IP Library › Granted Patent US 11,462,390
Granted Patent B2
US 11,462,390 · App. 16/783,721 · Granted Oct 4, 2022

Multi-level parameter and frequency pulsing with a low angular spread

Inventors: Juline Shoeb (Fremont, CA); Alex Paterson (San Jose, CA); Ying Wu (Livermore, CA)
Assignee: Lam Research Corporation
H01J37/32146H01J37/32183H01J2237/327H01J2237/334
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Quick Facts
Patent No.
US 11,462,390
App. No.
16/783,721
Granted
Oct 4, 2022
Kind
B2
Abstract

Systems and methods for multi-level pulsing of a parameter and multi-level pulsing of a frequency of a radio frequency (RF) signal are described. The parameter is pulsed from a low level to a high level while the frequency is pulsed from a low level to a high level. The parameter and the frequency are simultaneously pulsed to increase a rate of processing a wafer, to increase mask selectivity, and to reduce angular spread of ions within a plasma chamber.

Claims (50)

1. A method comprising:

generating a radio frequency (RF) signal, wherein said generating the RF signal includes generating a sinusoidal signal to form an envelope having a first parameter level;

pulsing the first parameter level of the RF signal to a second parameter level of the RF signal;

pulsing the second parameter level of the RF signal to a third parameter level of the RF signal;

pulsing the third parameter level to a fourth parameter level of the RF signal;

pulsing the fourth parameter level to a fifth parameter level;

pulsing the fifth parameter level to the first parameter level; and

pulsing a frequency of the RF signal between said pulsing the first parameter level to the second parameter level and said pulsing the fifth parameter level to the first parameter level.

2. The method of claim 1 , wherein said pulsing the frequency comprises pulsing a first frequency level of the RF signal to a second frequency level of the RF signal concurrently with said pulsing the third parameter level to the fourth parameter level.

3. The method of claim 2 , wherein said pulsing the frequency comprises pulsing the second frequency level to the first frequency level concurrently with said pulsing the fifth parameter level to the first parameter level.

4. The method of claim 1 , wherein the envelope includes a zero-to-peak envelope.

5. The method of claim 4 , wherein said pulsing the first parameter level includes increasing the zero-to-peak envelope of the RF signal from the first parameter level to the second parameter level, wherein said pulsing the second parameter level includes increasing the zero-to-peak envelope of the RF signal from the second parameter level to the third parameter level, wherein said pulsing the third Parameter level includes increasing the zero-to-peak envelope of the RF signal from the third parameter level to the fourth parameter level, wherein said pulsing the fourth parameter level includes increasing the zero-to-peak envelope of the RF signal from the fourth parameter level to the fifth parameter level.

6. The method of claim 5 , wherein said pulsing the fifth parameter level includes decreasing the zero-to-peak envelope of the RF signal from the fifth parameter level to the first parameter level.

7. The method of claim 1 , wherein the first parameter level is a first voltage level, the second parameter level is a second voltage level, the third parameter level is a third voltage level, the fourth parameter level is a fourth voltage level, and the fifth parameter level is a fifth voltage level.

8. The method of claim 1 , wherein the first parameter level has a first duty cycle, the second parameter level has a second duty cycle, the third parameter level has a third duty cycle, the fourth parameter level has a fourth duty cycle, and the fifth parameter level has a fifth duty cycle, wherein a sum of the first, second, third, fourth, and fifth duty cycles is one-hundred percent.

9. The method of claim 1 , wherein the first parameter level occurs for a first time period, the second parameter level occurs for a second time period, the third parameter level occurs for a third time period, the fourth parameter level occurs for a fourth time period, and the fifth parameter level occurs for a fifth time period, wherein the first, second, third, fourth, and fifth time periods occur during a cycle of a digital pulse signal.

10. The method of claim 1 , further comprising:

maintaining the first frequency level during said pulsing the first parameter level to the second parameter level; and

maintaining the second frequency level during said pulsing the fourth parameter level to the fifth parameter level.

11. A controller comprising:

a processor configured to control a radio frequency (RF) generator to generate an RF signal, wherein to generate the RF signal, the processor is configured to control the RF generator to output a sinusoidal signal that forms an envelope having a first parameter level;

wherein the processor is configured to control the RF generator to transition the first parameter level of the RF signal to a second parameter level of the RF signal,

wherein the processor is configured to control the RF generator to transition the second parameter level of the RF signal to a third parameter level of the RF signal,

wherein the processor is configured to control the RF generator to transition the third parameter level to a fourth parameter level of the RF signal,

wherein the processor is configured to control the RF generator to transition the fourth parameter level to a fifth parameter level,

wherein the processor is configured to control the RF generator to transition the fifth parameter level to the first parameter level, and

wherein the processor is configured to control the RF generator to pulse a frequency of the RF signal between the transition from the first parameter level to the second parameter level and the transition from the fifth parameter level to the first parameter level; and

a memory device coupled to the processor.

12. The controller of claim 11 , wherein to pulse the frequency, the processor is configured to control the RF generator to transition a first frequency level of the RF signal to a second frequency level of the RF signal, wherein the first frequency level transitions concurrently with the transition from the third parameter level to the fourth parameter level.

13. The controller of claim 12 , wherein to pulse the frequency, the processor is configured to control the RF generator to transition the second frequency level of the RF signal to the first frequency level, wherein the transition from the second frequency level to the first frequency level is concurrent with the transition from fifth parameter level to the first parameter level.

14. The controller of claim 11 , wherein the envelope includes a zero-to-peak envelope.

15. The controller of claim 14 , wherein to pulse the first parameter level, the processor is configured to control the RF generator to increase the zero-to-peak envelope of the RF signal from the first parameter level to the second parameter level.

16. The controller of claim 15 , wherein to pulse the second parameter level, the processor is configured to control the RF generator to increase the zero-to-peak envelope of the RF signal from the second parameter level to the third parameter level.

17. The controller of claim 16 , wherein to pulse the third parameter level, the processor is configured to control the RF generator to increase the zero-to-peak envelope of the RF signal from the third parameter level to the fourth parameter level.

18. The controller of claim 17 , wherein to pulse the fourth parameter level, the processor is configured to control the RF generator to increase the zero-to-peak envelope of the RF signal from the fourth parameter level to the fifth parameter level, wherein to pulse the fifth parameter level, the processor is configured to control the RF generator to decrease the fifth parameter level to the first parameter level.

19. The controller of claim 11 , wherein the first parameter level is a first voltage level, the second parameter level is a second voltage level, the third parameter level is a third voltage level, the fourth parameter level is a fourth voltage level, and the fifth parameter level is a fifth voltage level.

20. The controller of claim 11 , wherein the first parameter level has a first duty cycle, the second parameter level has a second duty cycle, the third parameter level has a third duty cycle, the fourth parameter level has a fourth duty cycle, and the fifth parameter level has a fifth duty cycle, wherein a sum of the first, second, third, fourth, and fifth duty cycles is one-hundred percent.

21. A plasma tool comprising:

a radio frequency (RF) generator configured to generate an RF signal, wherein to generate the RF signal, the RF generator is configured to output a sinusoidal signal that forms an envelope having a first parameter level;

an impedance matching circuit coupled to the RF generator for receiving the RF signal, wherein the impedance matching circuit is configured to output a modified RF signal;

a plasma chamber coupled to the impedance matching circuit for receiving the modified RF signal; and

a host computer coupled to the RF generator, wherein the host computer is configured to:

control the RF generator to transition the first parameter level of the RF signal to a second parameter level of the RF signal;

control the RF generator to transition the second parameter level of the RF signal to a third parameter level of the RF signal;

control the RF generator to transition the third parameter level to a fourth parameter level of the RF signal;

control the RF generator to transition the fourth parameter level to a fifth Parameter level;

control the RF generator to transition the fifth parameter level to the first parameter level; and

control the RF generator to pulse a frequency of the RF signal between the transition from the first parameter level to the second parameter level and the transition from the fifth parameter level to the first parameter level.

22. The plasma tool of claim 21 , wherein the first parameter level is a first voltage level, the second parameter level is a second voltage level, the third parameter level is a third voltage level, the fourth parameter level is a fourth voltage level, and the fifth parameter level is a fifth voltage level.

23. The plasma tool of claim 21 , wherein the first parameter level has a first duty cycle, the second parameter level has a second duty cycle, the third parameter level has a third duty cycle, the fourth parameter level has a fourth duty cycle, and the fifth parameter level has a fifth duty cycle, wherein a sum of the first, second, third, fourth, and fifth duty cycles is one-hundred percent.

Continuity (3)
Continuation 16275008 · Feb 13, 2019
Continuation 15928039 · Mar 21, 2018
Related Publication 20200176222A1 · Jun 4, 2020
Cited By (1)
US 12,700,572