IP Library Granted Patent US 8,017,913
Granted Patent B2
US 8,017,913 · App. 12/374,084 · Granted Sep 13, 2011

Passive infrared detectors

Assignee: Visonic Ltd.
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 8,017,913
App. No.
12/374,084
Granted
Sep 13, 2011
Kind
B2
Abstract

An infrared motion detector including at least one infra-red radiation sensor, at least one radiation reflecting surface, operative to direct radiation impinging thereon towards the at least one infra-red radiation sensor and at least one coating layer, coating the at least one radiation reflective surface, which is substantially reflective to far infra-red radiation and which strongly absorbs at least one of visible light and near infra-red radiation, wherein the at least one coating layer includes black nickel.

Claims (38)

1. An infrared motion detector comprising:

at least one infrared radiation sensor;

at least one radiation reflecting surface, operative to direct radiation impinging thereon towards said at least one infra-red radiation sensor; and

at least one coating layer, coating said at least one radiation reflecting surface, which is substantially reflective to far infra-red radiation and which strongly absorbs at least one of visible light and near infra-red radiation, wherein said at least one coating layer comprises black nickel.

2. An infrared motion detector according to claim 1 and wherein said at least one coating layer is deposited onto a reflective coating layer.

3. An infrared motion detector according to claim 2 and wherein said reflective coating layer comprises at least one of nickel, chrome, silver, aluminum, copper, steel, and gold.

4. An infrared motion detector according to claim 1 and wherein said at least one coating layer has a thickness in the range of 0.2 and 10 microns.

5. An infrared motion detector according to claim 1 and wherein said far infrared radiation has wavelengths in the range of 7-14 μm.

6. An infrared motion detector according to claim 1 and wherein said visible light and said near infrared radiation have wavelengths below 2 μm.

7. An infrared motion detector according to claim 1 and also comprising at least one intermediate radiation reflecting surface located along the optical path of said radiation impinging on said at least one radiation reflecting surface and operative to direct said radiation along said optical path toward said at least one infrared sensor.

8. An infrared motion detector according claim 1 and wherein said at least one radiation reflecting surface comprises a focusing mirror for far infrared radiation.

9. An infrared motion detector according to claim 7 and wherein said at least one intermediate radiation reflecting surface comprises a non-focusing mirror for far infrared radiation.

10. An infrared motion detector according to claim 7 and wherein said at least one intermediate radiation reflecting surface provides optical power for far infrared radiation.

11. A radiation reflector for use in motion detectors, to direct far infrared radiation towards an infrared radiation sensor, comprising:

at least one radiation reflecting surface;

at least one coating layer coating said radiation reflecting surface which is substantially reflective to far infrared radiation and which strongly absorbs at least one of visible light and near infrared radiation,

wherein said at least one coating layer comprises black nickel.

12. A radiation reflector according to claim 11 and wherein said at least one coating layer is deposited onto a reflective coating layer.

13. A radiation reflector according to claim 12 and wherein said reflective coating layer comprises at least one of nickel, chrome, silver, aluminum, copper, steel, and gold.

14. A radiation reflector according to claim 11 and wherein said at least one coating layer has a thickness in the range of 0.2 and 10 microns.

15. A radiation reflector according to claim 11 and wherein said far infrared radiation has wavelengths in the range of 7-14 μm.

16. A radiation reflector according to claim 11 and wherein said visible light and said near infrared radiation have wavelengths below 2 μm.

17. A radiation reflector according to claim 11 and wherein said at least one radiation reflecting surface comprises a multi-segmented mirror.

18. A radiation reflector according to claim 17 and wherein said at least one radiation reflecting surface comprises a focusing mirror for far infrared radiation.

19. A radiation reflector according to claim 17 and wherein said at least one radiation reflecting surface comprises a non-focusing mirror for far infrared radiation.

20. A radiation reflector, for use in motion detectors, to direct far infrared radiation towards an infrared radiation sensor, the radiation reflector comprising:

a substrate base made of a plastic material;

a first layer of electroless conductive coating plated over at least part of said substrate base; and

a second layer comprising black nickel electroplated over said first layer.

21. A radiation reflector according to claim 20 wherein the first layer comprises electroless nickel or electroless copper.

22. A radiation reflector according to claim 20 and wherein said second layer has a thickness in the range of 0.2 and 10 microns.

23. A radiation reflector according to claim 20 and also comprising an additional layer comprising bright acid copper electroplated over said first layer, and wherein said second layer is electroplated over said additional layer.

24. A radiation reflector according to claim 20 and also comprising an additional layer comprising bright nickel electroplated over said first layer, and wherein said second layer is electroplated over said additional layer.

25. radiation reflector according to claim 20 and also comprising:

a first additional layer comprising bright acid copper electroplated over said first layer; and

a second additional layer comprising bright nickel electroplated over said first additional layer,

wherein said second layer is electroplated over said second additional layer.

26. A radiation reflector according to claim 25 and wherein said second additional layer comprises at least one of chrome, silver, aluminum, copper, steel, and gold, having a bright finish electroplated over said second layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2014
From: VISONIC LTD.
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 032356/0736 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2009
From: ZHEVELEV, BORIS; KOTLICKI, YAACOV
To: VISONIC LTD.
Reel/Frame 022617/0276 →
Continuity (2)
Provisional Application 60834367 · Jul 27, 2006
Related Publication 20090309029A1 · Dec 17, 2009