Claims
- 1. An HV connector system for a mono-polar X-ray device comprising:
a cylindrical shielded housing comprising a first side comprising a gasket wherein said gasket defines a central opening, a second side disposed substantially parallel to said first side, and an outer edge disposed between said first side and said second side and coupled thereto, said outer edge comprising a cable terminal trans-axial to said central opening and adapted to receive an HV cable; a thermally conductive epoxy enclosed in said cylindrical shielded housing; and a Faraday Cup surrounded by said epoxy and disposed coaxially with said central opening, said Faraday Cup adapted to electrically couple to an HV cable and an X-ray device.
- 2. The system of claim 1 wherein said HV cable is coupled to said HV cable terminal such that said HV cable contacts said Faraday Cup.
- 3. The system of claim 1 wherein said epoxy comprises at least one of A1203 powder, AlN powder, BN powder, or gravels of similar materials.
- 4. The system of claim 1 wherein said epoxy comprises at least a block of Al2O3 disk to improve its thermal performance.
- 5. The system of claim 1 further comprising an insulator coupled to said gasket.
- 6. The system of claim 5 wherein said gasket is compressed between said insulator and said thermally conductive epoxy through a compressive force wherein said compressive force is at least partially from a spring loaded device.
- 7. The system of claim 1 wherein said gasket comprises silicone rubber or a substance with similar electrochemical properties to silicone rubber.
- 8. The system of claim 1 wherein said gasket is tapered.
- 9. An HV system comprising:
an X-ray device; a cylindrical shielded housing coupled to said X-ray device, said cylindrical shielded housing comprising a first side comprising a gasket wherein said gasket defines a central opening, a second side disposed substantially parallel to said first side, and an outer edge disposed between said first side and said second side and coupled to said first side and said second side, said outer edge comprising a cable terminal trans-axial with said central opening and adapted to receive an HV cable; a thermally conductive epoxy enclosed in said cylindrical shielded housing wherein said gasket is adapted to be compressed between an HV insulator and said thermally conductive epoxy; and a Faraday Cup coaxial with said central opening and surrounded by said thermally conductive epoxy, said Faraday Cup adapted to electrically couple to said HV cable and said X-ray device.
- 10. The system of claim 9 wherein said gasket is compressed between said HV insulator and said thermally conductive epoxy through a compressive force wherein said compressive force is at least partially from a spring loaded device.
- 11. The system of claim 10 wherein said gasket comprises silicone rubber or a substance with similar electrochemical properties to silicone rubber and wherein said gasket is tapered.
- 12. The system of claim 9 wherein said thermally conductive epoxy comprises at least one of A1203 powder, AlN powder, BN powder, or gravels of similar materials.
- 13. The system of claim 9 wherein said Faraday Cup is adapted to electrically couple to said HV cable and said X-ray device through spring-loaded contacts.
- 14. A method for assembling an HV system for a mono-polar X-ray device comprising:
coupling a cylindrical lead-lined HV connector to a X-ray device, said cylindrical lead-lined HV connector comprising a first side comprising a gasket wherein said gasket comprises an opening, a second side disposed substantially parallel to said first side, and an outer edge disposed between said first side and said second side and coupled thereto; and compressing said gasket between an HV insulator and a conductive epoxy.
- 15. The method of claim 14 wherein compressing said gasket further comprises compressing said gasket between said HV insulator and said conductive epoxy through a compressive force wherein said compressive force is at least partially from a spring loaded device.
- 16. The method of claim 14 wherein compressing further comprising optimizing thermal conductivities of said gasket and said thermally conductive epoxy.
- 17. The method of claim 14 wherein compressing further comprising selecting said gasket having a low thermal conductivity and said thermally conductive epoxy having a high thermal conductivity.
- 18. The method of claim 14 wherein compressing further comprising selecting said gasket having a high thermal conductivity and said epoxy having a low thermal conductivity.
RELATED APPLICATION
[0001] The present invention is related to application (Attorney Docket 128513) entitled “HV System For A Mono-Polar Ct Tube” filed simultaneously herewith and incorporated by reference herein.