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JPH08171008A - Production of color filter - Google Patents

Production of color filter

Info

Publication number
JPH08171008A
JPH08171008A JP31303494A JP31303494A JPH08171008A JP H08171008 A JPH08171008 A JP H08171008A JP 31303494 A JP31303494 A JP 31303494A JP 31303494 A JP31303494 A JP 31303494A JP H08171008 A JPH08171008 A JP H08171008A
Authority
JP
Japan
Prior art keywords
film
colored
color filter
pattern
color
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
JP31303494A
Other languages
Japanese (ja)
Inventor
Kenichi Furuhata
憲䞀 叀旗
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kyocera Chemical Corp
Original Assignee
Toshiba Chemical Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toshiba Chemical Corp filed Critical Toshiba Chemical Corp
Priority to JP31303494A priority Critical patent/JPH08171008A/en
Publication of JPH08171008A publication Critical patent/JPH08171008A/en
Withdrawn legal-status Critical Current

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  • Optical Filters (AREA)
  • Liquid Crystal (AREA)

Abstract

PURPOSE: To provide a production method for obtaining a color filter excellent in heat resistance, chemical resistance, dimensional accuracy and the like with a simple process at a low cost and high yield. CONSTITUTION: A colored pattern having a prescribed color is formed by transferring a colored fixed film 2 from each dry film 4 having the fixed film 2 having different color of at least three kinds such as R, G, B on the projected plate surface of the prescribed pattern and further transferring the transferred colored film 2 on a transparent substrate 8. And the color filter is produced by repeating a series of the transfer process for each color.

Description

【発明の詳现な説明】Detailed Description of the Invention

【】[0001]

【産業䞊の利甚分野】本発明は、液晶ディスプレむ衚
瀺装眮のようなフラットパネルディスプレむに甚いら
れるカラヌフィルタの補造方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for manufacturing a color filter used in a flat panel display such as a liquid crystal display (display device).

【】[0002]

【埓来の技術】近幎フラットパネルディスプレむは、高
画質、薄圢、軜量などから、携垯型パ゜コン、自動車ナ
ビゲヌションシステム、テレビ、ゲヌム機などの分野で
急激に甚途が広がり぀぀ある。フラットパネルディスプ
レむの䞭でも特に液晶ディスプレむは、軜量、䜎䟡栌等
の理由で、機噚の衚瀺装眮を䞭心にその䜿甚領域が
拡倧しおいる。
2. Description of the Related Art In recent years, flat panel displays have rapidly expanded their applications in the fields of portable personal computers, car navigation systems, televisions, game consoles, etc. due to their high image quality, thin shape and light weight. Among flat panel displays, liquid crystal displays, in particular, have been used in a wider range of areas, mainly in display devices of OA equipment, because of their light weight and low price.

【】ずころで、自発的な発色のない液晶ディス
プレむのカラヌ化においおは、カラヌフィルタが䜿甚さ
れおおり、バックラむトからの癜色光がカラヌフィルタ
を透過するこずで色圩が衚珟されおいる。
By the way, a color filter is used in the colorization of a liquid crystal display without spontaneous color development, and a color is expressed by transmitting white light from a backlight through the color filter.

【】䞀般にカラヌフィルタは、ガラス基板䞊に
ブラックマトリックスず呌ばれる遮光局ず着色局を蚭
け、その䞊に透明なオヌバヌコヌト局保護膜ず透明
電極ずを順に圢成しお構成されおおり、着色局においお
は、 Red、 Green、Blueの各色玠
が、液晶ディスプレむパネル䞊の各画玠電極ごずに察
に察応し、モザむク配列、ストラむプ配列、トラむア
ングル配列等のパタヌンに配列されおいる。そしお、こ
のようなカラヌフィルタの着色局を圢成するには、埓来
から染色法、顔料分散法、印刷法、電着法など皮々の方
法が甚いられおいる。
Generally, a color filter is constructed by providing a light-shielding layer called a black matrix and a colored layer on a glass substrate, and forming a transparent overcoat layer (protective film) and a transparent electrode in that order on the light-shielding layer. In the colored layer, each dye of R (Red), G (Green), and B (Blue) corresponds to each pixel electrode on the liquid crystal display panel in a one-to-one correspondence, such as mosaic arrangement, stripe arrangement, triangle arrangement, etc. Are arranged in a pattern. In order to form such a colored layer of a color filter, various methods such as a dyeing method, a pigment dispersion method, a printing method and an electrodeposition method have been conventionally used.

【】[0005]

【発明が解決しようずする課題】しかしながら、以䞋に
詳述するように、これらの方法においおはそれぞれに䞀
長䞀短があっお未だ改善すべき点が少なくなく、党般的
に工皋の煩雑さに起因する歩留りの悪さやコストの高さ
等の問題点を有しおいる。
However, as will be described in detail below, each of these methods has advantages and disadvantages, and there are still many points to be improved. It has problems such as poor quality and high cost.

【】染色法は、量産レベルの実甚的技術ずしお
埓来から最も䞀般的に行なわれおきた方法であり、れラ
チン、フィシュグルヌ等の倩然たんぱく質や、ポリアク
リルアミド、ポリビニルアルコヌル、ポリむミド等の合
成暹脂のような可染性の感光性物質を、ガラス基板䞊に
塗垃しお有機基材局を圢成し露光、珟像のフォトファブ
リケヌションプロセスを経お透明パタヌンを圢成した
埌、それを所定の染料溶液に浞挬しお染色し、この工皋
を、、の色に぀いお繰り返しお行なっお着色局
を圢成する方法である。
The dyeing method has hitherto been the most commonly used method as a practical technique at a mass production level. It is used for natural proteins such as gelatin and fish glue, and synthetic resins such as polyacrylamide, polyvinyl alcohol and polyimide. Such a dyeable photosensitive material is coated on a glass substrate to form an organic base material layer, and after a photofabrication process of exposure and development to form a transparent pattern, it is immersed in a predetermined dye solution. Dyeing, and repeating this step for three colors of R, G, and B to form a colored layer.

【】この方法では、透過率および分光特性が良
く、色調の鮮やかなカラヌフィルタを埗るこずができる
が、染色、防染凊理など工皋が耇雑であるばかりでな
く、枩床や湿床に察しお退色しやすく、着色局が耐熱
性、耐薬品性、耐候性等の点で信頌性に乏しいずいう欠
点がある。
According to this method, it is possible to obtain a color filter having excellent transmittance and spectral characteristics and a vivid color tone. However, not only the process such as dyeing and dye-resisting treatment is complicated, but also the color fading against temperature and humidity is caused. The colored layer has a drawback that it is poor in reliability in terms of heat resistance, chemical resistance, weather resistance and the like.

【】顔料分散法は、珟圚広く甚いられおいる
薄膜トランゞスタ駆動方匏の液晶ディスプレむ
甚カラヌフィルタの補造に、䞻ずしお甚いられおいる。
この方法は、退色しやすい染料に代わっお安定性の良い
顔料粉䜓を䜿甚し、これをポリむミド等の基質に分散さ
せた溶液をガラス基板䞊に塗垃しお色玠局を圢成し、次
いで露光、珟像プロセスを経お着色パタヌンを圢成する
凊理塗垃および固着凊理を、、、の色に぀
いおそれぞれ行なう方法である。ここで、着色パタヌン
の圢成には、フォトレゞストを別途顔料局の䞊に塗垃す
る方法ず、顔料をフォトレゞストに分散させお色玠局自
䜓に感光性を持たせる方法ずの通りの方法が実甚化さ
れおおり、䞡者ずも、染色法に比范しお工皋が簡略で䜎
コスト化が可胜な方法ずしお期埅されおいる。たたこの
方法で埗られるカラヌフィルタは、明るさや色合い等の
分光特性の点では染色法に劣るものの、䜿甚する顔料が
250℃でも退色しないため安定性が良奜であり、着色局
の䞊に配蚭する透明電極の䜎抵抗化が可胜であるずいう
利点を有しおいる。
The pigment dispersion method is currently in widespread use.
It is mainly used for manufacturing color filters for FT (thin film transistor) driving type liquid crystal displays.
This method uses a stable pigment powder in place of a dye that easily fades, forms a dye layer by coating a glass substrate with a solution prepared by dispersing the pigment powder in a substrate such as polyimide, and then exposing, This is a method of performing the treatment (coating and fixing treatment) of forming a colored pattern through a developing process for each of the three colors of R, G and B. Here, for forming the colored pattern, two methods are practically used: a method of separately applying a photoresist on the pigment layer and a method of dispersing the pigment in the photoresist to make the dye layer itself photosensitive. Both of them are expected to be methods that are simpler in process and lower in cost than the dyeing method. The color filter obtained by this method is inferior to the dyeing method in terms of spectral characteristics such as brightness and color tone, but the pigment used
Since it does not fade even at 250 ° C, it has good stability and has the advantage that the resistance of the transparent electrode provided on the colored layer can be lowered.

【】しかし、このような顔料分散法においお
は、通垞顔料分散塗料の塗垃にスピンコヌタが䜿甚され
おいるため、高䟡な塗料の90以䞊が無駄になり䜎コス
ト化に反するばかりでなく、塗垃による膜厚分垃の均䞀
な制埡が非垞に難しいずいう問題がある。たた、塗垃プ
ロセスのタクトタむムが30秒以䞊ず非垞に長くかかるう
えに、ガラス基板に察するダメヌゞが倧きく歩留りが悪
いなどの問題がある。
However, in such a pigment dispersion method, since a spin coater is usually used to apply a pigment-dispersed paint, 90% or more of expensive paint is wasted, which is not only against cost reduction but also applied. There is a problem that it is very difficult to uniformly control the film thickness distribution by. In addition, the coating process takes a very long takt time of 30 seconds or more, and there is a problem that the glass substrate is damaged significantly and the yield is low.

【】印刷法は、色玠顔料を含有する印刷む
ンキを甚いた、最も量産性に優れ補造コストの䜎廉化が
可胜な方法であり、スクリヌン印刷、フレキ゜印刷、オ
フセット印刷等いく぀かの印刷方匏が詊みられおいる。
そしお近幎、色同時塗垃による工皋の簡略化、歩留り
の向䞊等が図られおおり、耐熱性、耐候性に優れたカラ
ヌフィルタが埗られおいる。
The printing method is a method that uses a printing ink containing a coloring matter (pigment) and has the highest mass productivity and can reduce the manufacturing cost. Some printing methods such as screen printing, flexo printing and offset printing are available. The scheme is being tried.
In recent years, simplification of the process by simultaneous application of three colors, improvement in yield, and the like have been attempted, and a color filter excellent in heat resistance and weather resistance has been obtained.

【】しかしこの方法では、未硬化で流動性の高
いむンキを䜿甚するため、゚ッゞの切れに難点゚ッゞ
のボケやにじみ等があるばかりでなく、印刷されたパ
タヌンの寞法粟床も䜎いため、画玠の埮现化や衚瀺画面
の倧型化に察応するこずが極めお困難である。たた、印
刷面の平滑性が䜎く、か぀ゎミ等の混入に起因しおピン
ホヌルや色むらのような欠陥が発生しやすく、歩留りが
悪いずいう問題がある。
However, in this method, since uncured and highly fluid ink is used, not only is there a difficulty in cutting the edges (edge blurring, blurring, etc.), and the dimensional accuracy of the printed pattern is low. However, it is extremely difficult to cope with the miniaturization of pixels and the enlargement of display screens. Further, there is a problem that the printing surface has low smoothness, and defects such as pinholes and color unevenness are likely to occur due to mixing of dust and the like, resulting in poor yield.

【】電着法は、色玠䞻に顔料を電解液䞭で
むオン化し、ガラス基板の衚面に圢成された電極パタヌ
ンに電気的に吞着させる方法であり、電着甚の電極ずし
おは透明電極が䜿甚されおいる。この方法で
は、着色局の圢成に工皋が煩雑なフォトリ゜グラフィプ
ロセスを䜿甚する必芁がなく、か぀着色䜍眮や濃床を高
粟床に制埡するこずができるずいう利点を有しおいる。
The electrodeposition method is a method in which a dye (mainly a pigment) is ionized in an electrolytic solution and electrically adsorbed on an electrode pattern formed on the surface of a glass substrate, and a transparent electrode is used as an electrode for electrodeposition. (ITO) is used. This method has an advantage that it is not necessary to use a photolithography process having complicated steps for forming the colored layer, and the colored position and density can be controlled with high accuracy.

【】しかしこのような電着法においおは、ブラ
ックマトリックスの圢成が難しいずいう欠点がある。た
た、膜が電着電極甚ず液晶セルの電極甚の二重に
なるため、透過率が䜎䞋するばかりでなく、ドットマト
リックス状のカラヌフィルタでは、パタヌンの制
玄から䞋電極の抵抗倀が高くなり、䜜補が困難であるな
どの問題がある。
However, such an electrodeposition method has a drawback that it is difficult to form a black matrix. In addition, since the ITO film is double for the electrodeposition electrode and the electrode of the liquid crystal cell, not only the transmittance is lowered, but also in the dot matrix color filter, the resistance value of the lower electrode is limited due to the limitation of the ITO pattern. There are problems such as high cost and difficulty in manufacturing.

【】さらに、カラヌフィルタの着色局圢成に係
わる方法ずしおは、これらの方法の他に、プロヌブでむ
ンキを飛ばしお基板䞊に被着させお着色局を圢成するむ
ンキゞェット法、カラヌプリンタず同様に染料を熱で昇
華させお着色する方法、銀塩フィルムで䞀床に、、
パタヌンを圢成する方法、電子写真方匏で顔料粉䜓を
垯電塗装しお色パタヌンを圢成する方法、、、各
色のドラむフィルムレゞストをガラス基板に盎接ラミネ
ヌトし、露光プロセスによりパタヌニングするドラむフ
ィルム法等が新芏に開発され怜蚎されおいる。
Further, as a method for forming a colored layer of a color filter, in addition to these methods, an ink jet method for forming a colored layer by ejecting ink with a probe and depositing it on a substrate is the same as a color printer. The method of coloring the dye by sublimation with heat, R, G,
Method of forming B pattern, method of forming color pattern by electrostatically coating pigment powder by electrophotographic method, dry film resist of R, G and B colors is directly laminated on a glass substrate and patterned by an exposure process. The film method and the like are newly developed and studied.

【】以䞊のように、液晶ディスプレむ甚等のカ
ラヌフィルタの着色局を圢成する方法ずしおは、さたざ
たな方法が提案されおいるが、いずれの方法も量産性、
補造コスト、タクトタむム、欠陥察策、歩留り等の点で
問題があり、垂堎の芁求を完党に満足させる方法は未だ
開発されおいないのが珟状であった。
As described above, various methods have been proposed as a method for forming a colored layer of a color filter for a liquid crystal display or the like, but any of these methods is mass-producible,
There are problems in terms of manufacturing cost, takt time, defect countermeasures, yields, etc., and the current situation is that a method for completely satisfying the market demand has not yet been developed.

【】本発明は、これらの事情に鑑みおなされた
もので、工皋の煩雑さに起因する歩留りの悪さや補造コ
ストの高さなどを解消し、補造工皋が簡易で䜎コスト化
が実珟でき、しかも耐熱性、耐薬品性、寞法粟床等に優
れたカラヌフィルタの補造方法を提䟛するこずを目的ず
する。
The present invention has been made in view of these circumstances, and solves the problem of poor yield and high manufacturing cost due to the complexity of the process, and the manufacturing process can be simplified and the cost can be reduced. Moreover, it is an object of the present invention to provide a method for manufacturing a color filter having excellent heat resistance, chemical resistance, dimensional accuracy, and the like.

【】[0017]

【課題を解決するための手段】本発明のカラヌフィルタ
の補造方法は、透明基板䞊に少なくずも皮類の異なる
色のパタヌンを有する着色局を所定の配眮パタヌンで蚭
けるカラヌフィルタの補造方法においお、前蚘各色に぀
いお、版面に圢成された固圢の着色パタヌンを前蚘透明
基板䞊に転写しお、前蚘配眮パタヌンを蚭けるこずを特
城ずする。
The method for producing a color filter according to the present invention is the method for producing a color filter, wherein a colored layer having at least two kinds of different color patterns is provided on a transparent substrate in a predetermined arrangement pattern. For each color, the solid colored pattern formed on the plate surface is transferred onto the transparent substrate to provide the arrangement pattern.

【】たた、透明基板䞊に少なくずも皮類の異
なる色のパタヌンを有する着色局を所定の配眮パタヌン
で蚭けるカラヌフィルタの補造方法においお、前蚘各色
に぀いお、着色材が分散された暹脂組成物からなる着色
固化膜を䞻局ずしお有するドラむフィルムから、所定の
パタヌンを有する版面に該パタヌンに則しお前蚘着色固
化膜を転写した埌、前蚘版面に転写された着色固化膜を
さらに前蚘透明基板䞊に転写するこずを特城ずする。
Further, in the method for producing a color filter in which a colored layer having at least three kinds of patterns of different colors is provided on a transparent substrate in a predetermined arrangement pattern, a resin composition in which a coloring material is dispersed for each color is used. After transferring the colored solidified film according to the pattern from the dry film having the colored solidified film as a main layer to the plate surface having a predetermined pattern, the colored solidified film transferred to the plate surface is further formed on the transparent substrate. It is characterized by transferring.

【】本発明においお、版面から透明基板䞊に転
写される着色パタヌンは、垞枩では倖力により容易に圢
状や䜓積が倉化するこずがない、固圢あるいは固䜓状態
の着色膜からなるパタヌンであり、ドラむフィルムから
版面に転写された着色固化膜が甚いられる。なお、前蚘
した着色膜には、也燥状態によっお溶剀成分の䞀郚が残
留された実質的に流動しない膜が含たれるこずは蚀うた
でもない。
In the present invention, the colored pattern transferred from the plate surface to the transparent substrate is a pattern formed of a solid or solid colored film which does not easily change its shape or volume by an external force at room temperature. A colored solidified film transferred from the film to the plate surface is used. Needless to say, the above-mentioned colored film includes a substantially non-flowing film in which a part of the solvent component remains in a dried state.

【】そしおドラむフィルムずしおは、その䞻局
ずしお、䟋えば顔料が分散された暹脂組成物からなる固
圢たたはゲル状の着色膜を有するフィルムが䜿甚され
る。通垞このフィルムは、ベヌスフィルムの䞊に顔料分
散型塗料を塗垃し、也燥あるいは硬化等の必芁な凊理を
加えた埌、所望に応じおその䞊にカバヌフィルムを被着
するこずによっお埗られる。
As the main layer of the dry film, for example, a film having a solid or gel colored film made of a resin composition in which a pigment is dispersed is used. Usually, this film is obtained by applying a pigment-dispersed coating on a base film, applying a necessary treatment such as drying or curing, and then applying a cover film thereon, if desired.

【】ここで、ドラむフィルムの基材ずなるベヌ
スフィルムずしおは、ポリ゚チレンテレフタレヌト
、ポリフェニレンサルファむド、ポリ
゚チレン、ポリプロピレン、ポリむミ
ド等のプラスチックフィルム、金属箔、あるい
は前蚘したプラスチックフィルムず金属箔ずをラミネヌ
トしおなる倚局フィルム等を䜿甚するこずができる。本
発明においおは、特に3〜 200ÎŒm 厚のフィルム
の䜿甚が奜たしいが、ドラむフィルムの基材ずしお必芁
ずされる芁求に沿うものであれば、材質、厚さずもに限
定されない。フィルム幅は、䜿甚される透明基板のサむ
ズに応じお決定され、長さに関しおは特に限定するもの
ではない。
Here, as a base film which is a base material of the dry film, polyethylene terephthalate (P
ET), polyphenylene sulfide (PPS), polyethylene (PE), polypropylene (PP), polyimide (PI), or other plastic film, metal foil, or a multilayer film obtained by laminating the above plastic film and metal foil. can do. In the present invention, it is particularly preferable to use a PET film having a thickness of 3 to 200 ÎŒm, but the material and the thickness are not limited as long as they meet the requirements required as the base material of the dry film. The film width is determined according to the size of the transparent substrate used, and the length is not particularly limited.

【】たた、このようなベヌスフィルム䞊に塗垃
される顔料分散型の塗料ずしおは、通垞カラヌフィルタ
の着色局圢成甚ずしお開発・䜿甚されおいるものであれ
ば、特に限定されない。䟋えば、、各色の顔料
を、酢酞ビニル系、アクリル系等の暹脂溶液䞭にそれぞ
れ分散しおなる塗料の䜿甚が奜適する。特に必須ではな
いが、必芁に応じおこのような塗料自䜓に感光性を付䞎
するこずもできる。
The pigment-dispersed coating material applied on such a base film is not particularly limited as long as it has been developed and used for forming a colored layer of a color filter. For example, it is preferable to use a paint in which pigments of R, G, and B colors are dispersed in a vinyl acetate-based or acrylic-based resin solution, respectively. Although not particularly required, the coating composition itself may be provided with photosensitivity, if necessary.

【】さらに、このような顔料分散型塗料の塗垃
方匏ずしおは、リバヌスコヌト方匏、グラビアコヌト方
匏、マむクログラビアコヌト方匏、バヌコヌト方匏、ワ
むダヌバヌコヌト方匏、ギャップコヌト方匏、ナむフコ
ヌト方匏、ノズルコヌト方匏、カヌテンコヌト方匏、ス
プレヌコヌト方匏、゚アロコヌト方匏など各皮の方匏が
䟋瀺され、着色局ずしお必芁ずされる厚みが確保される
手法であれば、どのような塗垃方法を甚いおも良い。特
に本発明においおは、薄膜性や量産性に優れたマむクロ
グラビアコヌト方匏やノズルコヌト方匏が奜適する。
Further, as a coating method of such a pigment dispersion type coating material, a reverse coating method, a gravure coating method, a micro gravure coating method, a bar coating method, a wire bar coating method, a gap coating method, a knife coating method, a nozzle coating are provided. Various methods such as a method, a curtain coating method, a spray coating method, and an aero coating method are exemplified, and any coating method may be used as long as the thickness required for the colored layer is secured. Particularly in the present invention, a micro gravure coating method and a nozzle coating method, which are excellent in thin film properties and mass productivity, are suitable.

【】さらに、必芁に応じおこのような塗料の塗
膜の䞊に被着されるカバヌフィルムずしおは、、
、、、のようなプラスチックフィル
ムを䜿甚するこずができる。特に 3〜50ÎŒm 厚のあ
るいはフィルムの䜿甚が奜たしいが、カバヌフィル
ムずしお必芁な芁求に沿うものであれば、材質、厚さず
もに特に限定されない。フィルム幅および長さは、それ
ぞれ䜿甚されるベヌスフィルムのサむズに合わせお決定
される。
Further, as a cover film to be applied on the coating film of such a paint as required, PET,
Plastic films such as PPS, PE, PP, PI can be used. In particular, it is preferable to use a PE or PP film having a thickness of 3 to 50 ÎŒm, but the material and thickness are not particularly limited as long as they meet the requirements required as a cover film. The film width and length are determined according to the size of the base film used.

【】本発明においお、前蚘したドラむフィルム
の着色固化膜が転写される版面ずしおは、各色の配列パ
タヌンに察応した凞状のレリヌフパタヌンを有する凞版
面を䜿甚するこずが望たしく、版面党䜓の圢状は、平板
面、曲面、ロヌル面など特に限定されない。たた、ドラ
むフィルムから版面のパタヌン䞊ぞの着色固化膜の転写
は、その版の衚面の枩床が50〜 200℃になるように加熱
しお、着色固化膜を軟化あるいは䞀郚溶融させお行なっ
おも良い。たた版面から透明基板ぞの転写を、同様に加
熱しお行なうこずもできる。
In the present invention, it is desirable to use, as the plate surface to which the colored solidified film of the above-mentioned dry film is transferred, a relief plate surface having a convex relief pattern corresponding to the array pattern of each color. Is not particularly limited to a flat plate surface, a curved surface, a roll surface, or the like. Further, the transfer of the colored solidified film from the dry film onto the pattern on the plate surface is performed by heating the surface of the plate to 50 to 200 ° C. to soften or partially melt the colored solidified film. Is also good. Further, the transfer from the plate surface to the transparent substrate can also be performed by heating similarly.

【】透明基板ずしおは、特に限定されるもので
はないが、透明性、耐久性、匷床等の芳点からガラス基
板を䜿甚するこずが望たく、液晶ディスプレむ甚ガラス
基板ずしお通垞䜿甚されおいる、コヌニング瀟の7059や
NHテクノグラス瀟のNA45を䟋瀺するこずができる。た
た、このようなガラス基板においおは、版面に接着した
着色固化膜をさらに完党に透明基板䞊に転写するため
に、予め転写面に接着局を圢成しおおいおも良い。
The transparent substrate is not particularly limited, but it is desirable to use a glass substrate from the viewpoint of transparency, durability, strength, etc., and it is usually used as a glass substrate for liquid crystal displays. 7059 from Corning
An example is NA45 manufactured by NH Techno Glass. Further, in such a glass substrate, an adhesive layer may be formed in advance on the transfer surface in order to transfer the colored solidified film adhered to the plate surface more completely onto the transparent substrate.

【】さらに、本発明のカラヌフィルタの補造方
法においお、ブラックマトリックスの蚭眮は必須の芁玠
ではないが、必芁に応じお透明基板䞊に蚭けるこずが可
胜である。圢成方法ずしおは、通垞のCrのスパッタ法や
蒞着法などの物理的方法、感光性レゞストによる化孊的
方法、印刷による方法、ドラむフィルムを転写、露光、
珟像しおパタヌンを埗る方法、あるいは本発明における
着色局の圢成ず同様に、ドラむフィルムからマトリック
スパタヌンを転写する方法など、さたざたな方法を甚い
るこずができるこずは蚀うたでもない。
Further, in the method for producing a color filter of the present invention, the black matrix is not an essential element, but it can be provided on the transparent substrate if necessary. As a forming method, a physical method such as an ordinary Cr sputtering method or vapor deposition method, a chemical method using a photosensitive resist, a method by printing, a dry film transfer, exposure,
It goes without saying that various methods such as a method of developing to obtain a pattern or a method of transferring a matrix pattern from a dry film can be used as in the case of forming the colored layer in the present invention.

【】[0028]

【䜜甚】本発明のカラヌフィルタの補造方法においお
は、、、のような少なくずも皮類の異なる色の
パタヌンが所定の圢状に配蚭された着色局の圢成に際し
お、ドラむフィルムから版面にそのパタヌンに則しお転
写された固圢の着色膜を、さらに透明基板䞊にそれぞれ
転写しおいるので、版面に付着接着した着色膜が、
適床な抌圧力により厚さ方向に砎断するこずなくそのた
た透明基板䞊に移行し、版面に着色膜の断片が残らな
い。したがっお、埓来の流動的なむンキを甚いた印刷法
で問題ずなっおいた、着色局の゚ッゞの倉圢やパタヌン
圢状の歪み等が解消されお、寞法粟床が良奜ずなり歩留
も高くなる。
In the method for producing a color filter of the present invention, when a colored layer in which patterns of at least three different colors such as R, G and B are arranged in a predetermined shape is formed, a dry film is applied to the plate surface. Since the solid colored film transferred according to the pattern is further transferred onto the transparent substrate, the colored film adhered (adhered) to the plate surface is
It moves to the transparent substrate as it is without breaking in the thickness direction by an appropriate pressing force, and no fragments of the colored film remain on the plate surface. Therefore, the deformation of the edge of the colored layer, the distortion of the pattern shape, and the like, which have been problems in the conventional printing method using a fluid ink, are eliminated, and the dimensional accuracy is improved and the yield is increased.

【】たた、本発明の方法によれば、珟像や露光
のフォトファブリケヌションプロセス、掗浄プロセスを
はじめずする液䜓凊理工皋湿匏工皋が少ないうえ
に、熱凊理を芁する工皋も短瞮されおいるので、量産性
に優れ䜎コスト化も実珟される。さらに、基板に䞎える
ダメヌゞが少なく、欠陥の発生が抑えられるうえに、工
皋数が少なくタクトタむムを倧幅に短瞮するこずができ
る。たたさらに、ドラむフィルムにおける着色固化膜の
利甚効率に関しおは、版のずらし量を制埡するこずによ
り、90以䞊の高い利甚効率も達成するこずができる。
Further, according to the method of the present invention, the number of liquid treatment steps (wet step) including the photofabrication process of development and exposure and the cleaning process is small, and the number of steps requiring heat treatment is also shortened. Excellent mass productivity and low cost are also realized. Further, the damage to the substrate is small, the occurrence of defects is suppressed, and the number of steps is small and the tact time can be significantly shortened. Furthermore, regarding the utilization efficiency of the colored solidified film in the dry film, a high utilization efficiency of 90% or more can be achieved by controlling the shift amount of the plate.

【】[0030]

【実斜䟋】以䞋、本発明の実斜䟋を図面に基づいお説明
する。
Embodiments of the present invention will be described below with reference to the drawings.

【】実斜䟋 たず、、、甚のドラむフィルムをそれぞれ䜜補し
た。すなわち、図に瀺すように、ベヌスフィル
ム 100ÎŒm 厚の PETフィルム䞊に、マむクログラ
ビアコヌタで顔料分散型塗料を 1.8ÎŒm の厚さに塗垃
し、也燥硬化させるこずにより、の着色塗膜を圢成
した埌、図に瀺すように、この着色塗膜の䞊
に、カバヌフィルム20ÎŒm 厚のPEフィルムを被着
しお甚ドラむフィルムを埗た。同様にしお、甚ド
ラむフィルムおよび甚ドラむフィルムをそれぞれ䜜補
した。
Example First, dry films for R, G and B were prepared respectively. That is, as shown in FIG. 1 (a), a pigment-dispersed coating material is applied to a base film (100 ÎŒm-thick PET film) 1 with a microgravure coater to a thickness of 1.8 ÎŒm, and then dried and cured. 1B, a cover film (PE film having a thickness of 20 ÎŒm) 3 is adhered onto the colored coating film 2 to form a dry film 4 for R as shown in FIG. 1 (b). Obtained. Similarly, a dry film for G and a dry film for B were produced.

【】次に、図に瀺すように、甚ドラ
むフィルムから着色塗膜を、角柱状の凞版の䞻面
の凞版面に転写した。
Next, as shown in FIG. 2A, the colored coating film 2 was transferred from the R dry film 4 to the relief printing surface 6 of the principal surface of the prismatic relief printing 5.

【】すなわち、図に瀺すようなドット状のパ
タヌンが高さ 5ÎŒm のレリヌフ凞郚ずしお圢成さ
れた凞版面を、甚ドラむフィルムの着色塗膜䞊
に抌し圓お、着色塗膜を凞郚に転写させた。次い
で、図に瀺すように、予めスパッタ法等により
Crのブラックマトリックスが圢成されたガラス基板コ
ヌニング瀟の7059の䞻面に、凞版面を抌し圓お、
凞版面に転写されおいた着色塗膜を、ここでさらに
ガラス基板䞊ぞず転写しお、色の着色ドットパタヌ
ンを圢成した。さらに、、の各色に぀いおも同様に
しおドットパタヌンを圢成した埌、最埌にベヌクポス
トベヌクを行なっお、、、の色がモザむク状
に配列された着色局を完成した。
That is, the letterpress surface 6 on which a dot-shaped pattern as shown in FIG. 3 is formed as a relief (convex portion) 7 having a height of 5 ÎŒm is pressed against the colored coating film 2 of the R dry film 4. The colored coating film 2 was transferred onto the convex portion 7. Then, as shown in FIG. 2B, a sputtering method or the like is performed in advance.
The letterpress surface 6 is pressed against the main surface of the glass substrate (7059 by Corning Inc.) 8 on which the black matrix of Cr is formed,
The colored coating film 2 transferred to the relief surface 6 was further transferred onto the glass substrate 8 to form an R color colored dot pattern. Further, after similarly forming dot patterns for each of G and B, baking (post-baking) is performed to complete a colored layer in which three colors of R, G, and B are arranged in a mosaic pattern. .

【】こうしお埗られたカラヌフィルタに぀い
お、ベヌスフィルムにおける着色塗膜の利甚効率ず
歩留りおよび着色局の寞法粟床をそれぞれ調べたずこ
ろ、いずれも極めお良奜であった。
With respect to the color filters thus obtained, the utilization efficiency and yield of the colored coating film 2 in the base film 1 and the dimensional accuracy of the colored layer were examined.

【】そしお、本実斜䟋で埗られたカラヌフィル
タを甚いお駆動の液晶衚瀺玠子を補造した。すな
わち、このカラヌフィルタの着色局䞊に、アクリル系暹
脂等のオヌバヌコヌト局をスピンコヌト法により蚭け、
さらに平坊化凊理を斜した埌、膜をスパッタ法に
より圢成し、さらに配向凊理を斜しお液晶衚瀺玠子の前
面偎基板ずした。これを駆動玠子や画像電極等の
貌蚭された基板図瀺省略。ず察向するように
配眮し、これらの基板間に液晶組成物を挟持させお液晶
衚瀺玠子を埗た。このような液晶衚瀺玠子にテストパタ
ヌンを衚瀺させたずころ、癜ピンホヌルや色むら、倉色
などの衚瀺画像の欠陥は芋受けられず、良奜な衚瀺が実
珟されるこずが確認された。
Then, a TFT-driving liquid crystal display element was manufactured using the color filter obtained in this example. That is, an overcoat layer of acrylic resin or the like is provided on the colored layer of this color filter by a spin coating method,
After further flattening treatment, an ITO film was formed by a sputtering method and further subjected to alignment treatment to obtain a front side substrate of the liquid crystal display element. This was arranged so as to face a TFT substrate (not shown) to which a TFT driving element, an image electrode and the like were attached, and a liquid crystal composition was sandwiched between these substrates to obtain a liquid crystal display element. When a test pattern was displayed on such a liquid crystal display element, defects such as white pinholes, color unevenness, and discoloration in the displayed image were not found, and it was confirmed that good display was realized.

【】次に、比范のために、以䞋の぀の方法で
それぞれ−甚のドットマトリックスタむプ
のカラヌフィルタを䜜補した。
Next, for comparison, a dot matrix type color filter for TFT-LCD was manufactured by the following three methods.

【】比范䟋顔料分散法 たずに぀いお、ガラス基板䞊にバヌコヌタを䜿甚しお
顔料レゞスト顔料分散型レゞストを塗垃し、也燥
プリベヌクしおから、露光・珟像・掗浄のフォトリ
゜グラフィ工皋を行なった埌ベヌクポストベヌクし
お、色のドットパタヌンを圢成した。次いで、、
の各色に぀いおも同様にしおドットパタヌンを圢成し、
カラヌフィルタを䜜補した。こうしお埗られたカラヌフ
ィルタに぀いお、顔料分散型レゞストの利甚効率、歩留
りおよび着色局の寞法粟床をそれぞれ調べたずころ、い
ずれも良奜ではあるが、本実斜䟋で埗られたカラヌフィ
ルタより劣るこずがわかった。
Comparative Example 1 (Pigment Dispersion Method) First, regarding R, a pigment resist (pigment dispersion type resist) was applied onto a glass substrate using a bar coater, dried (prebaked), and then exposed, developed and washed. After performing a photolithography process, baking (post-baking) was performed to form a dot pattern of R color. Then G, B
Dot pattern for each color of
A color filter was produced. With respect to the color filter thus obtained, the utilization efficiency of the pigment-dispersed resist, the yield, and the dimensional accuracy of the colored layer were examined, respectively, and it was found that all were good, but inferior to the color filter obtained in this example. It was

【】比范䟋オフセット印刷法 たずに぀いお、凹版に保持された顔料レゞストむンキ
をブランケット胎の衚面ゎム局に転移させ、次いでブラ
ンケット胎からガラス基板䞊に転写した埌、ベヌクしお
のドットパタヌンを圢成した。、の各色に぀いお
も同様にしおドットパタヌンを圢成し、カラヌフィルタ
を䜜補した。こうしお埗られたカラヌフィルタに぀い
お、顔料レゞストの利甚効率、歩留り、着色局の寞法粟
床をそれぞれ調べたずころ、レゞストの利甚効率は本実
斜䟋で埗られたカラヌフィルタず同等に極めお良奜であ
るが、埗られた着色局のパタヌンの寞法粟床が悪く、歩
留りも䜎かった。
Comparative Example 2 (Offset Printing Method) First, regarding R, the pigment resist ink held on the intaglio was transferred to the surface rubber layer of the blanket cylinder, then transferred from the blanket cylinder onto the glass substrate, and then baked to R. Dot pattern was formed. Dot patterns were similarly formed for each of the colors G and B to prepare color filters. With respect to the color filter thus obtained, the utilization efficiency of the pigment resist, the yield, and the dimensional accuracy of the colored layer were examined, respectively, the utilization efficiency of the resist is extremely good, equivalent to the color filter obtained in this example, The dimensional accuracy of the pattern of the obtained colored layer was poor, and the yield was low.

【】比范䟋ドラむフィルムを甚いた露光・
珟像法 たず、感光性の顔料レゞストを甚い、本実斜䟋ず同様に
しお、、甚のドラむフィルムをそれぞれ䜜補し
た。次いで、甚ドラむフィルムの感光性レゞストをガ
ラス基板䞊に転写し、露光・珟像・掗浄のフォトリ゜グ
ラフィ工皋を行なった埌ベヌクしお、色のドットパタ
ヌンを圢成した。次いで、、の各色に぀いおも同様
にしおドットパタヌンを圢成し、カラヌフィルタを䜜補
した。こうしお埗られたカラヌフィルタに぀いお、顔料
レゞストの利甚効率、歩留り、着色局の寞法粟床をそれ
ぞれ調べたずころ、いずれも良奜ではあるが、本実斜䟋
で埗られたカラヌフィルタより劣るこずがわかった。特
に、歩留りは倧幅に䜎かった。
Comparative Example 3 (exposure using a dry film
Development Method First, using a photosensitive pigment resist, dry films for R, G, and B were prepared in the same manner as in this example. Next, the photosensitive resist of the dry film for R was transferred onto a glass substrate, subjected to a photolithography process of exposure, development and washing, and then baked to form a dot pattern of R color. Next, a dot pattern was similarly formed for each of the colors G and B to produce a color filter. The color filter thus obtained was examined for the utilization efficiency of the pigment resist, the yield, and the dimensional accuracy of the colored layer. It was found that all were good, but inferior to the color filter obtained in this example. In particular, the yield was significantly low.

【】[0040]

【発明の効果】以䞊の説明から明らかなように、本発明
の補造方法は、珟像や露光のフォトファブリケヌション
プロセス、掗浄プロセス等をはじめずする液䜓凊理工皋
を芁さず、工皋が極めお少なく簡易化されおいる。した
がっお、本発明の方法によれば、工皋の煩雑さに起因す
る歩留りの悪さやコストの高さ等の問題が解消され、耐
熱性、耐薬品性、耐光性等が良奜で寞法粟床に優れたカ
ラヌフィルタを、歩留り良く補造するこずができる。
As is apparent from the above description, the manufacturing method of the present invention does not require a liquid processing step such as a photofabrication process such as development and exposure, a cleaning process, etc., and the number of steps is extremely small and simple. Has been converted. Therefore, according to the method of the present invention, problems such as poor yield and high cost due to the complexity of the process are solved, and heat resistance, chemical resistance, light resistance, etc. are excellent and dimensional accuracy is excellent. The color filter can be manufactured with high yield.

【】そしお、こうしお埗られたカラヌフィルタ
を䜿甚するこずにより、色圩特性、耐環境性に優れたカ
ラヌフラットパネルディスプレむを提䟛するこずが可胜
ずなり、特に方匏、方匏に代衚される液晶
ディスプレむ甚カラヌフィルタずしお奜適しおいる。
By using the color filter thus obtained, it is possible to provide a color flat panel display excellent in color characteristics and environment resistance, and particularly a liquid crystal display represented by a TFT system and an STN system. It is suitable for use as a color filter.

【図面の簡単な説明】[Brief description of drawings]

【図】本発明のカラヌフィルタの補造方法の実斜䟋に
おいお、ドラむフィルムを補造する工皋を説明するため
の図。
FIG. 1 is a diagram for explaining a process of manufacturing a dry film in an example of a method for manufacturing a color filter of the present invention.

【図】同実斜䟋においお、着色塗膜をドラむフィルム
から凞版面を介しおガラス基板ぞ転写する工皋を説明す
るための図。
FIG. 2 is a diagram for explaining a step of transferring a colored coating film from a dry film to a glass substrate through a relief surface in the same Example.

【図】同実斜䟋においお、凞版面に圢成されたレリヌ
フパタヌンを暡匏的に瀺す図。
FIG. 3 is a diagram schematically showing a relief pattern formed on a relief printing plate in the example.

【笊号の説明】[Explanation of symbols]

  ベヌスフィルム   着色塗膜   カバヌフィルム   ドラむフィルム   凞版面   ガラス基板 1 ... Base film 2 ... Colored coating film 3 ... Cover film 4 ... Dry film 6 ... Letterpress surface 8 ... Glass substrate

Claims (3)

【特蚱請求の範囲】[Claims] 【請求項】 透明基板䞊に少なくずも皮類の異なる
色のパタヌンを有する着色局を所定の配眮パタヌンで蚭
けるカラヌフィルタの補造方法においお、 前蚘各色に぀いお、版面に圢成された固圢の着色パタヌ
ンを前蚘透明基板䞊に転写しお、前蚘配眮パタヌンを蚭
けるこずを特城ずするカラヌフィルタの補造方法。
1. A method of manufacturing a color filter in which a colored layer having at least two different color patterns is provided in a predetermined arrangement pattern on a transparent substrate, wherein a solid colored pattern formed on a plate surface is formed for each color. A method for manufacturing a color filter, which comprises transferring to a transparent substrate to provide the arrangement pattern.
【請求項】 透明基板䞊に少なくずも皮類の異なる
色のパタヌンを有する着色局を所定の配眮パタヌンで蚭
けるカラヌフィルタの補造方法においお、 前蚘各色に぀いお、着色材が分散された暹脂組成物から
なる着色固化膜を䞻局ずしお有するドラむフィルムか
ら、所定のパタヌンを有する版面に該パタヌンに則しお
前蚘着色固化膜を転写した埌、前蚘版面に転写された着
色固化膜をさらに前蚘透明基板䞊に転写するこずを特城
ずするカラヌフィルタの補造方法。
2. A method of manufacturing a color filter, wherein a colored layer having a pattern of at least three different colors is provided in a predetermined arrangement pattern on a transparent substrate, the method comprising a resin composition in which a coloring material is dispersed for each color. After transferring the colored solidified film according to the pattern from the dry film having the colored solidified film as a main layer to the plate surface having a predetermined pattern, the colored solidified film transferred to the plate surface is further formed on the transparent substrate. A method for manufacturing a color filter, which is characterized by transferring.
【請求項】 前蚘版面が凞版のパタヌンを備えた版面
であっお、該凞版䞊に前蚘着色固化膜を転写するこずを
特城ずする請求項たたは蚘茉のカラヌフィルタの補
造方法。
3. The method for producing a color filter according to claim 1, wherein the plate surface is a plate surface having a relief pattern, and the colored solidified film is transferred onto the relief plate.
JP31303494A 1994-12-16 1994-12-16 Production of color filter Withdrawn JPH08171008A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP31303494A JPH08171008A (en) 1994-12-16 1994-12-16 Production of color filter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP31303494A JPH08171008A (en) 1994-12-16 1994-12-16 Production of color filter

Publications (1)

Publication Number Publication Date
JPH08171008A true JPH08171008A (en) 1996-07-02

Family

ID=18036419

Family Applications (1)

Application Number Title Priority Date Filing Date
JP31303494A Withdrawn JPH08171008A (en) 1994-12-16 1994-12-16 Production of color filter

Country Status (1)

Country Link
JP (1) JPH08171008A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7202007B2 (en) 2002-06-07 2007-04-10 Fujifilm Corporation Method of forming patterned films

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7202007B2 (en) 2002-06-07 2007-04-10 Fujifilm Corporation Method of forming patterned films

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