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JP2005032624A - Electroluminescent lamp and manufacturing method therefor - Google Patents

Electroluminescent lamp and manufacturing method therefor Download PDF

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JP2005032624A
JP2005032624A JP2003271827A JP2003271827A JP2005032624A JP 2005032624 A JP2005032624 A JP 2005032624A JP 2003271827 A JP2003271827 A JP 2003271827A JP 2003271827 A JP2003271827 A JP 2003271827A JP 2005032624 A JP2005032624 A JP 2005032624A
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transparent electrode
film
transparent
electroluminescent lamp
light emitting
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Naoyuki Mori
尚之 森
Masaharu Ono
正晴 大野
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Renesas Semiconductor Manufacturing Co Ltd
Kansai Nippon Electric Co Ltd
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Renesas Semiconductor Manufacturing Co Ltd
Kansai Nippon Electric Co Ltd
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Priority to JP2003271827A priority Critical patent/JP2005032624A/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide an electroluminescent lamp which is inexpensive and allows users to easily obtain light emissions in the shape of characters or figures suitable for decorations, signboards, toys, stationery and the like, and to provide a manufacturing method therefor. <P>SOLUTION: Back electrodes 2a, 2b separated from each other are formed on a base film 1. A reflective insulating layer 3 and a light emitting layer 4 are formed by printing in this order on the back electrodes. Next, a transparent electrode 5 is formed by drawing with a pen using colorless, transparent conductive ink or an ion conductive solvent over an area slightly broader than an area desired to emit light on the light emitting layer 4. Next, a layered film 6 made up of a transparent film 6a and an adhesive layer 6b is cut into an arbitrary shape, and bonded onto the transparent electrode 5 such that the adhesive layer 6b faces downward. Then, a portion of the transparent electrode 5 extending off the layered film 6 is wiped off with waste cloth or the like dampened with water or an organic solvent. The electroluminescent lamp 10 is thereby obtained. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は装飾や看板、玩具、インテリア等として好適な電界発光灯及びその製造方法に関し、特に任意の文字や図形のフィルムをシールのように貼り付けることにより、貼り付けた部分のみを容易に発光させることができる電界発光灯及びその製造方法に関するものである。   The present invention relates to an electroluminescent lamp suitable for decoration, signboards, toys, interiors, and the like, and a method for manufacturing the same, and in particular, by sticking an arbitrary character or figure film like a sticker, only the pasted part can easily emit light. It is related with the electroluminescent lamp which can be made, and its manufacturing method.

透明電極と裏面電極間に交流電圧を印加して、両電極間に挟まれた発光層から出た光を透明電極を介して全面発光させる電界発光灯は、液晶ディスプレイのバックライト等に使用されている。これとは別に、キャラクタ表示を目的として任意の文字や図形を発光させる場合には、透明電極を選択的に形成する必要があり、例えば、特許第2708071号公報には、透明電極の周辺端部を絶縁して任意形状に発光させるための方法が開示されている。   An electroluminescent lamp that applies an alternating voltage between a transparent electrode and a back electrode to emit light entirely from the light emitting layer sandwiched between the two electrodes through the transparent electrode is used for a backlight of a liquid crystal display or the like. ing. In addition to this, in order to emit an arbitrary character or figure for the purpose of character display, it is necessary to selectively form a transparent electrode. For example, Japanese Patent No. 270871 discloses a peripheral edge portion of a transparent electrode. A method for insulating light and emitting light in an arbitrary shape is disclosed.

図4は、従来の電界発光灯30の構成を示す要部断面図である。従来の電界発光灯30は、透明フィルム31a上に蒸着、スパッタ、印刷等で透明電極31bを形成した透明導電フィルム31と、銅やハロゲンなどで活性化した硫化亜鉛などの蛍光体粒子をフッ素樹脂などのバインダに分散した発光層32と、チタン酸バリウムなどの高誘電体材料をフッ素樹脂などのバインダに分散した反射絶縁層33と、カ−ボンや銀などの導電ペ−ストからなる裏面電極34と、裏面電極34を絶縁するための裏面絶縁層35とを順次積層印刷した構造が一般的である。   FIG. 4 is a cross-sectional view of the main part showing the configuration of a conventional electroluminescent lamp 30. A conventional electroluminescent lamp 30 includes a transparent conductive film 31 having a transparent electrode 31b formed on a transparent film 31a by vapor deposition, sputtering, printing, etc., and phosphor particles such as zinc sulfide activated by copper, halogen, etc. A light emitting layer 32 dispersed in a binder, a reflective insulating layer 33 in which a high dielectric material such as barium titanate is dispersed in a binder such as a fluororesin, and a back electrode made of a conductive paste such as carbon or silver In general, a structure in which 34 and a back insulating layer 35 for insulating the back electrode 34 are sequentially stacked and printed is used.

次に、透明電極31bの周辺端部を絶縁させて必要な部分だけ発光させる手段としてトムソン刃やカッティングプロッタ等で透明電極31b側から透明フィルム31a側に向けて透明導電フィルム31をハーフカットする方法、ヒータで透明電極31bの周辺端部を局部的に破壊する方法、化学的あるいは物理的エッチングにより透明電極31bの周辺端部を除去する方法、機械的に削り取る等の方法が開示されており、これらの方法により透明電極31bの周辺端部に非導通部36を形成するものである。
特許第2708071号公報(第2,3頁、0006段落〜0022段落、図1〜図4)
Next, a method of half-cutting the transparent conductive film 31 from the transparent electrode 31b side to the transparent film 31a side with a Thomson blade or a cutting plotter as means for insulating the peripheral edge of the transparent electrode 31b and emitting only a necessary part. A method of locally destroying the peripheral edge of the transparent electrode 31b with a heater, a method of removing the peripheral edge of the transparent electrode 31b by chemical or physical etching, a method of mechanically scraping, etc. By these methods, the non-conductive portion 36 is formed at the peripheral end portion of the transparent electrode 31b.
Japanese Patent No. 2708711 (pages 2 and 3, paragraphs 0006 to 0022, FIGS. 1 to 4)

しかしながら、上述した従来の電界発光灯30及びその製造方法は、透明電極31bを形成したり、その周辺端部に非導通部36を形成するために大規模な設備を要しコスト高になることや、一般の使用者が任意形状の発光を自由に得ることが困難であるという問題があった。   However, the above-described conventional electroluminescent lamp 30 and the manufacturing method thereof require a large-scale facility for forming the transparent electrode 31b and forming the non-conducting portion 36 at the peripheral end thereof, resulting in high cost. In addition, there is a problem that it is difficult for general users to freely obtain light having an arbitrary shape.

本発明は上記の問題点を解決するために考えられたもので、その目的は、装飾や看板、玩具、文具等として好適な任意の文字や図形を使用者が容易に発光させることができる安価な電界発光灯及びその製造方法を提供することである。   The present invention has been conceived in order to solve the above-described problems, and its purpose is to allow a user to easily emit any character or figure suitable as a decoration, signboard, toy, stationery, etc. An electroluminescent lamp and a method of manufacturing the same are provided.

上記目的を達成するために、本発明の請求項1記載の電界発光灯は、基材フィルム上に少なくとも2つ以上に分割形成された裏面電極と、前記裏面電極上に積層形成された反射絶縁層、発光層と、前記発光層上に形成された金属フィラーや導電ポリマーを含む導電性インクまたはイオン導電性溶媒からなる透明電極と、前記透明電極上に形成された透明フィルムと粘着層からなる積層フィルムとを備えることを特徴とする。この構成によれば、任意形状の積層フィルムを貼り付けることにより透明電極の周辺端部を容易に絶縁できるので、使用者が容易に任意の文字や図形を発光させることができる。   In order to achieve the above object, an electroluminescent lamp according to claim 1 of the present invention comprises a back electrode divided into at least two or more on a base film, and a reflective insulation layered on the back electrode. A transparent electrode made of a conductive ink or an ion conductive solvent containing a metal filler or a conductive polymer formed on the light emitting layer, a transparent film formed on the transparent electrode, and an adhesive layer And a laminated film. According to this structure, since the peripheral edge part of a transparent electrode can be easily insulated by affixing the laminated film of arbitrary shapes, a user can light-emit arbitrary characters and figures easily.

また、請求項2記載の電界発光灯の製造方法は、基材フィルム上に裏面電極を分割形成する工程と、前記裏面電極上に反射絶縁層、発光層を順次形成する工程と、前記発光層の上に金属フィラーや導電ポリマーを含む導電性インクやイオン導電性溶媒からなる透明電極をハケやペンで塗布する工程と、前記透明電極上に透明フィルムと粘着層からなる積層フィルムを貼り付ける工程と、前記積層フィルムから食み出した透明電極を除去する工程とを具備することを特徴とする。この方法によれば、大規模な設備を要することなく容易に透明電極を形成したり、その周辺端部を絶縁することができるので、安価な電界発光灯が得られるとともに、使用者が容易に任意の文字や図形を発光させることができる。   The method of manufacturing an electroluminescent lamp according to claim 2 includes a step of separately forming a back electrode on a base film, a step of sequentially forming a reflective insulating layer and a light emitting layer on the back electrode, and the light emitting layer. A step of applying a transparent electrode made of a conductive ink or an ion conductive solvent containing a metal filler or a conductive polymer on the surface with a brush or pen, and a step of attaching a laminated film made of a transparent film and an adhesive layer on the transparent electrode And a step of removing the transparent electrode protruding from the laminated film. According to this method, it is possible to easily form a transparent electrode and insulate the peripheral edge without requiring a large-scale facility, so that an inexpensive electroluminescent lamp can be obtained and the user can easily Arbitrary characters and figures can be emitted.

また、請求項3記載の電界発光灯の製造方法は、基材フィルム上に裏面電極を分割形成する工程と、前記裏面電極上に反射絶縁層、発光層を順次形成する工程と、透明フィルムと粘着層からなる積層フィルムの粘着層上に金属フィラーや導電ポリマーを含む導電性インクやイオン導電性溶媒からなる透明電極をハケやペンで塗布する工程と、前記積層フィルムを透明電極を介して前記発光層上に貼り付ける工程とを具備することを特徴とする。この方法によれば、あらかじめ積層フィルム上に透明電極を形成するため、あとで透明電極を拭き取る必要がなく、使用者がさらに容易に任意の文字や図形を発光させることができる。   The method of manufacturing an electroluminescent lamp according to claim 3 includes a step of separately forming a back electrode on a base film, a step of sequentially forming a reflective insulating layer and a light emitting layer on the back electrode, and a transparent film. A step of applying a transparent electrode made of a conductive ink containing a metal filler or a conductive polymer or an ionic conductive solvent on the pressure-sensitive adhesive layer of the pressure-sensitive adhesive layer with a brush or a pen, and the layered film through the transparent electrode. And a step of affixing on the light emitting layer. According to this method, since the transparent electrode is formed on the laminated film in advance, it is not necessary to wipe off the transparent electrode later, and the user can easily emit any character or figure.

以上説明したように、本発明の電界発光灯及びその製造方法によれば、積層フィルムで透明電極を覆うことにより透明電極の周辺端部を絶縁するようにしたので、大規模な設備を要することなく安価な電界発光灯を製造できるとともに、使用者が任意の文字や図形の積層フィルムを貼り付けるだけで自由な形状を発光させることができる。また、積層フィルム上に透光性の図柄や配色、キャラクターをあらかじめ印刷しておくことにより、任意の図柄が浮き出るように発光させることができる。また、使用者が自由に貼り換えができ、発光パターンの自由度をさらに向上させることができる。   As described above, according to the electroluminescent lamp and the manufacturing method thereof of the present invention, the transparent electrode is covered with the laminated film so as to insulate the peripheral end portion of the transparent electrode, so that a large-scale facility is required. In addition, an inexpensive electroluminescent lamp can be manufactured, and a user can emit a free shape by simply attaching a laminated film of arbitrary characters and figures. In addition, when a translucent pattern, color scheme, or character is printed in advance on the laminated film, light can be emitted so that an arbitrary pattern is raised. In addition, the user can freely reattach, and the degree of freedom of the light emission pattern can be further improved.

以下、本発明の電界発光灯の好ましい実施の形態について図面を参照して説明する。図1は本発明の第1実施例の電界発光灯10の要部断面図である。   Hereinafter, preferred embodiments of the electroluminescent lamp of the present invention will be described with reference to the drawings. FIG. 1 is a sectional view of an essential part of an electroluminescent lamp 10 according to a first embodiment of the present invention.

図1に示すように、本発明の電界発光灯10は、基材フィルム1上に櫛型状に分割形成された裏面電極2a、2bと、裏面電極2a、2b全面を覆うように形成された反射絶縁層3及び発光層4と、発光層4上に使用者の好みに応じて形成された任意の文字や図形からなる透明電極5と、透明フィルム6aに粘着層6bが形成された積層フィルム6により構成される。   As shown in FIG. 1, the electroluminescent lamp 10 of the present invention was formed so as to cover the entire surface of the back electrodes 2a, 2b and the back electrodes 2a, 2b formed in a comb shape on the base film 1. A reflective insulating layer 3 and a light emitting layer 4, a transparent electrode 5 made of any character or figure formed on the light emitting layer 4 according to the user's preference, and a laminated film in which an adhesive layer 6b is formed on the transparent film 6a 6.

次に、本発明の電界発光灯10の製造方法について、図2の要部断面図を参照しながら説明する。先ず、図2(a)に示すように、ポリエチレンテレフタレート、ポリエチレン、ポリエステル、ポリイミド等からなる基材フィルム1上にカーボン、銀、銅、ニッケル等の導電性ペーストからなる裏面電極2a、2bをスクリーン印刷により、例えば櫛型状に分割形成する。次に樹脂中にチタン酸バリウム等の白色高誘電体物質を分散した反射絶縁層3、樹脂中に蛍光体を分散させた発光層4を順次、スクリーン印刷により形成する。次に、図2(b)に示すように、発光層4の上に無色透明な導電性インク(例えばITO(Indium Tin Oxide)やATO(Antimony Tin Oxide)のような透明電極材料や導電性ポリマー(例えばポリアニリンやポリエチレンジオキシチオフェン)を溶剤中に分散させたもの)やイオン導電性溶媒(例えばイオン性界面活性剤)を含有したペンで、発光させたい部分よりも広めに描いて透明電極5を形成する。次に、図2(c)に示すように、透明フィルム6aと粘着層6bからなる積層フィルム6を任意形状に切り取り、粘着層6bを下側にして透明電極5上に貼り付ける。その後、図2(d)に示すように、積層フィルム6から食み出した透明電極5をウエス等で拭き取ることにより、電界発光灯10を得る。このとき、より簡単に拭き取るために水や有機溶剤をウェス等に染み込ませるようにしても良い。   Next, a method for manufacturing the electroluminescent lamp 10 of the present invention will be described with reference to a cross-sectional view of the main part of FIG. First, as shown in FIG. 2 (a), on the base film 1 made of polyethylene terephthalate, polyethylene, polyester, polyimide or the like, back electrodes 2a, 2b made of conductive paste such as carbon, silver, copper, nickel are screened. For example, it is divided and formed in a comb shape by printing. Next, the reflective insulating layer 3 in which a white high dielectric material such as barium titanate is dispersed in the resin and the light emitting layer 4 in which the phosphor is dispersed in the resin are sequentially formed by screen printing. Next, as shown in FIG. 2B, a transparent and transparent conductive ink (for example, ITO (Indium Tin Oxide) or ATO (Antimony Tin Oxide)) or a conductive polymer is formed on the light emitting layer 4. (For example, polyaniline or polyethylenedioxythiophene dispersed in a solvent) or a pen containing an ionic conductive solvent (for example, an ionic surfactant) and drawn wider than the portion to emit light. Form. Next, as shown in FIG.2 (c), the laminated film 6 which consists of the transparent film 6a and the adhesion layer 6b is cut out in arbitrary shapes, and the adhesive layer 6b is made the lower side and it affixes on the transparent electrode 5. FIG. Thereafter, as shown in FIG. 2D, the electroluminescent lamp 10 is obtained by wiping the transparent electrode 5 protruding from the laminated film 6 with a waste cloth or the like. At this time, in order to wipe off more easily, water or an organic solvent may be soaked in the waste or the like.

次に、本発明の電界発光灯10の動作について説明する。先ず、櫛型状に分割形成された裏面電極2a、2bに所定の交流電圧を印加すると、透明電極5を介して裏面電極2a、2b間の発光層4に電圧が印加され、任意の文字や図形が浮き出るように発光する。   Next, the operation of the electroluminescent lamp 10 of the present invention will be described. First, when a predetermined alternating voltage is applied to the back electrodes 2a, 2b divided and formed in a comb shape, a voltage is applied to the light emitting layer 4 between the back electrodes 2a, 2b via the transparent electrode 5, and any character or Emits light so that the figure is raised.

本実施例によれば、積層フィルム6により透明電極5を覆うことにより、透明電極5を任意の形状に絶縁することができる。これにより、大規模な設備を要することなく、使用者が極めて容易に任意の文字や図形を発光させることができる。また、透明フィルム6aの上にキャラクターや文字、数字等を任意の色であらかじめ印刷しておくことにより発光層4の光が印刷部を透過して発色するため、多色の発光が容易に得られる。また、積層フィルム6を剥がして透明電極5を拭き取った後、再び透明電極5、積層フィルム6を形成することもできる。これにより、任意の文字や図形が何度でも書き換えでき、発光パターンの自由度が向上する。   According to this embodiment, by covering the transparent electrode 5 with the laminated film 6, the transparent electrode 5 can be insulated into an arbitrary shape. Thereby, the user can light any character or figure very easily without requiring a large-scale facility. In addition, by printing characters, letters, numbers, etc., in any color on the transparent film 6a in advance, the light of the light emitting layer 4 is transmitted through the printing portion and develops color, so that multicolor emission can be easily obtained. It is done. Moreover, after peeling off the laminated film 6 and wiping off the transparent electrode 5, the transparent electrode 5 and the laminated film 6 can also be formed again. Thereby, arbitrary characters and figures can be rewritten any number of times, and the degree of freedom of the light emission pattern is improved.

また、裏面電極2a、2bはカーボン、銀、銅、ニッケル等の導電性ペーストをスクリーン印刷することにより形成したが、基材フィルム1の上にレジスト剤を選択的に印刷し、アルミ等の金属を蒸着した後レジスト層を洗浄し形成してもよく、また基材フィルム1上にアルミ等の金属を貼り付けた後に化学エッチングし形成してもよい。この場合、裏面電極2a、2bの抵抗値が低くなるため、大型化も容易となる。さらに、裏面電極2a、2bの形状は櫛型状に限定されるものではなく、電気的に分割させた電極構造であればどのような形状でもかまわない。   The back electrodes 2a and 2b are formed by screen printing a conductive paste such as carbon, silver, copper, nickel, etc., but a resist agent is selectively printed on the base film 1 to form a metal such as aluminum. After vapor deposition, the resist layer may be washed and formed, or a metal such as aluminum may be attached to the base film 1 and then chemically etched. In this case, since the resistance values of the back electrodes 2a and 2b are low, the size can be easily increased. Furthermore, the shape of the back electrodes 2a and 2b is not limited to a comb shape, and any shape may be used as long as the electrode structure is electrically divided.

次に、本発明の他の実施の形態について図面を参照して説明する。図3は、本発明の第2実施例の電界発光灯20の製造方法を示す要部断面図である。先ず、図3(a)に示すように、ポリエチレンテレフタレート、ポリエチレン、ポリエステル、ポリイミド等からなる基材フィルム11上にカーボン、銀、銅、ニッケル等の導電性ペーストからなる裏面電極12a、12bをスクリーン印刷により、例えば櫛型状に分割形成する。次に樹脂中にチタン酸バリウム等の白色高誘電体物質を分散した反射絶縁層13、樹脂中に蛍光体を分散させた発光層14を順次、スクリーン印刷により形成する。次に、図3(b)に示すように、透明フィルム16aと粘着層16bからなる積層フィルム16を任意形状に切り取り、粘着層16bの上に無色透明な導電性インク(例えばITO(Indium Tin Oxide)やATO(Antimony Tin Oxide)のような透明電極材料や導電性ポリマー(例えばポリアニリンやポリエチレンジオキシチオフェン)を溶剤中に分散させたもの)やイオン導電性溶媒(例えばイオン性界面活性剤)を含有したペンで塗ることにより透明電極15を形成する。次に、図3(c)に示すように、積層フィルム16を粘着層16b、透明電極15を下側にして発光層14の上に貼り付けることにより、電界発光灯20を得る。   Next, another embodiment of the present invention will be described with reference to the drawings. FIG. 3 is a cross-sectional view of the main part showing the method for manufacturing the electroluminescent lamp 20 of the second embodiment of the present invention. First, as shown in FIG. 3A, on the base film 11 made of polyethylene terephthalate, polyethylene, polyester, polyimide, etc., back electrodes 12a, 12b made of conductive paste such as carbon, silver, copper, nickel are screened. For example, it is divided and formed in a comb shape by printing. Next, a reflective insulating layer 13 in which a white high dielectric material such as barium titanate is dispersed in the resin and a light emitting layer 14 in which the phosphor is dispersed in the resin are sequentially formed by screen printing. Next, as shown in FIG. 3B, the laminated film 16 composed of the transparent film 16a and the adhesive layer 16b is cut into an arbitrary shape, and a colorless transparent conductive ink (for example, ITO (Indium Tin Oxide) is formed on the adhesive layer 16b. ) And ATO (Antimony Tin Oxide), transparent electrode materials, conductive polymers (for example, polyaniline and polyethylenedioxythiophene) dispersed in a solvent, and ionic conductive solvents (for example, ionic surfactants) The transparent electrode 15 is formed by painting with the contained pen. Next, as shown in FIG.3 (c), the electroluminescent lamp 20 is obtained by affixing the laminated | multilayer film 16 on the light emitting layer 14 with the adhesion layer 16b and the transparent electrode 15 below.

本実施例によれば、あらかじめ積層フィルム16上に透明電極15を形成するので、あとで透明電極15を拭き取る手間が省け、使用者がさらに容易に任意の文字や図形を発光させることができる。   According to this embodiment, since the transparent electrode 15 is formed on the laminated film 16 in advance, the trouble of wiping off the transparent electrode 15 later can be saved, and the user can more easily emit any character or figure.

積層フィルムで透明電極を覆い透明電極の周辺端部を絶縁することによって、大規模な設備を要することなく安価な電界発光灯を製造できるとともに、使用者が任意の文字や図形の積層フィルムを貼り付けるだけで自由な形状を発光させることができる。   By covering the transparent electrode with the laminated film and insulating the peripheral edge of the transparent electrode, an inexpensive electroluminescent lamp can be manufactured without requiring large-scale equipment, and the user can attach a laminated film of arbitrary characters and figures. Simply attach it to light up any shape you want.

本発明の第1実施例の電界発光灯の要部断面図Sectional drawing of the principal part of the electroluminescent lamp of 1st Example of this invention. 本発明の第1実施例の電界発光灯の製造方法を説明する要部断面図Sectional drawing of the principal part explaining the manufacturing method of the electroluminescent lamp of 1st Example of this invention 本発明の第2実施例の電界発光灯の製造方法を説明する要部断面図Sectional drawing of the principal part explaining the manufacturing method of the electroluminescent lamp of 2nd Example of this invention 従来の電界発光灯の要部断面図Cross-sectional view of the main parts of a conventional electroluminescent lamp

符号の説明Explanation of symbols

1 基材フィルム
2a、2b 裏面電極
3 反射絶縁層
4 発光層
5 透明電極
6 積層フィルム
6a 透明フィルム
6b 粘着層
10 本発明の第1実施例の電界発光灯
11 基材フィルム
12a、12b 裏面電極
13 反射絶縁層
14 発光層
15 透明電極
16 積層フィルム
16a 透明フィルム
16b 粘着層
20 本発明の第2実施例の電界発光灯
30 従来の電界発光灯
31 透明導電フィルム
31a 透明フィルム
31b 透明電極
32 発光層
33 反射絶縁層
34 裏面電極
35 裏面絶縁層
36 非導通部
DESCRIPTION OF SYMBOLS 1 Base film 2a, 2b Back electrode 3 Reflective insulating layer 4 Light emitting layer 5 Transparent electrode 6 Laminated film 6a Transparent film 6b Adhesive layer 10 Electroluminescent lamp of 1st Example of this invention 11 Base film 12a, 12b Back electrode 13 Reflective insulating layer 14 Light emitting layer 15 Transparent electrode 16 Laminated film 16a Transparent film 16b Adhesive layer 20 Electroluminescent lamp of the second embodiment of the present invention 30 Conventional electroluminescent lamp 31 Transparent conductive film 31a Transparent film 31b Transparent electrode 32 Light emitting layer 33 Reflective insulating layer 34 Back electrode 35 Back insulating layer 36 Non-conductive portion

Claims (3)

基材フィルム上に少なくとも2つ以上に分割形成された裏面電極と、前記裏面電極上に積層形成された反射絶縁層、発光層と、前記発光層上に形成された金属フィラーや導電ポリマーを含む導電性インクまたはイオン導電性溶媒からなる透明電極と、前記透明電極上に形成された透明フィルムと粘着層からなる積層フィルムとを備えることを特徴とする電界発光灯。   Including a back electrode divided and formed on at least two on the base film, a reflective insulating layer and a light emitting layer laminated on the back electrode, and a metal filler and a conductive polymer formed on the light emitting layer An electroluminescent lamp comprising: a transparent electrode made of a conductive ink or an ion conductive solvent; and a laminated film made of a transparent film formed on the transparent electrode and an adhesive layer. 基材フィルム上に裏面電極を分割形成する工程と、前記裏面電極上に反射絶縁層、発光層を順次形成する工程と、前記発光層の上に金属フィラーや導電ポリマーを含む導電性インクやイオン導電性溶媒からなる透明電極をハケやペンで塗布する工程と、前記透明電極上に透明フィルムと粘着層からなる積層フィルムを貼り付ける工程と、前記積層フィルムの上から食み出した透明電極を除去する工程とを具備することを特徴とする電界発光灯の製造方法。   A step of separately forming a back electrode on the base film, a step of sequentially forming a reflective insulating layer and a light emitting layer on the back electrode, and a conductive ink or ion containing a metal filler or a conductive polymer on the light emitting layer. A step of applying a transparent electrode made of a conductive solvent with a brush or a pen, a step of attaching a laminated film made of a transparent film and an adhesive layer on the transparent electrode, and a transparent electrode protruding from the laminated film And a step of removing the electroluminescent lamp. 基材フィルム上に裏面電極を分割形成する工程と、前記裏面電極上に反射絶縁層、発光層を順次形成する工程と、透明フィルムと粘着層からなる積層フィルムの粘着層上に金属フィラーや導電ポリマーを含む導電性インクやイオン導電性溶媒からなる透明電極をハケやペンで塗布する工程と、前記積層フィルムを透明電極を介して前記発光層上に貼り付ける工程とを具備することを特徴とする電界発光灯の製造方法。   A step of forming a back electrode on the base film, a step of sequentially forming a reflective insulating layer and a light emitting layer on the back electrode, and a metal filler or a conductive material on the adhesive layer of the laminated film composed of a transparent film and an adhesive layer. A step of applying a transparent electrode made of a conductive ink containing a polymer or an ionic conductive solvent with a brush or a pen, and a step of attaching the laminated film on the light emitting layer through the transparent electrode. A method for manufacturing an electroluminescent lamp.
JP2003271827A 2003-07-08 2003-07-08 Electroluminescent lamp and manufacturing method therefor Pending JP2005032624A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016029502A (en) * 2009-02-13 2016-03-03 日立化成株式会社 Light control film
US9983456B2 (en) 2008-08-19 2018-05-29 Hitachi Chemical Company, Ltd. Light control film
US10156767B2 (en) 2008-08-19 2018-12-18 Hitachi Chemical Company, Ltd. Light control film
US10175551B2 (en) 2009-02-13 2019-01-08 Hitachi Chemical Company, Ltd. Light control film
WO2022102147A1 (en) * 2020-11-13 2022-05-19 三菱電機株式会社 Display device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9983456B2 (en) 2008-08-19 2018-05-29 Hitachi Chemical Company, Ltd. Light control film
US10156767B2 (en) 2008-08-19 2018-12-18 Hitachi Chemical Company, Ltd. Light control film
JP2016029502A (en) * 2009-02-13 2016-03-03 日立化成株式会社 Light control film
US10175551B2 (en) 2009-02-13 2019-01-08 Hitachi Chemical Company, Ltd. Light control film
US10288976B2 (en) 2009-02-13 2019-05-14 Hitachi Chemical Company, Ltd. Light control film
WO2022102147A1 (en) * 2020-11-13 2022-05-19 三菱電機株式会社 Display device

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