IP Library › Granted Patent US 11,106,835
Granted Patent B2
US 11,106,835 · App. 16/518,596 · Granted Aug 31, 2021

Method of manufacturing conductive lines in a circuit

Inventor: Chung-Hui Chen (Hsinchu, TW)
Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.
G06F30/00G06F30/394H01L21/0337H01L21/31144H01L21/76816H01L21/76838H01L23/528H01L27/0207H01L2027/11875H01L2924/0002
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Quick Facts
Patent No.
US 11,106,835
App. No.
16/518,596
Granted
Aug 31, 2021
Kind
B2
Abstract

A method of manufacturing conductive lines in a circuit is disclosed. The method includes grouping signal traces into a first set of signal traces and a second set of signal traces, fabricating, using a first mask, at least a first conductive line of a first signal trace of the first set of signal traces, and fabricating, using a second mask, at least a second conductive line of a second signal trace of the second set of signal traces. Each signal trace of the first set of signal traces has a first width. Each signal trace of the second set of signal traces has a second width different from the first width. The grouping is based on at least a current of at least a signal trace of the signal traces.

Claims (88)

1. A method of manufacturing conductive lines in a circuit, comprising:

grouping signal traces into a first set of signal traces and a second set of signal traces;

fabricating, using a first mask, at least a first conductive line of a first signal trace of the first set of signal traces; and

fabricating, using a second mask, at least a second conductive line of a second signal trace of the second set of signal traces,

wherein

each signal trace of the first set of signal traces has a first width;

each signal trace of the second set of signal traces has a second width different from the first width; and

the grouping is based on at least a current of at least a signal trace of the signal traces and a resistivity-capacitive constant of at least the signal trace of the signal traces.

2. The method of claim 1 , wherein the grouping is further based on at least one of:

a resistivity of at least the signal trace of the signal traces.

3. The method of claim 2 , wherein

the first mask is used before the second mask; and

the second conductive line has a first current capacity, if the second conductive line was fabricated by the second mask;

the second conductive line would have a second current capacity, if the second conductive line would have been fabricated by the first mask; and

the first current capacity of the second conductive line is less than the second current capacity of the second conductive line.

4. The method of claim 2 , wherein

the first mask is used before the second mask;

the second conductive line has a first resistivity, if the second conductive line was fabricated by the second mask;

the second conductive line would have a second resistivity, if the second conductive line would have been fabricated by the first mask; and

the first resistivity of the second conductive line is less than the second resistivity of the second conductive line.

5. The method of claim 2 , wherein

the first mask is used before the second mask;

the second conductive line has a first resistivity-capacitive constant, if the second conductive line was fabricated by the second mask;

the second conductive line would have a second resistivity-capacitive constant, if the second conductive line would have been fabricated by the first mask; and

the first resistivity-capacitive constant of the second conductive line is less than the second resistivity-capacitive constant of the second conductive line.

6. The method of claim 1 , wherein

the first mask is used after the second mask; and

a width of the first conductive line is less than a width of the second conductive line.

7. The method of claim 1 , wherein

the first mask is used after the second mask; and

a width of the second conductive line is less than a width of the first conductive line.

8. The method of claim 1 , wherein

the first mask is used after the second mask; and

a length of the second conductive line is greater than a predetermined value.

9. The method of claim 8 , wherein the predetermined value includes at least one of

a predetermined width of a metal structure in a semiconductor structure;

a predetermined width of a gate structure in the semiconductor structure;

a predetermined width between the metal structure and the gate structure;

a predetermined minimum width between two metal structures; or

a predetermined width between the two metal structures.

10. The method of claim 8 , wherein the predetermined value is about 5 μm.

11. The method of claim 1 , wherein the grouping the signal traces is performed before fabricating at least the first conductive line of the first signal trace of the first set of signal traces, and fabricating at least the second conductive line of the second signal trace of the second set of signal traces.

12. A method of manufacturing conductive lines in a circuit, comprising:

grouping conductive signal traces into a first set of conductive signal traces and a second set of conductive signal traces;

manufacturing, using a first mask, a first conductive line of a first conductive signal trace of the first set of conductive signal traces; and

manufacturing, using a second mask, a second conductive line of a second conductive signal trace of the second set of conductive signal traces,

wherein

each conductive signal trace of the first set of conductive signal traces has a first width in a first direction;

each conductive signal trace of the second set of conductive signal traces has a second width in the first direction, the second width being different from the first width; and

the grouping is based on at least a current of at least a conductive signal trace of the conductive signal traces and a resistivity-capacitive constant of at least the conductive signal trace of the conductive signal traces.

13. The method of claim 12 , wherein the grouping is further based on at least one of:

a resistivity of at least the conductive signal trace of the conductive signal traces; or

a length in a second direction of at least the conductive signal trace of the conductive signal traces, the second direction being different from the first direction.

14. The method of claim 12 , wherein

the first mask is used before the second mask; and

the second conductive line has a first current capacity, if the second conductive line was manufactured by the second mask;

the second conductive line would have a second current capacity, if the second conductive line would have been manufactured by the first mask; and

the first current capacity of the second conductive line is greater than the second current capacity of the second conductive line.

15. The method of claim 12 , wherein

the first mask is used before the second mask;

the second conductive line has a first resistivity, if the second conductive line was manufactured by the second mask;

the second conductive line would have a second resistivity, if the second conductive line would have been manufactured by the first mask; and

the first resistivity of the second conductive line is greater than the second resistivity of the second conductive line.

16. The method of claim 12 , wherein

the first mask is used before the second mask;

the second conductive line has a first resistivity-capacitive constant, if the second conductive line was manufactured by the second mask;

the second conductive line would have a second resistivity-capacitive constant, if the second conductive line would have been manufactured by the first mask; and

the first resistivity-capacitive constant of the second conductive line is greater than the second resistivity-capacitive constant of the second conductive line.

17. The method of claim 12 , wherein

the first mask is used before the second mask; and

a length of the first conductive line of the first conductive signal trace of the first set of conductive signal traces is greater than a predetermined value.

18. The method of claim 17 , wherein the predetermined value includes at least one of:

a predetermined width between a conductive structure in a semiconductor structure and a gate of a transistor in the semiconductor structure;

a predetermined width of the conductive structure in the semiconductor structure;

a predetermined width of the gate of the transistor in the semiconductor structure;

a predetermined minimum width between two conductive structures; or

a predetermined width between the two conductive structures.

19. A method of manufacturing conductive lines in a circuit, comprising:

grouping conductive signal traces into a first group of conductive signal traces and a second group of conductive signal traces;

manufacturing, by a first mask, at least a first conductive line of a first conductive signal trace of the first group of conductive signal traces; and

manufacturing, by a second mask, at least a second conductive line of a second conductive signal trace of the second group of conductive signal traces,

wherein

each conductive signal trace of the first group of conductive signal traces has a first width in a first direction;

each conductive signal trace of the second group of conductive signal traces has a second width in the first direction, the second width greater than the first width; and

the grouping is based on at least a current of a conductive signal trace of the conductive signal traces and a resistivity-capacitive constant of the conductive signal trace of the conductive signal traces.

20. The method of claim 19 , wherein the grouping is further based on at least one of:

a length of the conductive signal trace of the conductive signal traces in a second direction different from the first direction; or

a resistivity of the conductive signal trace of the conductive signal traces.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2019
From: CHEN, CHUNG-HUI
To: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.
Reel/Frame 049823/0351 →
Continuity (4)
Continuation 15714543 · Sep 25, 2017
Continuation 14709938 · May 12, 2015
Provisional Application 62000317 · May 19, 2014
Related Publication 20190340309A1 · Nov 7, 2019