IP Library Granted Patent US 10,120,971
Granted Patent B2
US 10,120,971 · App. 15/250,934 · Granted Nov 6, 2018

Integrated fan-out package and layout method thereof

Inventors: Wan-Yu Lo (Taoyuan County, TW); Chin-Chou Liu (Hsinchu County, TW); Kuo-Nan Yang (Hsinchu, TW); Yu-Jen Chang (Taichung, TW)
Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
G06F17/5081H01L23/3185H01L23/49816H01L23/49822H01L23/49838H01L24/02H01L24/16G06F2217/40G06F2217/82H01L2224/02331H01L2224/02372H01L2224/02377H01L2224/16235
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Quick Facts
Patent No.
US 10,120,971
App. No.
15/250,934
Granted
Nov 6, 2018
Kind
B2
Abstract

An integrated fan-out package and a layout method thereof are provided. One integrated fan-out package includes a die and a fan-out substrate. The die has an interconnect structure therein. The fan-out substrate has a redistribution layer structure therein and a plurality of first conductive bumps on a first surface thereof. The first conductive bumps are in physical contact with an interconnect layer of the interconnect structure and a redistribution layer of the redistribution layer structure, and an aspect ratio of the first conductive bumps ranges from about 1/3 to 1/10.

Claims (30)

1. An integrated fan-out package, comprising:

a die having an interconnect structure therein; and

a fan-out substrate having a conductive redistribution layer structure therein and a plurality of first conductive bumps on a first surface thereof,

wherein the first conductive bumps are in physical contact with an interconnect layer of the interconnect structure and a conductive redistribution layer of the conductive redistribution layer structure,

wherein the fan-out substrate further has a plurality of second conductive bumps on the first surface thereof and aside the first conductive bumps, and the second conductive bumps are not in physical contact with the interconnect layer but in physical contact with the conductive redistribution layer, and

wherein the first and second conductive bumps are overlapped with each of the fan-out substrate and the die, and an underfill layer encapsulates the first and second conductive bumps.

2. The integrated fan-out package of claim 1 , wherein an aspect ratio of the first conductive bumps ranges from about 1/5 to 1/8.

3. The integrated fan-out package of claim 1 , wherein a width of the first conductive bumps is about 5 μm to 10 μm.

4. The integrated fan-out package of claim 1 , further comprising a dielectric layer encapsulating the first conductive bumps, wherein a dielectric constant of the dielectric layer is equal to or less than about 3.

5. The integrated fan-out package of claim 1 , wherein the interconnect layer comprises a plurality of first conductive lines, the conductive redistribution layer comprises a plurality of second conductive lines, and an area of a total of overlapped regions of the first and second conductive lines is less than a preset value determined by an integrated fan-out package performance according to capacitance and inductance information or a coupling effect between the die and the fan-out substrate.

6. The integrated fan-out package of claim 1 , wherein the interconnect layer comprises a plurality of first conductive lines, the conductive redistribution layer comprises a plurality of second conductive lines, and the first conductive lines are non-parallel to the second conductive lines.

7. The integrated fan-out package of claim 1 , wherein an aspect ratio of the second conductive bumps is the same as an aspect ratio of the first conductive bumps.

8. The integrated fan-out package of claim 1 , wherein an aspect ratio of the second conductive bumps is different from an aspect ratio of the first conductive bumps.

9. The integrated fan-out package of claim 1 , wherein an aspect ratio of the first conductive bumps ranges from about 1/3 to 1/10.

10. An integrated fan-out package, comprising:

a die having an interconnect structure therein; and

a fan-out substrate having a conductive redistribution layer structure therein and a plurality of first conductive bumps and a plurality of second conductive bumps on a first surface thereof,

wherein the first conductive bumps are in physical contact with an interconnect layer of the interconnect structure and a conductive redistribution layer of the conductive redistribution layer structure, and the second conductive bumps are not in physical contact with the interconnect layer but in physical contact with the conductive redistribution layer, and

wherein the interconnect layer of the interconnect structure comprises a plurality of first conductive lines, the conductive redistribution layer of the conductive redistribution layer structure comprises a plurality of second conductive lines, the first conductive lines of the die are, in a top view, non-parallel to the second conductive lines of the fan-out substrate, and in the top view, an area of a total of regions where the first conductive lines of the interconnect layer of the die are overlapped with the second conductive lines of the conductive redistribution layer of the fan-out substrate is smaller than a preset value determined by an integrated fan-out package performance according to capacitance and inductance information or a coupling effect between the die and the fan-out substrate, wherein the plurality of first conductive bumps and the plurality of second conductive bumps are overlapped with each of the fan-out substrate and the die.

11. The integrated fan-out package of claim 10 , further comprising a dielectric layer encapsulating the first conductive bumps, wherein a dielectric constant of the dielectric layer is equal to or less than about 3.

12. The integrated fan-out package of claim 10 , wherein an aspect ratio of the second conductive bumps is the same as the aspect ratio of the first conductive bumps.

13. The integrated fan-out package of claim 10 , wherein an aspect ratio of the second conductive bumps is different from the aspect ratio of the first conductive bumps.

14. An integrated fan-out package, comprising:

a die having an interconnect structure therein; and

a fan-out substrate having a conductive redistribution layer structure therein and a plurality of first conductive bumps and a plurality of second conductive bumps on a first surface thereof,

wherein the first conductive bumps are in physical contact with an interconnect layer of the interconnect structure and a conductive redistribution layer of the conductive redistribution layer structure, and the second conductive bumps are not in physical contact with the interconnect layer but in physical contact with the conductive redistribution layer, and

wherein the interconnect layer of the interconnect structure comprises a plurality of first conductive lines, the conductive redistribution layer of the conductive redistribution layer structure comprises a plurality of second conductive lines, at least some of the first conductive lines of the die are, in a top view, parallel to the second conductive lines of the fan-out substrate, and in the top view, an area of a total of regions where the first conductive lines of the interconnect layer of the die are overlapped with the second conductive lines of the conductive redistribution layer of the fan-out substrate is smaller than a preset value determined by an integrated fan-out package performance according to capacitance and inductance information or a coupling effect between the die and the fan-out substrate, wherein the plurality of first conductive bumps and the plurality of second conductive bumps are overlapped with each of the fan-out substrate and the die.

15. The integrated fan-out package of claim 14 , further comprising a dielectric layer encapsulating the first conductive bumps, wherein a dielectric constant of the dielectric layer is equal to or less than about 3.

16. The integrated fan-out package of claim 14 , wherein an aspect ratio of the second conductive bumps is the same as the aspect ratio of the first conductive bumps.

17. The integrated fan-out package of claim 14 , wherein an aspect ratio of the second conductive bumps is different from the aspect ratio of the first conductive bumps.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2016
From: LO, WAN-YU; LIU, CHIN-CHOU; YANG, KUO-NAN; CHANG, YU-JEN
To: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
Reel/Frame 039570/0234 →
Continuity (1)
Related Publication 20180060479A1 · Mar 1, 2018