IP Library › Granted Patent US 8,469,575
Granted Patent B2
US 8,469,575 · App. 12/600,914 · Granted Jun 25, 2013

Backlight and display system using same

Inventors: Michael F. Weber (Shoreview, MN); Timothy J. Hebrink (Scandia, MN); Timothy J. Nevitt (Red Wing, MN); John A. Wheatley (Lake Elmo, MN); Craig R. Schardt (Woodbury, MN); Rolf W. Biernath (Wyoming, MN); William J. Bryan (Mahtomedi, MN); Andrew J. Ouderkirk (Singapore, SG); David G. Freier (St. Paul, MN); Myron K. Jordan (Eagan, MN); Kristopher J. Derks (Woodbury, MN); Zhaohui Yang (North Oaks, MN); Edward J. Kivel (Stillwater, MN)
Assignee: 3M Innovative Properties Company
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Quick Facts
Patent No.
US 8,469,575
App. No.
12/600,914
Granted
Jun 25, 2013
Kind
B2
Abstract

A backlight that includes a front reflector and a back reflector that form a hollow light recycling cavity including an output surface is disclosed. The backlight further includes one or more light sources disposed to emit light into the light recycling cavity. The front reflector includes an on-axis average reflectivity of at least 90% for visible light polarized in a first plane, and an on-axis average reflectivity of at least 25% but less than 90% for visible light polarized in a second plane perpendicular to the first plane.

Claims (21)

1. A backlight, comprising:

a front reflector and a back reflector that form a hollow light recycling cavity comprising an output surface; and

one or more light sources disposed to emit light into the light recycling cavity;

wherein the front reflector comprises a first asymmetric reflective film comprising alternating polymer layers, and further wherein the front reflector comprises an on-axis average reflectivity of at least 90% for visible light polarized in a first plane, and an on-axis average reflectivity of at least 25% but less than 90% for visible light polarized in a second plane perpendicular to the first plane.

2. The backlight of claim 1 , wherein the one or more light sources comprise one or LEDs.

3. The backlight of claim 1 , wherein the back reflector comprises an on-axis average reflectivity of at least 95% for visible light of any polarization.

4. The backlight of claim 1 , wherein the front reflector comprises a first on-axis average transmissivity for visible light polarized in the first plane, and a second on-axis average trausmissivity for visible light polarized in the second plane, and further wherein a ratio of the second on-axis transmissivity to the first on-axis transmissivity is at least 10.

5. The backlight of claim 4 , wherein the ratio is at least 20.

6. The backlight of claim 1 , wherein p-polarized visible light that is polarized in the second plane exhibits a substantially constant average reflectivity as angle of incidence with the front reflector increases from near zero degrees to 60 degrees.

7. The backlight of claim wherein p-polarized visible light that is polarized in the second plane exhibits an increasing average reflectivity as angle of incidence with the front reflector increases from near zero degrees to 60 degrees.

8. The backlight of claim 7 , wherein the increasing average reflectivity of the p-polarized light is substantially similar to an increasing average reflectivity of s-polarized visible light that is polarized in the second plane as angle of incidence with the front reflector increases from near zero degrees to 60 degrees.

9. The backlight of claim 1 , wherein the front reflector further comprises a second asymmetric, reflective film comprising alternating polymer layers positioned proximate the first asymmetric reflective film.

10. The backlight of claim 9 , wherein the first asymmetric reflective film is attached to the second asymmetric reflective film using an optical adhesive.

11. The backlight of claim 1 , wherein at least one of the front and back reflectors reflects light semi-specularly.

12. The backlight of claim 1 , further comprising, side reflectors disposed about the periphery of the hollow light recycling cavity to substantially enclose the recycling cavity, the side reflectors having an on-axis average reflectivity of at least 95% for visible light of any polarization.

13. A display system, comprising:

a display panel; and

a backlight disposed to provide light to the display panel, the backlight comprising:

a front reflector and a back reflector that form a hollow light recycling cavity comprising an output surface; and

one or more light sources disposed to emit light into the light recycling cavity;

wherein the front reflector comprises a first asymmetric reflective film comprising alternating polymer layers, and further wherein the from reflector comprises an on-axis average reflectivity of at least 90% for visible light polarized in a first plane, and an on-axis average reflectivity of at least 25% but less than 90% for visible light polarized in a second plane perpendicular to the first plane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2009
From: WEBER, MICHAEL F.; HEBRINK, TIMOTHY J.; NEVITT, TIMOTHY J.; WHEATLEY, JOHN A.; SCHARDT, CRAIG R.; BIERNATH, ROLF W.; BRYAN, WILLIAM J.; OUDERKIRK, ANDREW J.; FREIER, DAVID G.; JORDAN, MYRON K.; DERKS, KRISTOPHER J.; YANG, ZHAOHUI; KIVEL, EDWARD J.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 023542/0190 →
Continuity (2)
Provisional Application 60939079 · May 20, 2007
Related Publication 20100165660A1 · Jul 1, 2010