IP Library Granted Patent US 7,471,052
Granted Patent B2
US 7,471,052 · App. 11/209,284 · Granted Dec 30, 2008

Cryogenic vacuumm RF feedthrough device

Assignee: Jefferson Science Associates
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Quick Facts
Patent No.
US 7,471,052
App. No.
11/209,284
Granted
Dec 30, 2008
Kind
B2
Abstract

A cryogenic vacuum rf feedthrough device comprising: 1) a probe for insertion into a particle beam; 2) a coaxial cable comprising an inner conductor and an outer conductor, a dielectric/insulating layer surrounding the inner conductor, the latter being connected to the probe for the transmission of higher mode rf energy from the probe; and 3) a high thermal conductivity stub attached to the coaxial dielectric about and in thermal contact with the inner conductor which high thermal conductivity stub transmits heat generated in the vicinity of the probe efficiently and radially from the area of the probe and inner conductor all while maintaining useful rf transmission line characteristics between the inner and outer coaxial conductors.

Claims (15)

1. A cryogenic vacuum radio frequency (RF) feedthrough device comprising:

A) a probe for insertion through a wall of a vacuum container into a particle beam circulating therein;

B) a coaxial cable comprising an inner conductor and an outer conductor and a dielectric/insulating layer surrounding the inner conductor, the inner conductor connected to the probe for the transmission of RF energy from the probe; and

C) a high thermal conductivity stub attached to the coaxial dielectric about and in thermal contact with the inner conductor which the high thermal conductivity stub transmits heat generated in the vicinity of the probe and conducted to the stub radially from the inner conductor wall while maintaining useful RF transmission line characteristics between the inner and outer coaxial conductors.

2. The cryogenic vacuum RF feedthrough device of claim 1 wherein the probe comprises niobium.

3. The cryogenic vacuum RF feedthrough device of claim 2 wherein the stub is fabricated from a material selected from the group consisting of single crystal sapphire, polycrystalline sapphire, aluminum nitride and silicon nitride.

4. The cryogenic vacuum RF feedthrough device of claim 3 wherein the stub comprises single crystal sapphire.

5. The cryogenic vacuum RF feedthrough device of claim 2 wherein the coaxial cable has an outer dimension of about 0.1190 inches, the inner conductor is about 0.040 inches in diameter the probe is about 0.120 inches in diameter, the stub is about 0.25 inches deep as it passes through the wall and includes an annular flange portion that extends into the probe that is about 0.10 inches deep.

6. The cryogenic vacuum RF feedthrough device of claim 1 wherein the stub is fabricated from a material selected from the group consisting of single crystal sapphire, polycrystalline sapphire, aluminum nitride and silicon nitride.

7. The cryogenic vacuum RF feedthrough device of claim 6 wherein the stub comprises single crystal sapphire.

8. The cryogenic vacuum feedthrough device of claim 7 wherein the coaxial cable has an outer dimension of about 0.1190 inches, the inner conductor is about 0.040 inches in diameter the probe is about 0.120 inches in diameter, the stub is about 0.25 inches deep as it passes through the wall and includes an annular flange portion that extends into the probe that is about 0.10 inches deep.

9. The cryogenic vacuum RF feedthrough device of claim 6 wherein the coaxial cable has an outer dimension of about 0.1190 inches, the inner conductor is about 0.040 inches in diameter the probe is about 0.120 inches in diameter, the stub is about 0.25 inches deep as it passes through the wall and includes an annular flange portion that extends into the probe that is about 0.10 inches deep.

10. The cryogenic vacuum RF feedthrough device of claim 1 wherein the coaxial cable has an outer dimension of about 0.1190 inches, the inner conductor is about 0.040 inches in diameter the probe is about 0.120 inches in diameter, the stub is about 0.25 inches deep as it passes through the wall and includes an annular flange portion that extends into the probe that is about 0.10 inches deep.

11. The cryogenic vacuum RF feedthrough device of claim 1 wherein the stub includes an annular flange that is attached to the probe by the incorporation of a brazing layer.

12. The cryogenic vacuum feedthrough device of claim 11 wherein the brazing layer comprises a gold/copper alloy.

Assignments (3)
CONFIRMATORY LICENSE Recorded Apr 14, 2010
From: JEFFERSON SCIENCE ASSOCIATES, LLC/THOMAS JEFFERSON NATIONAL ACCELERATOR FACILITY
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 024230/0268 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2006
From: SOUTHEASTERN UNIVERSITIES RESEARCH ASSOCIATION, INC.
To: JEFFERSON SCIENCE ASSOCIATES, LLC
Reel/Frame 017783/0905 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2005
From: WU, GENFA; PHILLIPS, HARRY LAWRENCE
To: SOUTHEASTERN UNIVERSITIES RESEARCH ASSOCIATION
Reel/Frame 016916/0888 →
Continuity (1)
Related Publication 20070249399A1 · Oct 25, 2007