US2003186018A1PendingUtilityA1

Organic electro-luminescent display panel and method for manufacturing same

Priority: Dec 28, 1999Filed: Mar 21, 2003Published: Oct 2, 2003
Est. expiryDec 28, 2019(expired)· nominal 20-yr term from priority
H10K 59/874H10K 59/8722H10K 59/8051Y10T428/23Y10T428/24777H01J 1/304H05B 33/10Y10T428/239H05B 33/04Y10S428/917H10K 59/00H10K 50/846
39
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Claims

Abstract

An organic electro-luminescent display panel and a method of manufacturing same are provided which are capable of reliably holding a hygroscopic agent in its sealing cap in a uniform and thin state and of being easily manufactured and of being configured to be of a thin-profile type, without sacrificing light-emitting characteristics and display contrast. The organic electro-luminescent display panel is constructed of a transparent insulating substrate, an organic electro-luminescent device formed on the transparent insulating substrate and a sealing cap to make up sealed space hermetically containing the organic electro-luminescent device in cooperation with the insulating substrate. The hygroscopic agent is enclosed hermetically in the sealed space and is of a powder or grain type, which is sandwiched between the sealing cap and an air-permeable sheet.

Claims

exact text as granted — not AI-modified
What is claimed is:  
     
         1 . An organic electro-luminescent display panel comprising: 
 a transparent insulating substrate;    an organic electro-luminescent device formed on said transparent insulating substrate;    a sealing cap to make up sealed space hermetically containing said organic electro-luminescent device in cooperation with said transparent insulating substrate; and    wherein hygroscopic agent is enclosed hermetically in said sealed space and disposed in a manner to be sandwiched between said sealing cap and an air-permeable sheet.    
     
     
         2 . The organic electro-luminescent display panel according to  claim 1 , wherein a gluing agent layer to which said hygroscopic agent is stuck is mounted on an inside surface of, at least, either of said sealing cap or said air-permeable sheet.  
     
     
         3 . The organic electro-luminescent display panel according to  claim 1 , wherein said hygroscopic agent is of a powder or grain type.  
     
     
         4 . The organic electro-luminescent display panel according to  claim 1 , wherein said air-permeable sheet is a dark color sheet.  
     
     
         5 . The organic electro-luminescent display panel according to  claim 4 , wherein said air-permeable sheet is an ultraviolet-ray blocking sheet.  
     
     
         6 . The organic electro-luminescent display panel according to  claim 1 , wherein said hygroscopic agent is stuck to said air-permeable sheet with an adhesive sandwiched between said hygroscopic agent and said air-permeable sheet.  
     
     
         7 . The organic electro-luminescent display panel according to  claim 6 , wherein said gluing agent layer is mounted on a main surface of said air-permeable sheet being opposite to said sealing cap and wherein said hygroscopic agent in powder or grain form is stuck to said air-permeable sheet with a region of said gluing agent layer other than its edge region sandwiched between said hygroscopic agent and said air-permeable sheet while said air-permeable sheet is bonded to said sealing cap with said edge region of said gluing agent layer sandwiched between said air-permeable sheet and said sealing cap.  
     
     
         8 . A method for manufacturing an organic electro-luminescent display panel to produce said organic electro-luminescent display panel provided with a transparent insulating substrate, an organic electro-luminescent device formed on said transparent insulating substrate and a sealing cap hermetically containing said organic electro-luminescent device to form sealed space enclosing hygroscopic agent in cooperation with said transparent insulating substrate, said method comprising: 
 a process of preparing an air-permeable sheet provided with a gluing agent layer covered with released paper on its surface;    a process of partitioning a region of said gluing agent layer into a first gluing agent region for sticking said hygroscopic agent in powder or grain form and second gluing agent region for bonding said air-permeable sheet to said sealing cap;    a process of peeling off a portion of said released paper covering said first gluing agent region to expose said first gluing agent region and sticking said hygroscopic agent in powder or grain form to exposed said first gluing agent region; and    a process of peeling off a remaining portion of said released paper to expose said second gluing agent region and bonding said air-permeable sheet with said hygroscopic agent being stuck to said sealing cap with exposed said second gluing agent region sandwiched between said air-permeable sheet and said sealing cap.    
     
     
         9 . A method for manufacturing an organic electro-luminescent display panel to produce said organic electro-luminescent display panel provided with a transparent insulating substrate, an organic electro-luminescent device formed on said transparent insulating substrate and a sealing cap hermetically containing said organic electro-luminescent device to form sealed space enclosing hygroscopic agent in cooperation with said transparent insulating substrate, said method comprising: 
 a process of preparing an air-permeable sheet with a gluing agent layer mounted on a surface of said air-permeable sheet;    a process of partitioning a region of said gluing agent layer into a first gluing agent region for sticking said hygroscopic agent in powder or grain form and second gluing agent region for bonding said air-permeable sheet to said sealing cap;    a process of holding a mold member to said second gluing agent region with said first gluing agent region being left exposed and sticking said hygroscopic agent on exposed said first gluing agent region to said first gluing agent region; and    a process of making said second gluing agent region exposed by removing said mold member and bonding said air-permeable sheet with said hygroscopic agent stuck to said sealing cap with exposed said second gluing agent region sandwiched between said air-permeable sheet and said sealing cap.    
     
     
         10 . The method for manufacturing the organic electro-luminescent display panel according to  claim 8 , wherein edge region of said gluing agent layer is used as said second gluing agent region and remaining region of said gluing agent layer other than said edge region is used as said first gluing agent region.  
     
     
         11 . The method for manufacturing the organic electro-luminescent display panel according to  claim 9 , wherein edge region of said gluing agent layer is used as said second gluing agent region and remaining region of said gluing agent layer other than said edge region is used as said first gluing agent region.  
     
     
         12 . The method for manufacturing the organic electro-luminescent display panel according to  claim 8 , wherein a demarcation line is provided by giving a break to said released paper covering said gluing agent layer to partition said region of said gluing agent layer into said first gluing agent region and said second gluing agent region.  
     
     
         13 . The method for manufacturing the organic electro-luminescent display panel according to  claim 8 , wherein, after said air-permeable sheet to which said hygroscopic agent in powder or grain form is stuck has been bonded to said sealing cap, said sealing cap is junctioned, in an atmosphere of inert gas, to said transparent insulating substrate by using an ultraviolet setting adhesive sandwiched between said sealing cap and said transparent insulating substrate.  
     
     
         14 . The method for manufacturing the organic electro-luminescent display panel according to  claim 9 , wherein, after said air-permeable sheet to which said hygroscopic agent in powder or grain form is stuck has been bonded to said sealing cap, said sealing cap is junctioned, in an atmosphere of inert gas, to said transparent insulating substrate by using an ultraviolet setting adhesive sandwiched between said sealing cap and said transparent insulating substrate.

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