Claims
- 1. An injector for providing gas distribution to a substrate, comprising:
a single elongated member having end surfaces and at least one elongated external gas delivery surface extending along the length of the member directly facing the substrate; at least a first elongated passage formed in said single elongated member and extending between the end surfaces serving to receive a gas; at least a second elongated passage formed in said single elongated member and extending between the end surfaces serving to receive an etchant species; at least a first thin, elongated distribution slot formed in said single elongated member and extending directly between said first elongated passage and said gas delivery surface for carrying gas directly from said elongated passage for distribution along the elongated external gas delivery surface; and at least a second thin, elongated distribution slot formed in said single elongated member and extending directly between said second elongated passage and said gas delivery surface for carrying an etchant species from said second elongated passage for distribution along the elongated external gas delivery surface.
- 2. The injector of claim 1, further comprising at least a third elongated passage formed in said elongated member and extending between the ends serving to receive a medium for temperature control of the injector.
- 3. An injector for providing gas distribution to a substrate, comprising:
a single elongated member having end surfaces and at least one elongated external gas delivery surface extending along the length of the member directly facing the substrate; a plurality of first elongated passages formed in said elongated member and extending directly between the end surfaces, each serving to receive a gas; a plurality of second elongated passages formed in said elongated member and extending directly between the end surfaces, each serving to receive an etchant species; a plurality of first thin, spaced, elongated distribution slots formed in said single elongated member, one of said plurality of slots extending directly between each of said first elongated passages and the gas delivery surface for carrying the gases directly from the respective passage to the gas delivery surface for distribution along the substrate placed adjacent said delivery surface; and a plurality of second thin, elongated distribution slots formed in said single elongated member, one of said plurality of slots extending directly between each of said second elongated passages and the gas delivery surface for carrying the etchant species from the respective passage to the gas delivery surface.
- 4. The injector of claim 3, further comprising at least one third elongated passage formed in said elongated member and extending between the ends serving to receive a medium for temperature control of the injector.
- 5. The injector of claim 3, further comprising at least one metering tube inserted into at least one of said plurality of first elongated passages and spaced from the walls of said first elongated passages and extending between the ends, serving to receive a gas and distribute the gas along the elongated passage where it flows through the distribution slot to the substrate.
- 6. The injector of claim 5 wherein the metering tube comprises a porous material.
- 7. The injector of claim 5 wherein the metering tube comprises a slot extending along the length of said metering tube.
- 8. The injector of claim 7 wherein and said slot is directed away from the distribution channel.
- 9. The injector of claim 5 wherein the metering tube comprises a plurality of openings along the length of said metering tube, said openings being directed away from the distribution slot.
- 10. The injector of claim 9 wherein said plurality of openings vary in dimension along the length of said metering tube.
- 11. The injector of claim 9 wherein said plurality of openings vary in spacing along the length of said metering tube.
- 12. The injector of claim 1, further comprising at least one metering tube inserted into at least one of said at least first elongated passage and spaced from the walls of said first elongated passages and extending between the ends, serving to receive a gas and distribute the gas along the elongated passage where it flows through the distribution slot to the substrate.
- 13. The injector of claim 12 wherein the metering tube comprises a plurality of openings along the length of said metering tube, said openings being directed away from the distribution slot.
- 14. The injector of claim 12 wherein the metering tube comprises a slot extending along the length of said metering tube.
- 15. An injector for providing gas distribution to a substrate, comprising:
a single elongated member having end surfaces, and an elongated external gas delivery surface having rounded side regions and a center recessed region, said gas delivery surface extending along the length of the member directly facing the substrate; at least a first elongated passage formed in said elongated member and extending between the end surfaces for receiving a gas; and at least a first thin, elongated distribution slot formed in said single elongated member and extending directly between said first elongated passage and the center recessed region of said gas delivery surface for carrying gas directly from said elongated passage for distribution along the elongated external gas delivery surface.
- 16. The injector of claim 15, further comprising at least a second elongated passage formed in said elongated member and extending between the end surfaces for receiving an etchant species; and
at least a second thin, elongated distribution slot formed in said single elongated member and extending directly between the at least a second elongated passage and said gas delivery surface for carrying the etchant species from said elongated passage for distribution along the elongated external gas delivery surface.
- 17. The injector of claim 15, further comprising at least a third elongated passage formed in said elongated member and extending between the ends serving to receive a medium for temperature control of the injector.
- 18. The injector of claim 15, further comprising at least one metering tube inserted into the at least a first elongated passage and spaced from the walls of said first elongated passage and extending between the ends, serving to receive the gas and distribute the gas along the elongated passage where it flows through the distribution slot to the substrate.
- 19. The injector of claim 18 wherein at least one of said plurality of metering tubes comprises a porous material.
- 20. The injector of claim 18 wherein at least one of said plurality of metering tubes comprises a slot extending along the length of said metering tube, said slot being directed away from the distribution slot.
- 21. The injector of claim 18 wherein at least one of said plurality of metering tubes comprises a plurality of openings along the length of said metering tube, and said openings being directed away from the distribution slot.
- 22. The injector of claim 21 wherein said plurality of openings vary in dimension along the length of said metering tube.
- 23. The injector of claim 21 wherein said plurality of openings vary in spacing along the length of said metering tube.
- 24. An injector for providing gas distribution to a substrate, comprising:
a single elongated member having end surfaces, and an elongated external gas delivery surface having rounded side regions and a center recessed regions, said gas delivery surface extending along the length of the member directly facing the substrate; a plurality of first elongated passages formed in said elongated member and extending between the end surfaces for receiving a gas; and a plurality of first thin, spaced, elongated distribution slots formed in said single elongated member, one of said plurality of slots extending directly between each of said first elongated passages and the center recessed region of said gas delivery surface for carrying the gases directly from the respective passage to the gas delivery surface for distribution along the substrate placed adjacent said delivery surface.
- 25. The injector of claim 24 further comprising:
a plurality of second elongated passages formed in said elongated member and extending directly between the end surfaces, each serving to receive an etchant species; and a plurality of second thin, elongated distribution slots formed in said single elongated member, one of said plurality of slots extending directly between each of said second elongated passages and gas delivery surface for carrying the etchant species from the respective passage to the gas delivery surface
- 26. The injector of claim 24, further comprising at least one metering tube inserted into said plurality of first elongated passages and spaced from the walls of said first elongated passages and extending between the ends, serving to receive the gas and distribute the gas along the elongated passage where it flows through the distribution slot to the substrate.
- 27. The injector of claim 26 wherein at least one of said plurality of metering tubes comprises a porous material.
- 28. The injector of claim 26 wherein at least one of said plurality of metering tubes comprises a slot extending along the length of said metering tube, said slot- being directed away from the distribution slot.
- 29. The injector of claim 25 wherein at least one of said plurality of metering tubes comprises a plurality of openings along the length of said metering tube, and said openings being directed away from the distribution slot.
- 30. The injector of claim 29 wherein said plurality of openings vary in dimension along the length of said metering tube.
- 31. The injector of claim 29 wherein said plurality of openings vary in spacing along the length of said metering tube.
- 32. A deposition chamber for providing gas distribution to a substrate, comprising:
an injector assembly comprised of at least one single injector formed of a single member and having end surfaces and at least one elongated gas delivery surface extending along the length of the member for delivering gases to the substrate; a plurality of vent blocks each having end surfaces and at least one elongated external surface extending along the length of the vent block, wherein said vent blocks are positioned adjacent and one on each side of said at least one single injector, and spaced from said injector to define exhaust channels therebetween for removing the gases; and a support for supporting the substrate, said support being positioned beneath said injector and vent blocks and creating a deposition region therebetween.
- 33. The deposition chamber of claim 32 wherein the distance between the support and the at least one elongated external surface is selected such that a semi-seal is created which substantially prevents the flow of the gases out of the deposition region.
- 34. The deposition of claim 32 wherein the distance between a top surface of the substrate placed on said support, and the at least one elongated external surface is equal to or less than approximately 1.0 mm.
- 35. The deposition of claim 32 wherein the distance between a top surface of the substrate placed on said support, and the at least one elongated external surface is in the range of substantially 0.5 to 1.0 mm.
- 36. The deposition chamber of claim 32 wherein the elongated gas delivery surface of said injector member has at least one rounded side region, and wherein one side of each of said vent blocks that is adjacent to said injector member includes at least one contoured side region, such that the exhaust channel formed between said regions is rounded for providing substantially uniform removal of said gases.
- 37. The deposition chamber of claim 32 wherein said injector further comprises:
said elongated gas delivery surface having a center recessed region; a plurality of first elongated passages formed in said injector and extending between the end surfaces for receiving a gas; and a plurality of first thin, spaced, elongated distribution slots formed in said injector, one of said plurality of slots extending directly between each of said first elongated passages and the center recessed region of said gas delivery surface for carrying the gases from the respective passage to the gas delivery surface for distribution along the substrate placed adjacent said delivery surface.
- 38. The deposition chamber of claim 32, further comprising at least a second elongated passage formed in said injector and extending between the end surfaces for receiving an etchant species; and
at least a second thin, elongated distribution slot formed in said injector and extending directly between the at least a second elongated passage and the gas delivery surface for carrying the etchant species from said second elongated passage for distribution along the elongated gas delivery surface.
- 39. The deposition chamber of claim 32 wherein said vent block further comprises:
at least one elongated passage formed in said vent block and extending between the end surfaces for receiving an etchant species; and at least one thin, elongated distribution slot formed in said vent block and extending between the at least one elongated passage and the elongated external surface for carrying the etchant species from said elongated passage for distribution along the elongated external surface.
- 40. The deposition chamber of claim 32, further comprising at least a third elongated passage formed in said injector and extending between the ends serving to receive a medium for temperature control of the injector.
- 41. The deposition chamber of claim 32, further comprising at least one metering tube inserted into the at least one of said plurality of first elongated passages and spaced from the walls of said first elongated passage and extending between the ends, serving to receive the gas and distribute the gas along the first elongated passage where it flows through the distribution slot to the substrate.
- 42. The deposition chamber of claim 41 wherein said at least one metering tube comprises a porous material.
- 43. The deposition chamber of claim 41 wherein said at least one metering tube comprises a slot extending along the length of said metering tube, said slot being directed away from the distribution slot.
- 44. The deposition chamber of claim 41 wherein said at least one metering tube comprises a plurality of openings along the length of said metering tube, and said openings being directed away from the distribution slot.
- 45. An deposition chamber for delivering gases to a substrate, comprising:
an injector assembly having at least one injector comprised of a single member having end surfaces and at least one elongated gas delivery surface extending along the length of the member for delivering gases to the substrate, said gas delivery surface having rounded side regions and a center recessed region; and at least two vent blocks, each vent block having end and side surfaces and at least one elongated external surface extending along the length of the vent block, at least of said side surfaces having a contoured side region, and said vent block being positioned adjacent and spaced from said injector member to define an exhaust channel therebetween, said exhaust channel having a rounded portion where formed between said rounded and contoured regions for removing said gas in a substantially uniform manner; and a support for supporting and moving a substrate, where said support, and each injector and at least two vent blocks form a deposition region therebetween for processing said substrate, wherein said injector includes a plurality of first elongated passages formed in said single member and extending between the end surfaces for receiving a gas, and a plurality of first thin, spaced, elongated distribution slots, one of said plurality of slots extending directly between each of said first elongated passages and the center recessed region of said gas delivery surface for carrying the gases directly from the respective passage to the gas delivery surface, and wherein at least one of said vent blocks includes at least one second elongated passage formed in said vent block and extending between the end surfaces for receiving an etchant species, and at least a second thin, elongated distribution slot extending directly between said second elongated passage and the external surface for carrying the etchant species from said elongated passage for distribution along the elongated external surface.
- 46. The deposition chamber of claim 45, wherein said injector further comprising at least one third elongated passage formed in said single member and extending between the end surfaces for receiving an etchant species; and
at least one third thin, elongated distribution slot formed in said single member and extending directly between the at least one third elongated passage and the rounded side region of said gas delivery surface for carrying the etchant species from said elongated passage for distribution along the elongated gas delivery surface.
- 47. The deposition chamber of claim 45, further comprising at least one metering tube inserted into the at least one first elongated passage and spaced from the walls of said first elongated passage and extending between the ends, serving to receive the gas and distribute the gas along the elongated passage where it flows through the distribution slot to the substrate.
- 48. The deposition chamber of claim 32 wherein said deposition chamber further comprises a plurality of injectors and a plurality of vent blocks, each of said vent blocks being positioned adjacent and spaced from each side of said plurality of injectors to form a plurality of exhaust channels therebetween.
- 49. The deposition chamber of claim 47 further comprising three injectors and four vent blocks, each of said vent blocks being placed adjacent one side of each of the three injectors such that two of said vent blocks are internal to the chamber, and the other two vent blocks make up the outer part of the chamber; and wherein the two internal vent blocks include an elongated internal passage for distributing gases between the injectors.
- 50. The deposition chamber of claim 45 further comprising:
a gas inlet, placed remote from said injector assembly, wherein said gas inlet injects gases into said injector assembly, and the gases are removed through said exhaust channels, thereby creating an inwardly flowing purge which acts to isolate said deposition regions.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of application Ser. No. 08/892,469 filed Jul. 14, 1997; which is a continuation-in-part of application Ser. No. 08/621,772 filed Mar. 22, 1996, now U.S. Pat. No. 5,683,516 issued Nov. 4, 1997; which is a File Wrapper Continuing application of Ser. No. 08/276,815 filed Jul. 18, 1994 (now abandoned), the disclosures of which are herein incorporated by reference. U.S. Pat. application Ser. No. filed simultaneously herewith is incorporated herein in its entirety by reference.
Divisions (1)
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Number |
Date |
Country |
Parent |
09113823 |
Jul 1998 |
US |
Child |
09757542 |
Jan 2001 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
08276815 |
Jul 1994 |
US |
Child |
08621772 |
Mar 1996 |
US |
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
08892469 |
Jul 1997 |
US |
Child |
09113823 |
Jul 1998 |
US |
Parent |
08621772 |
Mar 1996 |
US |
Child |
08892469 |
Jul 1997 |
US |