IP Library Granted Patent US 9,583,493
Granted Patent B2
US 9,583,493 · App. 15/093,504 · Granted Feb 28, 2017

Integrated circuit and semiconductor device

Inventors: Ha-young Kim (Seoul, KR); Sung-we Cho (Hwaseong-si, KR); Tae-joong Song (Seongnam-si, KR); Sang-hoon Baek (Seoul, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
H01L27/0924H01L23/528H01L23/5226H01L27/0207
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Quick Facts
Patent No.
US 9,583,493
App. No.
15/093,504
Granted
Feb 28, 2017
Kind
B2
Abstract

An embodiment includes an integrated circuit comprising a standard cell, the standard cell comprising: first and second active regions having different conductivity types and extending in a first direction; first, second, and third conductive lines extending over the first and second active regions in a second direction substantially perpendicular to the first direction, and disposed parallel to each other; and a cutting layer extending in the first direction between the first and second active regions and separating the first conductive line into a first upper conductive line and a first lower conductive line, the second conductive line into a second upper conductive line and a second lower conductive line, and the third conductive line into a third upper conductive line and a third lower conductive line; wherein: the first upper conductive line and the third lower conductive line are electrically connected together; and the second upper conductive line and the second lower conductive line are electrically connected together.

Claims (69)

1. An integrated circuit comprising a standard cell, the standard cell comprising:

first and second active regions having different conductivity types and extending in a first direction;

first, second, and third conductive lines extending over the first and second active regions in a second direction substantially perpendicular to the first direction, and disposed parallel to each other; and

a cutting layer extending in the first direction between the first and second active regions and separating the first conductive line into a first upper conductive line and a first lower conductive line, the second conductive line into a second upper conductive line and a second lower conductive line, and the third conductive line into a third upper conductive line and a third lower conductive line;

wherein:

the first upper conductive line and the third lower conductive line are electrically connected together; and

the second upper conductive line and the second lower conductive line are electrically connected together.

2. The integrated circuit of claim 1 , further comprising:

a plurality of first contacts; and

a plurality of second contacts;

wherein

each of the first upper conductive line and the third lower conductive line is connected to a corresponding first contact of the first contacts; and

each of the second upper conductive line and the second lower conductive line is connected to a corresponding second contact of the second contacts.

3. The integrated circuit of claim 2 , further comprising a first metal line commonly connected to the second contacts on the second upper conductive line and the second lower conductive line.

4. The integrated circuit of claim 3 , wherein at least a portion of the first metal line extends in the second direction.

5. The integrated circuit of claim 3 , further comprising:

a via on the first metal line; and

a second metal line connected to the via at an upper portion of the first metal line.

6. The integrated circuit of claim 5 , wherein at least a portion of the second metal line extends in the first direction.

7. The integrated circuit of claim 2 , further comprising:

a first metal line connected to the first contact connected to the first upper conductive line; and

a second metal line connected to the first contact connected to the third lower conductive line.

8. The integrated circuit of claim 7 , wherein at least a portion of the first and second metal lines extends in the second direction.

9. The integrated circuit of claim 7 , further comprising:

a plurality of first vias wherein each of the first and second metal lines is connected to a corresponding first via of the first vias; and

a third metal line connected to the first vias connected to the first and second metal lines.

10. The integrated circuit of claim 9 , wherein at least a portion of the third metal line extends in the first direction.

11. The integrated circuit of claim 9 , further comprising

a fourth metal line commonly connected to the second contacts on the second upper conductive line and the second lower conductive line;

a second via connected to the fourth metal line; and

a fifth metal line connected to the second via.

12. A semiconductor device comprising:

a substrate comprising first and second active regions that have different conductivity types and extend in a first direction;

first, second, and third upper gate electrodes extending in a second direction substantially perpendicular to the first direction and disposed parallel to each other, on the first active region; and

first, second, and third lower gate electrodes respectively disposed on the second active region inline with the first, second, and third upper gate electrodes, respectively, and separated from the first, second, and third upper gate electrodes, respectively;

wherein:

the first upper gate electrode and the third lower gate electrode are electrically connected together; and

the second upper gate electrode and the second lower gate electrode are electrically connected together.

13. The semiconductor device of claim 12 , further comprising:

a plurality of contacts, wherein each of the second upper gate electrode and the second lower gate electrode is connected to a corresponding contact of the contacts; and

a first metal layer electrically connected to the second upper gate electrode and the second lower gate electrode through the contacts.

14. The semiconductor device of claim 13 , further comprising a second metal layer electrically connected to the first metal layer.

15. The semiconductor device of claim 12 , further comprising:

a plurality of contacts, wherein each of the first upper gate electrode and the third lower gate electrode is connected to a corresponding contact of the contacts;

a first metal layer connected to the contact connected to the first upper gate electrode; and

a second metal layer connected to the contact connected to the third lower gate electrode.

16. The semiconductor device of claim 15 , further comprising a third metal layer electrically connected to the first and second metal layers.

17. A semiconductor device comprising:

first through fourth gate electrodes, wherein:

the first and second gate electrodes are adjacent in a first direction;

the third and fourth gate electrodes are adjacent in the first direction;

the second and third gate electrodes are adjacent and extend inline in a second direction substantially perpendicular to the first direction;

a first metal layer extending in the first direction; and

a second metal layer extending in the second direction;

wherein:

the first and fourth gate electrodes are electrically connected together through the first metal layer; and

the second and third gate electrodes are electrically connected together through the second metal layer.

18. The semiconductor device of claim 17 , further comprising:

a third metal layer and a fourth metal layer, each extending in the second direction;

wherein:

the second metal layer is disposed between the third metal layer and the fourth metal layer; and

the first and fourth gate electrodes are electrically connected together through the third metal layer and the fourth metal layer.

19. The semiconductor device of claim 18 , further comprising:

a plurality of vias,

wherein the third metal layer and the fourth metal layer are electrically connected to the first metal layer through the vias.

20. The semiconductor device of claim 18 , further comprising:

a fifth metal layer extending the first direction and adjacent to the first metal layer; and

a via,

wherein the fifth metal layer is electrically connected to the second and third gate electrodes through the via.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2016
From: KIM, HA-YOUNG; CHO, SUNG-WE; SONG, TAE-JOONG; BAEK, SANG-HOON
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 040313/0985 →
Priority Claims (2)
KR 10-2015-0049953 · Apr 8, 2015 · national
KR 10-2015-0128566 · Sep 10, 2015 · national
Continuity (1)
Related Publication 20160300839A1 · Oct 13, 2016