IP Library › Granted Patent US 10,631,410
Granted Patent B2
US 10,631,410 · App. 15/710,579 · Granted Apr 21, 2020

Stacked printed circuit board packages

Inventors: Corey S. Provencher (Santa Clara, CA); Meng Chi Lee (Los Altos, CA); Derek J. Walters (San Jose, CA); Ian A. Spraggs (San Francisco, CA); Flynn P. Carson (Redwood City, CA); Shakti S. Chauhan (Cupertino, CA); Daniel W. Jarvis (Sunnyvale, CA); David A. Pakula (San Francisco, CA); Jun Zhai (Cupertino, CA); Michael V. Yeh (Cupertino, CA); Alex J. Crumlin (San Jose, CA); Dennis R. Pyper (San Jose, CA); Amir Salehi (Los Gatos, CA); Vu T. Vo (Salinas, CA); Gregory N. Stephens (San Jose, CA)
Assignee: Apple Inc.
H05K1/181H05K1/0298H05K1/115H05K1/144H05K3/0014H05K3/341H05K1/113H05K3/284H05K3/3436H05K2201/10159H05K2201/10674H05K2203/1316Y02P70/611
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Quick Facts
Patent No.
US 10,631,410
App. No.
15/710,579
Filed
Sep 20, 2017
Granted
Apr 21, 2020
Kind
B2
Art Unit
2848
USPC
361/764
Abstract

The present disclosure is related to printed circuit board packages and methods of assembly that may be used in the fabrication of electrical devices. Printed circuit board packages may be manufactured by stacking printed circuit board assemblies. Each printed circuit board assembly may have multiple printed circuit boards supported by a resin mold. The printed circuit board assemblies may be shaped to improve space utilization efficiency and to accommodate large electrical components that are attached to the printed circuit board package.

Claims (40)

1. A printed circuit board assembly comprising:

a first bottom printed circuit board;

an integrated circuit electrically coupled to the first bottom printed circuit board;

a mold embedding the integrated circuit and attached to the first bottom printed circuit board at a bottom surface of the mold, wherein the mold comprises a first portion having a first height measured from the bottom surface to a first top surface of the mold, and a second portion having a second height measured from the bottom surface to a second top surface of the mold, wherein the second height is smaller than the first height;

a first top printed circuit board attached to the mold in the first surface; and

a second top printed circuit board attached to the mold in the second surface of the mold.

2. The printed circuit board assembly of claim 1 , comprising a thru-mold via.

3. The printed circuit board assembly of claim 1 , wherein the integrated circuit is electrically coupled to the bottom printed circuit board using a solder ball.

4. The printed circuit board assembly of claim 1 , wherein the bottom printed circuit board comprises a multilayer printed circuit board.

5. The printed circuit board assembly of claim 1 , wherein the integrated circuit comprises a system-on-a-chip.

6. A printed circuit board stack comprising:

a first printed circuit board assembly comprising:

a first printed circuit board;

a first integrated circuit electrically coupled to the first printed circuit board; and

a first mold embedding the first integrated circuit and attached to the first printed circuit board; and

a second printed circuit board assembly comprising:

a bottom printed circuit board;

a second integrated circuit electrically coupled to the bottom printed circuit board;

a second mold embedding the second integrated circuit and attached to the bottom printed circuit board, wherein the second mold comprises a first region having a first height and a second region having a second height smaller than the first height;

a first top printed circuit board attached to the second mold in the first region;

a second top printed circuit board attached to the second mold in the second region; and

a thru-mold via embedded in the second mold and configured to electrically couple the first printed circuit board of the first printed circuit board assembly and the bottom printed circuit board of the second printed circuit board assembly through the first top printed circuit board.

7. The printed circuit board stack of claim 6 , wherein the first top printed circuit board assembly comprises a solder pad of the thru-mold via.

8. The printed circuit board stack of claim 7 , comprising a solder ball configured to electrically couple the first top printed circuit board and the solder pad of the thru-mold via.

9. The printed circuit board stack of claim 7 , comprising an electrical component soldered to the second top printed circuit board, wherein the electrical component is not embedded by the second mold or the first mold.

10. The printed circuit board stack of claim 6 , comprising an electrical component soldered to a bottom surface of the bottom printed circuit board opposite to top a surface of the bottom printed circuit board attached to the second mold.

11. The printed circuit board stack of claim 10 , wherein the electrical component is a memory component.

12. The printed circuit board stack of claim 6 , wherein the first integrated circuit comprises a network controller and the second integrated circuit comprises a system-on-chip.

13. The printed circuit board stack of claim 6 , comprising a second printed circuit board attached to the second top printed circuit board of the second printed circuit board assembly.

14. The printed circuit board stack of claim 13 , comprising a removable integrated circuit adaptor attached to the second printed circuit board.

15. A method to produce an electrical device, comprising:

providing set of printed circuit board assemblies, wherein at least one printed circuit board assembly comprises:

a bottom printed circuit board;

an electrical component coupled to the printed circuit board;

a mold embedding the electrical component and attached to the printed circuit board in a bottom surface of the mold, wherein the mold comprises a first region that has a first height and a second region that has a second height smaller than the first height;

a first top printed circuit board attached to the mold in the first region in a first top surface that is opposite to the bottom surface of the mold; and

a second top printed circuit board attached to the mold in the second region in a second top surface that is opposite to the bottom surface of the mold; and

attaching at least one non-embedded electrical component in an exposed surface of a top printed circuit board of the at least one printed circuit board assembly, wherein the top printed circuit board is disposed in the second region; and

stack the set of printed circuit board assemblies.

16. The method of claim 15 , wherein the top printed circuit board comprises a removable integrated circuit adaptor configured to receive the at least one non-embedded electrical component.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2017
From: JARVIS, DANIEL W.; SPRAGGS, IAN A.; SALEHI, AMIR; PYPER, DENNIS P.
To: APPLE INC.
Reel/Frame 043996/0566 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2017
From: PROVENCHER, COREY S; LEE, MENG CHI; WALTERS, DEREK J.; PAKULA, DAVID A.; STEPHENS, GREGORY N.; VO, VU T.; CRUMLIN, ALEX J.; YEH, MICHAEL B.; CHAUHAN, SHAKTI S.; CARSON, FLYNN P.; ZHAI, JUN
To: APPLE INC.
Reel/Frame 043643/0776 →
Continuity (2)
Provisional Application 62399370 · Sep 24, 2016
Related Publication 20180092213A1 · Mar 29, 2018
Cited By (1)
US 12,710,606