Claims
- 1. An electromagnetic-wave shielding and light transmitting plate having at least an electromagnetic-wave shielding film and a transparent substrate which are laminated and united, wherein
said electromagnetic-wave shielding film comprising a transparent substrate film and a conductive foil which is bonded to the transparent substrate side surface of said substrate film with a transparent adhesive agent, and is applied with pattern etching, said foil has a light absorbing layer for antireflection on the substrate film side surface thereof, and the substrate film side surface of said light absorbing layer is treated by surface roughening.
- 2. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 1, wherein said electromagnetic-wave shielding film is bonded on the conductive foil side surface thereof to said transparent substrate with a thermosetting resin.
- 3. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 2, wherein said thermosetting resin is a cross-linkable thermosetting resin containing cross linking agent.
- 4. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 2 or 3, wherein said thermosetting resin after hardened has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 5. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 1, wherein said electromagnetic-wave shielding film is bonded on the conductive foil side surface thereof to the transparent substrate with a transparent pressure-sensitive adhesive.
- 6. An electromagnetic-wave shielding and light transmitting plateas claimed in claim 5, wherein the transparent pressure-sensitive adhesive is directly applied on the surface of the pattern-etched conductive foil on said electromagnetic-wave shielding film.
- 7. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 5 or 6, wherein said transparent pressure-sensitive adhesive has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 8. An electromagnetic-wave shielding and light transmitting plate having at least an electromagnetic-wave shielding film and a transparent substrate which are laminated and united, wherein
said electromagnetic-wave shielding film comprising a transparent substrate film and a conductive foil which is bonded to a surface opposite to the transparent substrate side surface of said substrate film with a transparent adhesive agent, and is applied with pattern etching, said foil has a light absorbing layer for antireflection on a surface opposite to the substrate film side surface thereof, and the surface opposite to the substrate film side surface of said light absorbing layer is treated by surface roughening.
- 9. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 8, wherein said electromagnetic-wave shielding film has a coating layer formed by applying a transparent pressure-sensitive adhesive on the surface of the pattern-etched conductive foil thereon.
- 10. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 9, wherein said transparent pressure-sensitive adhesive has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 11. An electromagnetic-wave shielding and light transmitting plate as claimed in any one of claims 1 through 10, wherein the surface roughness Rz of the roughened surface of the light absorbing layer is in a range from 0.1 to 20 μm.
- 12. An electromagnetic-wave shielding and light transmitting plate as claimed in any one of claims 1 through 11, wherein said electromagnetic-wave shielding and light transmitting plate comprises a laminated body formed by laminating and uniting a single piece of the transparent substrate, an antireflection film as the front-most layer, said electromagnetic-wave shielding film, and a near-infrared ray blocking film.
- 13. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 12, wherein said electromagnetic-wave shielding and light transmitting plate comprises a laminated body formed by laminating and uniting a single piece of the transparent substrate, the antireflection film as the front-most layer, said electromagnetic-wave shielding film between the transparent substrate and the antireflection film, and the near-infrared ray blocking film.
- 14. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 12 or 13, wherein a first conductive tape is bonded to and wound around the peripheral ends of the electromagnetic-wave shielding film to extend from one surface to the other surface of the electromagnetic-wave shielding film,
the peripheries of said antireflection film are at least partially back off from the peripheries of said electromagnetic-wave shielding film, and a second conductive tape is bonded to said laminated body to extend from edge portions of the front-most surface to edge portions of the rear-most surface through the peripheral ends of said laminated body.
- 15. An electromagnetic-wave shielding and light transmitting plate as claimed in claim 13, wherein a first conductive tape is bonded to and wound around the peripheral ends of said transparent substrate and the electromagnetic-wave shielding film bonded to the transparent substrate to extend from the front surface of the electromagnetic-wave shielding film to the rear surface of the transparent substrate,
at least a portion of the peripheries of said antireflection film is back off from the corresponding periphery of said electromagnetic-wave shielding film, and a second conductive tape is bonded to said laminated body to extend from edge portions of the front-most surface to edge portions of the rear-most surface through the peripheral ends of said laminated body.
- 16. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate by laminating and uniting at least an electromagnetic-wave shielding film and a transparent substrate, comprising
a step of forming a light absorbing layer on one surface of a conductive foil; a step of treating a surface of said light absorbing layer by surface roughening; a step of bonding the conductive foil with the light absorbing layer to a transparent substrate film by transparent adhesive agent; a step of pattern etching the conductive foil with the light absorbing layer bonded on said substrate film; a step of forming a coating layer by applying a transparent pressure-sensitive adhesive on the etched surface of the electromagnetic-wave shielding film obtained by the pattern etching; and a step of attaching the coating layer of said electromagnetic-wave shielding film to the transparent substrate with pressure so as to laminate and unite said electromagnetic-wave shielding film and said transparent substrate.
- 17. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in claim 16, wherein the thickness of the coating layer of said transparent pressure-sensitive adhesive is from 1 to 100 μm.
- 18. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in claim 16 or 17, wherein said electromagnetic-wave shielding film is directly bonded to said transparent substrate.
- 19. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in any one of claims 16 through 18, wherein said transparent pressure-sensitive adhesive has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 20. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in any one of claims 16 through 19, wherein the surface roughness Rz of the roughened surface of the light absorbing layer is preferably in a range from 0.1 to 20 μm.
- 21. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in any one of claims 16 through 20, wherein
a single piece of the transparent substrate, an antireflection film as the front-most layer, said electromagnetic-wave shielding film between the transparent substrate and the antireflection film, and a near-infrared ray blocking film are laminated and united.
- 22. A manufacturing method of an electromagnetic-wave shielding and light transmitting plate as claimed in claim 21, wherein a first conductive tape is bonded to and wound around the peripheral ends of the electromagnetic-wave shielding film to extend from one surface to the other surface of the electromagnetic-wave shielding film,
in a laminated body comprising said transparent substrate, the antireflection film, the electromagnetic-wave shielding film, and the near-infrared ray blocking film, at least a portion of the peripheries of said antireflection film is back off from the corresponding periphery of said electromagnetic-wave shielding film, and a second conductive tape is bonded to said laminated body to extend from edge portions of the front-most surface to edge portions of the rear-most surface through the peripheral ends of said laminated body.
- 23. A display panel comprising a display panel body and an electromagnetic-wave shielding film disposed on the front surface of said display panel body, wherein
said electromagnetic-wave shielding film comprises a transparent substrate film and a conductive foil which is bonded to the display panel body side surface of said substrate film with a transparent adhesive agent, and is applied with pattern etching, said foil has a light absorbing layer for antireflection on the substrate film side surface thereof, and the substrate film side surface of said light absorbing layer is treated by surface roughening.
- 24. A display panel as claimed in claim 23, wherein a near-infrared ray blocking film is disposed between said electromagnetic-wave shielding film and said display panel body.
- 25. A display panel as claimed in claim 23 or 24, wherein said electromagnetic-wave shielding film is bonded on the conductive foil side surface thereof to said display panel body or said near-infrared ray blocking film with a thermosetting resin or a transparent pressure-sensitive adhesive.
- 26. A display panel as claimed in claim 25, wherein said thermosetting resin after hardened or said transparent pressure-sensitive adhesive has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 27. A display panel as claimed in claim 25 or 26, wherein said thermosetting resin is a cross-linkable thermosetting resin containing cross linking agent.
- 28. A display panel comprising a display panel body and an electromagnetic-wave shielding film disposed on the front surface of said display panel body, wherein
said electromagnetic-wave shielding film comprises a transparent substrate film and a conductive foil which is bonded to a surface opposite to the display panel body side surface of said substrate film with a transparent adhesive agent, and is applied with pattern etching, said foil has a light absorbing layer for antireflection on a surface opposite to the substrate film side surface thereof, and the surface opposite to the substrate film side surface of said light absorbing layer is treated by surface roughening.
- 29. A display panel as claimed in claim 28, wherein an antireflection film is disposed on the front surface side of said electromagnetic-wave shielding film.
- 30. A display panel as claimed in claim 29, wherein said electromagnetic-wave shielding film is bonded on the conductive foil side surface thereof to said antireflection film with a thermosetting resin or a transparent pressure-sensitive adhesive.
- 31. A display panel as claimed in claim 30, wherein said thermosetting resin after hardened or said transparent pressure-sensitive adhesive has a refractive index substantially equal to the refractive index of said transparent adhesive agent of said electromagnetic-wave shielding film.
- 32. A display panel as claimed in claim 30 or 31, wherein said thermosetting resin is a cross-linkable thermosetting resin containing cross linking agent.
- 33. A display panel as claimed in any one of claims 23 through 32, wherein said display panel comprises a laminated body formed by laminating and uniting said antireflection film as the front-most layer, said electromagnetic-wave shielding film, said near-infrared ray blocking film, and said display panel body.
- 34. A display panel as claimed in claim 33, wherein a first conductive tape is bonded to and wound around the peripheral ends of the electromagnetic-wave shielding film to extend from one surface to the other surface of the electromagnetic-wave shielding film,
at least a portion of the peripheries of said antireflection film is back off from the corresponding periphery of said electromagnetic-wave shielding film, and a second conductive tape is bonded to said laminated body to extend from edge portions of the front-most surface to edge portions of the rear-most surface through the peripheral ends of said laminated body.
- 35. A display panel as claimed in any one of claims 23 through 34, wherein the surface roughness Rz of the roughened surface of the light absorbing layer is in a range from 0.1 to 20 μm.
- 36. A display panel as claimed in any one of claims 23 through 35, wherein the display panel body is a plasma display.
Priority Claims (5)
Number |
Date |
Country |
Kind |
2001-146843 |
May 2001 |
JP |
|
2001-146844 |
May 2001 |
JP |
|
2001-146845 |
May 2001 |
JP |
|
2001-146846 |
May 2001 |
JP |
|
2001-146847 |
May 2001 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation application of PCT/JP02/04423 filed on May 7, 2002.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP02/04423 |
5/7/2002 |
WO |
|