TWI497160B - 具有天線圖樣的觸控面板結構、觸控與顯示面板結構、整合觸控顯示面板結構以及形成具有天線圖樣的觸控面板之方法 - Google Patents
具有天線圖樣的觸控面板結構、觸控與顯示面板結構、整合觸控顯示面板結構以及形成具有天線圖樣的觸控面板之方法 Download PDFInfo
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- 238000009713 electroplating Methods 0.000 claims description 7
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- 238000004891 communication Methods 0.000 description 12
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q7/00—Loop antennas with a substantially uniform current distribution around the loop and having a directional radiation pattern in a plane perpendicular to the plane of the loop
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/041—Indexing scheme relating to G06F3/041 - G06F3/045
- G06F2203/04103—Manufacturing, i.e. details related to manufacturing processes specially suited for touch sensitive devices
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/22—Supports; Mounting means by structural association with other equipment or articles
- H01Q1/24—Supports; Mounting means by structural association with other equipment or articles with receiving set
- H01Q1/241—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
- H01Q1/242—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use
- H01Q1/243—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use with built-in antennas
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/36—Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
- H01Q1/38—Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith formed by a conductive layer on an insulating support
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Description
本發明有關一種具有天線圖樣之觸控與顯示面板結構以及整合觸控顯示面板結構以及形成具有天線圖樣的觸控面板之方法,尤指一種將天線設置在遠離手持式裝置的背蓋之結構形成具有天線圖樣的觸控面板之方法。
天線係用來發射或接收無線電波,以傳遞或交換無線電訊號。一般具無線網路(Wireless Local Area Network;WLAN)通訊功能的電子產品,如筆記型電腦,通常透過內建之天線來存取無線網路與進行相關資料之傳輸。隨著無線通訊技術的演進,不同無線通訊系統的操作頻率可能不同,如電機電子工程師協會(Institute of Electrical and Electronics Engineers;IEEE)所訂定之無線區域網路標準IEEE 802.11a的載波中心頻率約為5GHz,而IEEE 802.11b的載波中心頻率則約為2.4GHz。而近場無線通訊(near-field communication,NFC)技術則為另一種新的趨勢,其載波中心頻率約為13.56MHz。因此,為了讓使用者能更方便地存取不同的無線通訊網路,理想的天線設計與配置須更有彈性,以使天線能操作於不同無線通訊網路所需的頻帶。另外,尺寸設計上應盡可能地減小,以配合可攜式無線通訊器材體積縮小之趨勢,將天線整合入行動裝置中。
隨著手機體積設計得越來越小,以往凸出設計的天線結構顯得
突兀,故目前手機的天線多為板狀天線並設置於殼體內。天線利用在空間中行進的電磁波傳送或接收訊息,因此任何電磁波均有可能干擾天線正常運作。手機內尚包含許多電子元件,每一個電子元件於運作中不可避免地均會額外輻射出電磁波,在目前手機體積小巧的限制下,這些輻射出的電磁波對天線的運作或多或少都有些影響。故目前有些手機的設計將靠近天線之電子元件屏蔽,以降低自電子元件溢漏出的電磁波對天線運作的干擾。此設計往往將天線侷限在殼體的單一邊側或角落,限制了天線佈局空間,也限制了天線傳送、接收的能力。其次,以NFC天線來說,通常該天線都設置在裝置的背蓋內,但對於使用金屬背蓋的手持式裝置來說,金屬背蓋也會對天線的訊號傳送接收造成遮蔽。傳統上,可先將軟性電路板或電鍍膜固定在塑膠件上以形成天線結構,然後將之組合在手機的背蓋上。另外,並非每一個電子元件均得以金屬殼或其他吸波及磁性材料加以屏蔽,例如觸控面板,其需為使用者碰觸,故不易完全屏蔽,溢漏電磁波的現象亦無法避免,造成天線於溢漏電磁波的範圍內易受干擾。又隨著觸控面板尺寸設計越來越大,手機內僅殘存少許空間供天線設置,使得前述問題更形嚴重。
因此,如何有效提高天線頻寬,將天線由裝置的背面移至裝置的正面,同時滿足小型化行動裝置的空間限制,已成為業界所努力的目標之一。
因此,本發明之主要目的即在於提供一種具有天線圖樣之觸控面板結構、觸控與顯示面板結構、整合觸控顯示面板結構以及形成
具有天線圖樣的觸控面板之方法,以增加天線與內部電子元件間之距離,減少電磁效應以及改善天線效能。
本發明提供了一種具有天線圖樣的觸控面板結構,包含一框體、一觸控模組、一天線載體以及一天線圖樣。該觸控模組設置在該框體內,該天線載體設置在該觸控模組之上。該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於該觸控模組之一表面上,該第二區段組位於該框體之一側面上。該天線圖樣設置於該天線載體上,該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型天線。
本發明另提供一種具有天線圖樣的觸控與顯示面板結構,包含一框體、一顯示模組、一觸控模組、一天線載體以及一天線圖樣。該顯示模組設置在該框體內,該觸控模組設置在該顯示模組上,該天線載體設置在該觸控模組上。該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於該觸控模組之一表面,該第二區段組位於該框體之一側面上。該天線圖樣設置該天線載體上,該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型天線。
本發明另提供一種具有天線圖樣的整合觸控顯示面板結構,包含一框體、一整合觸控顯示模組、一天線載體以及一天線圖樣。該整合觸控顯示模組設置在該框體內。該天線載體設置在該整合觸控顯示模組上,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於
該整合觸控顯示模組之一表面,該第二區段組位於該框體之一側面上。該天線圖樣設置該天線載體上。
本發明另提供一種形成具有天線圖樣的觸控面板之方法。在一觸控面板中具有一框體、一觸控模組、一天線載體以及一天線圖樣,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連。該方法包含下列步驟:將該觸控模組設置在該框體內;將該天線載體的該第一區段組設置於該觸控模組之一表面上,將該第二區段組設置於該框體之一側面上;以及將該天線圖樣設置於該天線載體上,使該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型天線。
本發明所提供的觸控面板結構、觸控與顯示面板結構、整合觸控顯示面板結構以及形成具有天線圖樣的觸控面板之方法,將天線圖樣所在的天線載體第一區段組設置在觸控模組或顯示模組的表面上,而第二區段組設置在側邊的框體內側或外側,如此一來可以減少電子裝置因天線圖樣設置在同一表面上而佔用的額外的面積,同時避開顯示模組的可視區,使電子裝置的整體尺寸更為接近顯示模組的可視區,同時維持天線圖樣之面積,改善天線效能,以增加天線工作距離範圍。
請參考第1圖,第1圖為本發明實施例之一具有天線圖樣之觸控與顯示面板結構(或具有天線圖樣之觸控面板結構)之示意圖。觸控與顯示面板結構1用於一手持式電子裝置或通訊裝置。該手持式電子裝置或通訊裝置可為一智慧型手機、個人數位助理、平板電腦
等,而不限於此。觸控與顯示面板結構1包含有一框體10、一顯示模組(display module)20、一觸控模組(touch module)30、一天線載體40以及一保護玻璃(cover lens)60,其中框體10屬於該手持式電子裝置或通訊裝置之殼體的一部分,觸控模組30至少包含由觸控感測器(touch sensor)、銦錫氧化物層(ITO)...等等組成的觸控感應單元。顯示模組20設置於框體10內,觸控模組30設置於顯示模組20上。觸控與顯示面板結構1另包含一天線圖樣(antenna pattern)50,設置於天線載體40上。天線圖樣50可形成於天線載體40之一表面上,並可與一透明層黏合。在本發明中,天線圖樣50較佳地以電鍍或以銦錫氧化物成形的方式印刷在天線載體40上,天線載體40可為一薄膜或一軟性電路板。此外,觸控模組30與顯示模組20亦可整合為一觸控顯示模組。
在第1圖中,天線載體40由一第一區段組41以及一第二區段組42所構成,其中第一區段組41包含第一區段411、412,第二區段組42包含第二區段421、422。第一區段組41以及第二區段組42彼此相連,而形成一封閉式的中空矩型框架。天線圖樣50設置在天線載體40上,且依序沿著第一區段組41以及第二區段組42形成一迴圈型天線(Loop Antenna)。迴圈型天線是一種在一平面上繞成閉合曲線形狀的導電體,通常繞成圓形、方形、三角形等,其原理與偶極天線相似,亦為共振式天線,其具有薄型(Low Profile)的特點,使得所需的設置空間較小。此外,天線圖樣50亦可為一近距離通訊天線,例如:近場通訊(Near Field Communication,NFC)天線或一無線頻率識別(Radio Frequency Identity,RFID)天線,其頻
率範圍於10~20MHz間,最佳收發頻帶為13.56MHz。以天線載體40以及其上的天線圖樣50整合於觸控模組30(或與顯示模組20整合的觸控顯示模組)上來說,由於天線圖樣50位於觸控模組30之上方,更具體來說,在第1圖的實施例中是夾持在觸控模組30與保護玻璃60之間,使得天線圖樣50與底下電子元件之距離相對增加,減少電子元件所造成之電磁效應,因此可減少一亞鐵鹽層(Ferrite Sheet),降低生產成本。除了透過印刷方式將天線圖樣50印刷形成於天線載體40之表面,亦可藉由特殊的工藝技術,例如雷雕(Laser Direct Structuring,LDS)技術,先將天線圖樣50形成於一薄膜上,再利用電鍍或化鍍長出金屬膜至所需的膜厚及電氣特性,舉凡能將天線圖樣50形成於天線載體40上之技術皆屬於本發明之範圍,而不限於此。
請參考第2圖以及第3圖,第2圖為第1圖的觸控與顯示面板結構組裝中的示意圖,第3圖為第1圖的觸控與顯示面板結構組裝完成的示意圖。在本發明的實施例中,觸控與顯示面板結構1的天線圖樣50除了設置在電子裝置中遠離主要電子元件的位置外,其在保護玻璃60與觸控模組30之間也經過特殊設計,以進一步避開顯示模組20的可視區,使電子裝置的整體尺寸更為接近顯示模組20的可視區,同時維持天線圖樣50之面積(即有效共振路徑),改善天線效能,以增加天線工作距離範圍。請一併參考第1圖。當天線載體40以及天線圖樣50夾持在觸控模組30與保護玻璃60之間時,天線載體40的第一區段組41係直接位於觸控模組30的一表面31上,而第二區段組42則延伸出觸控模組30的表面31之外(如第2
圖的組裝中的狀態)。由第2圖的圖示即可看出天線圖樣50可設計成較顯示模組20面積來得大的包圍面積,增加有效共振路徑。而第2圖的天線載體40的第二區段組42的兩個第二區段421、422再分別於兩側沿著R方向向下彎折,而貼附位於框體10的兩側面12上,最後如第3圖所示。可理解地,因應各種不同的天線設計與操作頻帶,第二區段421、422亦可分別於兩側沿著R方向向下彎折,而貼附位於框體10的側面12與框體10的背面(圖示因視角緣故而未標繪出)上。
請參考第4圖以及第5圖,其中第4圖為第1圖的觸控與顯示面板結構的局部分解示意圖,第5圖為第4圖的觸控與顯示面板結構的區域A的局部放大示意圖。如前所述,天線載體40的第二區段組42位於框體10的側面12上,而在觸控與顯示面板結構1的設計中,框體10作為承載與包覆觸控與顯示面板結構1其他元件的殼體,其側面12實質上與觸控模組30的表面31垂直或呈某一非共平面的角度。因此當天線載體40的第二區段組42貼附於框體10的側面12(可在框體10的內側或外側)時,天線載體40的第二區段組42與第一區段組41彼此非共平面,或較佳地在第5圖中,天線載體40的第二區段421與第一區段412彼此垂直,當第二區段組42延伸到框體10的背面時,也可形成與第一區段組41非共平面但平行的相對結構關係,而設置在天線載體40上的天線圖樣50中的第一段51與第二段52也彼此垂直。
在這樣的結構下,迴圈型天線結構的天線圖樣50由天線載體40的第一區段411開始其訊號饋入端,接著沿第二區段421垂直走
向於框體10的側面12,再回到觸控模組30的表面31的第一區段412,接著沿第二區段422垂直走向於框體10的另一側面12,最後回到觸控模組30的表面31的第一區段411,而為接地端(或另一饋入端,視天線圖樣50的類型而定)。其中天線載體40的第一區段組41的第一區段411、412分別位於觸控模組30的表面31上的兩相對邊緣311、312,因此組裝完成後的觸控與顯示面板結構1,其天線圖樣50僅有其第一段51位在觸控模組30的表面31,而第二段52則垂直(或非共平面)設置在側邊的框體10上。如此一來,在天線圖樣50設置於顯示模組20的可視區域21外時,可以有效減少觸控與顯示面板結構1的側邊寬度Z,進而使可視區域21與觸控與顯示面板結構1的寬度W更為接近。
請參考第6圖,第6圖為本發明之一整合觸控顯示面板結構(in-cell or on-cell)之爆炸示意圖。如前所述,觸控模組30與顯示模組20亦可整合為一觸控顯示模組結構3,本發明的天線圖樣亦可使用於整合觸控顯示面板結構。與第1圖的觸控與顯示面板結構1相仿,整合觸控顯示面板結構3包含有一框體10、一整合觸控顯示模組(display module)20、一天線載體40、一天線圖樣(antenna pattern)50以及一保護玻璃(cover lens)60。整合觸控顯示模組20設置於框體10內。天線載體40設置在整合觸控顯示模組120上,天線圖樣50設置於天線載體40上。天線圖樣50可形成於天線載體40之一表面上,並可與一透明層黏合。在本發明中,天線圖樣50較佳地以電鍍或以銦錫氧化物成形的方式印刷在天線載體40上,天線載體40可為一薄膜或一軟性電路板。同樣地,天線載體40由一第一區
段組41以及一第二區段組42所構成,其彼此相連而形成一封閉式的中空矩型框架。在第6圖的實施例中,天線載體40是夾持在整合觸控顯示模組120與保護玻璃60之間。而其他元件間的相對結構,以及天線載體40設置在整合觸控顯示模組120與框體10上的結構關係與前述實施例相仿,此處不再贅述。
請參考第7圖,其為本發明所提供一種形成具有天線圖樣的觸控面板之方法200,方法200包含下列步驟:步驟202:將觸控模組30設置在框體10內;步驟204:將天線載體40的第一區段組41設置於觸控模組30之表面31上,將第二區段組42設置於框體10之側面12上;步驟206:將天線圖樣50設置於天線載體40上,使天線圖樣50於天線載體40上依序沿第一區段組41以及第二區段組42形成一迴圈型天線;步驟208:將保護玻璃60設置於觸控模組30上,以將天線載體40夾持於觸控模組30與保護玻璃60之間。
其中如前所述,在步驟204中,將天線載體40的第一區段組41設置於觸控模組30之表面31上,同時更將第一區段組41設置於觸控模組30之表面31的兩相對邊緣上,將第二區段組42設置於框體10之側面12時,也可另外將第二區段組42進一步設置於框體10之背面上。而在步驟206中,將天線圖樣50設置於天線載體40上時,可以電鍍或以銦錫氧化物成形的方式將天線圖樣50印刷在天線載體40上。
在步驟202中,另可先將顯示模組20設置在框體10內,再將觸控模組30設置在框體內10的顯示模組20上,以形成一觸控與顯示面板結構,也可直接將一整合觸控顯示模組(其係為整合顯示模組20與觸控模組30的單一模組)先設置於框體10內,接著再於步驟204以及後續步驟中,將天線載體40以及天線圖樣50設置於其上。
綜上所述,本發明實施例之天線圖樣形成於觸控與顯示模組或整合觸控顯示模組的上方,使天線圖樣與底下電子元件之距離相對增加,減少電子元件所造成之電磁效應,進一步改善天線效能。另一方面,天線圖樣分別沿著觸控與顯示模組或整合觸控顯示模組表面的上下兩邊緣以及框體側面走向,使天線圖樣避開可視區,在維持天線圖樣之面積,改善天線效能,以增加天線工作距離範圍的同時,有效減少觸控面板與顯示面板之結構或整合觸控顯示面板之結構的側邊寬度。
以上所述僅為本發明之較佳實施例,凡依本發明申請專利範圍所做之均等變化與修飾,皆應屬本發明之涵蓋範圍。
1‧‧‧觸控與顯示面板結構
3‧‧‧整合觸控顯示面板結構
10‧‧‧框體
12‧‧‧側面
20‧‧‧顯示模組
21‧‧‧可視區域
30‧‧‧觸控模組
31‧‧‧表面
40‧‧‧天線載體
41‧‧‧第一區段組
42‧‧‧第二區段組
50‧‧‧天線圖樣
51‧‧‧第一段
52‧‧‧第二段
60‧‧‧保護玻璃
311、312‧‧‧邊緣
411、412‧‧‧第一區段
421、422‧‧‧第二區段
120‧‧‧整合觸控顯示模組
200‧‧‧方法
202~208‧‧‧步驟
第1圖為本發明之一觸控與顯示面板結構之爆炸示意圖。
第2圖為第1圖的觸控與顯示面板結構組裝中的示意圖。
第3圖為第1圖的觸控與顯示面板結構組裝完成的示意圖。
第4圖為第1圖的觸控與顯示面板結構的局部分解示意圖。
第5圖為第4圖的觸控與顯示面板結構的局部放大示意圖。
第6圖為本發明之一整合觸控顯示面板結構之爆炸示意圖。
第7圖為本發明所提供一種形成具有天線圖樣的觸控面板之方法的流程圖。
51‧‧‧第一段
52‧‧‧第二段
412‧‧‧第一區段
421‧‧‧第二區段
Claims (29)
- 一種具有天線圖樣的觸控面板結構,包含:一框體;一觸控模組,設置在該框體內;一天線載體,設置在該觸控模組之上,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於該觸控模組之一表面上,該第二區段組位於該框體之一側面上,其中該框體之該側面與該觸控模組之該表面結構上彼此垂直,且該第二區段組與該第一區段組彼此垂直;以及一天線圖樣,設置於該天線載體上,該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型天線。
- 如請求項1所述之觸控面板結構,其中該天線圖樣係以電鍍或以銦錫氧化物成形的方式印刷在該天線載體上。
- 如請求項1所述之觸控面板結構,另包含一保護玻璃,設置於該觸控模組上,該天線載體夾持於該觸控模組與該保護玻璃之間。
- 如請求項1所述之觸控面板結構,其中該天線載體為一薄膜或一軟性電路板。
- 如請求項1所述之觸控面板結構,其中該天線載體的該第一區段組係位於該觸控模組之該表面的兩相對邊緣。
- 如請求項1所述之觸控面板結構,其中更包含一顯示模組,設置在該框體內,且該觸控模組設置在該顯示模組之上。
- 如請求項1所述之觸控面板結構,其中該第二區段組更可設置於該框體之該側面與一背面上。
- 如請求項1所述之觸控面板結構,其中該第二區段組與該第一區段組彼此垂直且平行。
- 一種具有天線圖樣的觸控與顯示面板結構,包含:一框體;一顯示模組,設置在該框體內;一觸控模組,設置在該顯示模組上;一天線載體,設置在該觸控模組上,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於該觸控模組之一表面,該第二區段組位於該框體之一側面上,其中該框體之該側面與該觸控模組之該表面結構上彼此垂直,且該第二區段組與該第一區段組彼此垂直;以及一天線圖樣,設置該天線載體上,該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型天線。
- 如請求項9所述之觸控與顯示面板結構,其中該天線圖樣係以電鍍或以銦錫氧化物成形的方式印刷在該天線載體上。
- 如請求項9所述之觸控與顯示面板結構,另包含一保護玻璃, 設置於該觸控模組上,該天線載體夾持於該觸控模組與該保護玻璃之間。
- 如請求項9所述之觸控與顯示面板結構,其中該天線載體為一薄膜或一軟性電路板。
- 如請求項9所述之觸控與顯示面板結構,其中該天線載體的該第一區段組係位於該觸控模組之該表面的兩相對邊緣。
- 如請求項9所述之觸控與顯示面板結構,其中該第二區段組更可設置於該框體之該側面與一背面上。
- 如請求項9所述之觸控與顯示面板結構,其中該第二區段組與該第一區段組彼此垂直且平行。
- 一種具有天線圖樣的觸控顯示面板之結構,包含:一框體;一整合觸控顯示模組,設置在該框體內;一天線載體,設置在該整合觸控顯示模組上,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,且該第一區段組位於該整合觸控顯示模組之一表面,該第二區段組位於該框體之一側面上,其中該框體之該側面與該整合觸控顯示模組之該表面結構上彼此垂直,且該第二區段組與該第一區段組彼此垂直;以及一天線圖樣,設置該天線載體上。
- 如請求項16所述之觸控顯示面板結構,其中該天線圖樣係以電鍍或以銦錫氧化物成形的方式印刷在該天線載體上。
- 如請求項16所述之觸控顯示面板結構,另包含一保護玻璃,設置於該整合觸控顯示模組上,該天線載體夾持於該整合觸控顯示模組與該保護玻璃之間。
- 如請求項16所述之觸控顯示面板結構,其中該天線載體為一薄膜或一軟性電路板。
- 如請求項16所述之觸控顯示面板結構,其中該天線載體的該第一區段組係位於該整合觸控顯示模組之該表面的可視區域外的兩相對邊緣。
- 如請求項16所述之觸控顯示面板結構,其中該第二區段組更可設置於該框體之該側面與一背面上。
- 如請求項16所述之觸控面板與顯示面板之結構,其中該第二區段組與該第一區段組更可彼此垂直且平行。
- 一種形成具有天線圖樣的觸控面板之方法,在一觸控面板中具有一框體、一觸控模組、一天線載體以及一天線圖樣,該天線載體由一第一區段組以及一第二區段組構成,其中該第一區段組與該第二區段組彼此相連,該方法包含下列步驟:將該觸控模組設置在該框體內;將該天線載體的該第一區段組設置於該觸控模組之一表面上,將該第二區段組設置於該框體之一側面上,其中該框體之該側面與該觸控模組之該表面結構上彼此垂直;以及將該天線圖樣設置於該天線載體上,使該天線圖樣於該天線載體上依序沿該第一區段組以及該第二區段組形成一迴圈型 天線。
- 如請求項23所述之方法,其中將該天線圖樣設置於該天線載體上係以電鍍或以銦錫氧化物成形的方式印刷在該天線載體上。
- 如請求項23所述之方法,其中該觸控面板另包含一保護玻璃,該方法另包含步驟:將該保護玻璃設置於該觸控模組上,以將該天線載體夾持於該觸控模組與該保護玻璃之間。
- 如請求項23所述之方法,其中將該天線載體的該第一區段組設置於該觸控模組之一表面上,更將該第一區段組設置於該觸控模組之該表面的兩相對邊緣上。
- 如請求項23所述之方法,其中該觸控面板另包含一顯示模組,該方法另包含步驟:將該顯示模組設置在該框體內,且將該觸控模組設置在該顯示模組之上。
- 如請求項23所述之方法,其中將該第二區段組設置於該框體之一側面上另包含:將該第二區段組設置於該框體之該側面與一背面上。
- 如請求項23所述之方法,其中該第二區段組與該第一區段組彼此垂直且平行。
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- 2012-10-31 TW TW101140261A patent/TWI497160B/zh active
- 2012-11-16 CN CN201210464294.4A patent/CN103593082B/zh active Active
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2013
- 2013-05-27 DE DE102013209763.8A patent/DE102013209763B4/de active Active
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US20090167699A1 (en) * | 2007-12-27 | 2009-07-02 | Apple Inc. | Touch screen rfid tag reader |
US20110156967A1 (en) * | 2009-12-28 | 2011-06-30 | Samsung Electronics Co. Ltd. | Touch screen panel antenna of mobile terminal |
Also Published As
Publication number | Publication date |
---|---|
CN103593082B (zh) | 2016-05-25 |
US20140043248A1 (en) | 2014-02-13 |
TW201407231A (zh) | 2014-02-16 |
CN103593082A (zh) | 2014-02-19 |
DE102013209763B4 (de) | 2021-07-22 |
DE102013209763A1 (de) | 2014-02-13 |
US8933902B2 (en) | 2015-01-13 |
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