IP Library Granted Patent US 10,504,714
Granted Patent B2
US 10,504,714 · App. 16/210,444 · Granted Dec 10, 2019

Dual parabolic laser driven sealed beam lamp

Inventor: Rudi Blondia (Stockton, CA)
Assignee: Excelitas Technologies Corp.
H01J61/025H01J61/16H01J61/24H01J61/30H01J61/33H01J61/35H01J61/54H01J65/04H01J65/042
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Quick Facts
Patent No.
US 10,504,714
App. No.
16/210,444
Granted
Dec 10, 2019
Kind
B2
Abstract

The invention is directed to a sealed high intensity illumination device configured to receive a laser beam from a laser light source. A sealed chamber is configured to contain an ionizable medium. The chamber includes a reflective chamber interior surface having a first parabolic contour and parabolic focal region, a second parabolic contour and parabolic focal region, an ingress surface configured to admit the laser beam into the chamber, and an egress surface configured to emit high intensity light from the chamber. The first parabolic contour is configured to reflect light from the first parabolic focal region to the second parabolic contour, and the second parabolic contour is configured to reflect light from the first parabolic contour to the second parabolic focal region.

Claims (23)

1. A sealed high intensity illumination device configured to receive a laser beam from a laser light source comprising:

a sealed chamber configured to contain an ionizable medium, the chamber further comprising:

a reflective chamber interior surface further comprising:

a first substantially parabolic contour having a first parabolic focal region;

a second substantially parabolic contour having a second parabolic focal region;

an ingress surface; and

an egress surface,

wherein the ingress surface is configured to admit a laser beam into the chamber, the first parabolic contour is configured to reflect a high intensity light from the first parabolic focal region to the second parabolic contour, the second parabolic contour is configured to reflect the high intensity light from the first parabolic contour to the second parabolic focal region, and the egress surface is configured to emit the high intensity light from the chamber.

2. The sealed high intensity illumination device of claim 1 , further comprising a first sealing surface ( 1403 ) in a first plane parallel to a horizontal axis of symmetry ( 1390 ) passing through the first parabolic focal region and the second parabolic focal region, wherein the first sealing surface intersects the second parabolic surface.

3. The sealed high intensity illumination device of claim 2 , wherein the first sealing surface comprises the egress surface.

4. The sealed high intensity illumination device of claim 3 , wherein the first sealing surface intersects the first parabolic surface, and the first sealing surface comprises the ingress surface.

5. The sealed high intensity illumination device of claim 2 , further comprising a second sealing surface ( 1430 ) in a second plane parallel to a vertical axis ( 1383 ) orthogonal the horizontal axis ( 1390 ), wherein the second sealing surface comprises the ingress surface.

6. The sealed high intensity illumination device of claim 5 , wherein the first sealing surface intersects the second sealing surface, and the ingress surface is configured to admit the laser beam to pass through the ingress surface and reflect off of the first parabolic contour toward the first parabolic focal region ( 1321 ).

7. The sealed high intensity illumination device of claim 5 , wherein the first sealing surface intersects the second sealing surface.

8. The sealed high intensity illumination device of claim 6 , wherein the ingress surface further comprises a reflective surface ( 1486 ) oriented to reflect radiation to the first parabolic contour and from the reflective surface toward the first parabolic focal region ( 1321 ).

9. The sealed high intensity illumination device of claim 1 , further comprising a sealing surface ( 1330 ) in a plane orthogonal to a horizontal axis of symmetry ( 1390 ) passing through the first parabolic focal region and the second parabolic focal region,

wherein the sealing surface comprises the ingress surface and the sealing surface intersects the first parabolic surface.

10. The sealed high intensity illumination device of claim 9 , wherein the sealing surface comprises the ingress surface, and the ingress surface is configured to admit the laser beam to pass through the ingress surface directly toward the first parabolic focal region.

11. The sealed high intensity illumination device of claim 9 , further comprises a mirror ( 1380 ) within the chamber ( 1320 ) oriented to reflect radiation received from the first parabolic contour back to the first parabolic contour.

12. The sealed high intensity illumination device of claim 1 , further comprising a plasma sustaining region and a plasma ignition region disposed within the sealed chamber.

13. The sealed high intensity illumination device of claim 12 , wherein the first parabolic contour and the second parabolic contour are arranged to provide 1:1 imaging from the first parabolic focal region to the second parabolic focal region.

14. The sealed high intensity illumination device of claim 12 , wherein the plasma sustaining region coincides with the first parabolic focal region.

15. The sealed high intensity illumination device of claim 1 , further comprising the laser light source disposed external to the sealed chamber and configured to direct a laser light beam directly into the sealed chamber.

Assignments (2)
SECURITY INTEREST Recorded Aug 12, 2022
From: EXCELITAS TECHNOLOGIES CORP.
To: GOLUB CAPITAL MARKETS LLC, AS COLLATERAL AGENT
Reel/Frame 061164/0582 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2018
From: BLONDIA, RUDI
To: EXCELITAS TECHNOLOGIES CORP.
Reel/Frame 047681/0792 →
Continuity (5)
Division 15604925 · May 25, 2017
Division 14938353 · Nov 11, 2015
Continuation In Part 14712196 · May 14, 2015
Provisional Application 61993735 · May 15, 2014
Related Publication 20190108994A1 · Apr 11, 2019
Cited By (1)
US 12,191,623