IP Library › Granted Patent US 11,862,436
Granted Patent B2
US 11,862,436 · App. 17/505,944 · Granted Jan 2, 2024

Plasma processing apparatus and plasma processing method

Inventors: Toru Fujii (Miyagi, JP); Yoshitomo Konta (Miyagi, JP); Kohei Otsuki (Miyagi, JP)
Assignee: TOKYO ELECTRON LIMITED
H01J37/32522H01J37/32183H01J37/32449H01J37/32559H01J37/32724H01L21/3065H01L21/67069H01L21/6833H01J2237/002H01J2237/3343
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Quick Facts
Patent No.
US 11,862,436
App. No.
17/505,944
Granted
Jan 2, 2024
Kind
B2
Abstract

A plasma processing apparatus includes a processing vessel; a placing table, serving as a lower electrode, disposed within the processing vessel; an upper electrode serving as a facing electrode of the placing table; a plasma processor configured to form a gas within the processing vessel into plasma by supplying a high frequency power and to process a processing target object on the placing table with the plasma; a cover member configured to cover the upper electrode from thereabove; a cooler provided within the cover member and configured to cool the upper electrode with a coolant having a temperature lower than a dew point temperature of exterior air outside the processing vessel; and a gas supply configured to supply a low-dew point gas having a dew point temperature lower than the dew point temperature of the exterior air into a space surrounded by the cover member and the upper electrode.

Claims (65)

1. A plasma processing apparatus comprising:

a plasma processing chamber;

a substrate support disposed in the plasma processing chamber and including a lower electrode;

a cover disposed on the plasma processing chamber and having an internal space;

a showerhead assembly disposed above the substrate support and including a conductive member and an upper electrode, the conductive member having a coolant passage and an upper surface exposed to the internal space of the cover;

a plasma generator configured to generate a plasma in a space between the substrate support and the showerhead assembly;

a gas supply configured to supply a gas into the internal space of the cover, the gas comprising an inert gas or dry air, the gas supply including a valve disposed between a gas source and the internal space of the cover;

a pressure gauge configured to measure a pressure in the internal space of the cover; and

a controller configured to control the valve based on measurements of the pressure gauge such that air containing moisture is exhausted from the internal space of the cover and the internal space of the cover is filled with the inert gas or the dry air.

2. The plasma processing apparatus of claim 1 ,

wherein the controller is configured to control the valve such that the internal space of the cover has a positive pressure.

3. The plasma processing apparatus of claim 1 ,

wherein the controller is configured to open the valve when the internal space of the cover has a pressure equal to or less than a preset pressure, and to close the valve when the internal space of the cover has a pressure greater than a preset pressure.

4. The plasma processing apparatus of claim 1 , further comprising:

an exhaust device configured to exhaust a gas in the internal space of the cover.

5. The plasma processing apparatus of claim 1 ,

wherein the plasma generator includes;

an RF source;

a matching circuit electrically connected to the RF source; and

a hollow conductive rod vertically extending from the matching circuit to the conductive member through the internal space of the cover.

6. The plasma processing apparatus of claim 5 ,

wherein the hollow conductive rod has at least one through hole communicating the internal space of the cover with a hollow space of the hollow conductive rod.

7. The plasma processing apparatus of claim 5 , further comprising:

a heater disposed on the hollow conductive rod.

8. The plasma processing apparatus of claim 5 , further comprising:

a temperature-controlled device configured to circulate a fluid in a hollow space of the hollow conductive rod.

9. The plasma processing apparatus of claim 1 ,

wherein a coolant flowing in the coolant passage has a temperature equal to or less than 0° C.

10. A plasma processing apparatus comprising:

a plasma processing chamber;

a substrate support disposed in the plasma processing chamber and including a lower electrode;

a cover disposed on the plasma processing chamber and having an internal space;

a showerhead assembly disposed above the substrate support and including a conductive member and an upper electrode, the conductive member having a coolant passage and an upper surface exposed to the internal space of the cover;

a plasma generator configured to generate a plasma in a space between the substrate support and the showerhead assembly;

a gas supply configured to supply a gas into the internal space of the cover, the gas comprising an inert gas or dry air;

an exhaust device configured to exhaust a gas in the internal space of the cover;

a second valve disposed between the exhaust device and the internal space of the cover;

a pressure gauge configured to measure a pressure in the internal space of the cover; and

a controller configured to control the valve based on measurements of the pressure gauge such that air containing moisture is exhausted from the internal space of the cover and the internal space of the cover is filled with the inert gas or the dry air.

11. The plasma processing apparatus of claim 10 ,

wherein the controller is configured to control the valve such that the internal space of the cover has a positive pressure.

12. The plasma processing apparatus of claim 10 ,

wherein the controller is configured to close the valve when the internal space of the cover has a pressure equal to or less than a preset pressure, and to open the valve when the internal space of the cover has a pressure greater than a preset pressure.

13. The plasma processing apparatus of claim 10 ,

wherein the plasma generator includes;

an RF source;

a matching circuit electrically connected to the RF source; and

a hollow conductive rod vertically extending from the matching circuit to the conductive member through the internal space of the cover.

14. The plasma processing apparatus of claim 13 ,

wherein the hollow conductive rod has at least one through hole communicating the internal space of the cover with a hollow space of the hollow conductive rod.

15. The plasma processing apparatus of claim 13 , further comprising:

a heater disposed on the hollow conductive rod.

16. The plasma processing apparatus of claim 13 , further comprising:

a temperature-controlled device configured to circulate a fluid in a hollow space of the hollow conductive rod.

17. The plasma processing apparatus of claim 10 ,

wherein a coolant flowing in the coolant passage has a temperature equal to or less than 0° C.

18. A plasma processing apparatus comprising:

a plasma processing chamber;

a substrate support disposed in the plasma processing chamber and including a lower electrode;

a cover disposed on the plasma processing chamber and having an internal space;

a showerhead assembly disposed above the substrate support and including a conductive member and an upper electrode, the conductive member having a coolant passage and an upper surface exposed to the internal space of the cover;

a plasma generator configured to generate a plasma in a space between the substrate support and the showerhead assembly;

a gas supply configured to supply a gas into the internal space of the cover, the gas comprising an inert gas or dry air;

a pressure gauge configured to measure a pressure in the internal space of the cover;

a controller configured to control the gas supply based on measurements of the pressure gauge such that air containing moisture is exhausted from the internal space of the cover and the internal space of the cover is filled with the inert gas or the dry air.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 20, 2021
From: FUJII, TORU; KONTA, YOSHITOMO; OTSUKI, KOHEI
To: TOKYO ELECTRON LIMITED
Reel/Frame 057847/0668 →
Priority Claims (1)
JP 2018-246076 · Dec 27, 2018 · national
Continuity (2)
Division 16724757 · Dec 23, 2019
Related Publication 20220044914A1 · Feb 10, 2022
Cited By (1)
US 12,469,678