IP Library › Granted Patent US 11,763,982
Granted Patent B2
US 11,763,982 · App. 16/206,582 · Granted Sep 19, 2023

Inductor and manufacturing method thereof

Inventors: Sa Yong Lee (Suwon-Si, KR); Mi Sun Hwang (Suwon-si, KR)
Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.
H01F27/32H01F5/06H01F27/29H01F41/12
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Quick Facts
Patent No.
US 11,763,982
App. No.
16/206,582
Granted
Sep 19, 2023
Kind
B2
Abstract

An inductor includes a body in which a plurality of insulating layers on which a plurality of coil patterns are arranged are stacked, and first and second external electrodes disposed inside the body, wherein the plurality of coil patterns are connected by coil connecting portions and form a coil in which opposing ends thereof are connected to the first and second external electrodes, and the first and second external electrodes are directly connected to the opposing ends of the plurality of coil patterns inside the body.

Claims (30)

1. An inductor comprising:

a body having a mounting surface, the mounting surface being an external surface along a thickness of the body, and plurality of insulating layers stacked in a width direction;

a plurality of coil patterns disposed on the plurality of insulating layers, each enclosing a portion of a corresponding of the plurality of insulating layers; and

first and second external electrodes, each comprising a plurality of plating layers, disposed inside the body, wherein the first and second external electrodes are exposed through the mounting surface and spaced apart from each other along the mounting surface,

wherein the plurality of coil patterns are connected by coil connecting portions and form a coil in which opposing ends thereof are connected to the first and second external electrodes, and the first and second external electrodes are directly connected to the opposing ends of the coil inside the body,

wherein a distance between farthest inner edges of each of the plurality of coil patterns reduces along the thickness direction closer to the mounting surface, and

wherein an outermost surface of the first and second external electrodes is spaced inwardly apart from corresponding side surfaces of the body, forming an inwardly concave step between the outermost surface of the first and second external electrodes and the corresponding side surfaces of the body.

2. The inductor of claim 1 , wherein the first and second external electrodes are directly connected to the plurality of coil patterns and include a first electrode layer deposited with the same material as that of the plurality of coil patterns.

3. The inductor of claim 2 , wherein the first and second external electrodes further include a plurality of plating layers disposed on the first electrode layer.

4. The inductor of claim 3 , wherein an outermost plating layer among the plurality of plating layers is exposed to the outside of the body.

5. The inductor of claim 1 , wherein a width of the plurality of coil patterns where the connecting portions are disposed is substantially same as the width of a remainder of the plurality of coil patterns.

6. The inductor of claim 1 , wherein the connecting patterns and the patterns overlap each other along substantially a same axis.

7. An inductor comprising:

a body including a stack of a first insulating layer, a last insulating layer and intermediate insulating layers, stacked along a width direction, each of the intermediate layers having a pattern disposed thereon, each of the patterns on the intermediate insulating layers being connected to the patterns on immediately adjacent insulating layers by a connecting pattern disposed on opposing ends of corresponding patterns, the patterns and the connecting patterns together comprising a coil disposed inside the body such that the patterns on the first and the last insulating layers form opposing ends of the coil, the patterns being spaced apart from a mounting surface, the mounting surface being an external surface of the body in a thickness direction; and

first and second external electrodes disposed to be spaced apart along the mounting surface inside the body and directly connected respectively to the opposing ends of the coil,

wherein an outermost surface of the first and second external electrodes is spaced inwardly apart from corresponding side surfaces of the body, forming an inwardly concave step between the outermost surface of the first and second external electrodes and the corresponding side surfaces of the body, and

wherein the patterns are shaped to be tapering in the thickness direction towards the mounting surface.

8. The inductor of claim 7 , wherein the first and second external electrodes include a first electrode layer formed of a same material as that of the patterns on the first, last and intermediate insulating layers.

9. The inductor of claim 8 , wherein each of the first and second external electrodes further includes a plating layer disposed on the first electrode layer, the plating layer being exposed to an outside surface of the body.

10. The inductor of claim 7 , wherein an external surface of each of the first and second external electrodes substantially matches an external surface of the body.

11. The inductor of claim 7 , wherein the pattern on the first insulating layer is spaced apart from the second external electrode, the pattern on the last insulating layer is spaced apart from the first external electrode, and the patterns on intermediate insulating layers are spaced apart from both the first and second external electrodes.

12. The inductor of claim 7 , wherein a width of the plurality of coil patterns where the connecting portions are disposed is substantially same as the width of a remainder of the plurality of coil patterns.

13. The inductor of claim 7 , wherein each of the first and second external electrodes comprises a plurality of plating layers.

14. An inductor comprising:

a body in which a plurality of insulating layers on which a plurality of coil patterns are arranged are stacked along a width direction of the body, the body having a mounting surface, the mounting surface being an external surface of the body in a thickness direction; and

first and second external electrodes disposed to be spaced apart along the mounting surface inside the body, wherein the plurality of coil patterns are connected by coil connecting portions and form a coil in which opposing ends thereof are connected to the first and second external electrodes, and the first and second external electrodes are directly connected to the opposing ends of the coil inside the body,

wherein outlines of coil patterns including the opposing ends overlap each other in a direction in which the plurality of insulating layers are stacked,

wherein a shortest distance between an outer edge of the plurality of coil patterns and an external surface of the body in a length direction increases in the thickness direction closer to the mounting surface, and

wherein an outermost surface of the first and second external electrodes is spaced inwardly apart from corresponding side surfaces of the body, forming an inwardly concave step between the outermost surface of the first and second external electrodes and the corresponding side surfaces of the body.

15. The inductor of claim 14 , wherein each of the first and second external electrodes comprises a plurality of plating layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2018
From: LEE, SA YONG; HWANG, MI SUN
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 047644/0826 →
Priority Claims (1)
KR 10-2018-0042759 · Apr 12, 2018 · national
Continuity (1)
Related Publication 20190318867A1 · Oct 17, 2019
Cited By (1)
US 12,658,358