JP3197809U - Touch panel with fingerprint identification function - Google Patents

Touch panel with fingerprint identification function Download PDF

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JP3197809U
JP3197809U JP2015001293U JP2015001293U JP3197809U JP 3197809 U JP3197809 U JP 3197809U JP 2015001293 U JP2015001293 U JP 2015001293U JP 2015001293 U JP2015001293 U JP 2015001293U JP 3197809 U JP3197809 U JP 3197809U
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志忠 林
志忠 林
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志忠 林
志忠 林
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Abstract

【課題】コストを低下し、識別率を向上した識別機能を備えたタッチパネルを提供する。【解決手段】ガラス基板11の上下面をそれぞれ第一平面111及び第二平面112とし、第一平面にタッチ制御エリア11a及び非タッチ制御エリア11bを区画して、第二平面に第一電極層12、絶縁層13、第二電極層14、配線層15、薄膜層16、指紋識別感知層17を順に積層して設ける。指紋識別感知層は、薄膜層を介して第二電極層14、配線層15と絶縁され、複数の指紋識別チップ171及びこれと電気的に接続される複数の伝送導線172により駆動される。【選択図】図1A touch panel having an identification function with reduced cost and improved identification rate is provided. The upper and lower surfaces of a glass substrate 11 are defined as a first plane 111 and a second plane 112, respectively, a touch control area 11a and a non-touch control area 11b are defined on the first plane, and a first electrode layer is defined on the second plane. 12, an insulating layer 13, a second electrode layer 14, a wiring layer 15, a thin film layer 16, and a fingerprint identification sensing layer 17 are sequentially stacked. The fingerprint identification sensing layer is insulated from the second electrode layer 14 and the wiring layer 15 through a thin film layer, and is driven by a plurality of fingerprint identification chips 171 and a plurality of transmission conductors 172 electrically connected thereto. [Selection] Figure 1

Description

本考案は、指紋識別機能を備えたタッチパネルに関するもので、指紋識別チップをタッチ制御パネル上に整合して指紋識別するタッチ制御装置である。   The present invention relates to a touch panel having a fingerprint identification function, and is a touch control device for identifying a fingerprint by aligning a fingerprint identification chip on a touch control panel.

マルチメディア技術の発展に拠って、携帯電話、携帯情報端末(Personal Digital Assistant,PDA)、デジタルカメラ、パーソナルノートパソコンまたはパレット端末またはウェアラブルデバイス等スマート型携帯式電子装置はますます人々にとって必須のツールとなっている。しかしながら、これらの携帯式電子装置はパーソナル性が高いのが特徴であるため、これらの携帯式電子装置を無くしたり、盗まれたりした場合、その内部の情報、例としてアドレス帳、写真データなどが第三者に使われて不必要な損失を蒙ることになる。 Due to the development of multimedia technology, smart portable electronic devices such as mobile phones, personal digital assistants (PDAs), digital cameras, personal laptops or pallet terminals or wearable devices are increasingly essential tools for people It has become. However, since these portable electronic devices are characterized by high personality, if these portable electronic devices are lost or stolen, the internal information such as address book, photo data, etc. It will be used by a third party to incur unnecessary losses.

このようなことから、この種の製品には一定の身分認証及び許可管理によってユーザーのプライバシーの安全を確保する。目下採用されている身分の主な認証方法はパスワードで保護することである。ユーザーが事前に正確なパスワードを携帯式電子装置に入力しておくことで、携帯式電子装置のコントロール画面に進むことができる。しかしながら、パスワード保護の安全性が低い。その原因として、パスワードが漏洩したり、ハッキングされたりしやすいからである。その他、仮にユーザーがパスワードを忘れてしまうと、非常に面倒である。そのため、指紋識別の身分認證を採用した携帯式電子装置が市場に出てきている。各人の指紋はすべて異なるため、指紋は唯一の特徴と言え、指紋識別を採用した身分認證は安全性が高まる。更に、指紋識別を使用した身分認證の方法は簡単であり、ユーザーの記憶やパスワード入力の手間を省く。 For this reason, this type of product ensures the safety of the user's privacy through certain identity authentication and permission management. The main authentication method currently employed is password protection. When the user inputs an accurate password in advance to the portable electronic device, the user can proceed to the control screen of the portable electronic device. However, the security of password protection is low. This is because passwords are easily leaked or hacked. In addition, if the user forgets the password, it is very troublesome. For this reason, portable electronic devices that employ a fingerprint identification device have been put on the market. Since each person's fingerprints are all different, fingerprints are the only feature, and identity cards that employ fingerprint identification are more secure. Furthermore, the identification method using fingerprint identification is simple and saves the user's memory and password entry.

現行の指紋識別システムは手持式装置もしくはモバイル装置上で広く応用されている。最もよく見かける指紋識別装置は例として、ノートパソコンのキーボードの一側に固定、もしくは手持式行動装置の裏側、もしくは一端底側の固定位置に独立設計されるため、モバイル装置のタッチ制御のモニター上に有効に整合できず、モバイル装置の体積を小さくすることができない。また、公知の指紋識別チップパッケージングモジュールは、主に基板、チップ及びモジュールパッケージング体を含む。チップは基板上に設置し、且つ基板と電気的に接続し、モジュールパッケージング体は基板の表面及びチップ上を被覆する。 Current fingerprint identification systems are widely applied on handheld or mobile devices. The most commonly used fingerprint identification device is, for example, fixed on one side of a laptop keyboard, or independently on a fixed position on the back of the handheld action device or on the bottom of the handheld device. The volume of the mobile device cannot be reduced. The known fingerprint identification chip packaging module mainly includes a substrate, a chip, and a module packaging body. The chip is placed on the substrate and electrically connected to the substrate, and the module packaging body covers the surface of the substrate and the chip.

特開2009−224112号公報JP 2009-224112 A 特開2010−1032410号公報JP 2010-1032410 A

解決しようとする問題点は、一般的に手指がチップのセンサーエリアにタッチした時、チップ外面は多層膜を被覆しているため、チップパッケージングモジュール全体の厚みが比較的高く、チップパッケージングモジュール感度が低くなってしまう点である。 The problem to be solved is that when the finger touches the sensor area of the chip, the outer surface of the chip is generally covered with a multilayer film, so the entire thickness of the chip packaging module is relatively high. The sensitivity is lowered.

その他、公知の滑動式指紋識別システムは方向性を備え、その識別時間は長すぎ、且つ識別性が悪く、更に独立設置しなければならず、構造の整合性もしくは使用便利性のどちらも非常に悪い点である。 In addition, the known sliding fingerprint identification system has directionality, its identification time is too long, poor identification, must be installed separately, and both structural integrity and convenience of use are very It is a bad point.

本考案は、ガラス基板、第一電極層、絶縁層、第二電極層、配線層、薄膜層、指紋識別感知層を含む。該ガラス基板は、第一平面及び第二平面を備え、該第一平面にはタッチ制御エリア及び非タッチ制御エリアを定める。該第一電極層は該第二平面に設置し、複数の第一電極を備える。該絶縁層の一側は前述の第一電極層を被覆する。該第二電極層は該絶縁層の別一側に設置し、複数の第二電極を備える。該配線層は該非タッチ制御エリアに設置し、前述の第一、二電極層を選択して電気的に接続する。該薄膜層は前述の第二電極層及び該配線層を被覆する。該指紋識別感知層は、前述の薄膜層の別一側に設置し、複数の指紋識別チップ及び複数の伝送導線を備え、該複数の伝送導線と電気連接することを最も主要な特徴とする。   The present invention includes a glass substrate, a first electrode layer, an insulating layer, a second electrode layer, a wiring layer, a thin film layer, and a fingerprint identification and sensing layer. The glass substrate includes a first plane and a second plane, and a touch control area and a non-touch control area are defined on the first plane. The first electrode layer is disposed on the second plane and includes a plurality of first electrodes. One side of the insulating layer covers the first electrode layer described above. The second electrode layer is disposed on another side of the insulating layer and includes a plurality of second electrodes. The wiring layer is installed in the non-touch control area, and the first and second electrode layers are selected and electrically connected. The thin film layer covers the second electrode layer and the wiring layer. The most important feature of the fingerprint identification / sensing layer is that it is disposed on the other side of the thin film layer, includes a plurality of fingerprint identification chips and a plurality of transmission conductors, and is electrically connected to the plurality of transmission conductors.

本考案の指紋識別機能を備えたタッチパネルは、大幅に製造コスト全体を下げ、指紋識別の準確率を向上させるという利点がある。   The touch panel provided with the fingerprint identification function of the present invention has the advantages of greatly reducing the entire manufacturing cost and improving the semi-probability of fingerprint identification.

本考案の指紋識別機能を備えたタッチ装置第一実施例の立体分解図である。1 is an exploded view of a first embodiment of a touch device having a fingerprint identification function according to the present invention. 本考案の指紋識別機能を備えたタッチ装置第一実施例の組立断面図である。1 is an assembled sectional view of a first embodiment of a touch device having a fingerprint identification function according to the present invention. 本考案の指紋識別機能を備えたタッチ装置の第二実施例の組立断面図である。It is assembly sectional drawing of the 2nd Example of the touch apparatus provided with the fingerprint identification function of this invention. 本考案の指紋識別機能を備えたタッチ装置の第三実施例の組立断面図である。FIG. 6 is an assembled cross-sectional view of a third embodiment of a touch device having a fingerprint identification function according to the present invention. 本考案の指紋識別機能を備えたタッチ装置の第四実施例の指紋識別層の俯瞰図である。It is an overhead view of the fingerprint identification layer of the fourth embodiment of the touch device having the fingerprint identification function of the present invention. 本考案の指紋識別機能を備えたタッチ装置の第四実施例の指紋識別層局部拡大図である。FIG. 6 is a local enlarged view of a fingerprint identification layer of a fourth embodiment of a touch device having a fingerprint identification function according to the present invention. 本考案の指紋識別機能を備えたタッチ装置の第五実施例の組立断面図である。FIG. 6 is an assembled cross-sectional view of a fifth embodiment of a touch device having a fingerprint identification function according to the present invention.

上述の問題を有効に改善するため、指紋識別チップとタッチ制御パネルを整合して一体化した指紋識別機能を備えたタッチ装置を提供する事を本考案の主な目的とする。 In order to effectively improve the above-described problems, it is a main object of the present invention to provide a touch device having a fingerprint identification function in which a fingerprint identification chip and a touch control panel are integrated and integrated.

ガラス基板、第一電極層、絶縁層、第二電極層、配線層、薄膜層、指紋識別感知層を含む指紋識別機能を備えたタッチ装置を提供することを本考案の目的とする。 It is an object of the present invention to provide a touch device having a fingerprint identification function including a glass substrate, a first electrode layer, an insulating layer, a second electrode layer, a wiring layer, a thin film layer, and a fingerprint identification sensing layer.

該ガラス基板は、第一平面及び第二平面を備え、該第一、二平面は該ガラス基板上、下の両側で分設し、該第一平面でタッチ制御エリア及び非タッチ制御エリアを定め、該非タッチ制御エリアは該タッチ制御エリアと隣接する。該第一電極層は、該ガラス基板の第二平面に設置し、該第一電極層は複数の第一電極を備える。該絶縁層は前述の第一電極層を被覆する。該第二電極層は該絶縁層の該第一電極層に相反する別側に設置し、該第二電極層は複数の第二電極を備える。該配線層は複数の導線を備えて該非タッチ制御エリアに設置し、該複数の導線は前述の第一、二電極層を選択して電気連接する。該薄膜層は前述の第二電極層及び該配線層を被覆する。 The glass substrate includes a first plane and a second plane, and the first and second planes are arranged on the glass substrate on both sides below to define a touch control area and a non-touch control area on the first plane. The non-touch control area is adjacent to the touch control area. The first electrode layer is disposed on a second plane of the glass substrate, and the first electrode layer includes a plurality of first electrodes. The insulating layer covers the first electrode layer described above. The second electrode layer is disposed on the other side of the insulating layer opposite to the first electrode layer, and the second electrode layer includes a plurality of second electrodes. The wiring layer includes a plurality of conductors and is installed in the non-touch control area, and the plurality of conductors select and electrically connect the first and second electrode layers described above. The thin film layer covers the second electrode layer and the wiring layer.

該指紋識別感知層は、前述の薄膜層の前述の第二電極層に相反する別側に設置し、複数の指紋識別チップ及び複数の伝送導線を備え、該複数の指紋識別チップは該複数の伝送導線と電気的に接続する。 The fingerprint identification sensing layer is disposed on a side opposite to the second electrode layer of the thin film layer, and includes a plurality of fingerprint identification chips and a plurality of transmission conductors, and the plurality of fingerprint identification chips includes the plurality of fingerprint identification chips. Electrically connected to the transmission conductor.

該指紋識別チップをタッチ制御パネル上に整合し、製造コストを節約するだけでなく、更にタッチ制御の感度及び正確率を高める。 Aligning the fingerprint identification chip on the touch control panel not only saves manufacturing costs, but also increases the sensitivity and accuracy of touch control.

本考案の上述の目的及びその構造と機能上の特性を図面に基づき、実施例を挙げて説明する。 The above-mentioned object of the present invention and its structural and functional characteristics will be described with reference to the drawings.

図1、2は、本考案の指紋識別機能を備えたタッチ装置の第一実施例の立体分解及び組立断面図である。図に示すとおり、本考案の指紋識別機能を備えたタッチ装置1は、ガラス基板11、第一電極層12、絶縁層13、第二電極層14、配線層15、薄膜層16、指紋識別感知層17を含む。 1 and 2 are a three-dimensional exploded view and an assembled sectional view of a first embodiment of a touch device having a fingerprint identification function according to the present invention. As shown in the figure, the touch device 1 having a fingerprint identification function of the present invention includes a glass substrate 11, a first electrode layer 12, an insulating layer 13, a second electrode layer 14, a wiring layer 15, a thin film layer 16, a fingerprint identification sensing. Layer 17 is included.

該ガラス基板11は、上、下両側をそれぞれ第一平面111及び第二平面112とし、該第一平面111にタッチ制御エリア11a及び非タッチ制御エリア11bを定める。該非タッチ制御エリア11bは、該タッチ制御エリア11aに隣接して、該タッチ制御エリア11a外側に設置する。 The glass substrate 11 has a first plane 111 and a second plane 112 on both upper and lower sides, respectively, and a touch control area 11a and a non-touch control area 11b are defined on the first plane 111. The non-touch control area 11b is installed outside the touch control area 11a adjacent to the touch control area 11a.

該第一電極層12は、該ガラス基板11の第二平面112に設置し、該第一電極層12は複数の第一電極121を備え、該複数の第一電極121は前述のタッチ制御エリア11aに設置し、一部が該非タッチ制御エリア11bまで延びる。 The first electrode layer 12 is installed on the second plane 112 of the glass substrate 11, the first electrode layer 12 includes a plurality of first electrodes 121, and the plurality of first electrodes 121 are in the touch control area described above. 11a and a part extends to the non-touch control area 11b.

該絶縁層13は前述の第一電極層12を被覆する。 The insulating layer 13 covers the first electrode layer 12 described above.

該第二電極層14は、該絶縁層13の該第一電極層12に相反する別一側に設置し、該第二電極層14は複数の第二電極141を備え、該第二電極層14は該タッチ制御エリア11aに対応して設置し、一部は該非タッチ制御エリア11bまで延びる。 The second electrode layer 14 is disposed on another side of the insulating layer 13 opposite to the first electrode layer 12, and the second electrode layer 14 includes a plurality of second electrodes 141, and the second electrode layer 14 is installed corresponding to the touch control area 11a, and part thereof extends to the non-touch control area 11b.

該配線層15は複数の導線151を備え、該非タッチ制御エリア11bに設置し、該複数の導線151は前述の第一、二電極層12、14を選択して電気的に接続する。該薄膜層16は前述の第二電極層14及び該配線層15を被覆する。 The wiring layer 15 includes a plurality of conducting wires 151 and is installed in the non-touch control area 11b. The plurality of conducting wires 151 select and electrically connect the first and second electrode layers 12 and 14 described above. The thin film layer 16 covers the second electrode layer 14 and the wiring layer 15 described above.

該指紋識別感知層17は、前述の薄膜層16の前述の第二電極層14に相反する別一側に設置し、複数の指紋識別チップ171及び複数の伝送導線172を備え、該複数の指紋識別チップ171は、該複数の伝送導線172と電気的に接続する。 The fingerprint identification / sensing layer 17 is disposed on the other side of the thin film layer 16 opposite to the second electrode layer 14, and includes a plurality of fingerprint identification chips 171 and a plurality of transmission conductors 172. The identification chip 171 is electrically connected to the plurality of transmission conductors 172.

本考案は、指紋識別感知層17内の複数の指紋識別チップ171と該第一、二電極層12、14を該タッチ制御エリア11a内で同様に整合し、それらに拠って、タッチ制御の正確率及び製造コスト節約の向上を達成する。 In the present invention, a plurality of fingerprint identification chips 171 in the fingerprint identification sensing layer 17 and the first and second electrode layers 12 and 14 are similarly aligned in the touch control area 11a. Achieve increased rate and manufacturing cost savings.

図3は本考案の指紋識別機能を備えたタッチ装置の第二実施例の組立断面図である。図に示すとおり、本実施例の部分構造の技術特徴で前述の第一実施例と同じであるものについては説明を重複しない。しかしながら、本実施例の前述の第一実施例と異なる箇所として、該指紋識別機能を備えたタッチ装置1において、更に遮蔽層18を備える。該遮蔽層18はガラス基板11の該第二平面112の非タッチ制御エリア11bに設置し、更に該遮蔽層18は該ガラス基板11及び該配線層15の間に設置し、該遮蔽層18によって該配線層15が外部に晒されるのを遮蔽する。 FIG. 3 is an assembled cross-sectional view of a second embodiment of a touch device having a fingerprint identification function according to the present invention. As shown in the figure, the technical features of the partial structure of the present embodiment that are the same as those of the first embodiment described above will not be described repeatedly. However, the touch device 1 having the fingerprint identification function is further provided with a shielding layer 18 as a portion different from the first embodiment of the present embodiment. The shielding layer 18 is installed in the non-touch control area 11 b of the second plane 112 of the glass substrate 11, and the shielding layer 18 is installed between the glass substrate 11 and the wiring layer 15. The wiring layer 15 is shielded from being exposed to the outside.

図4は、本考案の指紋識別機能を備えたタッチ装置の第三実施例の組立断面図である。図に示すとおり、本実施例の部分構造の技術特徴で前述の第一実施例と同じであるものについては説明を重複しない。しかしながら、本実施例の前述の第一実施例と異なる箇所として、該指紋識別機能を備えたタッチ装置1は更に保護層19を備え、前述の指紋識別感知層17を被覆し、並びに該保護層19はエポキシ樹脂、もしくはアクリル樹脂、もしくはシリコン樹脂のうちのどれかを選び、該保護層19は該複数の指紋識別チップ層17裏側が外部に露出するのを防止する。 FIG. 4 is an assembled cross-sectional view of a third embodiment of a touch device having a fingerprint identification function according to the present invention. As shown in the figure, the technical features of the partial structure of the present embodiment that are the same as those of the first embodiment described above will not be described repeatedly. However, as a difference from the first embodiment of the present embodiment, the touch device 1 having the fingerprint identification function further includes a protective layer 19, covers the fingerprint identification sensing layer 17, and the protective layer. Reference numeral 19 denotes an epoxy resin, an acrylic resin, or a silicon resin, and the protective layer 19 prevents the back side of the plurality of fingerprint identification chip layers 17 from being exposed to the outside.

図5、6は、本考案の指紋識別機能を備えたタッチ装置の第四実施例の指紋識別層の俯瞰図及び局部拡大図である。図に示すとおり、本実施例の部分構造の技術特徴で前述の第一実施例と同じであるものについては説明を重複しない。しかしながら、本実施例の前述の第一実施例と異なる箇所として、該指紋識別感知層17は更に複数の金属導線173を備える。該金属導線173は透明で、該複数の指紋識別チップ171と相互に隣接して設置する。該金属導線173の設置は主に指紋識別チップ171が行う指紋識別の識別率を向上させる。 5 and 6 are an overhead view and a local enlarged view of a fingerprint identification layer of a fourth embodiment of a touch device having a fingerprint identification function according to the present invention. As shown in the figure, the technical features of the partial structure of the present embodiment that are the same as those of the first embodiment described above will not be described repeatedly. However, the fingerprint identification sensing layer 17 further includes a plurality of metal conductors 173 as a part different from the first embodiment of the present embodiment. The metal conductor 173 is transparent and is installed adjacent to the plurality of fingerprint identification chips 171. The installation of the metal conductor 173 mainly improves the identification rate of fingerprint identification performed by the fingerprint identification chip 171.

図7は、本考案の指紋識別機能を備えたタッチ装置の第五実施例の組立断面図である。図に示すとおり,本実施例の部分構造の技術特徴で前述の第一実施例と同じであるものについては説明を重複しない。しかしながら、本実施例の前述の第一実施例と異なる箇所として、該指紋識別感知層17はガラス基板11の第一平面111に設置する。 FIG. 7 is an assembled cross-sectional view of a fifth embodiment of a touch device having a fingerprint identification function according to the present invention. As shown in the figure, the technical features of the partial structure of this embodiment that are the same as those of the first embodiment described above will not be described repeatedly. However, the fingerprint identification sensing layer 17 is placed on the first flat surface 111 of the glass substrate 11 as a place different from the first embodiment of the present embodiment.

1 指紋識別機能を備えたタッチ装置
11 ガラス基板
11a タッチ制御エリア
11b 非タッチ制御エリア
111 第一平面
112 第二平面
12 第一電極層
121 第一電極
13 絶縁層
14 第二電極層
141 第二電極
15 配線層
151 導線
16 薄膜層
17 指紋識別感知層
171 指紋識別チップ
172 伝送導線
173 金属導線
18 遮蔽層
19 保護層
DESCRIPTION OF SYMBOLS 1 Touch apparatus 11 provided with fingerprint identification function Glass substrate 11a Touch control area 11b Non-touch control area 111 First plane 112 Second plane 12 First electrode layer 121 First electrode 13 Insulating layer 14 Second electrode layer 141 Second electrode 15 wiring layer 151 conducting wire 16 thin film layer 17 fingerprint identification sensing layer 171 fingerprint identification chip 172 transmission conducting wire 173 metal conducting wire 18 shielding layer 19 protective layer

Claims (5)

指紋識別機能を備えたタッチパネルにおいて、
ガラス基板の上、下面をそれぞれ第一平面及び第二平面として該第一平面にはタッチ制御エリア及び該タッチ制御エリアに隣接して非タッチ制御エリアを定め、
上記ガラス基板の第二平面に複数の第一電極を備える第一電極層と、
該第一電極層を被覆する絶縁層とを設け
該絶縁層の該第一電極層に相反する別側のタッチ制御エリアに複数の第二電極を備える第二電極層を設け、
上記非タッチ制御エリアに複数の導線を備えて第一、二電極層を選択して電気的に接続する配線層を設け、
上記第二電極層及び該配線層を被覆する薄膜層を設けて、
上記薄膜層の上記第二電極層に相反する別側か、もしくは上記ガラス基板の第一平面のいずれかに、複数の指紋識別チップ及び複数の伝送導線を備えて該複数の指紋識別チップが該複数の伝送導線と電気的に接続する指紋識別感知層を配置した、
ことを特徴とする指紋識別機能を備えたタッチパネル。
In the touch panel with fingerprint identification function,
The upper and lower surfaces of the glass substrate are defined as a first plane and a second plane, respectively, and the first plane defines a touch control area and a non-touch control area adjacent to the touch control area,
A first electrode layer comprising a plurality of first electrodes on the second plane of the glass substrate;
Providing an insulating layer covering the first electrode layer, providing a second electrode layer comprising a plurality of second electrodes in a touch control area on the other side of the insulating layer opposite to the first electrode layer;
Provided with a wiring layer for selecting and electrically connecting the first and second electrode layers with a plurality of conductive wires in the non-touch control area,
Provide a thin film layer covering the second electrode layer and the wiring layer,
A plurality of fingerprint identification chips and a plurality of transmission conductors on either the other side of the thin film layer opposite to the second electrode layer or the first plane of the glass substrate, A fingerprint identification and sensing layer that is electrically connected to a plurality of transmission conductors is disposed.
A touch panel having a fingerprint identification function characterized by this.
前記指紋識別機能を備えたタッチパネルは、更に、前記ガラス基板の第二平面の非タッチ制御エリアの該ガラス基板及び前記配線層の間に遮蔽層を備えた、
ことを特徴とする請求項1記載の指紋識別機能を備えたタッチパネル。
The touch panel having the fingerprint identification function further includes a shielding layer between the glass substrate and the wiring layer in the non-touch control area on the second plane of the glass substrate.
The touch panel provided with the fingerprint identification function according to claim 1.
前記指紋識別機能を備えたタッチパネルは、更に、エポキシ樹脂、もしくはアクリル樹脂、もしくはシリコン樹脂のいずれかからなり、
前記指紋識別感知層を被覆する保護層を備えた、
ことを特徴とする請求項1記載の指紋識別機能を備えたタッチパネル。
The touch panel provided with the fingerprint identification function is further made of either epoxy resin, acrylic resin, or silicon resin,
A protective layer covering the fingerprint identification sensing layer;
The touch panel provided with the fingerprint identification function according to claim 1.
前記指紋識別感知層は、更に、複数の指紋識別チップに隣接して設置された複数の透明な金属導線を備えた、
ことを特徴とする請求項1記載の指紋識別機能を備えたタッチパネル。
The fingerprint identification sensing layer further comprises a plurality of transparent metal conductors disposed adjacent to the plurality of fingerprint identification chips.
The touch panel provided with the fingerprint identification function according to claim 1.
前記非タッチ制御エリアは、該タッチ制御エリア外側に設置したことを特徴とする請求項1記載の指紋識別機能を備えたタッチパネル。
The touch panel with a fingerprint identification function according to claim 1, wherein the non-touch control area is installed outside the touch control area.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105527849A (en) * 2015-12-01 2016-04-27 芜湖美智空调设备有限公司 Household electrical appliance control method based on wearable device and wearable device
CN106814897A (en) * 2015-11-27 2017-06-09 介面光电股份有限公司 Metal grill touch module and its applicable touch control display apparatus
CN107102809A (en) * 2017-04-20 2017-08-29 维沃移动通信有限公司 A kind of fingerprint identification method and mobile terminal
WO2021087652A1 (en) * 2019-11-04 2021-05-14 深圳市汇顶科技股份有限公司 Fingerprint identification system for liquid crystal display screen, electronic device, and fingerprint identification module

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106814897A (en) * 2015-11-27 2017-06-09 介面光电股份有限公司 Metal grill touch module and its applicable touch control display apparatus
CN105527849A (en) * 2015-12-01 2016-04-27 芜湖美智空调设备有限公司 Household electrical appliance control method based on wearable device and wearable device
CN107102809A (en) * 2017-04-20 2017-08-29 维沃移动通信有限公司 A kind of fingerprint identification method and mobile terminal
CN107102809B (en) * 2017-04-20 2022-09-13 维沃移动通信有限公司 Fingerprint identification method and mobile terminal
WO2021087652A1 (en) * 2019-11-04 2021-05-14 深圳市汇顶科技股份有限公司 Fingerprint identification system for liquid crystal display screen, electronic device, and fingerprint identification module

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