IP Library › Granted Patent US 11,557,416
Granted Patent B2
US 11,557,416 · App. 16/881,178 · Granted Jan 17, 2023

Multilayer coil component

Inventor: Atsuo Hirukawa (Nagaokakyo, JP)
Assignee: Murata Manufacturing Co., Ltd.
H01F17/0013H01F27/29H01F27/324H01F41/041H01F41/12
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 11,557,416
App. No.
16/881,178
Granted
Jan 17, 2023
Kind
B2
Abstract

A multilayer coil component includes a multilayer body, and first and second outer electrodes. The multilayer body is formed by stacking plural insulating layers in a length direction, and includes a coil incorporated therein. The first and second outer electrodes are electrically connected to the coil. The coil is formed by electrically connecting plural coil conductors stacked in the length direction together with the insulating layers. The multilayer body has first and second end surfaces, first and second major surfaces, and first and second lateral surfaces. The first outer electrode has first, second, and third electrode portions. As viewed in plan in the width direction, the third electrode portion is substantially concave toward a vertex where first and second edges meet, the first edge being an edge where the first and third electrode portions meet, the second edge being an edge where the second and third electrode portions meet.

Claims (75)

1. A multilayer coil component comprising:

a multilayer body formed by stacking a plurality of insulating layers in a length direction, the multilayer body including a coil built in the multilayer body; and

a first outer electrode and a second outer electrode that are electrically connected to the coil,

wherein the coil is formed by electrically connecting a plurality of coil conductors, the coil conductors being stacked in the length direction together with the insulating layers,

wherein the multilayer body has

a first end surface and a second end surface that face each other in the length direction,

a first major surface and a second major surface that face each other in a height direction orthogonal to the length direction, and

a first lateral surface and a second lateral surface that face each other in a width direction orthogonal to the length direction and to the height direction,

wherein the first major surface is a mounting surface,

wherein a stacking direction of the multilayer body, and a direction of a coil axis of the coil are parallel to the first major surface,

wherein the first outer electrode has

a first electrode portion that covers a portion of the first end surface,

a second electrode portion that extends from the first electrode portion to cover a portion of the first major surface, and

a third electrode portion that extends from the first electrode portion and the second electrode portion to cover a portion of the first lateral surface, and

wherein as viewed in plan in the width direction, the third electrode portion is substantially concave toward a vertex where a first edge and a second edge meet, the first edge being an edge where the first electrode portion and the third electrode portion meet, and the second edge being an edge where the second electrode portion and the third electrode portion meet,

each coil conductor has a line portion, and a land portion disposed in an end portion of the line portion,

the land portions of the coil conductors that are adjacent to each other in the stacking direction are connected with each other by a via conductor, and

as viewed in plan in the width direction, the land portion is located in an upper half region of the multilayer body located opposite to the first major surface.

2. The multilayer coil component according to claim 1 , wherein

as viewed in plan in the width direction, the third electrode portion has an area of from about 20% to about 80% of an area of a triangle,

the triangle being a triangle formed by connecting the vertex, a first endpoint, and a second endpoint in the third electrode portion with each other by straight lines,

the first endpoint being an endpoint lying on the first edge and different from the vertex, and

the second endpoint being an endpoint lying on the second edge and different from the vertex.

3. The multilayer coil component according to claim 1 , wherein

a region where the coil conductors are disposed has a dimension in the stacking direction of from about 85% to about 95% of a length dimension of the multilayer body.

4. The multilayer coil component according to claim 1 , wherein

as viewed in plan in the width direction, the third electrode portion has a dimension on the second edge of from about 40 μm to about 145 μm.

5. The multilayer coil component according to claim 1 , wherein

a number of the stacked coil conductors is greater than or equal to 50, and

as viewed in plan in the width direction, a number of the stacked coil conductors overlapping the third electrode portion is less than or equal to 10.

6. The multilayer coil component according to claim 1 , wherein

a number of the stacked coil conductors that define one turn of the coil is two.

7. The multilayer coil component according to claim 1 , wherein

the second outer electrode has

a fourth electrode portion that covers a portion of the second end surface,

a fifth electrode portion that extends from the fourth electrode portion to cover a portion of the first major surface, and

a sixth electrode portion that extends from the fourth electrode portion and the fifth electrode portion to cover a portion of the first lateral surface.

8. The multilayer coil component according to claim 2 , wherein

a region where the coil conductors are disposed has a dimension in the stacking direction of from about 85% to about 95% of a length dimension of the multilayer body.

9. The multilayer coil component according to claim 2 , wherein

as viewed in plan in the width direction, the third electrode portion has a dimension on the second edge of from about 40 μm to about 145 μm.

10. The multilayer coil component according to claim 3 , wherein

as viewed in plan in the width direction, the third electrode portion has a dimension on the second edge of from about 40 μm to about 145 μm.

11. The multilayer coil component according to claim 2 , wherein

a number of the stacked coil conductors is greater than or equal to 50, and

as viewed in plan in the width direction, a number of the stacked coil conductors overlapping the third electrode portion is less than or equal to 10.

12. The multilayer coil component according to claim 3 , wherein

a number of the stacked coil conductors is greater than or equal to 50, and

as viewed in plan in the width direction, a number of the stacked coil conductors overlapping the third electrode portion is less than or equal to 10.

13. The multilayer coil component according to claim 4 , wherein

a number of the stacked coil conductors is greater than or equal to 50, and

as viewed in plan in the width direction, a number of the stacked coil conductors overlapping the third electrode portion is less than or equal to 10.

14. The multilayer coil component according to claim 2 , wherein

a number of the stacked coil conductors that define one turn of the coil is two.

15. The multilayer coil component according to claim 3 , wherein

a number of the stacked coil conductors that define one turn of the coil is two.

16. The multilayer coil component according to claim 4 , wherein

a number of the stacked coil conductors that define one turn of the coil is two.

17. The multilayer coil component according to claim 5 , wherein

a number of the stacked coil conductors that define one turn of the coil is two.

18. The multilayer coil component according to claim 2 , wherein

the second outer electrode has

a fourth electrode portion that covers a portion of the second end surface,

a fifth electrode portion that extends from the fourth electrode portion to cover a portion of the first major surface, and

a sixth electrode portion that extends from the fourth electrode portion and the fifth electrode portion to cover a portion of the first lateral surface.

19. The multilayer coil component according to claim 3 , wherein

the second outer electrode has

a fourth electrode portion that covers a portion of the second end surface,

a fifth electrode portion that extends from the fourth electrode portion to cover a portion of the first major surface, and

a sixth electrode portion that extends from the fourth electrode portion and the fifth electrode portion to cover a portion of the first lateral surface.

20. The multilayer coil component according to claim 4 , wherein

the second outer electrode has

a fourth electrode portion that covers a portion of the second end surface,

a fifth electrode portion that extends from the fourth electrode portion to cover a portion of the first major surface, and

a sixth electrode portion that extends from the fourth electrode portion and the fifth electrode portion to cover a portion of the first lateral surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2020
From: HIRUKAWA, ATSUO
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 052732/0301 →
Priority Claims (1)
JP JP2019-097638 · May 24, 2019 · national
Continuity (1)
Related Publication 20200373065A1 · Nov 26, 2020