Claims
- 1. A light diffuser comprising a polymeric film incorporating microvoids wherein the film has a diffuse light transmission efficiency of at least 65% at 500 nm and wherein the microvoids are of a size, shape and frequency sufficient to provide an average weight-balanced color temperature variation (ΔT) of not more than 40 degrees K.
- 2. The light diffuser of claim 1 wherein the average weight-balanced color temperature variation is between 10 and 40 degrees K.
- 3. The light diffuser of claim 1 wherein the average weight-balanced color temperature variation is between 5 and 20 degrees.
- 4. The light diffuser of claim 1 wherein the horizontal average weight-balanced color temperature variation is between 10 and 40 degrees K.
- 5. The light diffuser of claim 1 wherein the average weight-balanced color temperature variation of a cold fluorescent tube light is reduced by between 40 and 98%.
- 6. The light diffuser of claim 1 wherein the difference in refractive index between the thermoplastic polymeric material and the microvoids is greater than 0.2.
- 7. The light diffuser of claim 1 wherein said microvoids are formed by organic microspheres.
- 8. The light diffuser of claim 1 wherein said microvoids are substantially free of scattering inorganic particles.
- 9. The light diffuser of claim 1 wherein the microvoids contain cross-linked polymer beads.
- 10. The light diffuser of claim 1 wherein the elastic modulus of the light diffuser is greater than 500 MPa.
- 11. The light diffuser of claim 1 wherein said diffuse light transmission is greater than 80% at 500 nm.
- 12. The light diffuser of claim 1 wherein said diffuse light transmission is greater than 92% at 500 nm.
- 13. The light diffuser of claim 1 wherein said microvoids have a major axis diameter to minor axis diameter ratio of less than 2.0.
- 14. The light diffuser of claim 1 wherein said microvoids have a major axis diameter to minor axis diameter ratio of between 1.6 and 1.0.
- 15. The light diffuser of claim 1 wherein said thermoplastic layer contains greater than 4 index of refraction changes greater than 0.20 parallel to the direction of light travel.
- 16. The light diffuser of claim 1 wherein said microvoids have a average volume of between 8 and 42 cubic micrometers over an area of 1 cm2.
- 17. The light diffuser of claim 1 wherein said microvoids have a average volume of between 12 and 18 cubic micrometers over an area of 1 cm2.
- 18. The light diffuser of claim 1 wherein the said light diffuser has a thickness between 12.5 and 50 micrometers.
- 19. The light diffuser of claim 1 wherein said thermoplastic layer comprises polyolefin polymer.
- 20. The light diffuser of claim 1 wherein said thermoplastic layer comprises polyester polymer.
- 21. The light diffuser of claim 7 wherein said cross linked polymer beads have a mean particle size less than 2.0 micrometers.
- 22. The light diffuser of claim 7 wherein said cross linked polymer beads have a mean particle size between 0.30 and 1.7 micrometers.
- 23. The light diffuser of claim 1 further comprising an integral smoothing layer on at least one surface thereof, the layer exhibiting an average thickness less than 12 microns.
- 24. The diffuser of claim 23 wherein said smoothing layer has a average surface roughness of between 0.02 and 0.18 micrometers.
- 25. The surface diffuser of claim 1 wherein said smoothing layer contains a cross linked urethane polymer coating applied to the surface of the smoothing layer.
- 26. The surface diffuser of claim 1 wherein the polymeric film incorporating microvoids comprises a plurality of layers having void geometry in which the x/y/z size or frequency varies by at least 28% between at least two layers.
- 27. The surface diffuser of claim 26 wherein the polymeric film contains at least two voided layers that are separated by a non-voided layer.
- 28. The light diffuser of claim 26 wherein the x/y/z size or frequency of the voids vary by between 28% and 300% between at least two layers.
- 29. The light diffuser of claim 1 wherein said microvoids have a substantially circular cross-section in a plane perpendicular to the direction of light travel.
- 30. A back lighted imaging media comprising a light source and a light diffuser comprising a polymeric film incorporating microvoids wherein the film has a diffuse light transmission efficiency of at least 65% at 500 nm and wherein the microvoids are of a size, shape and frequency sufficient to provide an average weight-balanced color temperature variation of not more than 40 degrees.
- 31. An liquid crystal device comprising a light source and a light diffuser comprising a polymeric film incorporating microvoids wherein the film has a diffuse light transmission efficiency of at least 65% at 500 nm and wherein the microvoids are of a size, shape and frequency sufficient to provide an average weight-balanced color temperature variation of not more than 40 degrees K.
- 32. A liquid crystal device component comprising a light diffuser comprising a polymeric film incorporating microvoids wherein the film has a diffuse light transmission efficiency of at least 65% at 500 nm and wherein the microvoids are of a size, shape and frequency sufficient to provide an average weight-balanced color temperature variation of not more than 40 degrees K.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to three applications co-filed herewith under Attorney Docket Nos. 83448AEK, 83613AEK, and 83682AEK, the contents of which are incorporated herein by reference.