JP5905040B2 - 電気光学表示装置を形成および検査するための構成部品および方法 - Google Patents
電気光学表示装置を形成および検査するための構成部品および方法 Download PDFInfo
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- JP5905040B2 JP5905040B2 JP2014015116A JP2014015116A JP5905040B2 JP 5905040 B2 JP5905040 B2 JP 5905040B2 JP 2014015116 A JP2014015116 A JP 2014015116A JP 2014015116 A JP2014015116 A JP 2014015116A JP 5905040 B2 JP5905040 B2 JP 5905040B2
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Description
以下を順に備える製品:
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
剥離シート。
(項目2)
導電層が金属酸化物を含むことを特徴とする項目1に記載の製品。
(項目3)
導電層がインジウムスズ酸化物含むことを特徴とする項目2に記載の製品。
(項目4)
電気光学媒体が回転重クロム材媒体または電気着色媒体を含むことを特徴とする前述の項目いずれか1に記載の製品。
(項目5)
電気光学媒体が電気泳動媒体であることを特徴とする前述の項目いずれか1に記載の製品。
(項目6)
電気泳動媒体が封止電気泳動媒体であることを特徴とする項目5に記載の製品。
(項目7)
電気光学媒体と接着層とがない導電層が露出している接続領域を特徴とする前述の項目いずれか1に記載の製品。
(項目8)
接続領域が電気光学媒体と接着層とで囲まれるように、電気光学媒体と接着層とを貫通して延設する開口により接続領域を形成することを特徴とする項目7に記載の製品。
(項目9)
剥離シートを接続領域の端から端まで延設しないことを特徴とする項目7または8に記載の製品。
(項目10)
導電性材料のコンタクトパッドが接続領域内の導電層と重複していることを特徴とする項目7ないし9に記載の製品。
(項目11)
導電層と電気的に接続している導電性バイアであって、電気光学媒体層と接着層とを貫通して、あるいは越えて導電層から延設していることを特徴とする前述の項目いずれか1に記載の製品。
(項目12)
導電層から離れている導電性バイアの終端が剥離シートで覆われていないことを特徴とする項目11に記載の製品。
(項目13)
導電性バイアが、変形可能な材料から形成されていることを特徴とする項目11または12に記載の製品。
(項目14)
導電性バイアが、ポリマーマトリックスに分散している導電性粒子を含む材料から形成されていることを特徴とする項目14に記載の製品。
(項目15)
導電性材料のコンタクトパッドが導電層と導電性バイアとの間に介在していることを特徴とする項目11ないし14に記載の製品。
(項目16)
剥離シートが第二の導電層を備えることを特徴とする前述の項目いずれか1に記載の製品。
(項目17)
電気光学媒体から導電層の反対側に設けられている補助接着層を特徴とする前述の項目いずれか1に記載の製品。
(項目18)
補助接着層を覆う補助剥離シートを特徴とする項目17に記載の製品。
(項目19)
以下を順に備える製品:
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層、
製品は、電気光学媒体と接着層がない導電層が露出している接続領域を特徴とする。
(項目20)
以下を順に備える製品:
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層、
製品は、導電層と電気的に接続している導電性バイアであって、電気光学媒体層と接着層とを貫通して、あるいは越えて導電層から延設していることを特徴とする。
(項目21)
以下を順に備える電気光学表示装置:
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
少なくとも1つのピクセル電極を有するバックプレーンであって、導電層とピクセル電極との間に電位を印加することにより、電気光学媒体の光学的状態を変えることができ、バックプレーンはさらに、少なくとも1つのピクセル電極から電気的に絶縁している少なくとも1つのコンタクトパッドを備え、
表示装置は、電気光学媒体と接着層とを貫通して、あるいは越えて導電層からこのコンタクトパッドまたはコンタクトパッドの1つまで延設している少なくとも1つの導電性バイアを特徴とする。
(項目22)
以下を含む固体電気光学表示装置の製造プロセス:
以下を順に備える製造品を形成し、
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
剥離シート、
複数のピクセル電極と、ピクセル電極に可変電位を印加するよう構成された駆動手段とを備えるバックプレーンを形成し、
接着層から剥離シートを除去し、
接着層をバックプレーンに接着することにより、接着層と、電気光学媒体層と、導電層とをバックプレーンに固定する条件下で、接着層をバックプレーンに接触させる。
(項目23)
以下を含む電気光学表示装置の製造プロセス:
光透過型導電層と、固体電気光学媒体導電層と電気的に接続している層と、接着層とを順に備える前面組立体を形成し、
前面組立体の一部から電気光学媒体と接着層とを除去することにより、電気光学媒体と接着層とがない導電層が露出している接続領域を形成し、
導電性バイアを接続領域に形成し、
少なくとも1つのピクセル電極と、少なくとも1つのピクセル電極から電気的に絶縁している少なくとも1つのコンタクトパッドとを備えるバックプレーンを形成し、
接着層が、少なくとも1つのピクセル電極と少なくとも1つのコンタクトパッドと電気的に接続している導電性バイアとに隣接して配置されている電気光学媒体でバックプレーンに接着し、導電層が、導電性バイアを介して少なくとも1つのコンタクトパッドと電気的に接続しているように、前面組立体をバックプレーンに積層する。
(項目24)
以下を含む電気光学表示装置の製造プロセス:
光透過型導電層を備える基板を形成し、
基板の接続領域はコーティングしないで固体電気光学媒体を基板の一部にコーティングし、
接続領域はコーティングしないで接着層を電気光学媒体にコーティングすることにより、前面組立体を形成し、
少なくとも1つのピクセル電極と、少なくとも1つのピクセル電極から電気的に絶縁しているコンタクトパッドとを備えるバックプレーンを形成し、
接着層が、少なくとも1つのピクセル電極に隣接して配置されている電気光学媒体と、コンタクトパッドと電気的に接続している接続領域内の導電層とでバックプレーンに接着するように、前面組立体をバックプレーンに積層する。
(項目25)
以下を備える電気光学表示装置:
少なくとも1つのピクセル電極を備えるバックプレーンと、
ピクセル電極に隣接して配置された固体電気光学媒体層と、
バックプレーンから電気光学媒体の反対側に配置された光透過型電極と、
電気光学媒体から光透過型電極の反対側に配置された保護および/またはバリア層と、
周囲から電気光学媒体に材料が進入しないようにするシール材料であって、シール材料は、少なくとも電気光学媒体層の周辺の一部分に沿って配置され、保護および/またはバリア層のバックプレーンから延設している。
(項目26)
以下を備える電気光学表示装置:
少なくとも1つのピクセル電極を備えるバックプレーンと、
ピクセル電極に隣接して配置された固体電気光学媒体層と、
バックプレーンから電気光学媒体の反対側に配置された光透過型電極と、
電気光学媒体から光透過型電極の反対側に配置された電極支持体と、
光透過型電極と電極支持体とは、バックプレーンの面と平行に測定して電気光学媒体層よりも大きく、
周囲から電気光学媒体に材料が進入しないようにするシール材料であって、シール材料は、バックプレーンと光透過型電極の周辺部分との間に延設し、電気光学媒体層の周辺を越えて延設している。
(項目27)
以下を含む固体電気光学媒体を検査する方法:
以下を順に備える製造品を形成し、
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
第二の導電層を有する剥離シート、
2つの導電層の間に電位差を印加することにより、媒体上に画像を形成し、
このように形成された画像を観察する。
(項目28)
以下を含む固体電気光学媒体を検査する方法:
以下を順に備える製造品を形成し
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
剥離シート、
静電荷を剥離シートにおくことにより、画像を媒体上に形成し、
このように形成された画像を観察する。
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
剥離シート。
光透過型導電層と、固体電気光学媒体導電層と電気的に接続している層と、接着層とを順に備える前面組立体を形成し、
前面組立体の一部から電気光学媒体と接着層とを除去することにより、電気光学媒体と接着層とがない導電層が露出している接続領域を形成し、
導電性バイアを接続領域に形成し、
少なくとも1つのピクセル電極と、少なくとも1つのピクセル電極から電気的に絶縁している少なくとも1つのコンタクトパッドとを備えるバックプレーンを形成し、
接着層が、少なくとも1つのピクセル電極と少なくとも1つのコンタクトパッドと電気的に接続している導電性バイアとに隣接して配置されている電気光学媒体でバックプレーンに接着し、導電層が、導電性バイアを介して少なくとも1つのコンタクトパッドと電気的に接続しているように、前面組立体をバックプレーンに積層する。
光透過型導電層を備える基板を形成し、
基板の接続領域はコーティングしないで固体電気光学媒体を基板の一部にコーティングし、
接続領域はコーティングしないで接着層を電気光学媒体にコーティングすることにより、前面組立体を形成し、
少なくとも1つのピクセル電極と、少なくとも1つのピクセル電極から電気的に絶縁しているコンタクトパッドとを備えるバックプレーンを形成し、
接着層が、少なくとも1つのピクセル電極に隣接して配置されている電気光学媒体と、コンタクトパッドと電気的に接続している接続領域内の導電層とでバックプレーンに接着するように、前面組立体をバックプレーンに積層する。
以下を順に備える製造品を形成し、
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
第二の導電層を有する剥離シート、
2つの電気的導電層の間に電位差を印加することにより、媒体上に画像を形成し、
このように形成された画像を観察する。
以下を順に備える製造品を形成し
光透過型導電層と、
固体電気光学媒体導電層と電気的に接続している層と、
接着層と、
剥離シート、
静電荷を剥離シートにおくことにより、画像を媒体上に形成し、
このように形成された画像を観察する。
すでに示したように、本発明は、ラミネートをバックプレーンに最終的に接着する前に、ラミネートの電気光学媒体および他の構成部品を検査する方法を提供する。
Claims (4)
- 電気光学表示装置の製造に有用なサブアセンブリを形成する方法であって、
該方法は、
光透過型導電層を備える基板を提供することと、
固体電気光学材料の層を形成することであって、該固体電気光学材料は、電界の印加により第一の表示状態から第二の表示状態へと変化可能である、ことと、
該固体電気光学材料の層の上に接着剤の第一の層をコーティングすることであって、該接着剤の第一の層は、該電気光学材料の層と直接接触する、ことと、
該固体電気光学材料の層の面であって、該接着剤の以前にコーティングされた層と反対側の面に接着剤の第二の層を形成することであって、該接着剤の第二の層は、該固体電気光学材料の層と直接接触する、ことと、
該接着剤の第二の層を該光透過型導電層と接触させることと、
該接着剤の第一の層をバックプレーンと接触させることであって、該バックプレーンは、該電気光学材料の層に隣接して配置された少なくとも1つのピクセル電極と、コンタクトパッドとを備え、該コンタクトパッドは、該光透過型導電層と電気的に接触し、該少なくとも1つのピクセル電極から電気的に絶縁されている、ことと
を包含する、方法。 - 前記固体電気光学材料の層を形成することは、該固体電気光学材料の層を剥離シート上に形成することを含む、請求項1に記載の方法。
- 前記固体電気光学材料の層を形成することは、該固体電気光学材料の層を前記光透過型導電層の上に形成することを含む、請求項1に記載の方法。
- 前記接着剤の第一の層を前記バックプレーンと接触させる前に、該接着剤の第一の層の露出された表面上に剥離シートを配置することをさらに包含する、請求項1に記載の方法。
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