IP Library › Granted Patent US 11,728,088
Granted Patent B2
US 11,728,088 · App. 16/197,127 · Granted Aug 15, 2023

Multilayer coil component

Inventor: Atsuo Hirukawa (Nagaokakyo, JP)
Assignee: Murata Manufacturing Co., Ltd.
H01F27/292H01F17/0013H01F27/32
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 11,728,088
App. No.
16/197,127
Granted
Aug 15, 2023
Kind
B2
Abstract

A multilayer coil component includes a multilayer body that is formed of laminated insulating layers and that contains a coil, and a first outer electrode and a second outer electrode that are electrically connected to the coil. The coil is formed of coil conductors. The first outer electrode covers a part of a first end surface of the multilayer body, extends from the first end surface, and covers a part of a first main surface thereof. The second outer electrode covers a part of a second end surface of the multilayer body, extends from the second end surface, and covers a part of the first main surface. A lamination direction of the multilayer body and an axial direction of the coil are parallel to a mounting surface. Determination marks are formed on surfaces of the multilayer body at locations at which the first and second outer electrodes are formed.

Claims (58)

1. A multilayer coil component comprising:

a multilayer body that is formed of laminated insulating layers and that contains a coil, each laminated insulating layer having a respective primary surface; and

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

the coil is formed of coil conductors that are stacked together with the insulating layers and that are electrically connected to each other, the coil conductors each being disposed on respective primary surfaces of one group of the laminated insulating layers,

the multilayer body has a first end surface and a second end surface that face away from each other in a length direction, a first main surface and a second main surface that face away from each other in a height direction perpendicular to the length direction, and a first side surface and a second side surface that face away from each other in a width direction perpendicular to the length direction and the height direction,

the first outer electrode covers a part of the first end surface, extends from the first end surface, and covers a part of the first main surface,

the second outer electrode covers a part of the second end surface, extends from the second end surface, and covers a part of the first main surface,

the first main surface serves as a mounting surface,

a lamination direction of the multilayer body and an axial direction of the coil are parallel to the length direction along the mounting surface,

a plurality of mark conductor patterns formed on respective primary surfaces of the laminated insulating layers other than the one group, the plurality of mark conductor patterns extending along the respective primary surface to be exposed from the multilayer body and formed also on the first main surface of the multilayer body, thereby forming a plurality of determination marks on the first main surface of the multilayer body, wherein

the plurality of determination marks are each composed of one or more lines on the first main surface, are each formed entirely within an area on the first main surface of the multilayer body over which the first outer electrode or the second outer electrode is formed, and are formed in at least two regions, each region containing only one corresponding corner of the first main surface, so as to be symmetric with respect to each other about a central point,

the length of the part of the first outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm, and

the length of the part of the second outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm.

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

the first outer electrode further extends from the first end surface and the first main surface and covers a part of the first side surface and a part of the second side surface, and

the second outer electrode further extends from the second end surface and the first main surface and covers a part of the first side surface and a part of the second side surface.

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

a length of the line is from 0.04 mm to 0.1 mm.

4. A multilayer coil component comprising:

a multilayer body that is formed of laminated insulating layers and that contains a coil, each laminated insulating layer having a respective primary surface; and

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

the coil is formed of coil conductors that are stacked together with the insulating layers and that are electrically connected to each other, the coil conductors each being disposed on respective primary surfaces of one group of the laminated insulating layers,

the multilayer body has a first end surface and a second end surface that face away from each other in a length direction, a first main surface and a second main surface that face away from each other in a height direction perpendicular to the length direction, and a first side surface and a second side surface that face away from each other in a width direction perpendicular to the length direction and the height direction,

the first outer electrode covers a part of the first end surface, extends from the first end surface, and covers a part of the first main surface,

the second outer electrode covers a part of the second end surface, extends from the second end surface, and covers a part of the first main surface,

the first main surface serves as a mounting surface,

a lamination direction of the multilayer body and an axial direction of the coil are parallel to the length direction along the mounting surface,

a plurality of mark conductor patterns formed on respective primary surfaces of the laminated insulating layers other than the one group, the plurality of mark conductor patterns extending along the respective primary surface to be exposed from the multilayer body and formed also on the first main surface of the multilayer body, thereby forming a plurality of determination marks on the first main surface of the multilayer body, wherein

the plurality of determination marks are each composed of one or more lines on the first main surface, are each formed entirely within an area on the first main surface of the multilayer body over which the first outer electrode or the second outer electrode is formed, and are formed in at least two regions, each region containing only one corresponding corner of the first main surface, so as to be symmetric with respect to each other about a central point,

the multilayer body contains a first connection conductor and a second connection conductor,

the first connection conductor linearly connects a part of the first outer electrode that covers the first end surface and one of the coil conductors that faces the part of the first outer electrode to each other,

the second connection conductor linearly connects a part of the second outer electrode that covers the second end surface and another of the coil conductors that faces the part of the second outer electrode to each other,

the first connection conductor and the second connection conductor overlap the coil conductors in a plan view from the lamination direction and are nearer than a central axis of the coil to the mounting surface,

the length of the part of the first outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm, and

the length of the part of the second outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm.

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

the first outer electrode further extends from the first end surface and the first main surface and covers a part of the first side surface and a part of the second side surface, and

the second outer electrode further extends from the second end surface and the first main surface and covers a part of the first side surface and a part of the second side surface.

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

a length of the line is from 0.04 mm to 0.1 mm.

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

the determination marks are formed in four regions each of which contains a corresponding one of corners of the first main surface.

8. A multilayer coil component comprising:

a multilayer body that is formed of laminated insulating layers and that contains a coil, each laminated insulating layer having a respective primary surface; and

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

the coil is formed of coil conductors that are stacked together with the insulating layers and that are electrically connected to each other, the coil conductors each being disposed on respective primary surfaces of one group of the laminated insulating layers,

the multilayer body has a first end surface and a second end surface that face away from each other in a length direction, a first main surface and a second main surface that face away from each other in a height direction perpendicular to the length direction, and a first side surface and a second side surface that face away from each other in a width direction perpendicular to the length direction and the height direction,

the first outer electrode covers a part of the first end surface, extends from the first end surface, and covers a part of the first main surface,

the second outer electrode covers a part of the second end surface, extends from the second end surface, and covers a part of the first main surface,

the first main surface serves as a mounting surface,

a lamination direction of the multilayer body and an axial direction of the coil are parallel to the length direction along the mounting surface, and

a plurality of mark conductor patterns formed on respective primary surfaces of the laminated insulating layers other than the one group, the plurality of mark conductor patterns extending along the respective primary surface to be exposed from the multilayer body and formed also on the first main surface of the multilayer body, thereby forming a plurality of determination marks on the first main surface of the multilayer body, wherein

the plurality of determination marks are each composed of one or more lines on the first main surface, are each formed entirely within an area on the first main surface of the multilayer body over which the first outer electrode or the second outer electrode is formed, and are formed in at least two regions, each region containing only one corresponding corner of the first main surface, so as to be symmetric with respect to each other about a central point, and

the determination marks are formed in four regions each of which contains a corresponding one of corners of the first main surface,

the length of the part of the first outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm, and

the length of the part of the second outer electrode that covers the first main surface of the multilayer body is no less than 0.12 mm and no more than 0.22 mm.

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

a length of the line is from 0.04 mm to 0.1 mm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2018
From: HIRUKAWA, ATSUO
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 047558/0138 →
Priority Claims (1)
JP 2017-226909 · Nov 27, 2017 · national
Continuity (1)
Related Publication 20190164684A1 · May 30, 2019