TW201407450A - Touch panel and driving method thereof - Google Patents

Touch panel and driving method thereof Download PDF

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TW201407450A
TW201407450A TW101128290A TW101128290A TW201407450A TW 201407450 A TW201407450 A TW 201407450A TW 101128290 A TW101128290 A TW 101128290A TW 101128290 A TW101128290 A TW 101128290A TW 201407450 A TW201407450 A TW 201407450A
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sensing
sensing series
series
signal
touch point
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TW101128290A
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TWI467457B (en
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Bo-Wei Lan
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Chunghwa Picture Tubes Ltd
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Abstract

A touch panel having a plurality of sensing series is provided. The sensing series are parallel to each other and belong to the same film. A driving method capable of driving the touch panel is provided. The driving method includes following steps. Each of the sensing series is respectively input a driving signal, and a sensing signal output by a sensing series adjacent to the sensing series is read. A location of a touch point is judged according sensing signals.

Description

觸控面板及其驅動方法 Touch panel and driving method thereof

本發明是有關於一種電子裝置,且特別是有關於一種觸控面板。 The present invention relates to an electronic device, and more particularly to a touch panel.

為了讓電子產品更符合人性化的需求,許多電子產品,如自動櫃員機(Auto-Teller Machine,ATM)、行動電話(mobile phone)、平板電腦(tablet PC)等,多內建有觸控面板以讓使用者可更方便地進行操作。一般而言,觸控面板大致可區分為電阻式、電容式、紅外線式及超音波式等觸控面板,其中以電阻式觸控面板與電容式觸控面板為最常見的產品。 In order to make electronic products more user-friendly, many electronic products, such as Auto-Teller Machine (ATM), mobile phone, tablet PC, etc., have built-in touch panels. Make it easier for users to operate. In general, touch panels can be roughly classified into resistive, capacitive, infrared, and ultrasonic touch panels. Among them, resistive touch panels and capacitive touch panels are the most common products.

以電容式觸控面板為例,其是透過彼此垂直之X感測串列以及Y感測串列來感測並判斷出使用者所觸碰的位置。在習知技術中,X感測串列與Y感測串列是屬於不同膜層,而需分別以二道製程分別製作X感測串列與Y感測串列。此外,在X感測串列與Y感測串列交錯處多設有絕緣圖案。絕緣圖案的設置更增加了電容式觸控面板的製程複雜度,而使觸控面板的製作良率不易提升。 Taking a capacitive touch panel as an example, it is to sense and determine the position touched by the user through the X sensing series and the Y sensing series that are perpendicular to each other. In the prior art, the X sensing series and the Y sensing series belong to different film layers, and the X sensing series and the Y sensing series are separately prepared in two processes. In addition, an insulating pattern is often provided at the intersection of the X sensing series and the Y sensing series. The arrangement of the insulation pattern further increases the process complexity of the capacitive touch panel, and the production yield of the touch panel is not easily improved.

有鑑於此,本發明提供一種觸控面板,其製程簡單、製作良率高。 In view of this, the present invention provides a touch panel which has a simple process and high production yield.

本發明提供一種驅動方法,其適於驅動上述之製程簡單、良率高的觸控面板。 The invention provides a driving method suitable for driving the above-mentioned touch panel with simple process and high yield.

本發明提供一種觸控面板,包括基板、配置於基板上的多個感測串列、以及與感測串列電性連接的控制單元。感測串列彼此平行且屬於同一膜層。控制單元分別對每一感測串列輸入驅動訊號並讀取與此感測串列相鄰之感測串列所輸出的感測訊號。控制單元根據這些感測訊號判斷觸碰點的位置。 The present invention provides a touch panel including a substrate, a plurality of sensing series disposed on the substrate, and a control unit electrically connected to the sensing series. The sensing series are parallel to each other and belong to the same film layer. The control unit inputs a driving signal for each sensing series and reads a sensing signal outputted by the sensing series adjacent to the sensing series. The control unit determines the position of the touch point based on the sensing signals.

本發明提供一種驅動方法。所述之驅動方法適於驅動觸控面板。所述之觸控面板具有彼此平行且屬於同一膜層的多個感測串列。所述之驅動方法包括下列步驟。分別對每一感測串列輸入驅動訊號並讀取與此感測串列相鄰之感測串列所輸出的感測訊號。根據這些感測訊號判斷觸碰點的位置。 The present invention provides a driving method. The driving method is suitable for driving a touch panel. The touch panel has a plurality of sensing series that are parallel to each other and belong to the same film layer. The driving method described includes the following steps. A driving signal is input to each sensing series and a sensing signal outputted by the sensing series adjacent to the sensing series is read. The position of the touch point is determined based on these sensing signals.

在本發明之一實施例中,上述之感測串列沿著第一方向排列且沿著第二方向延伸,而根據感測訊號判斷觸碰點位置的步驟包括:找出所有感測訊號中與其他感測訊號不同的至少一感測訊號,以判斷觸碰點在第一方向上的位置;根據與其他感測訊號不同的感測訊號計算出觸碰點在第二方向上的位置。 In an embodiment of the invention, the sensing series is arranged along the first direction and extends along the second direction, and the step of determining the touch point position according to the sensing signal comprises: finding all the sensing signals. At least one sensing signal different from the other sensing signals to determine the position of the touch point in the first direction; and calculating the position of the touch point in the second direction according to the sensing signal different from the other sensing signals.

在本發明之一實施例中,上述之根據與其他感測訊號不同的感測訊號計算出觸碰點在第二方向上的位置的步驟更包括:根據與其他感測訊號不同之感測訊號的電壓飽和時間計算觸碰點在第二方向上的位置。 In an embodiment of the invention, the step of calculating the position of the touch point in the second direction according to the sensing signal different from the other sensing signals further comprises: sensing signals different from the other sensing signals. The voltage saturation time calculates the position of the touch point in the second direction.

在本發明之一實施例中,上述之感測串列分為沿著第一方向排列的多個感測串列組。每一感測串列組包括彼此相鄰的第一感測串列以及第二感測串列。分別對每一感測串列輸入驅動訊號並讀取與此感測串列相鄰之一感測串列所輸出的感測訊號之步驟為:分別對每一感測串列組的第一感測串列輸入驅動訊號並讀取感測串列組的第二感測串列輸出的感測訊號;分別對每一感測串列組的第二感測串列輸入驅動訊號並讀取感測串列組的第一感測串列輸出的感測訊號。 In an embodiment of the invention, the sensing series is divided into a plurality of sensing series groups arranged along a first direction. Each of the sensing series includes a first sensing series and a second sensing series adjacent to each other. The steps of inputting a driving signal for each sensing series and reading a sensing signal outputted by one sensing series adjacent to the sensing series are: respectively, respectively for each sensing string group Sensing the serial input driving signal and reading the sensing signal outputted by the second sensing serial of the sensing series; respectively inputting the driving signal to the second sensing serial of each sensing series and reading Sensing signals output by the first sensing series of the serialized group are sensed.

在本發明之一實施例中,上述之控制單元包括多工器。多工器分別對每一感測串列輸入驅動訊號並讀取與此感測串列相鄰之感測串列所輸出的感測訊號。 In an embodiment of the invention, the control unit comprises a multiplexer. The multiplexer inputs a driving signal for each sensing series and reads a sensing signal outputted by the sensing series adjacent to the sensing series.

在本發明之一實施例中,上述之多工器分別對每一感測串列組的第一感測串列輸入驅動訊號並讀取感測串列組的第二感測串列輸出的感測訊號。多工器分別對每一感測串列組的第二感測串列輸入驅動訊號並讀取此感測串列組的第一感測串列輸出的感測訊號。 In an embodiment of the invention, the multiplexer inputs a driving signal to the first sensing series of each sensing series and reads the second sensing serial output of the sensing series. Sensing signal. The multiplexer inputs the driving signals to the second sensing series of each sensing series and reads the sensing signals output by the first sensing series of the sensing series.

在本發明之一實施例中,上述之控制單元包括計算器。計算器根據感測訊號計算出多個電容變化值,以判斷觸碰點的位置。 In an embodiment of the invention, the control unit described above comprises a calculator. The calculator calculates a plurality of capacitance change values based on the sensing signals to determine the position of the touch point.

在本發明之一實施例中,上述之控制單元包括類比轉數位器。類比轉數位器將多個電容變化值轉換為多個數位值。 In an embodiment of the invention, the control unit comprises an analog to digital counter. The analog to digital converter converts multiple capacitance change values into multiple digital values.

在本發明之一實施例中,上述之控制單元包括中央處 理器。中央處理器根據這些數位值計算出觸碰點的位置。 In an embodiment of the invention, the control unit comprises a central portion Processor. The central processor calculates the position of the touch point based on these digit values.

基於上述,在本發明之觸控面板中,所有感測串列皆屬同一膜層,因此本發明之觸控面板的製程簡單、製作良率高。此外,本發明之觸控面板藉由特殊的驅動方式(或控制單元)亦可實現偵測觸控點位置的功能。換言之,本發明之觸控面板不但具有習知觸控面板之偵測觸控點位置的功能外,更具有製程簡單、製作良率高的優點。 Based on the above, in the touch panel of the present invention, all the sensing series belong to the same film layer, so the touch panel of the present invention has a simple process and high production yield. In addition, the touch panel of the present invention can also realize the function of detecting the position of the touch point by using a special driving method (or a control unit). In other words, the touch panel of the present invention not only has the function of detecting the position of the touch point of the conventional touch panel, but also has the advantages of simple process and high production yield.

為讓本發明之上述特徵和優點能更明顯易懂,下文特舉實施例,並配合所附圖式作詳細說明如下。 The above described features and advantages of the present invention will be more apparent from the following description.

圖1為本發明一實施例之觸控面板的示意圖。請參照圖1,本實施例之觸控面板100包括基板110、配置於基板110上的多個感測串列122、以及與感測串列122電性連接的控制單元130。每一感測串列122包括互相串接的多個感測墊124及多個橋接線126。每一橋接線126連接相鄰的二個感測墊124。在本實施例中,感測墊124的外型例如為菱形,橋接線126的外型例如為矩形。然而,本發明並不限於此,在其他實施例中,感測串列(包括感測墊及橋接線)的外型可視實際的需求做適當的變化。 FIG. 1 is a schematic diagram of a touch panel according to an embodiment of the invention. Referring to FIG. 1 , the touch panel 100 of the present embodiment includes a substrate 110 , a plurality of sensing series 122 disposed on the substrate 110 , and a control unit 130 electrically connected to the sensing series 122 . Each sensing series 122 includes a plurality of sensing pads 124 and a plurality of bridge wires 126 that are connected in series. Each bridge wire 126 connects two adjacent sensing pads 124. In the present embodiment, the shape of the sensing pad 124 is, for example, a diamond shape, and the outer shape of the bridge wire 126 is, for example, a rectangle. However, the present invention is not limited thereto, and in other embodiments, the appearance of the sensing series (including the sensing pads and the bridge wires) may be appropriately changed depending on actual needs.

請繼續參照圖1,本實施例之控制單元130包括多工器132。多工器132是用以分別對每一感測串列122輸入驅動訊號TX並讀取與此感測串列122相鄰之感測串列122所輸出的感測訊號RX。本實施例之控制單元130更包括 計算器134。計算器134用以接收每一感測串列122所輸出之感測訊號RX,並根據這些感測訊號RX計算出每一圖框(frame)時間內觸控面板100上各點的電容變化值,以判斷觸碰點的位置。本實施例之控制單元更包括類比轉數位器136。類比轉數位器136用以將這些電容變化值轉換為多個數位值。本實施例之控制單元130更包括中央處理器138。中央處理器138可接收這些數位值並根據這些數位值計算出觸碰點的位置。此外,中央處理器138更可將觸碰點的位置輸入至一畫面端140,進而使畫面端做出對應之動作。 With continued reference to FIG. 1, the control unit 130 of the present embodiment includes a multiplexer 132. The multiplexer 132 is configured to input a driving signal TX to each sensing series 122 and read a sensing signal RX outputted by the sensing series 122 adjacent to the sensing series 122. The control unit 130 of this embodiment further includes Calculator 134. The calculator 134 is configured to receive the sensing signal RX outputted by each sensing series 122, and calculate a capacitance change value of each point on the touch panel 100 in each frame time according to the sensing signals RX. To determine the location of the touch point. The control unit of this embodiment further includes an analog-to-digital counter 136. The analog to digital 136 is used to convert these capacitance change values into a plurality of digital values. The control unit 130 of this embodiment further includes a central processing unit 138. The central processor 138 can receive these digit values and calculate the location of the touch point based on the digit values. In addition, the central processing unit 138 can further input the position of the touch point to a picture end 140, thereby causing the picture end to perform a corresponding action.

值得注意的是,在本實施例中,所有感測串列122彼此平行且屬於同一膜層。透過控制單元130,屬於同一膜層的感測串列122仍可發揮偵測觸碰點位置的功能。以下配合圖示詳細說明之。 It should be noted that in the present embodiment, all the sensing series 122 are parallel to each other and belong to the same film layer. Through the control unit 130, the sensing series 122 belonging to the same film layer can still function to detect the position of the touch point. The following is a detailed description with the illustration.

請繼續參照圖1,本實施例之控制單元130可分別對每一感測串列122輸入驅動訊號TX並讀取與被輸入驅動訊號TX之感測串列122相鄰的另一感測串列122所輸出的感測訊號RX。詳言之,在本實施例中,所有感測串列122可劃分為沿著第一方向D1排列的多個感測串列組120。每一感測串列組120包括彼此相鄰的第一感測串列122a及第二感測串列122b。在本實施例中,控制單元130可先對第一感測串列組120A之第一感測串列122a輸入驅動訊號TX並讀取第一感測串列組120A之第二感測串列122b所輸出的感測訊號RX,然後再對第一感測串列組 120A的第二感測串列122b輸入驅動訊號TX並讀取第一感測串列組120A的第一感測串列122a所輸出的感測訊號RX。接著,控制單元130可利用類似的方式對第二感測串列組120B的第一感測串列122a輸入驅動訊號TX並讀取第二感測串列組120B之第二感測串列122b輸出的感測訊號RX,然後再對第二感測串列組120B的第二感測串列122b輸入驅動訊號TX並讀取第二感測串列組120B的第一感測串列122a所輸出的感測訊號RX。控制單元130可以上述的方式對觸控面板100中每一感測串列組120依序進行輸入驅動訊號TX及讀取感測訊號RX的動作,進而完成觸控面板100上每一點的偵測動作。 With reference to FIG. 1 , the control unit 130 of the present embodiment can input the driving signal TX to each sensing series 122 and read another sensing string adjacent to the sensing series 122 of the input driving signal TX. The sense signal RX output by column 122. In detail, in the present embodiment, all of the sensing series 122 can be divided into a plurality of sensing series groups 120 arranged along the first direction D1. Each of the sensing series 120 includes a first sensing series 122a and a second sensing series 122b adjacent to each other. In this embodiment, the control unit 130 may first input the driving signal TX to the first sensing series 122a of the first sensing series 120A and read the second sensing series of the first sensing series 120A. The sensing signal RX outputted by 122b, and then the first sensing serial group The second sensing series 122b of the 120A inputs the driving signal TX and reads the sensing signal RX output by the first sensing series 122a of the first sensing series 120A. Then, the control unit 130 can input the driving signal TX to the first sensing series 122a of the second sensing series 120B and read the second sensing series 122b of the second sensing series 120B in a similar manner. The output sensing signal RX is then input to the second sensing series 122b of the second sensing series 120B, and the first sensing series 122a of the second sensing series 120B is read. The sensed signal RX is output. The control unit 130 can sequentially input the driving signal TX and the read sensing signal RX to each sensing serial group 120 in the touch panel 100 in the above manner, thereby completing the detection of each point on the touch panel 100. action.

控制單元130可根據感測訊號RX的特性判斷觸碰點的位置。詳言之,在本實施例中,控制單元130可先找出所有感測訊號RX中與其他感測訊號RX不同的至少一個感測訊號RX,以判斷觸碰點在第一方向D1上的位置。具體而言,當使用者觸碰觸控面板100時,使用者手指會與沿著第一方向D1排列的至少一感測串列122形成耦合電容。此耦合電容會讓與使用者手指重疊之感測串列122所輸出的感測訊號RX發生變化,而與其他未和使用者手指重疊之感測串列122所輸出的感測訊號RX有所不同。藉由找出由哪一條感測串列122輸出發生變化之感測訊號RX便可判斷使用者手指之觸碰點在第一方向D1上的位置。 The control unit 130 can determine the position of the touch point according to the characteristics of the sensing signal RX. In detail, in this embodiment, the control unit 130 may first find at least one sensing signal RX of all the sensing signals RX that is different from the other sensing signals RX to determine the touch point in the first direction D1. position. Specifically, when the user touches the touch panel 100, the user's finger forms a coupling capacitance with the at least one sensing series 122 arranged along the first direction D1. The coupling capacitor converts the sensing signal RX outputted by the sensing series 122 overlapping with the user's finger, and the sensing signal RX outputted by the sensing series 122 that is not overlapped with the user's finger has different. The position of the touch point of the user's finger in the first direction D1 can be determined by finding out which sensing line RX outputs the sensed signal RX.

接著,控制單元130可根據上述之與其他感測訊號不 同的感測訊號RX計算出觸碰點在第二方向D2上的位置。以下搭配圖2A、圖2B、圖3A、圖3B說明控制單元130是如何根據與其他感測訊號不同的感測訊號RX計算出觸碰點在第二方向D2上的位置。 Then, the control unit 130 can not respond to other sensing signals according to the foregoing. The same sensing signal RX calculates the position of the touch point in the second direction D2. 2A, 2B, 3A, and 3B illustrate how the control unit 130 calculates the position of the touch point in the second direction D2 based on the sensing signal RX different from the other sensing signals.

圖2A示出使用者觸碰本發明一實施例之觸控面板上之一觸碰點的情形。圖2B為圖2A之等效電路圖。請參照圖2A及圖2B,當使用者手指觸碰距離輸出端O較遠之觸碰點A時,與觸碰點A重疊之二感測串列122和使用者手指所構成之電容值為CpA。使用者手指與觸控面板100所構成之電容值為Cfinger。使用者手指與地線所構成之電容值為Cbody。使用者手指與觸控面板100所構成之電容值Cfinger和使用者手指與地線所構成之電容值Cbody為串聯後之等效電容值為[(Cbody.Cfinger)/(Cfinger+Cbody)]。此等效電容值[(Cbody.Cfinger)/(Cfinger+Cbody)]與電容值CpA並聯後之總等效電容值CtotalA為{[(Cbody.Cfinger)/(Cfinger+Cbody)]+CpA}。 2A illustrates a situation in which a user touches a touch point on a touch panel according to an embodiment of the present invention. 2B is an equivalent circuit diagram of FIG. 2A. Referring to FIG. 2A and FIG. 2B, when the user's finger touches the touch point A far away from the output end O, the capacitance value formed by the two sensing series 122 and the user's finger overlapping the touch point A is C pA . The capacitance value formed by the user's finger and the touch panel 100 is C finger . The capacitance value formed by the user's finger and the ground line is C body . The equivalent capacitance value of the capacitance value C finger formed by the user's finger and the touch panel 100 and the capacitance value C body formed by the user's finger and the ground line is [(C body . C finger ) / (C finger +C body )]. The total equivalent capacitance value C totalA of this equivalent capacitance value [(C body . C finger ) / (C finger + C body )] in parallel with the capacitance value C pA is {[(C body .Cfin ger ) / (C Finger +C body )]+C pA }.

圖3A示出使用者觸碰本發明一實施例之觸控面板上之另一觸碰點的情形。圖3B為圖3A之等效電路圖。請參照圖3A及圖3B,當使用者手指觸碰距離輸出端O較近之觸碰點B時,與觸碰點B重疊之二感測串列122和使用者手指所構成之電容值為CpB。等效電容值[(Cbody.Cfinger)/(Cfinger+Cbody)]與電容值CpB並聯後之總等效電容值CtotalB為{[(Cbody.Cfinger)/(Cfinger+Cbody)]+CpB}。 FIG. 3A illustrates a situation in which a user touches another touch point on a touch panel according to an embodiment of the present invention. FIG. 3B is an equivalent circuit diagram of FIG. 3A. Referring to FIG. 3A and FIG. 3B, when the user's finger touches the touch point B which is closer to the output end O, the capacitance value of the two sensing series 122 and the user's finger overlapping with the touch point B is C pB . The total equivalent capacitance value C totalB of the equivalent capacitance value [(C body . C finger ) / (C finger + C body )] in parallel with the capacitance value C pB is {[(C body .C finger )/(C finger +C body )]+C pB }.

比較圖2A及圖3A可知,位於觸碰點A與輸出端O 之間的感測墊124數量大於位於觸碰點B與輸出端O之間的感測墊124數量,因此二感測串列122和位於觸碰點A之使用者手指構成電容CpA的電極面積大於二感測串列122和位於觸碰點B之使用者手指構成電容CpB的電極面積。又電容值大小與電極面積成正比,故二感測串列122和位於觸碰點A之使用者手指構成的電容值CpA大於二感測串列122和位於觸碰點B之使用者手指構成的電容值CpB。由於電容值CpA大於電容值CpB,在使用者為同一人的情況下,總等效電容值CtotalA大於總等效電容值CtotalB。因此,觸碰點A的電壓飽和時間會大於觸碰點B的電壓飽和時間。換言之,當觸碰點在第二方向D2上與輸出端O的距離越長時,此觸碰點的電壓飽和時間越長。藉由此特性,控制單元130便可計算出觸碰點在第二方向D2上的位置。透過上述方式,控制單元130可計算出觸碰點在第一方向D1及第二方向D2上的位置,進而偵測出觸碰點的正確位置。 2A and FIG. 3A, the number of the sensing pads 124 between the touch point A and the output terminal O is greater than the number of the sensing pads 124 between the touch point B and the output end O, so the second sensing series The electrode area of 122 and the user's finger at the touch point A constitutes the capacitance C pA is larger than the area of the electrode of the second sensing series 122 and the user's finger at the touch point B constituting the capacitance C pB . The capacitance value is proportional to the electrode area, so the capacitance value C pA formed by the second sensing series 122 and the user's finger at the touch point A is greater than the two sensing series 122 and the user finger at the touch point B. The capacitance value C pB is formed . Since the capacitance value C pA is greater than the capacitance value C pB , the total equivalent capacitance value C totalA is greater than the total equivalent capacitance value C totalB in the case where the user is the same person. Therefore, the voltage saturation time of the touch point A is greater than the voltage saturation time of the touch point B. In other words, the longer the distance between the touch point and the output terminal O in the second direction D2, the longer the voltage saturation time of the touch point. With this characteristic, the control unit 130 can calculate the position of the touch point in the second direction D2. In the above manner, the control unit 130 can calculate the position of the touch point in the first direction D1 and the second direction D2, thereby detecting the correct position of the touch point.

綜上所述,在本發明一實施例之觸控面板中,所有感測串列皆屬同一膜層,因此本發明一實施例之觸控面板的製程簡單、製作良率高。此外,本發明一實施例之觸控面板藉由特殊的驅動方式(或控制單元)亦可實現偵測觸控點位置的功能。換言之,本發明一實施例之觸控面板不但具有習知觸控面板之偵測觸控點位置的功能外,更具有製程簡單、製作良率高的優點。 In summary, in the touch panel of the embodiment of the invention, all the sensing series are in the same film layer. Therefore, the touch panel of the embodiment of the invention has a simple process and high production yield. In addition, the touch panel of the embodiment of the present invention can also implement the function of detecting the position of the touch point by using a special driving method (or a control unit). In other words, the touch panel of the embodiment of the present invention not only has the function of detecting the position of the touch point of the conventional touch panel, but also has the advantages of simple process and high production yield.

雖然本發明已以實施例揭露如上,然其並非用以限定 本發明,任何所屬技術領域中具有通常知識者,在不脫離本發明之精神和範圍內,當可作些許之更動與潤飾,故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。 Although the invention has been disclosed above by way of example, it is not intended to be limiting The scope of the present invention is defined by the scope of the appended claims, and the scope of the invention is defined by the scope of the appended claims. Prevail.

100‧‧‧觸控面板 100‧‧‧ touch panel

110‧‧‧基板 110‧‧‧Substrate

120‧‧‧感測串列組 120‧‧‧Sensing tandem group

120A‧‧‧第一感測串列組 120A‧‧‧First Sensing Tandem Group

120B‧‧‧第二感測串列組 120B‧‧‧Second Sensing Tandem Group

122‧‧‧感測串列 122‧‧‧Sensor series

122a‧‧‧第一感測串列 122a‧‧‧First sensing series

122b‧‧‧第二感測串列 122b‧‧‧Second sensing series

124‧‧‧感測墊 124‧‧‧Sense pad

126‧‧‧橋接線 126‧‧‧Bridge wiring

130‧‧‧控制單元 130‧‧‧Control unit

132‧‧‧多工器 132‧‧‧Multiplexer

134‧‧‧計算器 134‧‧‧Calculator

136‧‧‧類比轉數位器 136‧‧‧ Analog to digital device

138‧‧‧中央處理器 138‧‧‧ central processor

140‧‧‧畫面端 140‧‧‧ screen side

CpA、CpB、Cfinger、Cbody‧‧‧電容 C pA , C pB , C finger , C body ‧‧‧ capacitor

D1‧‧‧第一方向 D1‧‧‧ first direction

D2‧‧‧第二方向 D2‧‧‧ second direction

O‧‧‧輸出端 O‧‧‧ output

RX‧‧‧感測訊號 RX‧‧‧ sensing signal

TX‧‧‧驅動訊號 TX‧‧‧ drive signal

圖1為本發明一實施例之觸控面板的示意圖。 FIG. 1 is a schematic diagram of a touch panel according to an embodiment of the invention.

圖2A示出使用者觸碰本發明一實施例之觸控面板上之一觸碰點的情形。 2A illustrates a situation in which a user touches a touch point on a touch panel according to an embodiment of the present invention.

圖2B為圖2A之等效電路圖。 2B is an equivalent circuit diagram of FIG. 2A.

圖3A示出使用者觸碰本發明一實施例之觸控面板上之另一觸碰點的情形。 FIG. 3A illustrates a situation in which a user touches another touch point on a touch panel according to an embodiment of the present invention.

圖3B為圖3A之等效電路圖。 FIG. 3B is an equivalent circuit diagram of FIG. 3A.

100‧‧‧觸控面板 100‧‧‧ touch panel

110‧‧‧基板 110‧‧‧Substrate

120‧‧‧感測串列組 120‧‧‧Sensing tandem group

120A‧‧‧第一感測串列組 120A‧‧‧First Sensing Tandem Group

120B‧‧‧第二感測串列組 120B‧‧‧Second Sensing Tandem Group

122‧‧‧感測串列 122‧‧‧Sensor series

122a‧‧‧第一感測串列 122a‧‧‧First sensing series

122b‧‧‧第二感測串列 122b‧‧‧Second sensing series

124‧‧‧感測墊 124‧‧‧Sense pad

126‧‧‧橋接線 126‧‧‧Bridge wiring

130‧‧‧控制單元 130‧‧‧Control unit

132‧‧‧多工器 132‧‧‧Multiplexer

134‧‧‧計算器 134‧‧‧Calculator

136‧‧‧類比轉數位器 136‧‧‧ Analog to digital device

138‧‧‧中央處理器 138‧‧‧ central processor

140‧‧‧畫面端 140‧‧‧ screen side

D1‧‧‧第一方向 D1‧‧‧ first direction

D2‧‧‧第二方向 D2‧‧‧ second direction

O‧‧‧輸出端 O‧‧‧ output

RX‧‧‧感測訊號 RX‧‧‧ sensing signal

TY‧‧‧驅動訊號 TY‧‧‧ drive signal

Claims (10)

一種驅動方法,適於驅動一觸控面板,該觸控面板具有彼此平行的多個感測串列,該些感測串列屬於同一膜層,該驅動方法包括下列步驟:分別對每一該感測串列輸入一驅動訊號,並讀取與該感測串列相鄰之感測串列所輸出的一感測訊號;以及根據該些感測訊號判斷一觸碰點的位置。 A driving method is suitable for driving a touch panel having a plurality of sensing series parallel to each other, the sensing series belonging to the same film layer, the driving method comprising the following steps: respectively The sensing series inputs a driving signal, and reads a sensing signal outputted by the sensing series adjacent to the sensing series; and determines a position of a touch point according to the sensing signals. 如申請專利範圍第1項所述之驅動方法,其中該些感測串列沿著一第一方向排列且沿著一第二方向延伸,而根據該些感測訊號判斷該觸碰點位置的步驟包括:找出該些感測訊號中與其他感測訊號不同的至少一該感測訊號,以判斷該觸碰點在該第一方向上的位置;根據與其他感測訊號不同的該感測訊號計算出該觸碰點在該第二方向上的位置。 The driving method of claim 1, wherein the sensing series are arranged along a first direction and extend along a second direction, and determining the position of the touch point according to the sensing signals The step of: determining at least one of the sensing signals different from the other sensing signals to determine the position of the touch point in the first direction; according to different senses from other sensing signals The test signal calculates the position of the touch point in the second direction. 如申請專利範圍第2項所述之驅動方法,其中根據與其他感測訊號不同的該感測訊號計算出該觸碰點在該第二方向上的位置的步驟更包括:根據與其他感測訊號不同之該感測訊號的電壓飽和時間計算該觸碰點在該第二方向上的位置。 The driving method of claim 2, wherein the step of calculating the position of the touch point in the second direction according to the sensing signal different from the other sensing signals further comprises: according to other sensing The voltage saturation time of the sensing signal different from the signal calculates the position of the touch point in the second direction. 如申請專利範圍第1項所述之驅動方法,其中該些感測串列分為沿著一第一方向排列的多個感測串列組,每一該感測串列組包括彼此相鄰的一第一感測串列以及一第二感測串列,而分別對每一該感測串列輸入該驅動訊號並讀取與該感測串列相鄰之感測串列所輸出的該感測訊號之 步驟為:分別對每一該感測串列組的該第一感測串列輸入該驅動訊號,並讀取該感測串列組的該第二感測串列輸出的該感測訊號;以及分別對每一該感測串列組的該第二感測串列輸入該驅動訊號,並讀取該感測串列組的該第一感測串列輸出的該感測訊號。 The driving method of claim 1, wherein the sensing series is divided into a plurality of sensing series groups arranged along a first direction, each of the sensing series groups being adjacent to each other a first sensing series and a second sensing series, respectively inputting the driving signal for each of the sensing series and reading the output of the sensing series adjacent to the sensing series The sensing signal The step of: inputting the driving signal to the first sensing series of each of the sensing series groups, and reading the sensing signal output by the second sensing series of the sensing series; And inputting the driving signal to the second sensing series of each of the sensing series groups, and reading the sensing signal output by the first sensing series of the sensing series. 一種觸控面板,包括:一基板;多個感測串列,配置於該基板上,該些感測串列彼此平行且屬於同一膜層,該些感測串列分為沿著一第一方向排列的多個感測串列組,每一該感測串列組包括彼此相鄰的一第一感測串列以及一第二感測串列;以及一控制單元,與該些感測串列電性連接,該控制單元分別對每一該感測串列輸入一驅動訊號並讀取與該感測串列相鄰之感測串列所輸出的一感測訊號,該控制單元根據該些感測訊號判斷一觸碰點的位置。 A touch panel includes: a substrate; a plurality of sensing series disposed on the substrate, the sensing series are parallel to each other and belong to the same film layer, and the sensing series is divided into a first a plurality of sensing series groups arranged in a direction, each of the sensing series groups including a first sensing series adjacent to each other and a second sensing series; and a control unit, and the sensing a series of electrical connections, the control unit respectively inputting a driving signal to each of the sensing series and reading a sensing signal outputted by the sensing series adjacent to the sensing series, the control unit is configured according to The sensing signals determine the location of a touch point. 如申請專利範圍第5項所述之觸控面板,其中該控制單元包括:一多工器,分別對每一該感測串列輸入該驅動訊號並讀取與該感測串列相鄰之感測串列所輸出的該感測訊號。 The touch panel of claim 5, wherein the control unit comprises: a multiplexer, respectively inputting the driving signal to each of the sensing series and reading adjacent to the sensing series Sensing the sensing signal outputted by the serial. 如申請專利範圍第6項所述之觸控面板,其中該多工器分別對每一該感測串列組的該第一感測串列輸入該驅動訊號並讀取該感測串列組的該第二感測串列輸出的該感 測訊號,該多工器分別對每一該感測串列組的該第二感測串列輸入該驅動訊號並讀取該感測串列組的該第一感測串列輸出的該感測訊號。 The touch panel of claim 6, wherein the multiplexer inputs the driving signal to the first sensing series of each of the sensing series and reads the sensing series The sense of the second sensed serial output a dynamometer that inputs the driving signal to the second sensing series of each of the sensing series and reads the sensation of the first sensing series of the sensing series Test signal. 如申請專利範圍第5項所述之觸控面板,其中該控制單元更包括:一計算器,根據該些感測訊號計算出多個電容變化值,以判斷一觸碰點的位置。 The touch panel of claim 5, wherein the control unit further comprises: a calculator, and calculating a plurality of capacitance change values according to the sensing signals to determine a position of a touch point. 如申請專利範圍第8項所述之觸控面板,其中該控制單元更包括:一類比轉數位器,將該些電容變化值轉換為多個數位值。 The touch panel of claim 8, wherein the control unit further comprises: an analog-to-digital device, and converting the capacitance change values into a plurality of digital values. 如申請專利範圍第9項所述之觸控面板,其中該控制單元更包括:一中央處理器,根據該些數位值計算出該觸碰點的位置。 The touch panel of claim 9, wherein the control unit further comprises: a central processing unit, and calculating a position of the touch point according to the digit values.
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