ARC SOURCE SYSTEM FOR A CATHODE
20210257190 · 2021-08-19
Inventors
Cpc classification
C23C14/3407
CHEMISTRY; METALLURGY
International classification
Abstract
An arc source system, comprising a cooling body (12) and a holder body (3) adapted to be detachably fastened to said cooling body and for holding a cathode body (4), wherein the system comprises a membrane (2) which is arranged between the holder body and a lower portion (14) of said cooling body; and wherein said lower portion (14) of said cooling body is provided with at least one cooling fluid channel (11), and wherein said holder body (3) is provided with an inner fastening arrangement configured to be coupled with a corresponding outer fastening arrangement on a cathode body (4).
Claims
1. An arc source system, comprising a cooling body and a holder body adapted to be detachably fastened to said cooling body and for holding a cathode body, the cooling body comprising a lower portion and an upper portion, wherein the system comprises a membrane which is arranged between the holder body and the lower portion of said cooling body; and wherein said lower portion of said cooling body is provided with at least one cooling fluid channel, and wherein said holder body is provided with an inner fastening arrangement configured to be coupled with a corresponding outer fastening arrangement on a cathode body, wherein said holder body is detachably fastened to said cooling body by at least two fastening devices, and wherein said fastening devices further are arranged to engage said membrane.
2. The arc source system as claimed in claim 1, wherein said fastening arrangement comprises an inner threaded portion of the holder portion, configured to be in a threaded coupling with a corresponding outer threaded portion of the cathode body, or wherein said fastening arrangement comprises a bayonet mount.
3. The arc source system as claimed in claim 1, wherein the membrane is made of copper, aluminum, or alloys or mixtures thereof.
4. The arc source system as claimed in claim 3, wherein said membrane is made from brass.
5. The arc source system as claimed in claim 1, wherein the membrane has a thickness in the range of 0.2 to 5 mm.
6. (canceled)
7. (canceled)
8. The arc source system as claimed in claim 1, wherein said holder body is made from a solid body provided with a circular aperture for receiving and holding said cathode body.
9. The arc source as claimed in claim 8, wherein the cathode body comprises an upper portion configured to face a deposition chamber and a lower portion facing the membrane, wherein said aperture defines an area where said membrane is adjacent to the lower portion, when said cathode body is held in said holder body.
10. The arc source system as claimed in claim 1, wherein the upper portion of the cooling body comprises at least one cooling fluid inlet and at least one cooling fluid outlet, wherein said inlet and outlet are connected to said at least one fluid cooling channel.
11. The arc source system as claimed in claim 1, further comprising a magnet body arranged at the upper portion of said cooling body, and a magnet holder arranged to enclose an iron core and wherein a lower portion of said magnet holder is arranged to abut said magnet body.
12. The arc source system as claimed in claim 11, wherein said iron core is arranged between said magnet body and an adaptor.
13. The arc source system as claimed in claim 1, wherein said system is adapted to receive and hold a circular cathode body.
14. A circular cathode body for the arc source system as claimed in claim 1, wherein said cathode body is provided with a fastening arrangement on an outer lower portion thereof, adapted to be coupled with a corresponding fastening arrangement on a holder body of the arc source system.
15. The cathode body as claimed in claim 14, wherein said fastening arrangement is an outer threaded portion on an outer lower portion thereof adapted to be coupled with a corresponding inner threaded portionof a holder body of said arc source system; or wherein said fastening arrangement is a bayonet mount.
16. (canceled)
17. (canceled)
18. The arc source system as claimed in claim 1, wherein the membrane has a thickness in the range of 0.5 to 2 mm.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0030] Embodiments of the present solution will now be described, by way of example, with reference to the accompanying schematic drawings.
[0031]
[0032]
[0033]
[0034]
DESCRIPTION OF EMBODIMENTS
[0035] As illustrated in
[0036] The arc source system 30 may further comprise an insulation ring 10 arranged around the lower portion of the cooling body.
[0037] The lower portion of the cooling body is provided with receiving means for at least two fastening devices 9. These fastening devices 9 are provided to detachably secure a holder body 3 onto the cooling body 12.
[0038] The holder body 3 is arranged to retain or clamp a cathode body 4, i.e. the target material for the sputtering process.
[0039] In
[0040] According to one embodiment the fastening devices 9 may be any one of a screw, pin or rivet. Preferably the fastening device is a screw which is fastened and secured into the lower portion of the cooling body.
[0041] As illustrated in the drawings the cathode body 4 is arranged in a circular aperture of the holder body 3. The holder body is made from a solid body provided with the circular aperture for receiving and holding said cathode body. The outer circumference of the holder body may however have any configuration even though is depicted as circular in the drawings.
[0042] In
[0043] A membrane 2 is arranged between the lower portion 14 of the cooling body 12 and the cathode body 4 (when arranged in connection with the holder body).
[0044] The membrane 2 has a thickness, as seen in a vertical direction from the cathode body to the cooling body, in the range of 0.2 to 5 mm, or preferably in the range of 0.5 to 2 mm. Most preferably the thickness is about 0.5 mm.
[0045] The membrane is thus arranged between the cooling body and the cathode, and such that the fluid in the cooling fluid channels directly come into contact with the upper surface thereof, while the lower surface of the membrane 2 abuts the cathode body.
[0046] The membrane is detachably fastened to the cooling body through the fastening devices 9. This means that the membrane has a width that is larger than the width of the aperture in the holder body in which the cathode body is retained. This provides sufficient sealing to not allow any cooling fluid into a deposition chamber.
[0047] The membrane may also be clamped between the cathode and cooling body.
[0048] The membrane is formed from a material which is preferably both thermally and electrically conductive. This means that the current fed into the arc source system through the adaptor 8 is transferred trough the cooling body and the membrane to the cathode body 4.
[0049] Alternatively, but not preferred, the membrane may be formed by a thermally conductive, but electrically insulating material. The arc source system is then configured such that the current is provided to the cathode body by other means.
[0050] The membrane 2 may according to one embodiment be formed from a suitable metal. Examples of such metals are copper, aluminum or alloys or combinations thereof.
[0051] In one embodiment the membrane is formed from or of brass.
[0052] The cathode body 4 may be formed from any suitable metal, non-metal or combinations thereof.
[0053] The cathode body 4 is preferably formed as a circular body, having an upper portion 19 facing a deposition chamber (not shown) and a lower portion 18 facing the membrane 2, when the cathode body is placed in the holder. The cathode body 4 comprises a fastening arrangement such that is can be detachably fastened or attached to the holder body 3. In one embodiment the outer lower portion 18 of the circular body is provided with a threaded portion 20. This threaded portion is designed such that it corresponds to an inner threaded portion 13 arranged in the circumference of the aperture in the holder body 3. This means that the cathode body may be in a threaded connection to the holder body.
[0054] In an alternative embodiment (not shown in the drawings) the fastening arrangement is a bayonet mount or bayonet connector, which is well known to the skilled person and conventionally comprises a cylindrical male side (i.e. in the holder body) with one or more radial pins, and a female receptor (i.e. the cathode body) with matching L-shaped slot(s) and with spring(s) to keep the two parts locked together.
[0055] As further illustrated in
[0056] The system 30 may further comprise a magnet body 5 arranged at an upper portion of said cooling body 12. The magnet 5 may be held in place by a magnet holder 6 formed from a polymer or plastic material. A lower portion 24 of the magnet holder 6 may be arranged such that it lies against or abuts the magnet body.
[0057] The system may further comprise an iron core 7, which is arranged between the magnet body 5 and the adaptor 8. In one embodiment the lower portion of the iron core 7 may be enclosed by the magnet body 5.
[0058] As illustrated in
[0059] The adapter 8 may further be provided with a protruding circular disc 22 arranged to abut on an upper portion 23 of the magnet holder 6.