IP Library Granted Patent US 9,784,902
Granted Patent B2
US 9,784,902 · App. 13/850,277 · Granted Oct 10, 2017

Dual-sided film with split light spreading structures

Inventors: Nicholas A. Johnson (St. Paul, MN); Michael J. Sykora (New Richmond, WI); Michael E. Lauters (Hudson, WI); John A. Wheatley (Lake Elmo, MN)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G02B6/0053F21V5/02G02B5/021G02B5/0278G02B5/045G02B3/005G02B3/0068
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 9,784,902
App. No.
13/850,277
Granted
Oct 10, 2017
Kind
B2
Abstract

Dual-sided optical films have extended split spreading structures formed on one major surface, and extended prisms formed on an opposite major surface. One portion of each split spreading structure has a low light spreading characteristic, and another portion has a high light spreading characteristic. For each split spreading structure, the low light spreading portion may be disposed alongside the high light spreading portion. The split spreading structures may be arranged in a one-to-one correspondence with the prisms. Light that enters a given prism from one inclined surface thereof can be associated primarily with light transmitted through the low light spreading portion of the split spreading structure, and light that enters the given prism from the other inclined surface thereof can be associated primarily with light transmitted through the high light spreading portion.

Claims (21)

1. An optical film having opposed first and second structured surfaces, the optical film comprising:

a plurality of extended prisms formed on the first structured surface; and

a plurality of extended split spreading structures formed on the second structured surface, each split spreading structure having a high spreading portion disposed alongside a low spreading portion;

wherein the prisms and the split spreading structures are arranged in a one-to-one correspondence of prisms to split spreading structures; and

wherein for each split spreading structure, the high spreading portion is a lenslet and the low spreading portion is a flat.

2. The film of claim 1 , wherein each prism has on one side thereof a first inclined surface and on another side thereof a second inclined surface, and wherein the high spreading portion of a given split spreading structure is associated primarily with light transmitted through the first inclined surface of its associated prism.

3. The film of claim 2 , wherein the low spreading portion of the given split spreading structure is associated primarily with light transmitted through the second inclined surface of the associated prism.

4. The film of claim 1 , wherein, for each of the split spreading structures, the low spreading portion has a smooth surface characteristic and the high spreading portion has a roughened surface characteristic.

5. The film of claim 1 , wherein the lenslet of each split spreading structure is a diverging lenslet.

6. The film of claim 1 , wherein the lenslet of each split spreading structure is a converging lenslet.

7. The film of claim 1 , wherein the split spreading structures extend along respective elongation axes that are parallel to each other, and wherein, for each of the split spreading structures, the low and high spreading portions meet along a boundary that is parallel to the elongation axis in plan view.

8. The film of claim 1 , wherein the prisms extend along respective first elongation axes that are parallel to each other, and the split spreading structures extend along respective second elongation axes that are parallel to each other.

9. The film of claim 8 , wherein the first elongation axes are parallel to the second elongation axes.

10. The film of claim 1 , wherein the optical film defines a reference plane, wherein the prisms have respective prism optical axes, and wherein each prism optical axis is perpendicular to the reference plane.

11. The film of claim 1 , wherein the optical film defines a reference plane, wherein the prisms have respective prism optical axes, and wherein a plurality of the prism optical axes are tilted with respect to a normal axis perpendicular to the reference plane.

12. The film of claim 1 , wherein the optical film defines a reference plane, wherein each split spreading structure has a spreading structure optical axis, and wherein each spreading structure optical axis is perpendicular to the reference plane.

13. The film of claim 1 , wherein the optical film defines a reference plane, wherein each split spreading structure has a spreading structure optical axis, and wherein a plurality of the spreading structure optical axes are tilted with respect to a normal axis perpendicular to the reference plane.

14. An optical system, comprising:

the optical film of claim 1 ; and

a light guide having a major surface adapted to emit light preferentially at oblique angles;

wherein the optical film is disposed proximate the light guide and oriented so that light emitted from the major surface of the light guide enters the optical film through the first structured surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2013
From: JOHNSON, NICHOLAS A.; SYKORA, MICHAEL J.; LAUTERS, MICHAEL E.; WHEATLEY, JOHN A.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 030754/0760 →
Continuity (1)
Related Publication 20140286044A1 · Sep 25, 2014