IP Library Granted Patent US 10,748,828
Granted Patent B2
US 10,748,828 · App. 16/132,919 · Granted Aug 18, 2020

Fan-out sensor package

Inventors: Ha Yong Jung (Suwon-Si, KR); Jae Kul Lee (Suwon-Si, KR); Ji Hye Shim (Suwon-Si, KR); Han Sang Cho (Suwon-Si, KR); Woon Ha Choi (Suwon-Si, KR); Jae Min Choi (Suwon-Si, KR); Dong Jin Kim (Suwon-Si, KR); Sung Taek Woo (Suwon-Si, KR)
Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.
H01L23/3114H01L23/481H01L23/49816H01L23/49827H01L23/522H01L24/02H01L27/14618H01L2224/02379H01L2224/04105H01L2224/18H01L2924/14H01L2924/15311
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Quick Facts
Patent No.
US 10,748,828
App. No.
16/132,919
Granted
Aug 18, 2020
Kind
B2
Abstract

A fan-out sensor package includes: a redistribution portion having a through-hole and including a wiring layer and vias; a first semiconductor chip having an active surface having a sensing region of which at least a portion is exposed through the through-hole and first connection pads disposed in the vicinity of the sensing region; a second semiconductor chip disposed side by side with the first semiconductor chip in a horizontal direction and having second connection pads; dam members disposed in the vicinity of the first connection pads; an encapsulant encapsulating the redistribution portion, the first semiconductor chip, and the second semiconductor chip; and electrical connection structures electrically connecting the first connection pads and the second connection pads to the wiring layer or the vias of the redistribution portion.

Claims (27)

1. A fan-out sensor package comprising:

a redistribution portion having a through-hole and including a wiring layer and vias;

a first semiconductor chip having an active surface having a sensing region of which at least a portion is exposed through the through-hole and first connection pads disposed in the vicinity of the sensing region;

a second semiconductor chip disposed side by side with the first semiconductor chip in a horizontal direction and having second connection pads;

dam members disposed in the vicinity of the first connection pads;

an encapsulant encapsulating the redistribution portion, the first semiconductor chip, and the second semiconductor chip; and

electrical connection structures electrically connecting the first connection pads and the second connection pads to the wiring layer and the vias of the redistribution portion,

wherein the first and second semiconductor chips are disposed such that a side surface of the first semiconductor chip directly contacts a side surface of the second semiconductor chip.

2. The fan-out sensor package of claim 1 , wherein a bonding wire is connected to the wiring layer.

3. The fan-out sensor package of claim 1 , wherein the redistribution portion includes

an insulating layer in which the through-hole is formed,

the wiring layer exposed to an upper surface of the insulating layer, and

the vias connected to the wiring layer and having a lower surface exposed to a lower surface of the insulating layer.

4. The fan-out sensor package of claim 1 , wherein the dam members have a band shape.

5. The fan-out sensor package of claim 1 , wherein the encapsulant covers an inactive surface opposing the active surface of the first semiconductor chip and a lower surface of the second semiconductor chip.

6. The fan-out sensor package of claim 1 , wherein the electrical connection structure is formed of a low melting point material including a solder.

7. The fan-out sensor package of claim 1 , wherein the second semiconductor chip is any one of an integrated circuit (IC), an active element, and a dynamic random access memory (DRAM).

8. The fan-out sensor package of claim 1 , wherein the redistribution portion includes an insulating layer in which the through-hole is formed, a plurality of wiring layers exposed to an upper surface and a lower surface of the insulating layer, and the vias connecting the wiring layers to each other.

9. A fan-out sensor package, comprising:

a first semiconductor chip having a first active surface and first sidewalls perpendicular to the active surface, the active surface having a sensing region and first connection pads disposed in a portion of the active surface outside of the sensing region;

a second semiconductor chip having a second active area with second connection pads disposed thereon, and second sidewalls perpendicular to the second active area, the second semiconductor chip being disposed adjacent the first semiconductor chip such that one of the first sidewalls directly contacts one of the second sidewalls;

a redistribution portion comprising an insulating layer having a through-hole, a wiring layer and vias penetrating through the insulating layer and exposed to a first surface of the insulating layer, the redistribution portion being disposed on the first and second semiconductor chips such that respective active areas face the first surface of the insulating layer and at least a portion of the sensing region is exposed through the through-hole;

an encapsulant encapsulating the first and second semiconductor chips and at least a portion of the redistribution portion;

dam members disposed to prevent the encapsulant from contacting the sensing region; and

electrical connect ion structures electrically connecting the vias and the wiring layer to the first and second connection pads.

10. The fan-out package of claim 9 , wherein the redistribution portion further comprises redistribution pads disposed on a second surface opposing the first surface of the insulating layer, wherein the vias electrically connect the wiring layer to the redistribution pads.

11. The fan-out package of claim 10 , wherein the redistribution pads are connected to bonding wires.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2018
From: JUNG, HA YONG; LEE, JAE KUL; SHIM, JI HYE; CHO, HAN SANG; CHOI, WOON HA; CHOI, JAE MIN; KIM, DONG JIN; WOO, SUNG TAEK
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 046933/0806 →
Priority Claims (1)
KR 10-2018-0011751 · Jan 31, 2018 · national
Continuity (1)
Related Publication 20190237375A1 · Aug 1, 2019
Cited By (1)
US 12,272,671