IP Library › Granted Patent US 11,764,134
Granted Patent B2
US 11,764,134 · App. 16/745,043 · Granted Sep 19, 2023

Semiconductor device including electrical component connecting a semiconductor chip to a leadframe and a corresponding method of manufacture

Inventors: Alberto Arrigoni (Como, IT); Giovanni Graziosi (Vimercate, IT); Aurora Sanna (Milan, IT)
Assignee: STMicroelectronics S.r.l.
H01L23/49589H01L21/4825H01L23/4952H01L23/49503
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Quick Facts
Patent No.
US 11,764,134
App. No.
16/745,043
Granted
Sep 19, 2023
Kind
B2
Abstract

A semiconductor chip is mounted to a chip mounting portion of a leadframe which further includes and one or more leads in the leadframe arranged facing the chip mounting portion. The lead lies in a first plane and the chip mounting portion lies in a second plane, the first plane and the second plane mutually offset with a gap therebetween. An electrical component (such as a capacitor) is arranged on the chip mounting portion and extends vertically between the first plane and the second plane.

Claims (37)

1. A device, comprising:

a semiconductor chip;

a leadframe including a chip mounting portion, wherein said semiconductor chip is mounted to the chip mounting portion, and at least one lead arranged facing the chip mounting portion, the at least one lead lying in a first plane and the chip mounting portion lying in a second plane, the first plane and the second plane mutually offset with a gap therebetween; and

an electrical component arranged on the chip mounting portion and extending between the first plane and the second plane;

wherein said at least one lead is arranged facing and at least partially overlapping the chip mounting portion, the electrical component extending bridge-like between the chip mounting portion and the at least one lead arranged facing the chip mounting portion, and wherein the electrical component extends between a lateral surface of the at least one lead and the chip mounting portion, the electrical component being in abutment with said lateral surface, with a first electrically-conductive formation electrically coupling the electrical component to the chip mounting portion and a second electrically-conductive formation electrically coupling the electrical component to said lateral surface of the at least one lead in the leadframe.

2. The device of claim 1 , wherein the first electrically-conductive formation comprises electrically-conductive material electrically and mechanically coupling the electrical component and the chip mounting portion.

3. The device of claim 2 , wherein the second electrically-conductive formation comprises electrically-conductive material electrically and mechanically coupling the electrical component to the at least one lead arranged facing and at least partially overlapping the chip mounting portion.

4. The device of claim 1 , wherein said at least one lead is arranged facing and at least partially overlapping the chip mounting portion, the electrical component extending bridge-like between the chip mounting portion and the at least one lead arranged facing the chip mounting portion.

5. The device of claim 1 , wherein the second electrically-conductive formation comprises wire-like material electrically coupling the electrical component to the at least one lead arranged facing the chip mounting portion either directly or via the semiconductor chip on the chip mounting portion.

6. The device of claim 1 , comprising: at least one second lead in the leadframe arranged parallel and adjacent to said at least one lead arranged facing the chip mounting portion, the at least one second lead mechanically and electrically coupled to said at least one lead arranged facing the chip mounting portion, and wire-like bonding between the semiconductor chip on the chip mounting portion and the at least one second lead in the leadframe, wherein the electrical component is electrically coupled to the semiconductor chip on the chip mounting portion via said wire-like bonding between the semiconductor chip on the chip mounting portion and said at least one second lead in the leadframe.

7. A device, comprising:

a semiconductor chip;

a leadframe including a chip mounting portion, wherein said semiconductor chip is mounted to the chip mounting portion, and at least one lead arranged facing the chip mounting portion, the at least one lead lying in a first plane and the chip mounting portion lying in a second plane, the first plane and the second plane mutually offset with a gap therebetween; and

an electrical component arranged on the chip mounting portion and extending between the first plane and the second plane;

wherein the electrical component comprises an elongate electrical component extending along a longitudinal axis, the electrical component arranged on the chip mounting portion with said longitudinal axis transverse to the second plane, with a first electrically-conductive formation electrically coupling the electrical component to the chip mounting portion and a second electrically-conductive formation electrically coupling the electrical component to a lateral surface of the at least one lead in the leadframe, the lateral surface being substantially perpendicular to the first plane.

8. A device, comprising:

a semiconductor chip;

a leadframe including a chip mounting portion, wherein said semiconductor chip is mounted to the chip mounting portion, and at least one lead arranged facing the chip mounting portion, the at least one lead lying in a first plane and the chip mounting portion lying in a second plane, the first plane and the second plane mutually offset with a gap therebetween; and

an electrical component arranged on the chip mounting portion and extending between the first plane and the second plane;

wherein the electrical component has a length longer than a distance between said chip mounting portion and a lateral surface of said at least one lead transverse to said first plane and said second plane, with a first electrically-conductive formation electrically coupling the electrical component to the chip mounting portion and a second electrically-conductive formation electrically coupling the electrical component to said lateral surface of the at least one lead in the leadframe.

9. A device, comprising:

a semiconductor chip;

a leadframe including a chip mounting portion and at least one lead arranged facing and at least partially overlapping the chip mounting portion, wherein said semiconductor chip is mounted to the chip mounting portion, and wherein the at least one lead extends in a first plane and the chip mounting portion extends in a second plane, the first plane being offset from the second plane; and

an electrical component mounted on the chip mounting portion and extending between the first plane at the chip mounting portion and the second plane and the at least one lead arranged facing the chip mounting portion;

wherein the electrical component is positioned at a side of the at least one lead, between the chip mounting portion and a lateral surface of the at least one lead, in abutment with said lateral surface, with a first electrically-conductive formation electrically coupling the electrical component to the chip mounting portion and a second electrically-conductive formation electrically coupling the electrical component to said lateral surface of the at least one lead in the leadframe.

10. The device of claim 9 , wherein the electrical component comprises an elongate electrical component extending along a longitudinal axis, said longitudinal axis extending transverse to the second plane.

11. The device of claim 9 , wherein the first electrically-conductive formation comprises electrically-conductive material forming an electrical and mechanical coupling of the electrical component and the chip mounting portion.

12. The device of claim 11 , wherein the second electrically-conductive formation comprises electrically-conductive material forming an electrical and mechanical coupling of the electrical component to said lateral surface.

13. The device of claim 9 , further comprising wire-like material electrically coupling the semiconductor chip on the chip mounting portion to the at least one lead.

14. The device of claim 9 , wherein the electrical component has a length longer than a distance between said chip mounting portion and said lateral surface of said at least one lead.

15. A device comprising:

a semiconductor chip;

a leadframe including a chip mounting portion and at least one lead arranged facing and at least partially overlapping the chip mounting portion, wherein said semiconductor chip is mounted to the chip mounting portion, and wherein the at least one lead extends in a first plane and the chip mounting portion extends in a second plane, the first plane being offset from the second plane;

an electrical component mounted on the chip mounting portion and extending between the first plane at the chip mounting portion and the second plane and the at least one lead arranged facing the chip mounting portion;

wherein the electrical component is positioned at a side of the at least one lead, between the chip mounting portion and a lateral surface of the at least one lead, in abutment with said lateral surface;

a further lead in the leadframe arranged parallel and adjacent to said at least one lead, the further lead being mechanically and electrically coupled to said at least one lead; and

wire-like bonding between the semiconductor chip and the further lead.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: ARRIGONI, ALBERTO; GRAZIOSI, GIOVANNI; SANNA, AURORA
To: STMICROELECTRONICS S.R.L.
Reel/Frame 051539/0803 →
Priority Claims (1)
IT 102019000000929 · Jan 22, 2019 · national
Continuity (1)
Related Publication 20200235045A1 · Jul 23, 2020