IP Library › Granted Patent US 11,257,660
Granted Patent B2
US 11,257,660 · App. 16/929,231 · Granted Feb 22, 2022

Apparatus and method for treating substrate

Inventors: Daehyun Kim (Seoul, KR); Saewon Na (Cheongju-si, KR); Sun Joo Park (Seoul, KR)
Assignee: Semes Co., Ltd.
H01J37/32183H01J37/3244H01L21/67069H01J2237/334
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Quick Facts
Patent No.
US 11,257,660
App. No.
16/929,231
Granted
Feb 22, 2022
Kind
B2
Abstract

An apparatus for treating a substrate includes a process chamber having a treatment space therein, a support unit that supports the substrate in the treatment space, a gas supply unit that supplies a process gas into the treatment space, an RF power supply that supplies an RF signal to excite the process gas into plasma, and a matching circuit connected between the RF power supply and the process chamber. The matching circuit includes an impedance matching device that performs impedance matching and a harmonic removal device that removes harmonics caused by the RF power supply. The matching circuit operates in a first mode when the harmonics caused by the RF power supply are sensed and in a second mode when the harmonics caused by the RF power supply are not sensed.

Claims (79)

1. An apparatus for treating a substrate, the apparatus comprising:

a process chamber having a treatment space therein;

a support unit configured to support the substrate in the treatment space;

a gas supply unit configured to supply a process gas into the treatment space;

an RF power supply configured to supply an RF signal to excite the process gas into plasma; and

a matching circuit connected between the RF power supply and the process chamber,

wherein the matching circuit includes,

an impedance matching device configured to perform impedance matching, and

a harmonic removal device configured to remove harmonics caused by the RF power supply, the harmonic removal device including a low-pass filter and a notch filter that are connected in series between the RF power supply and the impedance matching device.

2. The apparatus of claim 1 , wherein the matching circuit is configured to:

operate in a first mode when the harmonics caused by the RF power supply are sensed; and

operate in a second mode when the harmonics caused by the RF power supply are not sensed.

3. An apparatus for treating a substrate, the apparatus comprising:

a process chamber having a treatment space therein;

a support unit configured to support the substrate in the treatment space;

a gas supply unit configured to supply a process gas into the treatment space;

an RF power supply configured to supply an RF signal to excite the process gas into plasma; and

a matching circuit connected between the RF power supply and the process chamber,

wherein the matching circuit includes a harmonic removal device and an impedance matching device between the RF power supply and the process chamber, and

wherein the apparatus further comprises a switch for connecting the harmonic removal device to the RF power supply.

4. The apparatus of claim 3 , wherein

the harmonic removal device includes,

a harmonic removal line including a first variable capacitor configured to remove harmonics, and

a bypass line connected with the harmonic removal line in parallel, and

the switch is configured to selectively connect one of the harmonic removal line and the bypass line that are between the RF power supply and the impedance matching device.

5. The apparatus of claim 4 , wherein the switch includes:

a first switch configured to switch between one end of the bypass line and one end of the harmonic removal line; and

a second switch configured to switch between an opposite end of the bypass line and an opposite end of the harmonic removal line.

6. The apparatus of claim 3 , wherein

the harmonic removal device includes,

a harmonic removal line including a low-pass filter and a notch filter that are connected in series between the RF power supply and the impedance matching device, and

a bypass line connected with the harmonic removal line in parallel, and

the switch is configured to selectively connect to one of the harmonic removal line and the bypass line that are between the RF power supply and the impedance matching device.

7. The apparatus of claim 4 , wherein the matching circuit further includes:

a sensor configured to sense the harmonics caused by the RF power supply.

8. The apparatus of claim 7 , wherein the switch is configured to connect the harmonic removal line between the RF power supply and the impedance matching device when the sensor senses the harmonics.

9. An apparatus for treating a substrate, the apparatus comprising:

a process chamber having a treatment space therein;

a support unit configured to support the substrate in the treatment space;

a gas supply unit configured to supply a process gas into the treatment space;

an RF power supply configured to supply an RF signal to excite the process gas into plasma; and

a matching circuit connected between the RF power supply and the process chamber,

wherein the matching circuit includes,

an impedance matching device configured to perform impedance matching,

a harmonic removal device configured to remove harmonics caused by the RF power supply, the harmonic removal device including a low-pass filter and a notch filter that are connected in series between the RF power supply and the impedance matching device, and

an impedance controller configured to remove harmonics caused by non-linearity of the plasma in the process chamber.

10. The apparatus of claim 9 , wherein the matching circuit is configured to:

operate in a first mode when the harmonics caused by the RF power supply or the harmonics caused by the non-linearity of the plasma in the process chamber are sensed; and

operate in a second mode when the harmonics caused by the RF power supply or the harmonics caused by the non-linearity of the plasma in the process chamber are not sensed.

11. An apparatus for treating a substrate, the apparatus comprising:

a process chamber having a treatment space therein;

a support unit configured to support the substrate in the treatment space;

a gas supply unit configured to supply a process gas into the treatment space;

an RF power supply configured to supply an RF signal to excite the process gas into plasma; and

a matching circuit connected between the RF power supply and the process chamber,

wherein the matching circuit includes,

an impedance matching device configured to perform impedance matching,

a harmonic removal device configured to remove harmonics caused by the RF power supply, and

an impedance controller configured to remove harmonics caused by non-linearity of the plasma in the process chamber,

wherein the matching circuit is configured to,

operate in a first mode when the harmonics caused by the RF power supply or the harmonics caused by the non-linearity of the plasma in the chamber are sensed, and

operate in a second mode when the harmonics caused by the RF power supply or the harmonics caused by the non-linearity of the plasma in the chamber are not sensed, and

wherein a transition to the first mode or the second mode is performed by switching switches connected to opposite ends of the harmonic removal device included in the matching circuit and a switch included in the impedance controller.

12. The apparatus of claim 11 , wherein

the harmonic removal device includes,

a harmonic removal line including a first variable capacitor configured to remove the harmonics, and

a bypass line connected with the harmonic removal line in parallel, and

the impedance controller includes,

a high-pass filter, and

a second variable capacitor connected with the high-pass filter in series.

13. The apparatus of claim 12 , wherein

the harmonic removal device further includes,

a first switch configured to switch between one end of the bypass line and one end of the harmonic removal line, and

a second switch configured to switch between an opposite end of the bypass line and an opposite end of the harmonic removal line, and

wherein the impedance controller further includes a third switch connected to one end of the high-pass filter.

14. The apparatus of claim 13 , wherein the transition to the first mode or the second mode is performed by selective connection of the first switch, the second switch, and the third switch.

15. The apparatus of claim 12 , wherein the matching circuit further includes:

a sensor configured to sense the harmonics caused by the RF power supply and the harmonics caused by the non-linearity of the plasma in the process chamber.

16. The apparatus of claim 15 , wherein the matching circuit is configured to remove the harmonics by adjusting the first variable capacitor included in the harmonic removal device and the second variable capacitor included in the impedance controller.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2020
From: KIM, DAEHYUN; NA, SAEWON; PARK, SUN JOO
To: SEMES CO., LTD.
Reel/Frame 053230/0821 →
Priority Claims (1)
KR 10-2019-0085473 · Jul 16, 2019 · national
Continuity (1)
Related Publication 20210020412A1 · Jan 21, 2021