IP Library Granted Patent US 11,367,596
Granted Patent B2
US 11,367,596 · App. 16/316,841 · Granted Jun 21, 2022

Electrical transfer in an endblock for a sputter device

Inventors: Ivan Van De Putte (Waregem, BE); Niek Dewilde (Kruishoutem, BE); Koen Corteville (Izegem, BE)
Assignee: SOLERAS ADVANCED COATINGS BV
H01J37/32577H01J37/3435H01J37/3444H01J37/3497C23C14/34
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Quick Facts
Patent No.
US 11,367,596
App. No.
16/316,841
Granted
Jun 21, 2022
Kind
B2
Abstract

A power transfer system is described for transfer of electrical power to a sputter target in a sputter device. It comprises a first part comprising a contact surface positionable against a first part of an endblock of the sputter device, a second part inseparably connected to the first part and a third part, and a third part comprising a contact surface positionable against a second part of the endblock or directly against a sputter target when mounted on the endblock. At least two of the three parts are formed as one monolithic piece. One of the parts of the power transfer system is resilient such that, when mounted, the power transfer system is clamped between the first part of the endblock and the second part of the endblock or the sputter target. This part is also responsible for the transfer of electrical power.

Claims (36)

1. A power transmission system for transmission of electrical power to a sputter target in a sputter device, the power transmission system comprising:

a first part comprising a contact surface positionable against a first part of an endblock of the sputter device,

a second part, wherein the first part is inseparably connected to the second part and the second part is inseparably connected to a third part,

a third part comprising a contact surface positionable against a second part of the endblock,

wherein at least two of the three parts of the power transmission system are formed as one monolithic piece, and

wherein the first and/or the second and/or the third part is spring-loaded such that, when mounted, the power transmission system is clamped between the first part of the endblock and the second part of the endblock, and

wherein the first and/or the second and/or the third part of the power transmission system is also responsible for the transmission of electrical power.

2. The power transmission system according to claim 1 , wherein at least two of the three parts of the power transmission system are made from the same material.

3. The power transmission system according to claim 1 , wherein the three parts of the power transmission system are made as one monolithic part.

4. The power transmission system according to claim 1 , wherein a spring in the first and/or the second and/or the third part that is spring-loaded is from an electrically conductive material.

5. The power transmission system according to claim 1 , wherein the contact surface of the first part of the power transmission system is adapted to form a slide contact with the endblock or

wherein the contact surface of the third part of the power transmission system is adapted to form a slide contact with the endblock.

6. The power transmission system according to claim 1 , wherein the first part of the endblock is rotatable in order to rotate the sputter target during a sputter operation or

wherein the second part of the endblock is rotatable in order to rotate the sputter target during a sputter operation.

7. The power transmission system according to claim 1 , wherein a contact surface of the first part and/or the third part of the power transmission system is formed such that there are several contact areas between the contact surface and the endblock, distributed over the contact surface, when the sputter device is in a static state.

8. The power transmission system according to claim 1 , wherein the second part of the power transmission system is a spring and electrically conductive part.

9. The power transmission system according to claim 1 , wherein the power transmission system, when mounted in a endblock and the corresponding sputter installation is in operation, is positioned in cooling water.

10. The power transmission system according to claim 1 , wherein the first part of the power transmission system has a cylindrical form adapted to adjoin to the first part of the endblock, and/or

wherein the third part of the power transmission system has a cylindrical form adapted to adjoin the second part of the endblock or the inside of a cylindrical target.

11. The power transmission system according to claim 1 , wherein at least the spring part is made of a copper-beryllium alloy or a copper-tin alloy.

12. The power transmission system according to claim 1 , wherein an additional layer is present on a contact surface of the first and/or third part.

13. The power transmission system according to claim 12 , wherein the additional layer is renewable after wear and/or

wherein the additional layer is thermally attached to a core and/or

wherein the additional layer is made of an alloy which contains tin and copper, or an alloy which contains copper or carbon.

14. The power transmission system according to claim 1 , wherein the first part or the third part of the power transmission system comprises cylindrical elements,

wherein chromed surfaces of the cylindrical elements are formed such that they conform respectively to the first part of the endblock or the second part of the endblock or the sputter target, and

wherein the cylindrical elements can be pressed radially against the second part of the endblock by a spring part.

15. The power transmission system according to claim 1 , wherein the second part of the power transmission system comprises one or more helical springs.

16. The power transmission system according to claim 1 , wherein the first part and/or the third part of the power transmission system may have a sprung cylindrical form or

wherein the first and/or the third part of the power transmission system consists of a meandering plate placed in a cylindrical surface or

wherein the first part and/or the third part of the power transmission system is formed as a spongy electrically conductive structure.

17. The power transmission system according to claim 1 , wherein the power transmission system is formed such that the third part of the power transmission system is pressed axially against the edge of the second part of the endblock,

wherein the second part of the endblock is adapted to rotate the sputter target.

18. The power transmission system according to claim 17 , wherein the second part of the power transmission system consists of an ondular spring which presses the third part of the power transmission system axially against the sputter target or the second part of the endblock when the power transmission system is mounted.

19. An endblock for a sputter device which comprises a power transmission system according to claim 1 .

20. A sputter device which comprises a power transmission system according to claim 1 .

Assignments (2)
CHANGE OF NAME Recorded May 6, 2022
From: SOLERAS ADVANCED COATINGS BVBA
To: SOLERAS ADVANCED COATINGS BV
Reel/Frame 059862/0795 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2019
From: VAN DE PUTTE, IVAN; DEWILDE, NIEK; CORTEVILLE, KOEN
To: SOLERAS ADVANCED COATINGS BVBA
Reel/Frame 047956/0762 →
Priority Claims (1)
BE 2016/5584 · Jul 13, 2016 · national
Continuity (1)
Related Publication 20190237306A1 · Aug 1, 2019