of X-axis optical feedback controller (8 7) and the axis module feedback controller (8 6 ). The signal that receives the X-axis signal and feeds back, also has more than one set of settings relative to the X-axis. That is, (1), (2), (3). · · to (n) groups are acceptable. An X/Y axis optical feedback processing unit (8 4) is connected to the γ-axis optical feedback controller (82) and the X-axis optical feedback control n (87); another χ/Υ axis optical feedback processing unit ;8 5 ) ' is connected to the γ-axis module feedback controller (8 3 ) and the X-axis module feedback controller (8 6 ); and transmits all data to the output/input controller (7 3). - 纰X/Y axis switching ϋ and optical control driver (7 2 ) and feedback signal driver (7 4) are connected to the output/input controller (7 3), respectively, and are connected to all units in front of b. ', a peripheral editing (7 1) and output / input control (four) (7 3); connection, and then - micro-control processor (7 ◦) will analyze all detected signals, ^ through the USB interface or help The 2 interface connector (9 i ) ( g 2 ) is connected to an input device (90) such as an electric moon or an embedded system. The operation of the present invention is as shown in Fig. 2, but please - and with reference to Figures 1, 200939088 2, when the system of the present invention starts, the switch is switched and the feedback signal is sent, and the first side is If the feedback signal is not detected, the feedback signal is sent to the next X-axis module feedback controller. When the feedback signal is detected, the _ feedback signal is collected and recorded. The next signal—the optical control driver controls the final X-axis module controller and the axis controller” and determines the optical feedback control of the axis (4), and the known optical feedback controller and optical The feedback signal calculates the size of the x-axis; then the same method is used to calculate γ_ ❹ 财 ', so that the X and γ axis dimensions can be known, and the size of the touch screen can be inferred accordingly. The invention can be fabricated in a combination screen structure such as the third, fourth and fifth aspects. The combined touch screen structure comprises: a plurality of joints (1〇), a frame (20) and a locking piece (30). And other structures in which the joints (1〇) and the frame (20) each have an accommodation space 'and are framed by different lengths q 〇) and then the joint (10) is used to form a frame of an appropriate size (size) The locking piece (30) is a space for the insertion of the joints at both ends (i Q) and the frame (2 〇) (1 1) ( 21) 'with a lock such as a screw through the lock to form a frame The inside of the joint '10' and the frame (2 〇) are provided with a cover plate (4 to form a basic outer frame. The system of the present invention is set on a large or small circuit board (5 〇). ( 5 1) The circuit board (5Ό) (5 1) is equipped with the phase parts required for the screen, and the circuit boards (50) (51) can be connected in series according to the length of the frame (2 〇). The board (5 0 ) ( 5 1 )_ is not connected by a flexible wire, and 200939088 is a male and female connector (60) (6 1), as shown by the positions a, B, and c in the figure. Fine phase decoration is the most Really shut down, so that the male and female connectors (6 0) (6 1 ) on the typhoon (5) ^ 5 1) are just rightly connected, and each board (5 Q ) ( 5 1 ) 'There are provided the unit members ' as shown in the figure i of the present invention, and the busy body composed of the joint of the joint (1〇) and the frame (20), via the automatic debt measurement system of the present invention, Make the combined touch screen more valuable for development. Since the automatic _ size touch screen system of the present invention can be applied to the combined touch screen structure to enable the touch screen to be electrically connected after the combination, the basic telecommunication data is automatically detected. And it can be automatically connected, and the combined touch screen structure can be easily disassembled, transported, space-saving and convenient for storage management, and the cost of adjusting the specifications is only required. The module can be assembled and assembled, which is very economical and practical, and has the value of industrial utilization. The present invention is a special and novel design, and the structure has a clever idea. If the circuit of the present invention is simply converted, the entire feature is to use the features of the present invention, and it should be the content of the present invention only when it is simply changed or added. The description and drawings of the present invention are intended to be a preferred and practicable implementation of the present invention, but are not intended to be equivalent to the scope of the present invention. Structural changes should still belong to the patent application scope of this creation. Specially, Chen 200939088 The invention has the advantages of convenient use, convenient transportation, dense mold, convenient slogan, mold type and cost reduction, and is a new box. The leaves, and the right 吝 吝 Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ Μ "Committee U Day Resignation 200939088 [Simple diagram of the diagram] Figure 1 Figure 2 Figure 3 Figure 4 Figure 5 System structure diagram. System flow chart. The automatic _ size of the towel of the present invention is based on the self-measured size of the present invention. An exploded view of the module of the present invention. A combined appearance of the modules of the present invention.

Ο 【主要元件符號說明】 1 0接頭 2 0框架 3 0鎖固片 11容置空間 21容置空間 4 0罩板 5 0電路板 5 1電路板 6 0連接器 G 1連接器 7 0微控制處理器 7 1周邊編解>5馬器 7 2χ/γ軸切換器及光學控制 驅動器 7 3輸出/輪入控制器 7 4回饋信號驅動器 8 0Υ轴模乡且控制器 81Υ軸光學控制器 8 2Υ軸光學回饋控制器 8 3Υ軸模組回饋控制器 8 4Χ/γ軸光學回饋處理單元 85Χ/γ軸光學回饋處理單元 12 200939088Ο [Main component symbol description] 1 0 connector 2 0 frame 3 0 lock piece 11 accommodation space 21 accommodation space 4 0 cover plate 5 0 circuit board 5 1 circuit board 6 0 connector G 1 connector 7 0 micro control Processor 7 1 peripheral editing > 5 horse 7 2 χ / γ axis switcher and optical control driver 7 3 output / wheeling controller 7 4 feedback signal driver 8 0 axis axis home and controller 81 axis optical controller 8 2Υaxis optical feedback controller 8 3Υ axis module feedback controller 8 4Χ/γ axis optical feedback processing unit 85Χ/γ axis optical feedback processing unit 12 200939088

φ 8 6X軸模組回饋控制器 8 7X軸光學回饋控制器 8 8 X軸光學控制器 8 9 X軸模組控制器 9 0輸入裝置 9 1連接器 9 2連接器 13Φ 8 6X axis module feedback controller 8 7X axis optical feedback controller 8 8 X axis optical controller 8 9 X axis module controller 9 0 input device 9 1 connector 9 2 connector 13

Claims (1)

200939088 十、申請專利範圍: 1. 一種『自動偵測尺寸的觸控屏幕系統』,包括: 至少一組Y軸模組控制器及Y軸光學控制器··能發出Y軸相 對位置的訊號; 至少一組Y軸光學回讀控制器及Y軸模、组回饋控制器:能接 收Y軸的訊號並予回饋的訊息; 至少一組X軸模組控制器及X軸光學控制器;能發出X軸相 對位置的訊號; 至少一組X軸光學回馈控制器及X軸模組回饋控制器:能接 收X軸的訊號並予回饋的訊息; 至少一組X/Y軸光學回饋處理單元,係與Y轴光學回饋控 制器、X轴光學回饋控制器相連接、Y軸模組回饋控制器、X軸 模組回饋控制器相連接相連;並將所有資料傳輸至輸出/輸入控 制器; 至少一組X/Y軸切換器及光學控制驅動器及回饋信號驅 動器係分別與輸出/輸入控制器相連,並與前揭所有單元相連 接;一周邊編解碼器係與輸出/輸入控制器相連接,再經一微控 制處理器將所有偵測的信號分析,再與電腦或嵌入式系統等輸入 裝置相聯接。 2·如申請專利範圍第1項所述之『自動偵測尺寸的觸控屏幕 系統』,其中,X/Y轴光學回饋處理單元設為二組,其中一 200939088 組係與Y轴光學回饋控制器、χ轴光學回饋控制器相連接;另 一組Χ/Υ轴光學回饋處理單元,係與γ軸模組回饋控制器、 X軸模組回饋控制器相連接。 3. 如申请專利範圍第1項所述之『自動偵測尺寸的觸控屏幕 系統』,其中,微控制處理器連接器係與USB介面或尺兑32介 面相容。 4. 一種『自動偵測尺寸的觸控屏幕系統之模組』,包括有: 相對複數個接頭、框架及鎖固片等結構,其中諸接頭及框 架均具有谷置m且藉由不同長度的框架再配合接頭以組成 適當大小(規格尺寸)的框形體;而鎖固片係以兩端***接頭 及框架的容置空間,以螺絲等鎖固件貫穿鎖緊連結成一框形 體,以形成基本的外框殼體;數片電路板係分別設於接頭及框 架的容置空間内’且諸電路板能依框架的長度增加而串聯;該 電路板分別各設有一組自動偵測系統,包含有·· 一組γ轴模組控繼及γ轴光學控㈣;能發出y轴相對 位置的訊號; -組γ軸光學回饋控制器及γ軸模組回饋控制器:能接收 Υ軸的訊號並予回饋的訊息; 一組Χ她^繼及Χ轴光學控齡能發⑽軸相對 位置的訊號; 能接收 組X軸光學回饋控制器及χ軸模組回饋控制器: 15 200939088 x軸的訊號並予回饋的訊息; 一組X/Y軸光學回饋處理單元,係與Y軸光學回饋控制 器、X轴光學回饋控制器相連接、γ軸模組回饋控制器、X軸 模組回饋控制器相連接相連;並將所有資料傳輸至輸出/輸入 控制器; 一組X/Y軸切換器及光學控制驅動器及回饋信號驅動 器係分別與輸出/輸入控制器相連,並與前揭所有單元相連 〇 接;一周邊編解碼器係與輸出/輸入控制器相連接,再經一微 控制處理器將所有偵測的信號分析。 5. 如申請專利範圍第4項所述之『自動偵測尺寸的觸控屏幕 系統之模組』’其中,至少一電路板係橫跨於接頭及框架的 容置空間内。 6. 如申請專利範圍第4項所述之『自動偵測尺寸的觸控屏幕 系統之模組』,其中,諸電路板間的相連係各自以公、母連 ® 接器所串接。 7. 如申請專利範圍第4項所述之『自動偵測尺寸的觸控屏幕 系統之模組』,其中,χ/γ軸光學回饋處理單元設為二組, 其中一組係與γ轴光學回饋控制器、X軸光學回饋控制器相連 接;另一組X/Y軸光學回饋處理單元,係與Y軸模組回饋控 制器、X軸模組回饋控制器相連接。 8. 如申請專利範圍第4項所述之『自動偵測尺寸的觸控屏幕 200939088 系統之模組』’其中,微控制處理器連接器係至少包含有USB 介面及RS232介面。200939088 X. Patent application scope: 1. A “touch screen system with automatic detection size”, including: at least one set of Y-axis module controllers and Y-axis optical controllers·· can send signals of relative positions of Y-axis; At least one set of Y-axis optical readback controllers and Y-axis modes, group feedback controllers: signals capable of receiving Y-axis signals and feeding back; at least one set of X-axis module controllers and X-axis optical controllers; capable of emitting Signal of relative position of X axis; at least one set of X-axis optical feedback controller and X-axis module feedback controller: message capable of receiving X-axis signal and feeding back; at least one set of X/Y-axis optical feedback processing unit The Y-axis optical feedback controller, the X-axis optical feedback controller, the Y-axis module feedback controller, and the X-axis module feedback controller are connected; and all data is transmitted to the output/input controller; at least one The group X/Y axis switcher and the optical control driver and the feedback signal driver are respectively connected to the output/input controller and connected to all the front units; a peripheral codec is connected to the output/input controller. Through a micro control processor analyzes all the signals detected, and then coupled to a computer or input device such as an embedded system. 2. According to the "automatic detection size touch screen system" mentioned in the first paragraph of the patent application, wherein the X/Y axis optical feedback processing unit is set to two groups, one of which is 200939088 group and Y axis optical feedback control The χ/Υ axis optical feedback processing unit is connected to the γ-axis module feedback controller and the X-axis module feedback controller. 3. For the “automatically sized touch screen system” described in the first paragraph of the patent application, the micro control processor connector is compatible with the USB interface or the sizing interface. 4. A module for automatically detecting a size of a touch screen system, comprising: a plurality of joints, a frame and a locking piece, wherein the joints and the frame have a valley and are of different lengths. The frame is further matched with the joint to form a frame body of an appropriate size (size and size); and the locking piece is inserted into the receiving space of the joint and the frame at both ends, and is fastened by a lock such as a screw to form a frame body to form a basic shape. The outer frame housing; the plurality of circuit boards are respectively disposed in the receiving space of the joint and the frame, and the circuit boards can be connected in series according to the length of the frame; the circuit boards are respectively provided with a set of automatic detecting systems, including · · A set of γ-axis module control and γ-axis optical control (4); can send the relative position of the y-axis signal; - Group γ-axis optical feedback controller and γ-axis module feedback controller: can receive the signal of the Υ axis and Feedback message; a set of signals that are relative to the axis of the optical axis (10) axis; can receive the group of X-axis optical feedback controller and the 模组 axis module feedback controller: 15 200939088 x-axis signal And Feedback message; a set of X/Y axis optical feedback processing unit connected to Y-axis optical feedback controller, X-axis optical feedback controller, γ-axis module feedback controller, X-axis module feedback controller Connected; and transfer all data to the output/input controller; a set of X/Y-axis switchers and optical control drivers and feedback signal drivers are respectively connected to the output/input controller and connected to all the front units; A peripheral codec is connected to the output/input controller, and all detected signals are analyzed by a micro control processor. 5. The "automatically sized touch screen system module" as described in claim 4, wherein at least one of the boards spans the housing and the housing space of the frame. 6. For the "automatically sized touch screen system module" described in the fourth paragraph of the patent application, the connection between the boards is connected in series by the male and female connectors. 7. For the "automatically sized touch screen system module" described in claim 4, wherein the χ/γ axis optical feedback processing unit is set to two groups, one of which is γ-axis optics. The feedback controller and the X-axis optical feedback controller are connected; another set of X/Y-axis optical feedback processing unit is connected with the Y-axis module feedback controller and the X-axis module feedback controller. 8. For the "Automatically Detected Touch Screen 200939088 System Module" as described in item 4 of the patent application, the micro control processor connector includes at least a USB interface and an RS232 interface. 1717
TW97108162A 2008-03-07 2008-03-07 A touch-control screen system of automatically detecting sizes and its module TW200939088A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI479320B (en) * 2010-12-09 2015-04-01 Hon Hai Prec Ind Co Ltd Touch module switch circuit for all in one computer

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1509834A2 (en) * 2002-05-17 2005-03-02 Koninklijke Philips Electronics N.V. Apparatus comprising an optical input device and at least one further optical device having a common radiation source
WO2004023200A1 (en) * 2002-09-03 2004-03-18 Optrex Corporation Image display system
JP3829809B2 (en) * 2003-02-18 2006-10-04 セイコーエプソン株式会社 Display device drive circuit and drive method, and display device and projection display device
JP2006116826A (en) * 2004-10-21 2006-05-11 Seiko Epson Corp Mold for producing micro lens substrate, method for producing micro lens substrate, micro lens substrate, transmission type screen, and rear type projector
KR100776177B1 (en) * 2004-12-17 2007-11-16 주식회사 디이엔티 Work table for flat display panel tester

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI479320B (en) * 2010-12-09 2015-04-01 Hon Hai Prec Ind Co Ltd Touch module switch circuit for all in one computer

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