IP Library › Granted Patent US 8,094,784
Granted Patent B2
US 8,094,784 · App. 12/478,757 · Granted Jan 10, 2012

X-ray sources

Assignee: Rapiscan Systems, Inc.
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 8,094,784
App. No.
12/478,757
Granted
Jan 10, 2012
Kind
B2
Abstract

The present invention is directed to an anode for an X-ray tube. The X-ray tube has an electron aperture through which electrons emitted from an electron source travel subject to substantially no electrical field and a target in a non-parallel relationship to the electron aperture and arranged to produce X-rays when electrons are incident upon a first side of the target, wherein the target further comprises a cooling channel located on a second side of the target. The cooling channel comprises a conduit having coolant contained therein. The coolant is at least one of water, oil, or refrigerant.

Claims (24)

1. An anode for an X-ray tube comprising

a. an electron aperture for receiving electrons emitted from an electron source travel;

b. a target in a non-parallel relationship to said electron aperture and arranged to produce X-rays when electrons are incident upon a first side of said target, wherein said target further comprises a cooling channel located on a second side of said target; and

c. a channel extending from said electron aperture to said target wherein electrons passing through said channel are subjected to substantially no electrical field.

2. The anode of claim 1 wherein the cooling channel comprises a conduit having coolant contained therein.

3. The anode of claim 2 wherein the coolant is at least one of water, oil, or refrigerant.

4. The anode of claim 1 wherein said target comprises more than one target segment, wherein each of said target segments is in a non-parallel relationship to said electron aperture and arranged to produce X-rays when electrons are incident upon a first side of said target segment, wherein each of said target segments further comprises a cooling channel located on a second side of said target segment.

5. The anode of claim 4 wherein said second sides of each of said target segments are attached to a backbone.

6. The anode of claim 5 wherein the backbone is a rigid, single piece of metal.

7. The anode of claim 6 wherein the backbone comprises stainless steel.

8. The anode of claim 7 wherein at least one of said target segments is connected to said backbone using a bolt.

9. The anode of claim 8 wherein at least one of said target segments is connected to said backbone by placing said backbone within crimped protrusions formed on the second side of said target segment.

10. The anode of claim 4 wherein each of the target segments is held at a high voltage positive electrical potential with respect to said electron source.

11. The anode of claim 4 wherein the first side of each of the target segments is coated with a target metal, wherein said target metal is at least one of molybdenum, tungsten, silver, metal foil, or uranium.

12. The anode of claim 5 wherein the backbone is made of stainless steel and said target segments are made of copper.

13. The anode of claim 2 wherein the conduit is electrically insulated and the cooling channel has at least one of a square, rectangular, semi-circular, or flattened semi-circular cross-section.

14. An X-ray tube comprising:

an anode further comprising at least one electron aperture for receiving electrons emitted from an electron source, a target in a non-parallel relationship to said electron aperture and arranged to produce X-rays when electrons are incident upon a first side of said target, wherein said target further comprises a cooling channel located on a second side of said target, a channel extending from said electron aperture to said target wherein electrons passing through said channel are subjected to substantially no electrical field, and at least one of aperture comprising an X-ray aperture through which the X-rays from the target pass through, and are at least partially collimated by, the X-ray aperture.

15. The anode of claim 14 wherein the cooling channel comprises a conduit having coolant contained therein.

16. The anode of claim 15 wherein the coolant is at least one of water, oil, or refrigerant.

17. The anode of claim 14 wherein said target comprises more than one target segment, wherein each of said target segments is in a non-parallel relationship to said electron aperture and arranged to produce X-rays when electrons are incident upon a first side of said target segment, wherein each of said target segments further comprises a cooling channel located on a second side of said target segment.

18. The anode of claim 17 wherein said second sides of each of said target segments are attached to a backbone.

19. The anode of claim 18 wherein at least one of said target segments is connected to said backbone by a) a bolt or b) placing said backbone within crimped protrusions formed on the second side of said target segment.

20. The anode of claim 14 wherein each of the target segments is held at a high voltage positive electrical potential with respect to said electron source.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2015
From: MORTON, EDWARD JAMES
To: RAPISCAN SYSTEMS, INC.
Reel/Frame 034901/0931 →
Priority Claims (1)
GB 0309374.7 · Apr 25, 2003 · national
Continuity (4)
Continuation In Part 12364067 · Feb 2, 2009
Continuation 12033035 · Feb 19, 2008
Continuation 10554569
Related Publication 20100008471A1 · Jan 14, 2010