US2004095542A1PendingUtilityA1

In-plane switching type liquid crystal display devices with increased cell gap and methods of fabrication therefor

Priority: Oct 22, 1996Filed: Nov 7, 2003Published: May 20, 2004
Est. expiryOct 22, 2016(expired)· nominal 20-yr term from priority
G02F 1/134363G02F 1/133528G02F 1/137
39
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Claims

Abstract

An in-plane switching type liquid crystal display device includes opposed first and second panels, defining a gap therebetween, the first and second panels including first and second electrodes, spaced laterally apart in the gap. A quantity of a liquid crystal material is disposed in the gap between the first and second panels, wherein a product of a refractive anisotropy of the liquid crystal material and the gap between the first and second panels is in a range between 0.36 μm and 0.45 μm. Preferably, the gap between the first and second panels is in a range between 4 μm and 5 μm, and the refractive anisotropy is in a range between 0.067 and 1.1016. Each of panels preferably has an alignment surface which is operative to align molecules of the liquid crystal material along an alignment direction, and a polarizer, attached to one of the first and second panels, selectively permits light having a polarization of 45° with respect to the alignment direction to pass through the quantity of liquid crystal material. Related fabrication methods are also described.

Claims

exact text as granted — not AI-modified
That which is claimed is:  
     
         1 . An in-plane switching type liquid crystal display device, comprising: 
 opposed first and second panels, defining a gap therebetween, said first and second panels including first and second electrodes, spaced laterally apart in said gap; and    a quantity of a liquid crystal material disposed in said gap between said first and second panels, wherein a product of a refractive anisotropy of said liquid crystal material and said gap between said first and second panels is in a range between 0.36 μm and 0.45 μm.    
     
     
         2 . A device according to  claim 1 , wherein said gap is in a range between 4 μm and 5 μm.  
     
     
         3 . A device according to  claim 2 , wherein said gap is approximately 4.5 μm.  
     
     
         4 . A device according to  claim 1 , wherein said refractive anisotropy is in a range between 0.067 and 1.1016.  
     
     
         5 . A device according to  claim 4 , wherein said refractive anisotropy is one of approximately 1.1016, approximately 0.077 or approximately 0.067.  
     
     
         6 . A device according to  claim 2 , wherein said refractive anisotropy is in a range between 0.067 and 1.1016.  
     
     
         7 . A device according to  claim 6 , wherein said refractive anisotropy is one of approximately 1.1016, approximately 0.077 or approximately 0.067.  
     
     
         8 . A device according to  claim 1 , wherein each of panels has an alignment surface which is operative to align molecules of said liquid crystal material along an alignment direction, and further comprising a polarizer, attached to said opposed first and second panels, which selectively permits light having a polarization of 45° with respect to said alignment direction to pass through said quantity of liquid crystal material.  
     
     
         9 . A device according to  claim 2 , wherein each of said panels has an alignment surface which is operative to align molecules of said liquid crystal material along an alignment direction, and further comprising a polarizer, attached to said opposed first and second panels, which selectively permits light having a polarization of 45° with respect to said alignment direction to pass through said quantity of liquid crystal material.  
     
     
         10 . A device according to  claim 4 , wherein each of said panels has an alignment surface which is operative to align molecules of said liquid crystal material along an alignment direction, and further comprising a polarizer, attached to said opposed first and second panels, which selectively permits light having a polarization of 45° with respect to said alignment direction to pass through said quantity of liquid crystal material.  
     
     
         11 . A device according to  claim 6 , wherein each of said panels has an alignment surface which is operative to align molecules of said liquid crystal material along an alignment direction, and further comprising a polarizer, attached to said opposed first and second panels, which selectively permits light having a polarization of 45° with respect to said alignment direction to pass through said quantity of liquid crystal material.  
     
     
         12 . A method of forming an in-plane switching type liquid crystal display device, the method comprising the steps of: 
 forming opposed first and second panels, defining a gap therebetween, the first and second panels including first and second electrodes, spaced laterally apart in the gap; and    placing a quantity of a liquid crystal material in the gap between the first and second panels, wherein a product of a refractive anisotropy of the liquid crystal material and the gap between the first and second panels is in a range between 0.36 μm and 0.45 μm.    
     
     
         13 . A method according to  claim 12 , wherein the gap between the first and second panels is in a range between 4 μm and 5 μm.  
     
     
         14 . A method according to  claim 13 , wherein the gap is approximately 4.5 μm.  
     
     
         15 . A method according to  claim 12 , wherein the refractive anisotropy is in a range between 0.067 and 1.1016.  
     
     
         16 . A method according to  claim 15 , wherein the refractive anisotropy is one of approximately 1.1016, approximately 0.077 or approximately 0.067.  
     
     
         17 . A method according to  claim 13 , wherein the refractive anisotropy is in a range between 0.067 and 1.1016.  
     
     
         18 . A method according to  claim 17 , wherein the refractive anisotropy is one of approximately 1.1016, approximately 0.077 or approximately 0.067.  
     
     
         19 . A method according to  claim 12 , wherein said step of forming first and second panels comprises the step of forming first and second alignment surfaces on the first and second panels, respectively, each of the first and second alignment surfaces being operative to align molecules of the liquid crystal material along an alignment direction, and further comprising the step of forming a polarizer, attached to one of the first and second panels, which selectively permits light having a polarization of 45° with respect to the alignment direction to pass through the quantity of liquid crystal material.

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