IP Library › Granted Patent US 11,738,870
Granted Patent B2
US 11,738,870 · App. 17/136,898 · Granted Aug 29, 2023

Short throw projector as in-flight entertainment display

Inventors: Tippanna Shetgar (Hyderabad, IN); Rajesh Mohanam (Hyderabad, IN); Aravinda Mahabaleshwara (Hyderabad, IN); Sivakumar Dwaraganathan (Hyderabad, IN)
Assignee: B/E AEROSPACE, INC.
B64D11/00151B64D11/0015G03B21/00G03B21/28G03B21/30H04N5/7475H04N9/315H04N9/3141H04N9/3144H04N9/3152B60R11/0229B60R11/0235
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Quick Facts
Patent No.
US 11,738,870
App. No.
17/136,898
Granted
Aug 29, 2023
Kind
B2
Abstract

An in-flight entertainment system is disclosed. In various embodiments, the in-flight entertainment system includes a display having a viewing surface and a back surface opposite the viewing surface; and a projector connected to the display and configured to illuminate the viewing surface.

Claims (31)

1. An in-flight entertainment system, comprising:

a display having a viewing surface and a back surface opposite the viewing surface; and

a projector including a first mirror and a second mirror, the projector connected to the back surface of the display and configured to illuminate the viewing surface via the first mirror and the second mirror, wherein the first mirror is oriented to redirect a light signal from a light source from a first direction to a second direction incident from the first direction, wherein the second mirror is oriented to redirect the light signal from the second direction to a third direction opposite the first direction and onto the viewing surface.

2. The in-flight entertainment system of claim 1 , wherein the projector includes the light source configured to direct the light signal in the first direction parallel to a portion of the back surface.

3. The in-flight entertainment system of claim 2 , further comprising an electronics package configured to power the light source, the electronics package mounted on the back surface of the display.

4. The in-flight entertainment system of claim 3 , wherein the electronics package includes a printed circuit board and a heat sink configured to cool the light source.

5. The in-flight entertainment system of claim 1 , wherein the projector includes a first portion connected to the back surface of the display and a second portion directed toward the viewing surface.

6. The in-flight entertainment system of claim 5 , wherein the first portion of the projector includes the first mirror oriented to redirect the light signal in the first direction, the first direction being parallel to a portion of the back surface.

7. The in-flight entertainment system of claim 6 , wherein the second mirror is disposed within the second portion of the projector.

8. The in-flight entertainment system of claim 7 , wherein an overall length of the projector in a direction parallel to a surface normal of the viewing surface is between one inch and four inches.

9. An aircraft passenger seating arrangement, comprising:

a first seat having a seatback; and

an in-flight entertainment system disposed within the seatback, the in-flight entertainment system including:

a display having a viewing surface and a back surface opposite the viewing surface, and

a projector connected to the display and configured to illuminate the viewing surface, the projector including:

a light source configured to direct a light signal in a first direction;

a first mirror oriented to redirect the light signal to a second direction incident the first direction; and

a second mirror oriented to redirect the light signal to a third direction opposite the first direction.

10. The aircraft passenger seating arrangement of claim 9 , wherein the projector is connected to the back surface, wherein the first direction is parallel to a portion of the back surface.

11. The aircraft passenger seating arrangement of claim 10 , wherein the second direction is parallel to a surface normal defined by the viewing surface.

12. The aircraft passenger seating arrangement of claim 11 , wherein the second mirror redirects the light signal onto the viewing surface.

13. The aircraft passenger seating arrangement of claim 12 , further comprising an electronics package configured to power the light source, the electronics package disposed within the seatback and mounted on the back surface of the display.

14. The aircraft passenger seating arrangement of claim 13 , wherein the electronics package includes a printed circuit board and a heat sink configured to cool the light source.

15. The aircraft passenger seating arrangement of claim 14 , wherein the projector includes a first portion connected to the back surface of the display and a second portion directed toward the viewing surface.

16. The aircraft passenger seating arrangement of claim 15 , wherein the first portion of the projector includes the first mirror oriented to redirect the light signal and the second mirror is disposed within the second portion of the projector and oriented to redirect the light signal toward the viewing surface.

17. The aircraft passenger seat arrangement of claim 9 , wherein the projector is configured to extend horizontal from the seatback.

18. A method of illuminating a display having a viewing surface and a back surface opposite the viewing surface, comprising:

directing a light signal in a first direction parallel to the back surface toward a first mirror;

redirecting the light signal toward a second mirror in a second direction incident the first direction; and

redirecting the light signal received by the second mirror in a third direction toward the viewing surface, the third direction being opposite the first direction.

19. The method of claim 18 , wherein the light signal is generated by a light source connected to the back surface of the display and oriented to direct the light signal in the first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2020
From: SHETGAR, TIPPANNA; MOHANAM, RAJESH; MAHABALESHWARA, ARAVINDA; DWARAGANATHAN, SIVAKUMAR
To: B/E AEROSPACE, INC.
Reel/Frame 054769/0096 →
Priority Claims (1)
IN 202041009539 · Mar 5, 2020 · national
Continuity (1)
Related Publication 20210276715A1 · Sep 9, 2021
Cited By (1)
US 12,679,540