【発明の詳細な説明】 〔概 要〕 ディスプレイ装置などに用いられる螢光体を組合わせ
たカラー表示用のガス放電パネルに関し、 螢光体膜による輝度及び発光効率の低下や該螢光体膜
の膜厚に起因する輝度むらを容易に解消することを目的
とし、 ガス放電空間を挟んで対向する一対の絶縁基板の内の
一方に螢光体膜を設け、他方にそれぞれ隣接して対とな
る複数の電極を複数組並べて配設したパネル構成におい
て、前記他方の基板を透明基板により形成し、該基板上
の電極を透明導電膜で形成すると共に、隣接した各電極
対の相互に隣接する片側の電極間を電極引き出し用の金
属材料層により接続し、この透明導電膜と透明基板を通
して螢光体によるカラー表示光を視覚するように構成
し、また前記電極対は放電維持セルを画定する放電維持
電極対として用いられ、この放電維持電極と交差してそ
の交点部に書込み放電セルを画定する書込み電極が前記
一対の基板の何れか一方に形成される構成とする。[Description] The present invention relates to a gas discharge panel for color display in which a phosphor used in a display device or the like is combined, and a reduction in luminance and luminous efficiency due to a phosphor film and the phosphor film In order to easily eliminate uneven brightness caused by the thickness of the film, a phosphor film is provided on one of a pair of insulating substrates opposed to each other with the gas discharge space interposed therebetween, and the phosphor film is provided adjacent to the other, respectively. In a panel configuration in which a plurality of sets of electrodes are arranged and arranged, the other substrate is formed of a transparent substrate, the electrodes on the substrate are formed of a transparent conductive film, and the adjacent pairs of electrodes are adjacent to each other. The electrodes on one side are connected to each other by a metal material layer for extracting an electrode, and the transparent conductive film and the transparent substrate are configured so that color display light by a phosphor is visually recognized. The electrode pair defines a discharge sustaining cell. Discharge Used as the electrode pair, a structure in which writing electrodes defining a write discharge cell to the intersection point intersects the discharge sustain electrodes are formed on one of the pair of substrates.
 本発明はディスプレイ装置などに用いられるガス放電
パネルの改良に係り、特に螢光体を組合わせたカラー表
示用のガス放電パネルに関するものである。The present invention relates to an improvement in a gas discharge panel used for a display device or the like, and more particularly to a gas discharge panel for color display in which a phosphor is combined.
 ガス放電光を利用して文字や図形を表示するガス放電
パネルとしてDC駆動形、或いはAC駆動形の対向電極放電
型及び一方の基板側にのみ放電電極を配設した面放電型
のものが種々実用化されている。またこれらのガス放電
パネルに螢光体を組合わせ、放電時の紫外線により螢光
体を励起して所要のカラー発光表示を行うガス放電パネ
ルも既に提案されている。There are various types of gas discharge panels that display characters and figures using gas discharge light, such as DC-driven or AC-driven counter-electrode discharge types, and surface-discharge types in which discharge electrodes are provided only on one substrate side. Has been put to practical use. Further, a gas discharge panel which combines a fluorescent substance with these gas discharge panels and excites the fluorescent substance with ultraviolet rays at the time of discharge to perform a required color light emission display has already been proposed.
 このような螢光体と組合わせたカラー表示用のガス放
電パネルとしては、その構造上蛍光体のイオン衝撃によ
る劣化を防ぐ観点から面放電型のガス放電パネルが有利
であるが、螢光体膜の表面からの発光を利用してカラー
表示を行うため、輝度が低く、鮮明なカラー表示像が得
られない傾向がある。このため、高輝度で鮮明なカラー
表示像の得られパネル構造が必要とされている。As a gas discharge panel for color display combined with such a phosphor, a surface discharge type gas discharge panel is advantageous in terms of its structure from the viewpoint of preventing deterioration of the phosphor due to ion bombardment. Since color display is performed using light emission from the surface of the film, the brightness tends to be low and a clear color display image cannot be obtained. Therefore, there is a need for a panel structure capable of obtaining a clear color display image with high brightness.
 従来のカラー表示用の面放電型ガス放電パネルを第4
図に示す。このパネルは電極支持基板として機能する下
側の一方のガラス基板11上にそれぞれ隣接して対をなす
櫛歯突出部12a,13aを有する縦方向のCr−Cu−Crの三層
構造からなる放電維持電極12,13が設けられ、相互に近
接対向する櫛歯突出部12aと13aによって放電維持セルSc
が構成されている。Conventional surface discharge type gas discharge panel for color display
 Shown in the figure. This panel has a three-layer structure of vertical Cr-Cu-Cr having a pair of comb-tooth protrusions 12a and 13a adjacent to each other on one lower glass substrate 11 functioning as an electrode support substrate. Sustain electrodes 12 and 13 are provided, and discharge sustain cells Sc are provided by
 Is configured.
 またこれら放電維持電極対12と13の上に低融点ガラス
などの絶縁膜14を介して横方向の書込み電極(アドレス
電極)15及び壁電荷干渉防止用の電荷障堤16が配設され
ている。これら書込み電極15と放電維持電極対の何れか
一方(図示の場合12)との交点部には書込み放電セルWc
が構成される。そして該書込み電極15及び電荷障堤16上
に図示しない酸化マグネシウム(MgO)などからなる表
面薄膜が施されている。On these discharge sustaining electrode pairs 12 and 13, a horizontal writing electrode (address electrode) 15 and a charge barrier 16 for preventing wall charge interference are disposed via an insulating film 14 such as low melting point glass. . At the intersection of one of these address electrodes 15 and one of the sustain electrode pairs (12 in the figure), the address discharge cell Wc
 Is configured. Then, a surface thin film made of, for example, magnesium oxide (MgO) (not shown) is provided on the write electrode 15 and the charge barrier 16.
 またこの電極支持基板11に対向するカバー用の上側の
他方のガラス基板21の内面には、前記放電維持電極12,1
3の櫛歯突起部12a,13a間に定まる放電維持セルを画定す
るメッシュ状のセル層22が配設され、そのセル層22で囲
まれた区画内にカラー表示用の螢光体膜23が被着されて
いる。On the inner surface of the other upper glass substrate 21 for the cover facing the electrode support substrate 11, the discharge sustaining electrodes 12, 1 are provided.
 A mesh-shaped cell layer 22 that defines a discharge sustaining cell defined between the third comb-shaped projections 12a and 13a is provided, and a phosphor film 23 for color display is provided in a section surrounded by the cell layer 22. Has been adhered.
 このようにして形成された前記電極支持基板11とカバ
ー用基板21とは、その周囲を気密に封止し、かつそのガ
ス封入空間に放電用ガスが封入されて、ガス放電パネル
が完成する。The periphery of the thus formed electrode supporting substrate 11 and cover substrate 21 is hermetically sealed, and a discharge gas is sealed in the gas sealing space to complete a gas discharge panel.
 そしてカラー表示は、選択された書込み放電セルWcに
書込み放電を発生させた後、この放電を隣接する維持放
電セルScに引継がせ、その維持放電による紫外線によ
り、対応する螢光体膜23が部分的に励起されて、カバー
用基板21面を通してカラー発光表示が観察できる。Then, in the color display, after the address discharge is generated in the selected address discharge cell Wc, the discharge is taken over by the adjacent sustain discharge cell Sc, and the corresponding phosphor film 23 is partially irradiated with the ultraviolet light by the sustain discharge. Is excited and the color light emission display can be observed through the surface of the cover substrate 21.
 なお、書込み電極15をカバー用基板21側に設ければ書
き込み放電を対向放電形式で行うガス放電パネルとして
構成できる。If the write electrode 15 is provided on the side of the cover substrate 21, it can be configured as a gas discharge panel that performs a write discharge in a counter discharge format.
 上記従来のカラー表示用ガス放電パネルでは、螢光体
膜23が被着されたカバー用基板21側が画像観察(視覚)
面であるため、該螢光体膜23による発光が当該蛍光体膜
を透過する時の減衰により輝度が低下し、発光効率が悪
くなる。また螢光体膜23の膜厚の不均一による透過損失
の差から輝度むらが生じる等、鮮明なカラー表示像が得
られないという問題があった。In the above-described conventional gas discharge panel for color display, the image of the cover substrate 21 on which the phosphor film 23 is adhered is observed (visual).
 Since the surface is a surface, the light emitted by the phosphor film 23 is attenuated when passing through the phosphor film, so that the luminance is reduced and the luminous efficiency is deteriorated. In addition, there is a problem that a clear color display image cannot be obtained, for example, luminance unevenness occurs due to a difference in transmission loss due to uneven thickness of the phosphor film 23.
 本発明は上記した従来の問題点に鑑み、螢光体膜によ
る輝度、発光効率の低下や螢光体膜の膜厚に起因する輝
度むらを解消した新規なカラー発光表示用のガス放電パ
ネルを提供することを目的とするものである。In view of the above-mentioned conventional problems, the present invention provides a novel gas discharge panel for color light emission display which has reduced luminance and luminous efficiency due to the phosphor film and luminance unevenness due to the thickness of the phosphor film. It is intended to provide.
 上記目的を達成するため、本発明では放電維持電極対
を配設する一方の基板を視覚側とし、この基板を透明基
板で形成すると共に、この上に透明導電膜により放電維
持電極を形成し、かつ隣接した各放電維持電極対の相互
に隣接する片側の放電維持電極間を、電極引き出し用の
金属材料層により接続した構成を採用している。In order to achieve the above object, in the present invention, one of the substrates on which the discharge sustaining electrode pairs are disposed is regarded as a visual side, and this substrate is formed of a transparent substrate, and a discharge sustaining electrode is formed thereon with a transparent conductive film, In addition, a configuration is adopted in which one adjacent sustaining electrode of each adjacent sustaining electrode pair is connected by a metal material layer for leading out the electrode.
 上記したように透明な放電維持電極対が配置された基
板を表示観察面とすることにより、それら電極対による
放電時の対向側基板面の螢光体の励起発光が直接視認で
き、従って発光効率及び輝度が向上し、鮮明なカラー発
光表示が実現できる。By using the substrate on which the transparent discharge sustaining electrode pairs are disposed as the display observation surface as described above, the excitation light emission of the phosphor on the opposing substrate surface at the time of discharge by these electrode pairs can be directly visually recognized, and thus the luminous efficiency Also, the brightness is improved, and a clear color light emission display can be realized.
 また対となる複数の放電維持電極をITO(Indium Tin
Oxide)などからなる透明導電膜で形成すると、電極抵
抗が高くなると共に、電極形成時の熱サイクルにより断
線し易くなる不都合があるが、これらの問題は各放電維
持電極対の互いに隣接する片側の放電維持電極間を接続
した電極引き出し用金属材料層の存在により解消でき
る。In addition, a plurality of discharge sustaining electrodes to be paired are connected to ITO (Indium Tin
 Oxide) and the like, there is a disadvantage that the electrode resistance is increased and the wires are easily disconnected due to a heat cycle at the time of forming the electrodes. This can be solved by the presence of the electrode leading metal material layer connecting the discharge sustaining electrodes.
 以下図面を用いて本発明の実施例について詳細に説明
する。Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings.
 第1図は放電維持電極対が配設された視覚側の基板
(電極支持基板)を示す要部斜視図であり、第4図の従
来例と同等部分には同一符号を付している。FIG. 1 is a perspective view of a main part showing a visual side substrate (electrode supporting substrate) on which a discharge sustaining electrode pair is provided, and the same reference numerals are given to the same parts as those in the conventional example of FIG.
 この図で示す実施例が第4図の従来例と異なる点は、
電極支持基板11が透明ガラス基板からなり、その上に配
列する複数組の放電維持電極31i,32j(i,jは正の整数)
がITO(Indium Tin Oxide)などを薄膜形成技法により
形成した透明導電膜からなり、その上に積層する絶縁膜
14が透明な誘電体材料(例えば低融点ガラス)から形成
され、更にその透明な各放電維持電極対31i,32jの相互
に隣接する片方の放電維持電極、例えば321と312間とを
金(Au)等の厚膜の金属材料層33により図示の如く短絡
したことである。The difference between the embodiment shown in this figure and the conventional example shown in FIG.
 The electrode support substrate 11 is formed of a transparent glass substrate, and a plurality of sets of discharge sustaining electrodes 31i and 32j arranged thereon (i and j are positive integers)
 Consists of a transparent conductive film made of ITO (Indium Tin Oxide) etc. by a thin film formation technique, and an insulating film laminated on it
 14 is formed of a transparent dielectric material (for example, low-melting glass), and one of the transparent sustaining electrode pairs 31i and 32j adjacent to each other, for example, between the electrodes 321 and 312 is made of gold (Au). ) Is short-circuited as shown in FIG.
 この金属材料層33は短絡(接続)した2本の放電維持
電極321,312の外部駆動回路に対する電極引き出し線で
あると共に、両電極の抵抗値を下げる機能、並びに電極
形成時の熱サイクルに起因して生じた断線の修復機能を
持つ。The metal material layer 33 serves as an electrode lead line for the external drive circuit of the two short-circuited (connected) sustaining electrodes 321 and 312, and has a function of lowering the resistance value of both electrodes and a thermal cycle at the time of electrode formation. It has a function to repair the disconnection that has occurred.
 第2図はこのように構成した電極支持基板11とカバー
用基板21とをガス放電空間を介して対向配置した際の要
部断面図を示すが、本実施例の特徴に従って当該電極支
持基板11を視覚側、即ち表示観察面にしている。17は前
記書込み電極15及び図示しない電荷障堤上に被覆された
MgO等からなる表面薄膜である。FIG. 2 is a cross-sectional view of a main part when the electrode supporting substrate 11 and the cover substrate 21 configured as described above are arranged to face each other via a gas discharge space. Is the visual side, that is, the display observation surface. 17 is coated on the write electrode 15 and a charge obstacle (not shown)
 This is a surface thin film made of MgO or the like.
 このようなパネル構成において選択された放電維持セ
ルに放電を発生させるには、従来例と同様に当該選択維
持セルに隣接する書込み放電セルに書込み放電を発生さ
せる。この時、電極引き出し用金属材料層33に電圧パル
スが印加される関係上、隣の非選択維持放電セルに関連
の書込み放電セルに対しても同時に放電が生じるが、こ
の書込み放電は電圧パルスが印加されている選択維持放
電セルにのみ継続される。この選択維持放電セルの放電
によって、カバー用基板21に設けた螢光体23が励起され
カラー表示光を発生し、透明な電極支持基板11の表示観
察面に直接カラー表示を現出する。In order to generate a discharge in the selected sustain cell in such a panel configuration, an address discharge is generated in an address discharge cell adjacent to the selected sustain cell as in the conventional example. At this time, because a voltage pulse is applied to the electrode lead-out metal material layer 33, a discharge is simultaneously generated in the address discharge cell related to the adjacent non-selective sustain discharge cell. The operation is continued only for the selected sustain discharge cells that are being applied. By the discharge of the selective sustaining discharge cells, the phosphor 23 provided on the cover substrate 21 is excited to generate color display light, so that color display appears directly on the display observation surface of the transparent electrode support substrate 11.
 従って、観察者は高輝度で、かつ鮮明なカラー表示を
視覚認識することができる。因みに不透明な金属材料層
33及び書込み電極15は、維持放電光の周辺部分を遮蔽し
てシャープな表示スポットを形成する作用効果がある。Therefore, the observer can visually recognize a high brightness and clear color display. By the way opaque metal material layer
 33 and the write electrode 15 have an effect of blocking the peripheral portion of the sustain discharge light to form a sharp display spot.
 第3図は書込み放電を対向放電形式で行う面放電型ガ
ス充電パネルに本発明を実施した例を示す要部断面図で
ある。FIG. 3 is a sectional view of an essential part showing an example in which the present invention is applied to a surface discharge type gas charging panel in which address discharge is performed in a counter discharge type.
 このパネルが前述した第2図の面放電形式で書込み放
電を行う面放電型ガス放電パネルと異なる点は、書込み
電極15が螢光体膜23を形成する側の他方のガラス基板21
に設けられ、その書込み電極15には誘電体材料からなる
絶縁膜41が被覆され、この絶縁膜41上に螢光体膜23が形
成された点である。This panel is different from the surface discharge type gas discharge panel which performs the address discharge in the above-described surface discharge type shown in FIG. 2 in that the address electrode 15 is formed on the other glass substrate 21 on the side where the phosphor film 23 is formed.
 The writing electrode 15 is covered with an insulating film 41 made of a dielectric material, and the phosphor film 23 is formed on the insulating film 41.
 なお、他方のガラス基板11側の各放電維持電極対31i,
31jに対する前記書込み電極15及び螢光体膜23の投影的
な位置は前記第1図及び第2図で示す面放電型ガス放電
パネルと変わりはない。またこのパネルでは単位放電セ
ルをより確実に画定するために、セル層22,42が両側の
ガラス基板11,21に設けられ、それぞれ対となる書込み
放電セルと放電電極維持セルとを単一のガス空間内に形
成している。The respective sustain electrode pairs 31i on the other glass substrate 11 side,
 The projected positions of the write electrode 15 and the phosphor film 23 with respect to 31j are the same as those of the surface discharge type gas discharge panel shown in FIGS. Also, in this panel, in order to more reliably define the unit discharge cells, cell layers 22 and 42 are provided on the glass substrates 11 and 21 on both sides, and a pair of a write discharge cell and a discharge electrode sustaining cell are formed as a single unit. It is formed in the gas space.
 従って、かかる構成のガス放電パネルにおいても、カ
ラー表示光は透明な一方のガラス基板11を通して直接観
察できるので、高輝度で、かつ鮮明なカラー表示を現出
できる。しかも書込み電極15は蛍光体膜の下にあってカ
ラー表示光を全く遮らないので、第2図に示す実施例の
ガス放電パネルよりも高い輝度及び鮮明度を得ることが
できる。Therefore, also in the gas discharge panel having such a configuration, the color display light can be directly observed through the transparent one glass substrate 11, so that a bright and clear color display can be realized. In addition, since the writing electrode 15 is under the phosphor film and does not block the color display light at all, it is possible to obtain higher brightness and definition than the gas discharge panel of the embodiment shown in FIG.
 以上の説明から明らかなように、本発明に係るガス放
電パネルの構造によれば、螢光体膜の励起による発光を
該螢光体膜中を通さずに、視覚側に位置する対向側のそ
れぞれ透明な各放電維持電極対、絶縁層及びガラス基板
を通して直接観察するので、発光効率及び輝度が向上
し、鮮明なカラー発光表示が可能となる等、実用上の効
果は大きい。As is apparent from the above description, according to the structure of the gas discharge panel according to the present invention, the light emission caused by the excitation of the phosphor film does not pass through the phosphor film, and the light is emitted from the opposite side located on the visual side. Since direct observation is performed through each transparent discharge sustaining electrode pair, insulating layer, and glass substrate, the luminous efficiency and luminance are improved, and a clear color light-emitting display is possible.
 第1図は本発明を適用した面放電型ガス放電パネルにお
ける視覚側ガラス基板の電極構成を示す要部斜視図、 第2図は本発明の上記面放電型ガス放電パネルを示す要
部断面図、 第3図は本発明を適用した書込み放電を対向放電形式で
行う面放電型ガス放電パネルを示す要部断面図、 第4図は従来のカラー表示用の面放電型ガス放電パネル
を説明するための要部分解斜視図である。 第1図乃至第3図において、 11は一方のガラス基板、14,41は絶縁膜、15は書込み電
極、21は他方のガラス基板、22,42はセル層、23は螢光
体膜、31i,32jは放電維持電極、31ia,32jaは櫛歯突出
部、33は電極引き出し用金属材料層をそれぞれ示す。FIG. 1 is a perspective view of a main part showing an electrode configuration of a visual side glass substrate in a surface discharge type gas discharge panel to which the present invention is applied, and FIG. 2 is a cross-sectional view of a main part showing the above surface discharge type gas discharge panel of the present invention. FIG. 3 is a cross-sectional view of a main part of a surface discharge type gas discharge panel which performs address discharge according to the present invention in a counter discharge type, and FIG. 4 illustrates a conventional surface discharge type gas discharge panel for color display. FIG. 3 is an exploded perspective view of a main part for the embodiment. 1 to 3, 11 is one glass substrate, 14 and 41 are insulating films, 15 is a write electrode, 21 is the other glass substrate, 22 and 42 are cell layers, 23 is a phosphor film, 31i , 32j are discharge sustaining electrodes, 31ia, 32ja are comb-tooth protrusions, and 33 is an electrode leading metal material layer.
───────────────────────────────────────────────────── フロントページの続き (58)調査した分野(Int.Cl.6,DB名) H01J 11/00 - 11/02 H01J 17/49 H01J 17/04──────────────────────────────────────────────────続 き Continued on the front page (58) Field surveyed (Int.Cl.6 , DB name) H01J 11/00-11/02 H01J 17/49 H01J 17/04
| Application Number | Priority Date | Filing Date | Title | 
|---|---|---|---|
| JP63304509AJP2917279B2 (en) | 1988-11-30 | 1988-11-30 | Gas discharge panel | 
| Application Number | Priority Date | Filing Date | Title | 
|---|---|---|---|
| JP63304509AJP2917279B2 (en) | 1988-11-30 | 1988-11-30 | Gas discharge panel | 
| Application Number | Title | Priority Date | Filing Date | 
|---|---|---|---|
| JP27246195ADivisionJP2845183B2 (en) | 1995-10-20 | 1995-10-20 | Gas discharge panel | 
| Publication Number | Publication Date | 
|---|---|
| JPH02148645A JPH02148645A (en) | 1990-06-07 | 
| JP2917279B2true JP2917279B2 (en) | 1999-07-12 | 
| Application Number | Title | Priority Date | Filing Date | 
|---|---|---|---|
| JP63304509AExpired - LifetimeJP2917279B2 (en) | 1988-11-30 | 1988-11-30 | Gas discharge panel | 
| Country | Link | 
|---|---|
| JP (1) | JP2917279B2 (en) | 
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