IP Library › Granted Patent US 10,073,204
Granted Patent B2
US 10,073,204 · App. 15/038,932 · Granted Sep 11, 2018

Optical film stack including retardation layer

Inventors: Sun-Yong Park (Hwaseong-si, KR); Song-Geun Lee (Youngdeumpo gu Seoul, KR); Matthew B. Johnson (Woodbury, MN); Adam D. Haag (Woodbury, MN)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G02B5/3083B32B7/12B32B23/04B32B23/08B32B27/08B32B27/306B32B27/327B32B27/365G02B5/305G02B5/3016G02B5/3025G02B5/3041G02F1/13362G02F1/13363G02F1/133536B32B2255/26B32B2457/202B32B2551/00G02F2001/133545G02F2001/133633G02F2001/133635G02F2001/133638G02F2001/133726G02F2202/28G02F2202/40
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Quick Facts
Patent No.
US 10,073,204
App. No.
15/038,932
Granted
Sep 11, 2018
Kind
B2
Abstract

Optical film stacks are described. More particularly, optical film stacks including a half-wave retardation layer are described. Achromatic half-wave retardation layers, including achromatic half-wave layers formed from a quarter-wave and a three-quarters-wave retardation layer, are described. Film stacks including reflective polarizers tuned to reduce wavelength dispersion of the half-wave retardation layer are also described.

Claims (17)

1. An optical film stack, comprising:

a reflective polarizer having a top surface, a bottom surface, a transmission axis, and a reflection axis;

an achromatic half-wave retardation layer having a top surface, a bottom surface disposed on the top surface of the reflective polarizer, and a slow axis oriented substantially 45° with respect to the transmission axis of the reflective polarizer; and

an absorbing polarizer having a bottom surface disposed on the top surface of the achromatic half-wave retardation layer and a transmission axis oriented substantially 90° with respect to the transmission axis of the reflective polarizer.

2. The optical film stack of claim 1 , further comprising a quarter-wave retardation layer disposed on the bottom surface of the reflective polarizer.

3. The optical film stack of claim 1 , wherein a retardation value of the achromatic half-wave retardation layer varies directly with a wavelength of visible light.

4. A roll of film, comprising the optical film stack of claim 1 .

5. An optical film stack, comprising:

a reflective polarizer having a top surface, a bottom surface, a transmission axis, and a reflection axis;

a first retardation layer having a top surface, a bottom surface disposed on the top surface of the reflective polarizer, and a slow axis oriented substantially 45° with respect to the transmission axis of the reflective polarizer;

a second retardation layer having a top surface, a bottom surface disposed on the top surface of the first retardation layer, and a slow axis oriented substantially 45° with respect to the transmission axis of the reflective polarizer and oriented substantially 90° with respect to the slow axis of the first retardation layer; and

an absorbing polarizer having a bottom surface disposed on the top surface of the second retardation layer and a transmission axis oriented substantially 90° with respect to the transmission axis of the reflective polarizer;

wherein together the first and second retardation layers are configured as an achromatic half-wave retardation layer.

6. The optical film stack of claim 5 , wherein the first retardation layer is a three-quarters-wave retardation layer and the second retardation layer is a quarter-wave retardation layer.

7. The optical film stack as in claim 5 , wherein the second retardation layer includes a liquid crystal layer.

8. The optical film stack of claim 7 , wherein the liquid crystal layer has a thickness of between 1 and 1.3 microns.

9. The optical film stack as in claim 5 , wherein the first retardation layer includes a film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2016
From: PARK, SUN-YONG; LEE, SONG-GEUN; JOHNSON, MATTHEW B.; HAAG, ADAM D.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 040404/0486 →
Continuity (2)
Provisional Application 61908396 · Nov 25, 2013
Related Publication 20160377781A1 · Dec 29, 2016