IP Library Granted Patent US 8,262,239
Granted Patent B2
US 8,262,239 · App. 12/905,648 · Granted Sep 11, 2012

Display filter having a great EM-radiation shielding effect and display apparatus including the same

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Quick Facts
Patent No.
US 8,262,239
App. No.
12/905,648
Granted
Sep 11, 2012
Kind
B2
Abstract

A display filter and a display apparatus including the display filter increase a contrast ratio, increase brightness, and have a great electromagnetic (EM) radiation-shielding effect. The display filter includes a filter base and an external light-shielding layer formed on a surface of the filter base. The external light-shielding layer includes a base substrate including a transparent resin and light-shielding patterns spaced apart on a surface of the base substrate at predetermined intervals, and including a conductive material.

Claims (19)

1. A display filter comprising:

a filter base; and

an external light-shielding layer formed on a surface of the filter base, wherein the external light-shielding layer comprises a base substrate including a transparent resin and light-shielding patterns spaced apart on a surface of the base substrate at predetermined intervals, and including a conductive material; and

an electrode pattern disposed at both ends of the light-shielding patterns to be substantially perpendicular to the light-shielding pattern, thereby connecting the light-shielding patterns, wherein

the filter base comprises an electromagnetic (EM) radiation-shielding layer including a multi-layered transparent conductive film formed by stacking a metal thin film and a transparent thin film having a high refractive index.

2. The display filter of claim 1 , wherein the EM radiation-shielding layer comprises two or three multi-layered transparent conductive films being continuously stacked on each other.

3. The display filter of claim 2 , wherein the EM radiation-shielding layer comprises a multi-layered structure where one to three multi-layered transparent conductive films are formed by continuously stacking a niobium oxide film and a silver thin film, and the niobium oxide film is formed on the multi-layered structure.

4. A display apparatus comprising:

the display filter of any one of claims 1 , 2 and 3 .

5. A display filter comprising:

a filter base comprising an electromagnetic (EM) radiation-shielding layer including a multi-layered transparent conductive film formed by stacking a metal thin film and a transparent thin film having a high refractive index;

an external light-shielding layer formed on a surface of the filter base, wherein the external light-shielding layer comprises a base substrate including a transparent resin and light-shielding patterns spaced apart on a surface of the base substrate at predetermined intervals, and including a conductive material; and

an electrode pattern disposed at both ends of the light-shielding patterns to be substantially perpendicular to the light-shielding pattern, thereby connecting the light-shielding patterns,

wherein the light-shielding pattern comprises at least one material selected from the group consisting of metal, carbon, and a conductive polymeric material.

6. The display filter of claim 5 , wherein the EM radiation-shielding layer comprises two or three multi-layered transparent conductive films continuously stacked on each other.

7. The display filter of claim 5 , wherein the EM radiation-shielding layer comprises a multi-layered structure where one to three multi-layered transparent conductive films are formed by continuously stacking a niobium oxide film and a silver thin film, and the niobium oxide film is formed on the multi-layered structure.

8. A display apparatus comprising:

the display filter of any one of claims 5 through 7 .

9. The display filter of claim 1 or 5 , wherein the electrode pattern is disposed only at the both ends of the light-shielding patterns to be substantially perpendicular to an extension direction of the light-shielding patterns.