IP Library › Granted Patent US 10,535,761
Granted Patent B2
US 10,535,761 · App. 16/045,707 · Granted Jan 14, 2020

Semiconductor device including a mesa portion including an emitter region having a varied width

Inventor: Tatsuya Naito (Matsumoto, JP)
Assignee: FUJI ELECTRIC CO., LTD.
H01L29/7397H01L29/0696H01L29/0804H01L29/1004H01L29/1095H01L29/36H01L29/4236H01L29/8613H01L29/063H01L29/0619H01L29/407H01L29/4238
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,535,761
App. No.
16/045,707
Granted
Jan 14, 2020
Kind
B2
Abstract

A semiconductor device including: a semiconductor substrate; a first gate trench portion and a dummy trench portion provided from an upper surface of the semiconductor substrate to a drift region, extending in the extending direction; a first transistor mesa portion sandwiched by the first gate trench portion and dummy trench portion; a base region contacting with the first gate trench portion above the drift region; an emitter region contacting with the same on the semiconductor substrate upper surface; and a second conductivity type region exposed on the semiconductor substrate upper surface, wherein the emitter region and second conductivity type region are arranged alternately in the extending direction; and the emitter region width in the extending direction contacting with the first gate trench portion is greater than the second conductivity type region width in the extending direction contacting with the same, will be provided.

Claims (85)

1. A semiconductor device comprising:

a semiconductor substrate having a drift region of a first conductivity type;

a first gate trench portion that is provided from an upper surface of the semiconductor substrate to the drift region and extends in a predetermined extending direction on the upper surface of the semiconductor substrate;

a dummy trench portion that is provided from the upper surface of the semiconductor substrate to the drift region and extends in the extending direction;

a first transistor mesa portion sandwiched by the first gate trench portion and the dummy trench portion;

a base region of a second conductivity type contacting with the first gate trench portion above the drift region;

an emitter region of the first conductivity type that is provided on the upper surface of the semiconductor substrate contacting with the first gate trench portion and has a higher doping concentration than a doping concentration of the drift region; and

a second conductivity type region exposed on the upper surface of the semiconductor substrate, wherein,

on an upper surface of the first transistor mesa portion,

the emitter region of the first conductivity type, and the second conductivity type region, are adjacent one another and form a single transistor unit; and

a total width of the emitter region of the single transistor unit in the extending direction contacting with the first gate trench portion is greater than a total width of the second conductivity type region of the single transistor unit in the extending direction contacting with the first gate trench portion.

2. The semiconductor device according to claim 1 , wherein, on the upper surface of the first transistor mesa portion, the total width of the emitter region of the single transistor unit in the extending direction contacting with the first gate trench portion is greater than a total width of the emitter region of the single transistor unit in the extending direction contacting with the dummy trench portion.

3. The semiconductor device according to claim 1 , wherein,

on the upper surface of the first transistor mesa portion,

the second conductivity type region contacts with the dummy trench portion; and

a total width of the second conductivity type region of the single transistor unit in the extending direction contacting with the dummy trench portion is greater than the total width of the second conductivity type region of the single transistor unit in the extending direction contacting with the first gate trench portion.

4. The semiconductor device according to claim 1 , wherein the emitter region contacts with the dummy trench portion.

5. The semiconductor device according to claim 4 , wherein a total width of the second conductivity type region of the single transistor unit in the extending direction contacting with the first gate trench portion is smaller than the total width of the emitter region of the single transistor unit in the extending direction contacting with the dummy trench portion.

6. The semiconductor device according to claim 4 , wherein,

on the upper surface of the first transistor mesa portion,

the emitter region is continuously arranged in the extending direction; and

the emitter region and the second conductivity type region are arranged alternately in the extending direction.

7. The semiconductor device according to claim 1 , wherein the emitter region is spaced apart from the dummy trench portion.

8. The semiconductor device according to claim 1 , wherein the total width of the emitter region of the single transistor unit in the extending direction is changed stepwise.

9. The semiconductor device according to claim 1 , further comprising

an interlayer dielectric film on the upper surface of the semiconductor substrate, the interlayer dielectric film having a contact hole, wherein

below the contact hole, the emitter region and the second conductivity type region are next to and contact with each other in a direction from the dummy trench portion to the first gate trench portion.

10. The semiconductor device according to claim 9 , wherein an end portion of the emitter region is arranged below the contact hole.

11. The semiconductor device according to claim 9 , wherein

a total width of the emitter region of the single transistor unit in the extending direction between the contact hole and the first gate trench portion is equal to a total width of the emitter region of the single transistor unit in the extending direction between the contact hole and the dummy trench portion.

12. The semiconductor device according to claim 1 , further comprising an interlayer dielectric film on the upper surface of the semiconductor substrate, the interlayer dielectric film having a contact hole, wherein

below the contact hole, the emitter region and the second conductivity type region are next to and contact with each other in the extending direction.

13. The semiconductor device according to claim 12 , wherein an end portion of the emitter region is arranged, in a top view of the semiconductor substrate, between the contact hole and the first gate trench portion.

14. The semiconductor device according to claim 12 , wherein an end portion of the emitter region is arranged, in a top view of the semiconductor substrate, between the contact hole and the dummy trench portion.

15. The semiconductor device according to claim 1 , wherein the total width of the emitter region of the single transistor unit in the extending direction is changed continuously.

16. The semiconductor device according to claim 1 , further comprising

an accumulation region of the first conductivity type, above the drift region and below the base region, contacting with the first gate trench portion and having a higher doping concentration than a doping concentration of the drift region, wherein

the accumulation region overlaps the emitter region in a top view of the semiconductor substrate.

17. The semiconductor device according to claim 1 , wherein

a plurality of the units are joined below a corresponding contact hole.

18. The semiconductor device according to claim 1 , wherein

a plurality of the units are provided in the extending direction.

19. The semiconductor device according to claim 1 , wherein

a shape of the emitter region of the first conductivity type or the second conductivity type region viewed from above is a polygon surrounded by five or more sides.

20. A semiconductor device comprising:

a semiconductor substrate having a drift region of a first conductivity type;

a first gate trench portion that is provided from an upper surface of the semiconductor substrate to the drift region and extends in a predetermined extending direction on the upper surface of the semiconductor substrate;

a dummy trench portion that is provided from the upper surface of the semiconductor substrate to the drift region and extends in the extending direction;

a first transistor mesa portion sandwiched by the first gate trench portion and the dummy trench portion;

a base region of a second conductivity type contacting with the first gate trench portion above the drift region;

an emitter region of the first conductivity type that is provided on the upper surface of the semiconductor substrate contacting with the first gate trench portion and has a higher doping concentration than a doping concentration of the drift region; and

a second conductivity type region exposed on the upper surface of the semiconductor substrate, wherein,

on an upper surface of the first transistor mesa portion,

the emitter region and the second conductivity type region are arranged alternately in the extending direction; and

a width of the emitter region in the extending direction contacting with the first gate trench portion is greater than a width of the second conductivity type region in the extending direction contacting with the first gate trench portion,

wherein the emitter region is spaced apart from the dummy trench portion;

the second conductivity type region further has a contact region of the second conductivity type, and a first intermediate region of the second conductivity type having a lower doping concentration than a doping concentration of the contact region; and

the first intermediate region is sandwiched by the dummy trench portion and the emitter region contacting with both the dummy trench portion and the emitter region.

21. The semiconductor device according to claim 20 , wherein

the second conductivity type region has a second intermediate region of the second conductivity type having a lower doping concentration than the doping concentration of the contact region; and

the contact region is spaced apart from the first gate trench portion, and the second intermediate region contacts with the first gate trench portion.

22. The semiconductor device according to claim 21 , wherein the second intermediate region is sandwiched by the first gate trench portion and the contact region contacting with both the first gate trench portion and the contact region.

23. The semiconductor device according to claim 22 , wherein a width of the second intermediate region in the extending direction contacting with the first gate trench portion is smaller than a width of the emitter region in the extending direction contacting with the dummy trench portion.

24. A semiconductor device comprising:

a semiconductor substrate having a drift region of a first conductivity type;

a first gate trench portion that is provided from an upper surface of the semiconductor substrate to the drift region and extends in a predetermined extending direction on the upper surface of the semiconductor substrate;

a dummy trench portion that is provided from the upper surface of the semiconductor substrate to the drift region and extends in the extending direction;

a first transistor mesa portion sandwiched by the first gate trench portion and the dummy trench portion;

a base region of a second conductivity type contacting with the first gate trench portion above the drift region;

an emitter region of the first conductivity type that is provided on the upper surface of the semiconductor substrate contacting with the first gate trench portion and has a higher doping concentration than a doping concentration of the drift region; and

a second conductivity type region exposed on the upper surface of the semiconductor substrate, wherein,

on an upper surface of the first transistor mesa portion,

the emitter region and the second conductivity type region are arranged alternately in the extending direction; and

a width of the emitter region in the extending direction contacting with the first gate trench portion is greater than a width of the second conductivity type region in the extending direction contacting with the first gate trench portion,

a second gate trench portion that is provided from the upper surface of the semiconductor substrate to the drift region extending in the extending direction, and arranged next to the first gate trench portion and on an opposite side to the dummy trench portion; and

a second transistor mesa portion that is sandwiched by the first gate trench portion and the second gate trench portion, wherein

the base region contacts with both the first gate trench portion and the second gate trench portion above the drift region;

the emitter region contacts with both the first gate trench portion and the second gate trench portion on the upper surface of the semiconductor substrate;

the second conductivity type region is exposed on the upper surface of the semiconductor substrate; and

a width of the emitter region in the second transistor mesa portion in the extending direction contacting with the second gate trench portion is smaller than a width of the emitter region in the first transistor mesa portion in the extending direction contacting with the second gate trench portion.

25. The semiconductor device according to claim 24 , wherein, in the second transistor mesa portion, the emitter region and the second conductivity type region are arranged alternately in the extending direction.

26. The semiconductor device according to claim 24 , wherein, in the second transistor mesa portion, the second conductivity type region is spaced apart from both the first gate trench portion and the second gate trench portion.

27. The semiconductor device according to claim 24 , wherein

the second conductivity type region contacts with the first gate trench portion; and

a width of the second conductivity type region in the second transistor mesa portion in the extending direction contacting with the first gate trench portion is greater than a width of the emitter region in the first transistor mesa portion in the extending direction contacting with the first gate trench portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2018
From: NAITO, TATSUYA
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 046463/0129 →
Priority Claims (1)
JP 2017-154181 · Aug 9, 2017 · national
Continuity (1)
Related Publication 20190051739A1 · Feb 14, 2019