IP Library Granted Patent US 9,568,772
Granted Patent B2
US 9,568,772 · App. 14/684,758 · Granted Feb 14, 2017

Displays with elevated backlight efficiency

Inventors: Xinyu Zhu (Cupertino, CA); Jun Qi (Cupertino, CA); Meizi Jiao (Cupertino, CA); Nicholas G. Roland (San Jose, CA); Victor H. Yin (Cupertino, CA); Wei Chen (Palo Alto, CA); Ming Xu (Sunnyvale, CA); Cheng Chen (San Jose, CA); Zhibing Ge (Sunnyvale, CA)
Assignee: Apple Inc.
G02F1/13363G02B6/0053G02B6/0073G02F1/133504G02F1/133536G02F2001/133638G02F2413/01
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,568,772
App. No.
14/684,758
Granted
Feb 14, 2017
Kind
B2
Abstract

An electronic device may be provided with a display mounted in a housing. The display may include a liquid crystal display module and a reflective polarizer having an in-plane optical axis. The display may also include a backlight unit that includes a light source, a light guide element, and a reflector film coupled to a backside of the light guide element. The display may also include a light retardation layer such as a quarter wave film. The quarter wave film may be arranged between the reflective polarizer and the reflector film of the backlight unit. Partially polarized light that is output from a front side of the light guide element may have a first component parallel to the in-plane optical axis and a second component perpendicular to the in-plane optical axis of the reflective polarizer. The second component may be reflected from the reflective polarizer.

Claims (36)

1. A display, comprising:

a liquid crystal display module;

a backlight unit having a reflector;

a prism film;

a reflective polarizer interposed between the reflector and the liquid crystal display module;

a half wave plate interposed between the reflective polarizer and the prism film; and

a uniaxial birefringent compensation film, wherein the half wave plate is interposed between the reflective polarizer and the uniaxial birefringent compensation film.

2. The display defined in claim 1 wherein the prism film has prism elements and a prism axis that runs parallel to the prism elements, wherein the backlight unit emits light that passes through the prism film, wherein the prism film passes more of the emitted light as p-polarized light that has a polarization axis perpendicular to the prism axis than as s-polarized light that has a polarization axis parallel to the prism axis.

3. The display defined in claim 2 wherein the reflective polarizer has a pass axis, wherein the polarization axis of the p-polarized light and the pass axis of the reflective polarizer are separated by an angle, and wherein the half wave plate has a fast axis that bisects the angle between the polarization axis of the p-polarized light and the pass axis of the reflective polarizer.

4. The display defined in claim 3 further comprising a diffuser layer.

5. The display defined in claim 4 wherein the backlight unit has a light guide plate.

6. The display defined in claim 5 wherein the diffuser layer is interposed between the light guide plate and the prism film.

7. A liquid crystal display, comprising:

display layers including a liquid crystal layer and a reflective polarizer;

a backlight unit having a light guide plate and a reflector, wherein the reflective polarizer is interposed between the liquid crystal layer and the reflector;

a prism film;

a half wave plate between the reflective polarizer and the prism film; and

a uniaxial birefringent compensation film, wherein the half wave plate is interposed between the reflective polarizer and the uniaxial birefringent compensation film.

8. The liquid crystal display defined in claim 7 further comprising a prism film between the light guide plate and the half wave plate.

9. The liquid crystal display defined in claim 7 wherein the reflective polarizer has a pass axis and wherein the prism film has a prism axis that is oriented at a non-zero angle with respect to the pass axis.

10. The liquid crystal display defined in claim 9 wherein the prism film passes light with a polarization axis that is perpendicular to the prism axis.

11. The liquid crystal display defined in claim 10 wherein the half wave plate rotates the polarization axis of the light with the polarization axis that is perpendicular to the prism axis as this light passes through the half wave plate so that the polarization axis of this light is aligned with the pass axis of the reflective polarizer.

12. The liquid crystal display defined in claim 11 wherein the half wave plate has a fast axis that lies halfway between the pass axis of the reflective polarizer and the polarization axis that is perpendicular to the prism axis.

13. The liquid crystal display defined in claim 12 , wherein the light guide plate is interposed between the reflector and the prism film.

14. The liquid crystal display defined in claim 13 further comprising a diffuser between the light guide plate and the prism film.

15. A display, comprising:

an upper polarizer;

a lower polarizer;

display layers between the upper polarizer and the lower polarizer that include a layer of liquid crystal material and an array of pixels with rows of pixels that run parallel to a first axis and columns of pixels that run parallel to a second axis that is perpendicular to the first axis;

a light guide plate that emits backlight;

a half wave plate between the light guide plate and the lower polarizer;

a reflective polarizer interposed between the lower polarizer and the light guide plate;

a uniaxial birefringent compensation film, wherein the half wave plate is interposed between the reflective polarizer and the uniaxial birefringent compensation film; and

a prism film having prism elements and a prism axis that run along a third axis that is between the first and second axes.

16. The display defined in claim 15 wherein the backlight emitted from the light guide plate passes through the prism film, wherein a portion of the backlight that has passed through the prism film has a dominant polarization direction.

17. The display defined in claim 16 wherein the lower polarizer has a pass axis and wherein the half wave plate rotates the dominant polarization direction of the portion of the backlight into alignment with the pass axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2015
From: ZHU, XINYU; QI, JUN; JIAO, MEIZI; ROLAND, NICHOLAS G.; YIN, VICTOR H.; CHEN, WEI; XU, MING; CHEN, CHENG; GE, ZHIBING
To: APPLE INC.
Reel/Frame 035394/0401 →
Continuity (3)
Continuation In Part 13935110 · Jul 3, 2013
Provisional Application 61701544 · Sep 14, 2012
Related Publication 20150248033A1 · Sep 3, 2015