TWI695303B - Touch pad device and notebook computer including the same - Google Patents

Touch pad device and notebook computer including the same Download PDF

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TWI695303B
TWI695303B TW108111874A TW108111874A TWI695303B TW I695303 B TWI695303 B TW I695303B TW 108111874 A TW108111874 A TW 108111874A TW 108111874 A TW108111874 A TW 108111874A TW I695303 B TWI695303 B TW I695303B
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field communication
communication coil
slit
conductor
touch panel
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TW108111874A
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TW202038063A (en
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廖大舜
范雯怡
鄭建勇
施博盛
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英屬開曼群島商敦泰電子有限公司
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Abstract

A touch pad device includes an NFC coil, a shielding layer and a touch layer. The NFC coil has two first sides opposite to each other and two opposite second sides opposite to each other. The shielding layer is disposed on the NFC coil, and is provided with a plurality of slits. The touch layer is disposed on the shielding layer, and is provided with a plurality of first conductor lines arranged at intervals a plurality of second conductor lines arranged at intervals, wherein the first conductor lines are separately intersected with the second conductor lines. Each slit is disposed along a first conductor line, and goes across the two second sides of the NFC coil, such that, on each of the second sides, each slit goes beyond the NFC coil for at least a length greater than the pitch of the NFC coil.

Description

觸控板裝置及包含該觸控板裝置之筆記型電腦 Touchpad device and notebook computer including the same

本發明係關於觸控板之技術領域,尤指一種具有近場通訊功能之觸控板裝置及包含該觸控板裝置之筆記型電腦。 The present invention relates to the technical field of touch panels, in particular to a touch panel device with near-field communication function and a notebook computer including the touch panel device.

觸控板(touch pad)在各類消費性電子產品及電腦裝置上,已逐漸成為標準配備,例如,在現今之筆記型電腦皆同時搭備觸控板,以提供使用者除了滑鼠、鍵盤之外的另一種輸入功能。此外,筆記型電腦更可配置有一近場通訊(Near-Field Communication,簡稱NFC)線圈,以提供與例如具有近場通訊卡或是支援近場通訊功能之手機的外部近場通訊物件進行資料傳輸。舉例而言,使用者可以先使用筆記型電腦找資料,當找到一個正確網址並將網址複製後,再將一支援近場通訊的手機靠近筆記型電腦的近場通訊線圈,即可使筆記型電腦透過近場通訊資料傳輸方式將複製的網址傳給手機,以在手機上進行瀏覽,進而大幅提升了使用上之方便性。 Touch pads have gradually become standard equipment on various consumer electronic products and computer devices. For example, today's notebook computers are equipped with touch pads at the same time to provide users with a mouse and keyboard In addition to another input function. In addition, the notebook computer can be further equipped with a Near-Field Communication (NFC) coil to provide data transmission with external near-field communication objects such as a near-field communication card or a mobile phone supporting the near-field communication function . For example, users can first use a laptop to find data. When a correct URL is found and the URL is copied, a mobile phone that supports NFC can be placed close to the NFC coil of the laptop to make the laptop The computer transmits the copied website to the mobile phone through the near field communication data transmission method to browse on the mobile phone, thereby greatly improving the convenience of use.

受限於筆記型電腦內部之空間及使用上的習慣,一般近場通訊線圈可為設置於筆記型電腦的觸控板下方。如圖1所示為筆記型電腦的觸控板搭配近場通訊線圈的兩層疊構示意圖,其中,近場通訊線圈 101係設於一基板103下方,基板103的第一層1031設有驅動導體線及感應導體線,而基板103的第二層1032則設有電路零件及走線,以此配置,由於近場通訊線圈101與基板103之間沒有屏蔽,因此觸控板受到近場通訊信號的干擾極大,而會影響觸控板的功能,故此配置不適合搭配近場通訊線圈101在觸控板下方的應用。 Limited by the space and usage habits inside the notebook computer, the general near-field communication coil can be arranged under the touchpad of the notebook computer. As shown in FIG. 1, it is a schematic diagram of a two-layer structure of a touchpad of a notebook computer and a near-field communication coil, in which the near-field communication coil 101 is arranged under a substrate 103. The first layer 1031 of the substrate 103 is provided with driving conductors and induction conductors, and the second layer 1032 of the substrate 103 is provided with circuit parts and traces. In this configuration, due to the near field There is no shielding between the communication coil 101 and the substrate 103. Therefore, the touch panel is greatly disturbed by the near field communication signal, which may affect the function of the touch panel. Therefore, the configuration is not suitable for the application of the near field communication coil 101 under the touch panel.

因此,習知之觸控板的結構仍有不甚完善之處,而有予以改善之必要。 Therefore, the structure of the conventional touch panel is still not perfect, and it is necessary to improve it.

本發明之目的主要係在提供一種具有近場通訊功能之觸控板裝置及包含該觸控板裝置之筆記型電腦,藉由在屏蔽層上設置有特殊設計之複數狹縫,以使得屏蔽層不會將近場通訊信號遮蔽,並且使屏蔽層能有效的保護觸控電路不受近場通訊信號的影響。 The purpose of the present invention is mainly to provide a touch panel device with near-field communication function and a notebook computer including the touch panel device. By providing a plurality of specially designed slits on the shield layer, the shield layer The near field communication signal will not be shielded, and the shielding layer can effectively protect the touch circuit from the near field communication signal.

依據本發明之一特色,本發明提出一種觸控板裝置,包含一近場通訊線圈、一屏蔽層及一觸控層。近場通訊線圈具有相對之兩第一邊及相對之兩第二邊;屏蔽層設置於近場通訊線圈之上,且屏蔽層設置有複數狹縫;觸控層設置於屏蔽層之上,且觸控層設置有複數間隔排列之第一導體線及複數間隔排列之第二導體線,複數第一導體線與複數第二導體線分隔地交叉,其中,每一狹縫沿著至少該些複數第一導體線其中之一第一導體線而設置,並跨過近場通訊線圈的兩第二邊,且每一狹縫在兩第二邊上至少各超出近場通訊線圈大於近場通訊線圈的徑寬的一長度。 According to one feature of the present invention, the present invention provides a touch panel device including a near field communication coil, a shielding layer, and a touch layer. The near field communication coil has two opposite first sides and two opposite sides; the shielding layer is disposed on the near field communication coil, and the shielding layer is provided with a plurality of slits; the touch layer is disposed on the shielding layer, and The touch layer is provided with a plurality of first conductor lines arranged at intervals and a plurality of second conductor lines arranged at intervals, the plurality of first conductor lines intersects the plurality of second conductor lines separately, wherein each slit extends along at least the plural numbers One of the first conductor lines is disposed on the first conductor line and spans the two second sides of the near field communication coil, and each slit on each of the second sides at least exceeds the near field communication coil and is larger than the near field communication coil The length of the diameter is wide.

依據本發明之另一特色,本發明提出一種觸控板裝置,包含一近場通訊線圈、一屏蔽層及一觸控層。近場通訊線圈具有相對之兩 第一邊及相對之兩第二邊;屏蔽層設置於近場通訊線圈之上,且屏蔽層設置有複數狹縫;觸控層設置於屏蔽層之上,且觸控層設置有複數間隔排列之第一導體線及複數間隔排列之第二導體線,複數第一導體線與複數第二導體線分隔地交叉,其中,複數狹縫之一部份狹縫跨過近場通訊線圈的一第二邊,複數狹縫之另一部份狹縫跨過近場通訊線圈的另一第二邊,且每一狹縫沿著該些複數第一導體線其中之一第一導體線之一部份而設置,以使每一狹縫兩端各超出近場通訊線圈的第二邊的長度皆大於近場通訊線圈的徑寬。 According to another feature of the present invention, the present invention provides a touch panel device including a near field communication coil, a shielding layer, and a touch layer. The near field communication coil has two opposite The first side and the two opposite sides; the shielding layer is provided on the near field communication coil, and the shielding layer is provided with a plurality of slits; the touch layer is provided on the shielding layer, and the touch layer is provided with a plurality of spaced arrangements The first conductor line and the plurality of second conductor lines arranged at intervals, the plurality of first conductor lines cross the plurality of second conductor lines separately, wherein part of the slits of the plurality of slits span a first section of the near-field communication coil On both sides, another part of the plurality of slits spans the other second side of the near-field communication coil, and each slit is along a part of the first conductor line among the plurality of first conductor lines It is set so that the length of the two ends of each slit beyond the second side of the near-field communication coil is greater than the diameter of the near-field communication coil.

依據本發明之再一特色,本發明提出一種包含前述觸控板裝置之筆記型電腦,以提供近場通訊之功能。 According to yet another feature of the present invention, the present invention provides a notebook computer including the aforementioned touch panel device to provide the function of near field communication.

以上概述與接下來的詳細說明皆為示範性質,是為了進一步說明本發明的申請專利範圍,而有關本發明的其他目的與優點,將在後續的說明與圖式加以闡述。 The above summary and the following detailed description are of exemplary nature, and are intended to further illustrate the scope of patent application of the present invention, and other objects and advantages of the present invention will be explained in the subsequent description and drawings.

101:近場通訊線圈 101: Near field communication coil

103:基板 103: substrate

1031:第一層 1031: first floor

1032:第二層 1032: Second floor

105:多層基板 105: multilayer substrate

1051:感應導體線 1051: induction conductor

1052:驅動導體線 1052: Drive conductor

201:屏蔽層 201: shielding layer

1054:電路走線 1054: Circuit trace

302:銅箔 302: copper foil

303:玻璃基板 303: Glass substrate

304:近場通訊物件 304: Near field communication object

401,401-1,401-2:狹縫 401, 401-1, 401-2: slit

402:中心線 402: Centerline

701:輔助狹縫 701: auxiliary slit

801:屏蔽層 801: Shield

803:觸控層 803: Touch layer

1011:第一邊 1011: First side

1012,1012-1,1012-2:第二邊 1012, 1012-1, 1012-2: the second side

8031:第一導體線 8031: the first conductor

8032:第二導體線 8032: second conductor

80:觸控板裝置 80: Touchpad device

110:筆記型電腦 110: laptop

圖1為習知筆記型電腦的觸控板搭配近場通訊線圈的兩層疊構示意圖。 FIG. 1 is a schematic diagram of a two-layer structure of a touch pad of a conventional notebook computer and a near-field communication coil.

圖2為筆記型電腦的觸控板搭配近場通訊線圈的四層疊構示意圖。 FIG. 2 is a schematic diagram of a four-layer structure of a touchpad of a notebook computer and a near-field communication coil.

圖3為本發明之一實施例屏蔽層圖案設計之實驗架構圖。 FIG. 3 is an experimental architecture diagram of a shield layer pattern design according to an embodiment of the invention.

圖4顯示本發明之屏蔽層圖案設計之實驗一的結果。 FIG. 4 shows the result of experiment 1 of the shield layer pattern design of the present invention.

圖5顯示本發明之屏蔽層圖案設計之實驗二的結果。 FIG. 5 shows the results of experiment 2 of the shield layer pattern design of the present invention.

圖6顯示本發明之屏蔽層圖案設計之實驗三的結果。 FIG. 6 shows the results of Experiment 3 of the shield layer pattern design of the present invention.

圖7顯示本發明之屏蔽層圖案設計之實驗四的結果。 FIG. 7 shows the results of Experiment 4 of the shield layer pattern design of the present invention.

圖8為本發明之近場通訊之觸控板裝置之立體示意圖。 8 is a schematic perspective view of a touch panel device for near field communication of the present invention.

圖9(A)為本發明之觸控板裝置之第一實施例的平面分解圖。 9(A) is an exploded plan view of the first embodiment of the touch panel device of the present invention.

圖9(B)為圖9(A)之疊層透視圖。 9(B) is a perspective view of the stack of FIG. 9(A).

圖9(C)為本發明之觸控板裝置之第一實施例的變形。 9(C) is a modification of the first embodiment of the touch panel device of the present invention.

圖10(A)為本發明之觸控板裝置之第二實施例的平面分解圖。 FIG. 10(A) is an exploded plan view of a second embodiment of the touch panel device of the present invention.

圖10(B)為圖10(A)之疊層透視圖。 Fig. 10(B) is a perspective view of the stack of Fig. 10(A).

圖10(C)為本發明之觸控板裝置之第二實施例的變形。 FIG. 10(C) is a modification of the second embodiment of the touch panel device of the present invention.

圖11為本發明之具有觸控板裝置之筆記型電腦的一實施例的示意圖。 11 is a schematic diagram of an embodiment of a notebook computer with a touchpad device according to the present invention.

為了使本發明的目的、技術方案及優點更加清楚明白,以下結合附圖及實施例,對本發明進行進一步詳細說明。應當理解,此處所描述的具體實施例僅僅用以解釋本發明,並不用於限定本發明。 In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention, and are not intended to limit the present invention.

圖2所示為筆記型電腦的觸控板搭配近場通訊線圈的四層疊構示意圖,其中,近場通訊線圈101係設於一多層基板105下方,多層基板105的第一層設有感應導體線1051,多層基板105的第二層設有驅動導體線1052,多層基板105的第三層設有一屏蔽層201,而多層基板105的第四層則設有電路走線1054。其中,屏蔽層201為一整片之金屬層,故其可以屏蔽感應導體線1051、驅動導體線1052與電路走線1054間之干擾,然而,由於屏蔽層201是位於近場通訊線圈101與觸控用之感應導體線1051及驅動導體線1052之間,因此屏蔽層201也會屏蔽近場通訊線圈101進而造成近場通訊線圈101的信號無法穿透觸 控板,導致無法正常感應外部近場通訊物件。 FIG. 2 is a schematic diagram of a four-layer structure of a touchpad of a notebook computer and a near-field communication coil, wherein the near-field communication coil 101 is disposed under a multilayer substrate 105, and the first layer of the multilayer substrate 105 is provided with an induction Conductor wires 1051, the second layer of the multilayer substrate 105 is provided with driving conductor wires 1052, the third layer of the multilayer substrate 105 is provided with a shield layer 201, and the fourth layer of the multilayer substrate 105 is provided with circuit traces 1054. Among them, the shielding layer 201 is a whole metal layer, so it can shield the interference between the induction conductor 1051, the driving conductor 1052 and the circuit trace 1054. However, since the shielding layer 201 is located in the near field communication coil 101 and touch Between the control conductor wire 1051 and the drive conductor wire 1052, the shielding layer 201 also shields the near-field communication coil 101 and thus the signal of the near-field communication coil 101 cannot penetrate the touch The control board is unable to properly sense external near field communication objects.

為設計一觸控板裝置,以使得近場通訊信號能順利穿透觸控板而不影響近場通訊線圈的使用,且同時降低近場通訊信號對觸控板的干擾,本發明透過對觸控板裝置的屏蔽層進行圖案化設計的方式來達成前述之目的。 In order to design a touch panel device, the near field communication signal can penetrate the touch panel smoothly without affecting the use of the near field communication coil, and at the same time reduce the interference of the near field communication signal on the touch panel. The patterning design of the shielding layer of the control board device achieves the foregoing objective.

本發明首先經由以下不同實驗來確認能使近場通訊信號通過的屏蔽層設計規則,以找出最佳化的屏蔽層圖案設計,其中,實驗是以如圖3所示之架構來進行,將代表屏蔽層的銅箔302擺設在一玻璃基板303的下方,且銅箔302具有特定開口的圖案設計,再將近場通訊線圈101擺設在銅箔302的下方,並確認玻璃基板303及銅箔302能完全覆蓋住近場通訊線圈101,接著使一近場通訊物件304透過玻璃基板303及銅箔302靠近近場通訊線圈101,以測試近場通訊線圈101是否能感應來確認近場通訊信號能否穿透銅箔302。以下說明不同的開口圖案之實驗及結果。 The present invention first confirms the design rules of the shielding layer that can pass the near field communication signal through the following different experiments to find the optimal shielding layer pattern design. Among them, the experiment is carried out with the structure shown in FIG. The copper foil 302 representing the shielding layer is placed under a glass substrate 303, and the copper foil 302 has a specific opening pattern design, and then the near field communication coil 101 is placed under the copper foil 302, and confirm the glass substrate 303 and the copper foil 302 Can completely cover the near-field communication coil 101, and then make a near-field communication object 304 approach the near-field communication coil 101 through the glass substrate 303 and the copper foil 302, to test whether the near-field communication coil 101 can be induced to confirm the near-field communication signal No penetrating copper foil 302. The experiments and results of different opening patterns are described below.

實驗一 experiment one

如圖4所示,代表屏蔽層的銅箔302的開口圖案為複數狹縫401,於此實驗中,定義近場通訊線圈101的長度(L)及寬度(W)分別為近場通訊線圈101的長邊及短邊的大小,且L/W=55mm/34mm,狹縫401是由近場通訊線圈101的短邊的中心線402沿著寬度方向對稱延伸,且每一狹縫401的長度為a(mm)。由實驗所得數據可知,銅箔302的狹縫401的長度(a)一定要比近場通訊線圈101的寬度(W)大一特定值(例如5mm,本實驗一為6mm),才能夠正常感應近場通訊物件304。亦即,此實驗可得知在屏蔽層開口的狹縫401之長度必須夠大,例如比近場通訊線圈101的寬度大一特定值才能夠正常感應近場通訊 物件304。 As shown in FIG. 4, the opening pattern of the copper foil 302 representing the shielding layer is a plurality of slits 401. In this experiment, the length (L) and width (W) of the near-field communication coil 101 are defined as the near-field communication coil 101, respectively. The size of the long side and the short side, and L/W=55mm/34mm, the slit 401 is symmetrically extended by the center line 402 of the short side of the near field communication coil 101 along the width direction, and the length of each slit 401 Is a(mm). According to the data obtained from the experiment, the length (a) of the slit 401 of the copper foil 302 must be larger than the width (W) of the near-field communication coil 101 by a specific value (for example, 5 mm, 6 mm in this experiment) to be able to sense normally. Near field communication object 304. That is to say, this experiment shows that the length of the slit 401 opening in the shielding layer must be large enough, for example, a certain value larger than the width of the near-field communication coil 101 can normally induce near-field communication Object 304.

實驗二 Experiment 2

如圖5所示,代表屏蔽層的銅箔302的開口圖案為複數狹縫401,於此實驗中,定義近場通訊線圈101的長度(L)及寬度(W)分別為近場通訊線圈101的長邊及短邊的大小,且L/W=55mm/34mm,狹縫401是跨過近場通訊線圈101的一長邊,且每一狹縫401於近場通訊線圈101內延伸的長度為b(mm),每一狹縫401於近場通訊線圈101外延伸的長度為c=10mm。由實驗所得數據可知,加大長度b並無法正常感應近場通訊物件304,故可知代表屏蔽層的銅箔302僅在近場通訊線圈101上單邊開口,並無法正常感應近場通訊物件304。亦即,此實驗確認在屏蔽層開口的狹縫401只僅跨過近場通訊線圈101的一邊並無法正常感應近場通訊物件304。 As shown in FIG. 5, the opening pattern of the copper foil 302 representing the shielding layer is a plurality of slits 401. In this experiment, the length (L) and width (W) of the near-field communication coil 101 are defined as the near-field communication coil 101, respectively. The size of the long side and the short side, and L/W=55mm/34mm, the slit 401 is a long side that spans the near-field communication coil 101, and each slit 401 extends within the near-field communication coil 101 Is b (mm), the length of each slit 401 extending outside the near-field communication coil 101 is c=10 mm. It can be seen from the data obtained from the experiment that increasing the length b cannot normally sense the near field communication object 304, so it can be seen that the copper foil 302 representing the shielding layer is only open on one side of the near field communication coil 101 and cannot normally sense the near field communication object 304 . That is, this experiment confirms that the slit 401 opened in the shielding layer only crosses one side of the near-field communication coil 101 and cannot normally sense the near-field communication object 304.

實驗三 Experiment 3

如圖6所示,代表屏蔽層的銅箔302的開口圖案為複數狹縫401,於此實驗中,定義近場通訊線圈101的長度(L)及寬度(W)分別為近場通訊線圈101的長邊及短邊的大小,且L/W=55mm/34mm,複數狹縫401之一部份狹縫401跨過近場通訊線圈101的一長邊,其餘另一部份狹縫401跨過近場通訊線圈101的另一長邊,且每一狹縫401以其中央部分跨過近場通訊線圈101的長邊,狹縫401兩端超出近場通訊線圈101的長度皆為d(mm),而近場通訊線圈101的徑寬(p)約為4mm。由實驗所得數據可知,狹縫401超出近場通訊線圈101的長度d大於近場通訊線圈101的徑寬(p)時(例如實驗數據之5mm>4mm),才能夠正常感應近場通訊物件304,故可知代表屏蔽層的銅箔302的狹縫401在兩邊各超出近場通訊線圈101的長度至少要大於近場通訊線 圈101的徑寬(p),且至少在近場通訊線圈101兩邊上都要有狹縫401,才能夠正常感應近場通訊物件304。亦即,此實驗確認在屏蔽層開口的狹縫401需跨過近場通訊線圈101的兩邊,且狹縫401在兩邊上至少要各超出近場通訊線圈101大於近場通訊線圈101的徑寬(p)的一長度,才能夠正常感應近場通訊物件304,此實驗也可推知在實驗一中之屏蔽層開口的狹縫401之長度也是需為至少要超出近場通訊線圈101大於近場通訊線圈101的徑寬(p)的一長度,才能夠正常感應近場通訊物件304。 As shown in FIG. 6, the opening pattern of the copper foil 302 representing the shielding layer is a plurality of slits 401. In this experiment, the length (L) and width (W) of the near-field communication coil 101 are defined as the near-field communication coil 101, respectively. The size of the long side and the short side, and L/W=55mm/34mm, a part of the slit 401 of the plurality of slits 401 spans a long side of the near field communication coil 101, and the other part of the slit 401 spans Pass the other long side of the near field communication coil 101, and each slit 401 crosses the long side of the near field communication coil 101 with its central part, and the length of the slit 401 beyond the near field communication coil 101 is d( mm), and the diameter width (p) of the near-field communication coil 101 is about 4 mm. According to the data obtained from the experiment, the slit 401 exceeds the length d of the near-field communication coil 101 and is greater than the diameter width (p) of the near-field communication coil 101 (for example, 5 mm>4 mm of the experimental data), the near-field communication object 304 can be normally sensed Therefore, it can be seen that the slit 401 of the copper foil 302 representing the shielding layer on each side exceeds the length of the near field communication coil 101 by at least greater than the near field communication line The diameter width (p) of the loop 101, and at least the slits 401 on both sides of the near-field communication coil 101 are required to properly sense the near-field communication object 304. That is, this experiment confirms that the slit 401 opening in the shielding layer needs to cross the two sides of the near-field communication coil 101, and the slit 401 on each side must at least exceed the diameter of the near-field communication coil 101 and larger than the diameter of the near-field communication coil 101. a length of (p), in order to properly sense the near-field communication object 304, this experiment can also be inferred that the length of the slit 401 of the opening of the shielding layer in Experiment 1 also needs to be at least beyond the near-field communication coil 101 and greater than the near-field Only a length (p) of the diameter of the communication coil 101 can normally sense the near-field communication object 304.

實驗四 Experiment 4

實驗四之條件如同實驗一,當a=35mm時,無法正常感應近場通訊物件304,但如圖7所示,在兩相鄰狹縫401的上方及下方都再加上一輔助狹縫701,則能夠正常感應近場通訊物件304,其中,兩相鄰狹縫401超出近場通訊線圈101的長度與連接之一輔助狹縫701的長度之和為大於近場通訊線圈101的徑寬(p)。此實驗確認向近場通訊線圈101兩邊延伸的狹縫長度可以經由不同方向的輔助狹縫701來達成。 The conditions of Experiment 4 are the same as Experiment 1. When a=35mm, the near field communication object 304 cannot be sensed normally, but as shown in FIG. 7, an auxiliary slit 701 is added above and below the two adjacent slits 401 , It can normally sense the near field communication object 304, wherein the sum of the length of the two adjacent slits 401 beyond the near field communication coil 101 and the length of one of the auxiliary slits 701 connected is greater than the diameter of the near field communication coil 101 ( p). This experiment confirmed that the length of the slits extending to both sides of the near-field communication coil 101 can be achieved through auxiliary slits 701 in different directions.

經由以上之實驗,獲致屏蔽層圖案設計規則的結果如下: Through the above experiments, the results of the shield layer pattern design rules are as follows:

(1)於屏蔽層開口的狹縫必須跨過近場通訊線圈,並向兩邊延伸至少要各超出近場通訊線圈大於近場通訊線圈之徑寬的一長度,且此狹縫延伸的長度可以通過往不同方向的輔助狹縫來達成。 (1) The slit in the opening of the shielding layer must cross the near-field communication coil and extend to both sides at least a length greater than the diameter of the near-field communication coil and the width of the near-field communication coil, and the length of the slit can be extended This is achieved through auxiliary slits in different directions.

(2)跨越近場通訊線圈的屏蔽層的狹縫必須同時至少存在於近場通訊線圈的兩個邊上。 (2) The slit across the shielding layer of the near-field communication coil must exist on at least two sides of the near-field communication coil at the same time.

據此,本發明提出一種具有近場通訊功能之觸控板裝置,如圖8所示為本發明之觸控板裝置80之立體示意圖,其包括一近場通 訊線圈101、一屏蔽層801、及一觸控層803,該屏蔽層801設置於該近場通訊線圈101之上,該觸控層803設置於該屏蔽層801之上。其中,屏蔽層801及觸控層803係具有相當之尺寸,而近場通訊線圈101之尺寸則相對小於屏蔽層801或觸控層803之尺寸,近場通訊線圈101具有相對之兩第一邊1011及相對之兩第二邊1012,該兩第一邊1011及兩第二邊1012形成一天線迴路,用以發送近場通訊信號來感應該觸控層803上之一近場通訊物件304,且近場通訊線圈101具有一徑寬(p)為近場通訊線圈101之第一邊1011或第二邊1012之寬度。該觸控層803上設置有複數間隔排列之第一導體線8031及複數間隔排列之第二導體線8032,其中,該第一導體線8031為感應導體線且該第二導體線8032為驅動導體線,或是,該第一導體線8031為驅動導體線且該第二導體線8032為感應導體線,且複數第一導體線8031與複數第二導體線8032分隔地交叉以在觸控層803上形成複數個觸控區域,用以偵測使用者於觸控層803上之碰觸,每一第一導體線8031或第二導體線8032依觸控感應之需要可具有特定之圖案形狀,然為方便說明,本發明係以為直線形狀之第一導體線8031及第二導體線8032來表示,但在實際之應用上,第一導體線8031或第二導體線8032可為複數個菱形、三角形或不規則形狀接續而成之導體線,因此本發明並不侷限於圖式所記載的實施例。觸控層803之感應導體線、驅動導體線及相應之觸控感測的操作可以是觸控技術習知或慣常的方式,在此不再贅述。 Accordingly, the present invention provides a touch panel device with near-field communication function. As shown in FIG. 8, it is a three-dimensional schematic diagram of the touch panel device 80 of the present invention, which includes a near-field communication The communication coil 101, a shielding layer 801, and a touch layer 803, the shielding layer 801 is disposed on the near field communication coil 101, the touch layer 803 is disposed on the shielding layer 801. Among them, the shielding layer 801 and the touch layer 803 have the same size, and the size of the near field communication coil 101 is relatively smaller than the size of the shield layer 801 or the touch layer 803, and the near field communication coil 101 has two opposite first sides 1011 and two opposite second sides 1012, the two first sides 1011 and the two second sides 1012 form an antenna loop for sending near field communication signals to sense a near field communication object 304 on the touch layer 803, The near-field communication coil 101 has a diameter width (p) that is the width of the first side 1011 or the second side 1012 of the near-field communication coil 101. The touch layer 803 is provided with a plurality of first conductor lines 8031 arranged in plural intervals and a second conductor line 8032 arranged in plural intervals, wherein the first conductor line 8031 is an induction conductor line and the second conductor line 8032 is a driving conductor Line, or, the first conductor line 8031 is a driving conductor line and the second conductor line 8032 is an induction conductor line, and the plurality of first conductor lines 8031 and the plurality of second conductor lines 8032 cross separately to form a touch layer 803 A plurality of touch areas are formed on the surface for detecting the user's touch on the touch layer 803. Each first conductor line 8031 or second conductor line 8032 can have a specific pattern shape according to the needs of touch sensing For convenience of description, the present invention is represented by a first conductor line 8031 and a second conductor line 8032 that are linear, but in practical applications, the first conductor line 8031 or the second conductor line 8032 may be a plurality of diamonds, The conductor wires formed by connecting triangles or irregular shapes are not limited to the embodiments shown in the drawings. The sensing conductor line, the driving conductor line of the touch layer 803 and the corresponding touch sensing operation may be conventional or conventional methods of touch technology, which will not be repeated here.

該近場通訊線圈101之第一邊1011大致平行於第一導體線8031,而其第二邊1012則大致平行於第二導體線8032。設置於該近場通訊線圈101及該觸控層803之間的屏蔽層801係為一金屬層,其上設置有依前述實驗結果設計之複數狹縫401,以使得屏蔽層801 不會將近場通訊信號遮蔽而造成無法正常感應近場通訊物件304的現象,並且使屏蔽層801能有效的保護觸控層803上之第一導體線8031及第二導體線8032不受近場通訊信號的影響。 The first side 1011 of the near-field communication coil 101 is substantially parallel to the first conductor line 8031, and the second side 1012 is substantially parallel to the second conductor line 8032. The shielding layer 801 disposed between the near-field communication coil 101 and the touch layer 803 is a metal layer, on which a plurality of slits 401 designed according to the foregoing experimental results are provided so that the shielding layer 801 The near-field communication signal will not be blocked to cause the phenomenon that the near-field communication object 304 cannot be normally sensed, and the shielding layer 801 can effectively protect the first conductor line 8031 and the second conductor line 8032 on the touch layer 803 from the near field The influence of communication signals.

第一實施例 First embodiment

圖9(A)為本發明一實施例之觸控板裝置80之第一實施例的平面分解圖,圖9(B)則顯示其疊層透視圖。如圖9(A)及9(B)所示,本實施例的特徵在於該屏蔽層801上設置有複數間隔排列的狹縫401,狹縫401之延伸方向是與觸控層803上的第一導體線8031的延伸方向平行,且由近場通訊線圈101、屏蔽層801及觸控層803之疊層透視圖觀之,每一狹縫401是沿著一第一導體線8031而設置,並跨過該近場通訊線圈101的兩第二邊1012,且每一狹縫401在該兩第二邊1012上至少各超出該近場通訊線圈101大於該近場通訊線圈101的徑寬(p)的一長度,於本實施例,每一狹縫401是沿著一完整的第一導體線8031而設置,以跨過該近場通訊線圈101的兩第二邊1012,因此,如圖9(B)所示,每一狹縫401在兩第二邊1012上各超出該近場通訊線圈101之長度明顯大於該近場通訊線圈101的徑寬(p),故依前述實驗結果可確認其可正常感應近場通訊物件304,此外,每一狹縫401也可以是僅沿著一第一導體線8031之一部份而設置,只要能跨過該近場通訊線圈101的兩第二邊1012且在兩第二邊1012上各超出該近場通訊線圈101之長度大於該近場通訊線圈101的徑寬(p),即可達成正常感應近場通訊物件304之功效。 FIG. 9(A) is an exploded plan view of the first embodiment of the touch panel device 80 according to an embodiment of the present invention, and FIG. 9(B) shows a stacked perspective view thereof. As shown in FIGS. 9(A) and 9(B), this embodiment is characterized in that the shielding layer 801 is provided with a plurality of slits 401 arranged at intervals, and the extending direction of the slits 401 is the same as that of the touch layer 803. A conductor line 8031 extends in a parallel direction and is viewed from the perspective view of the stack of the near-field communication coil 101, the shielding layer 801, and the touch layer 803. Each slit 401 is disposed along a first conductor line 8031. And cross the two second sides 1012 of the near-field communication coil 101, and each slit 401 on the two second sides 1012 at least exceeds the diameter of the near-field communication coil 101 and is larger than the diameter of the near-field communication coil 101 ( p) a length, in this embodiment, each slit 401 is disposed along a complete first conductor line 8031 to span the two second sides 1012 of the near field communication coil 101, therefore, as shown in FIG. As shown in FIG. 9(B), the length of each slit 401 on the two second sides 1012 beyond the near-field communication coil 101 is significantly larger than the diameter (p) of the near-field communication coil 101, so according to the foregoing experimental results Confirm that it can normally sense the near field communication object 304. In addition, each slit 401 can also be provided along only a part of a first conductor line 8031, as long as it can cross the two fields of the near field communication coil 101 The two sides 1012 and the length of the near-field communication coil 101 on each of the two second sides 1012 are greater than the diameter (p) of the near-field communication coil 101 to achieve the effect of normally sensing the near-field communication object 304.

再請參照圖9(B),前述每一狹縫401沿著一第一導體線8031而設置係為使每一狹縫401平行但僅部分重疊或完全不重疊於一第一導體線8031,於本實施例中,每一條狹縫401的設置位置是介於 兩相鄰第一導體線8031的設置位置之間,以使每一狹縫401為平行但不重疊於一第一導體線8031,如此可避免第一導體線8031透過狹縫401而暴露於近場通訊線圈101,亦即,屏蔽層801可以完全包覆第一導體線8031,有效降低近場通訊信號對第一導體線8031所造成之影響。 9(B), each slit 401 is arranged along a first conductor line 8031 such that each slit 401 is parallel but only partially overlapped or not overlapped with a first conductor line 8031, In this embodiment, the position of each slit 401 is between Between two adjacent first conductor lines 8031, so that each slit 401 is parallel but does not overlap with a first conductor line 8031, so that the first conductor line 8031 can be prevented from being exposed to the near through the slit 401 The field communication coil 101, that is, the shielding layer 801 can completely cover the first conductor wire 8031, effectively reducing the effect of the near field communication signal on the first conductor wire 8031.

此外,參照圖9(C),其為第一實施例之一變形,而其改變之處係在屏蔽層801上另設置有輔助狹縫701,如圖9(C)所示,每兩相鄰狹縫401於跨過該近場通訊線圈101的兩第二邊1012之至少一邊處設置有一輔助狹縫701連接該兩相鄰狹縫401,於圖9(C)中,每兩相鄰狹縫401於跨過該近場通訊線圈101的兩第二邊1012皆分別設置有一輔助狹縫701連接對應之兩相鄰狹縫401,且該兩相鄰狹縫401超出該近場通訊線圈101的長度(D1+D1)與連接之該輔助狹縫701的長度(D2)之和為大於該近場通訊線圈101的徑寬(p),故依前述實驗結果可確認其可正常感應近場通訊物件304。 In addition, referring to FIG. 9(C), it is a modification of the first embodiment, and the change is that an auxiliary slit 701 is further provided on the shielding layer 801, as shown in FIG. 9(C), every two phases The adjacent slit 401 is provided with an auxiliary slit 701 connected to the two adjacent slits 401 on at least one side across the two second sides 1012 of the near field communication coil 101. In FIG. 9(C), each two adjacent Each of the slits 401 across the two second sides 1012 of the near-field communication coil 101 is provided with an auxiliary slit 701 to connect the corresponding two adjacent slits 401, and the two adjacent slits 401 exceed the near-field communication coil The sum of the length of 101 (D1+D1) and the length (D2) of the auxiliary slit 701 connected is greater than the diameter width (p) of the near-field communication coil 101, so it can be confirmed that it can normally sense场通信物304.

需注意的是,於本實施例中,該第一導體線8031為感應導體線且該第二導體線8032為驅動導體線,亦即狹縫401是沿著感應導體線而設置,但本發明不以此為限,在其他實施例中,該第一導體線8031為驅動導體線且該第二導體線8032為感應導體線,亦即狹縫401是沿著驅動導體線而設置。此外,於圖9(A)、9(B)及9(C)中所繪示的第一導體線8031、第二導體線8032、狹縫401及輔助狹縫701等之數量、大小及比例等皆只是用於方便說明之目的,於實際之應用當不限於此。 It should be noted that in this embodiment, the first conductor line 8031 is an induction conductor line and the second conductor line 8032 is a driving conductor line, that is, the slit 401 is provided along the induction conductor line, but the present invention Without being limited thereto, in other embodiments, the first conductor line 8031 is a driving conductor line and the second conductor line 8032 is an induction conductor line, that is, the slit 401 is provided along the driving conductor line. In addition, the number, size, and ratio of the first conductor line 8031, the second conductor line 8032, the slit 401, the auxiliary slit 701, and the like shown in FIGS. 9(A), 9(B), and 9(C) All of them are only used for convenience of explanation, but the actual application should not be limited to this.

第二實施例 Second embodiment

圖10(A)為本發明之觸控板裝置80之第二實施例的平面 分解圖,圖10(B)則顯示其疊層透視圖。如圖10(A)及10(B)所示,由近場通訊線圈101、屏蔽層801及觸控層803之疊層透視圖觀之,本實施例的特徵在於該屏蔽層801上設置之複數間隔排列的狹縫401之一部份狹縫401-1跨過近場通訊線圈101的一第二邊1012-1,其餘另一部份狹縫401-2跨過近場通訊線圈101的另一第二邊1012-2,每一狹縫401之延伸方向是與觸控層803上的第一導體線8031的延伸方向平行,且每一狹縫401沿著一第一導體線8031之一部份而設置,以使每一狹縫401的兩端各超出近場通訊線圈101的長度(D)皆大於近場通訊線圈101的徑寬(p),故依前述實驗結果可確認其可正常感應近場通訊物件304。 10(A) is a plan view of a second embodiment of the touch panel device 80 of the present invention Exploded view, Figure 10 (B) shows the perspective of its stack. As shown in FIGS. 10(A) and 10(B), from the perspective view of the stacking of the near field communication coil 101, the shielding layer 801 and the touch layer 803, the feature of this embodiment is that the shielding layer 801 is provided with A part of the slits 401 arranged at a plurality of intervals are across a second side 1012-1 of the near-field communication coil 101, and the other slits 401-2 are across the near-field communication coil 101 On the other second side 1012-2, the extending direction of each slit 401 is parallel to the extending direction of the first conductor line 8031 on the touch layer 803, and each slit 401 is along a first conductor line 8031 Partially arranged so that the length (D) of each slit 401 beyond the near-field communication coil 101 is greater than the diameter (p) of the near-field communication coil 101, so it can be confirmed according to the aforementioned experimental results The near field communication object 304 can be sensed normally.

再參照圖10(B),前述每一狹縫401沿著一第一導體線8031之一部份而設置係為使每一狹縫401平行但僅部分重疊或完全不重疊於一第一導體線8031,於本實施例中,每一狹縫401的設置位置是介於兩相鄰第一導體線8031的設置位置之間,以使每一狹縫401為平行但不重疊於一第一導體線8031,如此可避免第一導體線8031透過狹縫401而暴露於近場通訊線圈101,亦即,屏蔽層801可以完全包覆第一導體線8031,有效降低近場通訊信號對第一導體線8031所造成之影響。且因本實施例之每一狹縫401僅沿著一第一導體線8031之一部份而設置,所以屏蔽層801包覆觸控層803更為完整,對於近場通訊信號的屏蔽效果更佳。 Referring again to FIG. 10(B), each of the aforementioned slits 401 is arranged along a part of a first conductor line 8031 such that each slit 401 is parallel but only partially overlapped or not overlapped at all with a first conductor Line 8031, in this embodiment, each slit 401 is disposed between two adjacent first conductor lines 8031, so that each slit 401 is parallel but does not overlap a first Conductor wire 8031, so that the first conductor wire 8031 can be prevented from being exposed to the near field communication coil 101 through the slit 401, that is, the shielding layer 801 can completely cover the first conductor wire 8031, effectively reducing the near field communication signal to the first The impact caused by the conductor 8031. And since each slit 401 of this embodiment is only disposed along a part of a first conductor line 8031, the shielding layer 801 covers the touch layer 803 more completely, and the shielding effect for near field communication signals is more good.

此外,參照圖10(C),其為第二實施例之一變形,而其改變之處係在屏蔽層801上另設置有輔助狹縫701,如圖10(C)所示,每兩相鄰狹縫401於跨過近場通訊線圈101的每一第二邊1012之兩側的至少一側處設置有一輔助狹縫701連接該兩相鄰狹縫401,於圖10(C) 中,每兩相鄰狹縫401於跨過該近場通訊線圈101的每一第二邊1012之僅一側處設置有一輔助狹縫701連接對應之兩相鄰狹縫401,且該兩相鄰狹縫401超出近場通訊線圈101的長度(D1+D1)與連接之輔助狹縫701的長度(D2)之和為大於近場通訊線圈101的徑寬(p),而狹縫401未連接輔助狹縫701的一端超出近場通訊線圈101的長度(D)仍是大於近場通訊線圈101的徑寬(p),故依前述實驗結果可確認其可正常感應近場通訊物件304。 In addition, referring to FIG. 10(C), it is a modification of the second embodiment, and its change is that an auxiliary slit 701 is further provided on the shielding layer 801, as shown in FIG. 10(C), every two phases The adjacent slit 401 is provided with an auxiliary slit 701 connecting at least one side of each side of each second side 1012 of the near field communication coil 101 to connect the two adjacent slits 401, as shown in FIG. 10(C) In each of the two adjacent slits 401, an auxiliary slit 701 is provided at only one side across each second side 1012 of the near-field communication coil 101 to connect the corresponding two adjacent slits 401, and the two phases The adjacent slit 401 exceeds the length of the near-field communication coil 101 (D1+D1) and the length of the connected auxiliary slit 701 (D2) is greater than the diameter (p) of the near-field communication coil 101, while the slit 401 does not The end of the auxiliary slit 701 beyond the length (D) of the near-field communication coil 101 is still greater than the diameter (p) of the near-field communication coil 101, so it can be confirmed that it can normally sense the near-field communication object 304 according to the aforementioned experimental results.

需注意的是,於本實施例中,該第一導體線8031為感應導體線且該第二導體線8032為驅動導體線,亦即狹縫401是沿著感應導體線而設置,但本發明不以此為限,在其他實施例中,該第一導體線8031為驅動導體線且該第二導體線8032為感應導體線,亦即狹縫401是沿著驅動導體線而設置。此外,於圖10(A)、10(B)及10(C)中所繪示的第一導體線8031、第二導體線8032、狹縫401及輔助狹縫701等之數量、大小及比例等皆只是用於方便說明之目的,於實際之應用當不限於此。 It should be noted that in this embodiment, the first conductor line 8031 is an induction conductor line and the second conductor line 8032 is a driving conductor line, that is, the slit 401 is provided along the induction conductor line, but the present invention Without being limited thereto, in other embodiments, the first conductor line 8031 is a driving conductor line and the second conductor line 8032 is an induction conductor line, that is, the slit 401 is provided along the driving conductor line. In addition, the number, size, and ratio of the first conductor line 8031, the second conductor line 8032, the slit 401, the auxiliary slit 701, etc. shown in FIGS. 10(A), 10(B), and 10(C) All of them are only used for convenience of explanation, but the actual application should not be limited to this.

圖11為本發明之具有觸控板裝置80之筆記型電腦的一實施例的示意圖,如圖所示,觸控板裝置80是設置於筆記型電腦110之鍵盤的下方處,以方便使用者在使用筆記型電腦110時,藉由碰觸該觸控板裝置80來進行輸入,同時,由於觸控板裝置80具有近場通訊線圈101及經由屏蔽層801之特定開口的圖案設計,可使得近場通訊信號能順利穿透筆記型電腦110且亦不至對其觸控電路產生干擾,達成在筆記型電腦110上正常感應近場通訊物件304之功效。 FIG. 11 is a schematic diagram of an embodiment of a notebook computer with a touchpad device 80 according to the present invention. As shown in the figure, the touchpad device 80 is disposed below the keyboard of the notebook computer 110 to facilitate the user When using the notebook computer 110, input is performed by touching the touch panel device 80. At the same time, since the touch panel device 80 has the near field communication coil 101 and the pattern design of the specific opening through the shielding layer 801, it can make The near field communication signal can smoothly penetrate the notebook computer 110 without interfering with its touch circuit, so as to achieve the effect of normally sensing the near field communication object 304 on the notebook computer 110.

上述實施例僅係為了方便說明而舉例而已,本發明所主張之權利範圍自應以申請專利範圍所述為準,而非僅限於上述實施例。 The above embodiments are only examples for the convenience of description, and the scope of rights claimed by the present invention should be subject to the scope of the patent application, and not limited to the above embodiments.

304:近場通訊物件 304: Near field communication object

803:觸控層 803: Touch layer

8031:第一導體線 8031: the first conductor

8032:第二導體線 8032: second conductor

801:屏蔽層 801: Shield

401:狹縫 401: slit

101:近場通訊線圈 101: Near field communication coil

1011:第一邊 1011: First side

1012:第二邊 1012: Second side

80:觸控板裝置 80: Touchpad device

Claims (12)

一種觸控板裝置,包含:一近場通訊線圈,具有相對之兩第一邊及相對之兩第二邊,其中,該兩第一邊及該兩第二邊形成一天線迴路;一屏蔽層,設置於該近場通訊線圈之上,且該屏蔽層設置有複數狹縫;以及一觸控層,設置於該屏蔽層之上,且該觸控層設置有複數間隔排列之第一導體線及複數間隔排列之第二導體線,該複數第一導體線與該複數第二導體線分隔地交叉,其中,每一狹縫沿著至少該些複數第一導體線其中之一第一導體線而設置,並跨過該近場通訊線圈的兩第二邊,且每一狹縫在該兩第二邊上至少各超出該近場通訊線圈大於該近場通訊線圈的徑寬的一長度。 A touch panel device, comprising: a near-field communication coil, having two first sides opposite and two second sides opposite, wherein the two first sides and the two second sides form an antenna loop; a shielding layer Arranged on the near field communication coil, and the shielding layer is provided with a plurality of slits; and a touch layer is provided on the shielding layer, and the touch layer is provided with a plurality of first conductor lines arranged at intervals And a plurality of second conductor lines arranged at intervals, the plurality of first conductor lines intersecting the plurality of second conductor lines separately, wherein each slit is along at least one of the plurality of first conductor lines It is arranged and spans the two second sides of the near field communication coil, and each slit on the two second sides at least exceeds a length of the near field communication coil that is greater than the diameter of the near field communication coil. 如申請專利範圍第1項所述之觸控板裝置,其中,每一狹縫沿著該第一導體線之一部份設置,且每一狹縫係部分重疊或完全不重疊於該第一導體線。 The touch panel device according to item 1 of the patent application scope, wherein each slit is provided along a part of the first conductor line, and each slit partially overlaps or does not overlap the first at all Conductor wire. 如申請專利範圍第2項所述之觸控板裝置,其中,每一狹縫設置於兩相鄰第一導體線之間。 The touch panel device as described in item 2 of the patent application scope, wherein each slit is provided between two adjacent first conductor wires. 如申請專利範圍第1項所述之觸控板裝置,其中,每一狹縫是沿著一完整的第一導體線而設置,以跨過該近場通訊線圈的兩第二邊。 The touch panel device as described in item 1 of the patent application scope, wherein each slit is provided along a complete first conductor line so as to cross the two second sides of the near field communication coil. 如申請專利範圍第1項所述之觸控板裝置,其中,每兩相鄰狹縫於跨過該近場通訊線圈的兩第二邊之至少一邊處設置有一輔助狹縫連接該兩相鄰狹縫,且該兩相鄰狹縫超出該近場通訊線圈的長度與連接之該輔助狹縫的長度之和為大於該近場通訊線圈的徑寬。 The touch panel device according to item 1 of the patent application scope, wherein each two adjacent slits is provided with an auxiliary slit connecting at least one side across at least one of the second sides of the near-field communication coil A slit, and the sum of the length of the two adjacent slits beyond the near-field communication coil and the length of the connected auxiliary slit is greater than the diameter width of the near-field communication coil. 如申請專利範圍第1項所述之觸控板裝置,其中,該第一導體線為感應導體線且該第二導體線為驅動導體線。 The touch panel device according to item 1 of the patent application scope, wherein the first conductor line is an induction conductor line and the second conductor line is a drive conductor line. 一種觸控板裝置,包含:一近場通訊線圈,具有相對之兩第一邊及相對之兩第二邊,其中,該兩第一邊及該兩第二邊形成一天線迴路;一屏蔽層,設置於該近場通訊線圈之上,且該屏蔽層設置有複數狹縫;以及一觸控層,設置於該屏蔽層之上,且該觸控層設置有複數間隔排列之第一導體線及複數間隔排列之第二導體線,該複數第一導體線與該複數第二導體線分隔地交叉,其中,該些複數狹縫之一部份狹縫跨過該近場通訊線圈的一第二邊,該些複數狹縫之另一部份狹縫跨過該近場通訊線圈的另一第二邊,且每一狹縫沿著該些複數第一導體線其中之一第一導體線之一部份而設置,以使每一狹縫兩端各超出該近場通訊線圈的第二邊的長度皆大於該近場通訊線圈的徑寬。 A touch panel device, comprising: a near-field communication coil, having two first sides opposite and two second sides opposite, wherein the two first sides and the two second sides form an antenna loop; a shielding layer Arranged on the near field communication coil, and the shielding layer is provided with a plurality of slits; and a touch layer is provided on the shielding layer, and the touch layer is provided with a plurality of first conductor lines arranged at intervals And a plurality of second conductor lines arranged at intervals, the plurality of first conductor lines intersecting the plurality of second conductor lines separately, wherein a part of the plurality of slits spans a first section of the near-field communication coil Two sides, another part of the plurality of slits spans the other second side of the near field communication coil, and each slit is along one of the plurality of first conductor lines It is arranged so that the length of the two ends of each slit beyond the second side of the near-field communication coil is larger than the diameter of the near-field communication coil. 如申請專利範圍第7項所述之觸控板裝置,其中,每一狹縫沿著該第一導體線之一部份設置,且每一狹縫係部分重疊或完全不重疊於該第一導體線。 The touch panel device as described in item 7 of the patent application scope, wherein each slit is provided along a part of the first conductor line, and each slit partially overlaps or does not overlap the first Conductor wire. 如申請專利範圍第8項所述之觸控板裝置,其中,每一狹縫設置於兩相鄰第一導體線之間。 The touch panel device as described in item 8 of the patent application range, wherein each slit is provided between two adjacent first conductor lines. 如申請專利範圍第7項所述之觸控板裝置,其中每兩相鄰狹縫於跨過該近場通訊線圈的每一第二邊之兩側的至少一側處設置有一輔助狹縫連接該兩條相鄰狹縫,且該兩相鄰狹縫超出該近場通訊線圈的長度與連接之該輔助狹縫的長度之和為大於該近場通訊線圈的徑寬。 The touch panel device as described in item 7 of the patent application range, wherein each two adjacent slits is provided with an auxiliary slit connection at least on one side of each side of each second side crossing the near field communication coil The two adjacent slits, and the sum of the length of the two adjacent slits beyond the near field communication coil and the length of the connected auxiliary slit is greater than the diameter width of the near field communication coil. 如申請專利範圍第7項所述之觸控板裝置,其中,該第一導體線為感應導體線且該第二導體線為驅動導體線。 The touch panel device according to item 7 of the patent application range, wherein the first conductor line is an induction conductor line and the second conductor line is a drive conductor line. 一種包含如申請專利範圍第1至第11項任一項所述之觸控板裝置之筆記型電腦。 A notebook computer including the touch panel device as described in any one of claims 1 to 11.
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