IP Library › Granted Patent US 11,979,985
Granted Patent B2
US 11,979,985 · App. 17/934,819 · Granted May 7, 2024

Printed circuit board

Inventor: Won Suk Jung (Seoul, KR)
Assignee: LG INNOTEK CO., LTD.
H05K1/115H05K1/0306H05K1/185H05K2201/096
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,979,985
App. No.
17/934,819
Granted
May 7, 2024
Kind
B2
Abstract

A printed circuit board according to an embodiment includes: a first insulating portion having a cavity; a second insulating portion disposed on the first insulating portion; a third insulating portion disposed under the first insulating portion; and an electronic device disposed in the cavity, wherein a number of layers of the second insulating portion is different from a number of layers of the third insulating portion, and has an asymmetric structure with respect to the first insulating portion in which the electronic device is disposed.

Claims (50)

1. A circuit board comprising:

a substrate including a cavity;

a connection member embedded in the cavity of the substrate and including a plurality of connection electrodes;

a plurality of first via electrodes embedded in the substrate overlapping the connection member in a vertical direction; and

a plurality of second via electrodes overlapping the connection member in a horizontal direction;

wherein a width of each of the plurality of first via electrodes is smaller than a width of each of the plurality of second via electrodes,

wherein the plurality of second via electrodes include a lower via electrode and an upper via electrode stacked on the lower via electrode,

wherein each of the lower via electrode and the upper via electrode has a side inclined surface, and

wherein a slope of the side inclined surface of the lower via electrode is same as a slope of the side inclined surface of the upper via electrode.

2. The circuit board of claim 1 , comprising:

a plurality of third via electrodes overlapping the plurality of second via electrodes in the horizontal direction;

a plurality of first pads disposed on the substrate and connected to each of the plurality of first via electrodes; and

a plurality of second pads overlapping the plurality of first pads in the horizontal direction and connected to each of the plurality of third via electrodes;

wherein a width of each of the plurality of first pads is smaller than a width of each of the plurality of second pads.

3. The circuit board of claim 2 , comprising:

a plurality of third pads connected to the plurality of second via electrodes, respectively;

wherein the plurality of third pads include:

a third-first pad disposed between a lower surface of the upper via electrode and an upper surface of the lower via electrode;

a third-second pad disposed at an upper surface of the upper via electrode; and

a third-third pad disposed at a lower surface of the lower via electrode.

4. The circuit board of claim 2 , wherein a width of each of the plurality of first via electrodes gradually increases along a direction from an upper surface of the substrate to a lower surface of the substrate,

wherein a width of each of the plurality of second via electrodes gradually decreases along the direction from the upper surface of the substrate to the lower surface of the substrate,

wherein a width of each of the plurality of third via electrodes gradually increases along the direction from the upper surface of the substrate to the lower surface of the substrate,

wherein each of the plurality of first pads is in contact with a region having a largest width of each of the plurality of first via electrodes; and

wherein each of the plurality of second pads is in contact with a region having a largest width of each of the plurality of third via electrodes.

5. The circuit board of claim 3 ,

wherein the third-second pad overlaps the connection member in the horizontal direction;

wherein the connection member includes a plurality of connection electrodes connected to the plurality of first via electrodes, respectively; and

wherein a width of each of the plurality of connection electrodes is smaller than a width of the third-second pad.

6. The circuit board of claim 5 , wherein the width of each of the plurality of connection electrodes is smaller than a width of each of the plurality of first pads.

7. The circuit board of claim 5 , wherein the substrate includes a first insulating layer overlapping the connection member in the horizontal direction and including a reinforcing member, and

wherein a height from a lower surface of the first insulating layer to an upper surface of the first insulating layer is different from a height from a lower surface of the connection member to an upper surface of the connection member.

8. The circuit board of claim 7 , wherein the first insulating layer includes a plurality of layers, and

wherein the plurality of layers are disposed along the vertical direction and the plurality of layers include a same insulating material.

9. The circuit board of claim 7 , wherein the height of the upper surface of the first insulating layer is different from the height of the upper surface of the connection member.

10. The circuit board of claim 8 , wherein the plurality of layers of the first insulating layer include a first-first insulating layer and a first-second insulating layer,

wherein the upper via electrode passes through the first-first insulating layer, and

wherein the lower via electrode passes through the first-second insulating layer.

11. The circuit board of claim 7 , wherein the height of the lower surface of the first insulating layer is different from the height of the lower surface of the connection member.

12. The circuit board of claim 11 , wherein the lower surface of the first insulating layer is positioned lower than the lower surface of the connection member.

13. The circuit board of claim 11 , wherein a thickness of the first insulating layer in the vertical direction is greater than a sum of thicknesses of each of the connection member and the connection electrode in the vertical direction.

14. The circuit board of claim 7 , wherein the substrate includes a second insulating layer disposed on the first insulating layer and in which the plurality of first via electrodes and the plurality of second via electrodes are disposed; and

wherein the second insulating layer includes an insulating material different from that of the first insulating layer.

15. The circuit board of claim 10 , wherein the cavity passes through the upper and lower surfaces of the first insulating layer,

wherein the substrate includes a third insulating layer disposed in the cavity of the first insulating layer to surround the connection member and the plurality of connection electrodes, and

wherein the third insulating layer includes an insulating material different from that of the first insulating layer, and

wherein a fifth via electrode passes through the third insulating layer and overlaps at least one of the upper via electrode and the lower via electrode in the vertical direction.

16. The circuit board of claim 1 , wherein each of the first via electrodes has a side inclined surface, and

wherein a slope of the side inclined surface of each of the first via electrodes is different from the slope of the side inclined surface of the lower via electrode and the slope of the side inclined surface of the upper via electrode.

17. The circuit board of claim 1 , wherein each of the first via electrodes has a side inclined surface, and wherein a slope of the side inclined surface of the first via electrodes is different from the slope of the side inclined surface of the lower via electrode and the slope of the side inclined surface of the upper via electrode.

Priority Claims (1)
KR 10-2018-0158282 · Dec 10, 2018 · national
Continuity (2)
Continuation 17312838
Related Publication 20230016067A1 · Jan 19, 2023
Cited By (2)
US 12,431,419 US 12,696,384