IP Library Granted Patent US 7,009,670
Granted Patent B1
US 7,009,670 · App. 10/811,261 · Granted Mar 7, 2006

Achromatic quarter-wave films

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Quick Facts
Patent No.
US 7,009,670
App. No.
10/811,261
Granted
Mar 7, 2006
Kind
B1
Abstract

The achromatic quarter-wave film of this invention has a laminated twisted nematic liquid crystal film sandwiched between two uniaxial polymer films to provide a optical component which converts linearly polarized light into circularly polarized radiation which upon reflection back through said optical component is blocked from outward radiation by the polarizer for the initial incident wide spectrum light thus realizing wider broadband width for full color flat panel displays.

Claims (31)

1. A quarter-wave plate device comprising:

(a) a first and a second uniaxial polymeric films; and

(b) a twisted nematic-liquid crystal (TN-LC) polymeric film sandwiched between the first and second uniaxial polymeric films to form the quarter-wave plate device with a broadband spectrum.

2. The quarter-wave plate device of claim 1 , further comprising:

(c) a linear polarizer laminated on an exterior surface of one of said first and second unaxial polymeric films, wherein said linear polarizer receives incident unpolarized light of a wide spectral bandwidth and converts said incident unpolarized light into a linearly polarized light, wherein the linearly polarized light passes through said quarter-wave film and produces a circularly polarized light in a wide spectral bandwidth.

3. The quarter-wave plate device of claim 2 , wherein the TN-LC film includes:

a twist angle of TN-LC film of approximately 77.5 degrees, wherein the incident wave is linearly polarized at approximately β=18.8°.

4. The quarter-wave plate device of claim 3 , wherein the first and second unaxial polymeric film includes:

an angle α1 approximately 91.2° and for one of the first and second unaxial polymeric film; and

an angle α2 of approximately minus 50.1 for the other one of the first and second unaxial polymeric film.

5. The quarter-wave plate device of claim 2 , wherein the TN-LC film includes:

one of a left handedness and a right handedness twist sense.

6. The quarter-wave plate device of claim 2 , wherein the TN-LC film includes:

a TN-LC film having a thickness of approximately 4.9 μm and a corresponding retardation of approximately 0.891λ, wherein λ=550 nm.

7. The quarter-wave plate device of claim 2 , wherein the first and second unaxial polymeric films includes:

a first unaxial polymeric film thickness of approximately 3.3 μm and a corresponding retardation of approximately 0.198λ; and

a second unaxial polymeric film thickness of approximately 2.48 μm and a corresponding retardation of approximately 0.149λ.

8. A broadband circular polarizer comprising:

a first and second uniaxial polymeric film;

a twisted nematic-liquid crystal (TN-LC) polymeric film sandwiched between said first and second uniaxial polymeric film; and

a linear polarizer laminated on an exterior surface of one of the first and the second uniaxial polymeric films to form said broadband circular polarizer.

9. The broadband circular polarizer of claim 8 , wherein the TN-LC film includes:

a twist angle of TN-LC film of approximately 77.5 degrees, wherein the incident wave is linearly polarized at approximately β=18.8°.

10. The broadband circular polarizer of claim 8 , wherein the first and second unaxial polymeric film includes:

an angle α1 approximately 91.2° and for one of the first and second unaxial polymeric film; and

an angle α2 of approximately minus 50.1 for the other one of the first and second unaxial polymeric film.

11. The broadband circular polarizer of claim 8 , wherein the TN-LC film includes:

one of a left handedness and a right handedness twist sense.

12. The broadband circular polarizer of claim 8 , wherein the first and second unaxial polymeric films includes:

a first unaxial polymeric film thickness of approximately 3.3 μm and a corresponding retardation of approximately 0.198λ; and

a second unaxial polymeric film thickness of approximately 2.48 μm and a corresponding retardation of approximately 0.149λ.

Assignments (5)
CHANGE OF NAME Recorded Apr 3, 2014
From: CHIMEI INNOLUX CORPORATION
To: INNOLUX CORPORATION
Reel/Frame 032604/0487 →
MERGER Recorded Mar 8, 2011
From: TPO DISPLAYS CORP.
To: CHIMEI INNOLUX CORPORATION
Reel/Frame 025919/0338 →
CHANGE OF NAME Recorded Jan 23, 2011
From: TOPPOLY OPTOELECTRONICS CORP.
To: TPO DISPLAYS CORP.
Reel/Frame 025681/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2005
From: UNIVERSITY OF CENTRAL FLORIDA
To: RESEARCH FOUNDATION OF THE UNIVERSITY OF CENTRAL FLORIDA, INCORPORATED
Reel/Frame 016227/0170 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2004
From: HUANG, YUHUA; WU, THOMAS X.; WU, SHIN-TSON
To: UNIVERSITY OF CENTRAL FLORIDA
Reel/Frame 015160/0629 →