IP Library › Granted Patent US 12,463,105
Granted Patent B2
US 12,463,105 · App. 17/464,002 · Granted Nov 4, 2025

Semiconductor package including a dummy chip

Inventors: Hyeongmun Kang (Hwaseong-si, KR); Taehyeong Kim (Suwon-si, KR); Woodong Lee (Cheonan-si, KR); Hwanyoung Choi (Hwaseong-si, KR)
Assignee: Samsung Electronics Co., Ltd.
H01L23/3135H01L21/56H01L24/32H01L24/33H01L25/0652H01L25/0657H01L25/50H01L24/05H01L24/06H01L24/16H01L24/73H01L2224/0557H01L2224/06181H01L2224/16245H01L2224/32059H01L2224/3207H01L2224/32145H01L2224/32245H01L2224/33181H01L2224/33183H01L2224/73204H01L2225/06513H01L2225/06541H01L2225/06582H01L2924/182
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Quick Facts
Patent No.
US 12,463,105
App. No.
17/464,002
Granted
Nov 4, 2025
Kind
B2
Abstract

A semiconductor package includes a base structure, a lower semiconductor chip disposed on the base structure, an upper semiconductor chip disposed on the lower semiconductor chip, a connecting structure including a lower pad disposed on the lower semiconductor chip, an upper pad disposed under the upper semiconductor chip, and a connecting bump disposed between the lower pad and the upper pad, a dummy chip disposed on the upper semiconductor chip, an upper adhesive layer including an upper adhesive portion disposed between the upper semiconductor chip and the dummy chip, and an upper protrusion portion disposed at opposite sides of the upper adhesive portion, to surround lower portions of opposite side surfaces of the dummy chip, and a molding layer disposed at opposite sides of the dummy chip, to surround upper portions of the opposite side surfaces of the dummy chip and the upper protrusion portion.

Claims (50)

1 . A semiconductor package comprising:

a base structure;

a lower semiconductor chip disposed on the base structure;

an upper semiconductor chip disposed on the lower semiconductor chip;

a connecting structure comprising a lower pad disposed on the lower semiconductor chip, an upper pad disposed under the upper semiconductor chip, and a connecting bump disposed between the lower pad and the upper pad;

a dummy chip disposed on the upper semiconductor chip;

a lower adhesive layer comprising a lower adhesive portion disposed between the lower semiconductor chip and the upper semiconductor chip, and a lower protrusion portion disposed at opposite sides of the lower adhesive portion, to surround at least one of upper portions of opposite side surfaces of the lower semiconductor chip and lower portions of opposite side surfaces of the upper semiconductor chip;

an upper adhesive layer comprising an upper adhesive portion disposed between the upper semiconductor chip and the dummy chip, and an upper protrusion portion disposed at opposite sides of the upper adhesive portion, to surround lower portions of opposite side surfaces of the dummy chip; and

a molding layer disposed at opposite sides of the dummy chip, to surround upper portions of the opposite side surfaces of the dummy chip and the upper protrusion portion of the upper adhesive layer,

wherein a thickness of the dummy chip is smaller than a thickness of each of the lower semiconductor chip and the upper semiconductor chip,

wherein a thickness of the upper adhesive portion is smaller than a thickness of the lower adhesive portion,

wherein the upper protrusion portion is vertically spaced apart from a top surface of the molding layer, and

wherein the upper adhesive layer is free of any electrical connecting structures therein, wherein the lower semiconductor chip comprises; a semiconductor substrate; a wiring layer disposed under the semiconductor substrate; a lower protective layer disposed under the wiring layer; an upper protective layer disposed on the semiconductor substrate; and a through via extending through the semiconductor substrate and the upper protective layer, and wherein the lower protrusion portion contacts the side surfaces of the upper protective layer and the semiconductor substrate of the lower semiconductor chip and side surfaces of the lower protective layer and the wiring layer of the upper semiconductor chip.

2 . The semiconductor package according to claim 1 ,

the upper semiconductor chip comprises:

a semiconductor substrate;

a wiring layer disposed under the semiconductor substrate;

a lower protective layer disposed under the wiring layer; and

an upper protective layer disposed on the semiconductor substrate,

wherein the upper protrusion portion contacts side surfaces of the upper protective layer and the semiconductor substrate of the upper semiconductor chip.

3 . The semiconductor package according to claim 1 , wherein the dummy chip comprises one of a bare silicon wafer, a core wafer, and a metal plate.

4 . The semiconductor package according to claim 1 , wherein a width of the upper protrusion portion is smaller than a width of the lower protrusion portion.

5 . The semiconductor package according to claim 1 , wherein the lower adhesive layer comprises at least one of an epoxy series resin, a filler, and an additive.

6 . The semiconductor package according to claim 1 , wherein the upper adhesive layer comprises at least one of an epoxy series resin, a filler, and an additive.

7 . The semiconductor package according to claim 1 , wherein the top surface of the molding layer is coplanar with a top surface of the dummy chip.

8 . The semiconductor package according to claim 1 , wherein opposite side surfaces of the molding layer are horizontally aligned with opposite side surfaces of the base structure.

9 . The semiconductor package according to claim 1 , further comprising:

a connecting terminal comprising a base pad disposed at a bottom portion of the base structure, and a base bump disposed at a bottom portion of the base pad.

10 . A semiconductor package comprising:

a base structure;

a connecting terminal comprising a base pad at a bottom portion of the base structure, and a base bump under the base pad;

a lower semiconductor chip on the base structure, the lower semiconductor chip comprising a semiconductor substrate, a first wiring layer under the semiconductor substrate, a first lower protective layer under the first wiring layer, a first upper protective layer on the semiconductor substrate, and a through via extending through the semiconductor substrate and the first upper protective layer;

an upper semiconductor chip on the lower semiconductor chip, the upper semiconductor chip comprising a semiconductor substrate, a second wiring layer under the semiconductor substrate, a second lower protective layer under the second wiring layer, and a second upper protective layer on the semiconductor substrate;

a connecting structure comprising a lower pad on the lower semiconductor chip and connected to the through via of the lower semiconductor chip, an upper pad under the upper semiconductor chip and connected to the second wiring layer of the upper semiconductor chip, and a connecting bump between the lower pad and the upper pad to interconnect the lower pad and the upper pad;

a lower adhesive layer comprising a lower adhesive portion between the lower semiconductor chip and the upper semiconductor chip, and a lower protrusion portion at opposite sides of the lower adhesive portion to surround at least one of upper portions of opposite side surfaces of the lower semiconductor chip and lower portions of opposite side surfaces of the upper semiconductor chip;

a dummy chip on the upper semiconductor chip;

an upper adhesive layer comprising an upper adhesive portion between the upper semiconductor chip and the dummy chip, and an upper protrusion portion at opposite sides of the upper adhesive portion to surround lower portions of opposite side surfaces of the dummy chip; and

a molding layer at opposite sides of the dummy chip to surround upper portions of the opposite side surfaces of the dummy chip and the upper protrusion portion,

wherein a height of the upper adhesive portion is smaller than a height of the lower adhesive portion,

wherein a width of the upper protrusion portion is smaller than a width of the lower protrusion portion,

wherein a thickness of the dummy chip is smaller than a thickness of each of the lower semiconductor chip and the upper semiconductor chip,

wherein the upper protrusion portion is vertically spaced apart from a top surface of the molding layer,

wherein the lower protrusion portion contacts side surfaces of the first upper protective layer of the lower semiconductor chip and the second lower protective layer of the upper semiconductor chip,

wherein the upper protrusion portion contacts a side surface of the second upper protective layer of the upper semiconductor chip, and

wherein the upper adhesive layer is free of any electrical connecting structures therein, wherein the lower protrusion contacts side surfaces of the first upper protective layer and the semiconductor substrate of the lower semiconductor chip and side surfaces of the second lower protective layer and the second wiring layer of the upper semiconductor chip, and wherein the upper protrusion portion contacts side surfaces of the second upper protective layer and the semiconductor substrate of the upper semiconductor chip.

11 . The semiconductor package according to claim 10 , wherein:

the top surface of the molding layer is coplanar with a top surface of the dummy chip; and

opposite side surfaces of the molding layer are horizontally aligned with opposite side surfaces of the base structure.

12 . The semiconductor package according to claim 10 , wherein a thickness of the upper adhesive portion is smaller than a thickness of the lower adhesive portion.

13 . The semiconductor package according to claim 10 , wherein a width of the upper protrusion portion is smaller than a width of the lower protrusion portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2021
From: KANG, HYEONGMUN; KIM, TAEHYEONG; LEE, WOODONG; CHOI, HWANYOUNG
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 057357/0109 →
Priority Claims (1)
KR 10-2021-0026409 · Feb 26, 2021 · national
Continuity (1)
Related Publication 20220278010A1 · Sep 1, 2022
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