IP Library Granted Patent US 12712119
Granted Patent B2
US 12712119 · App. 18/046,384 · Granted Aug 18, 2026

Inductor component

Inventors: Yoshimasa Yoshioka (Nagaokakyo, JP); Ryouta Sakurai (Nagaokakyo, JP); Katsufumi Sasaki (Nagaokakyo, JP)
Assignee: Murata Manufacturing Co., Ltd.
H01F27/292H01F1/20H01F1/342H01F27/2823H01F41/12
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Quick Facts
Patent No.
US 12712119
App. No.
18/046,384
Granted
Aug 18, 2026
Kind
B2
Abstract

An inductor component includes an element body that includes magnetic powder and has first and second principal surfaces, and a side surface connecting the principal surfaces; an inductor wire in the element body; a first vertical wire that is in the element body, is connected to a first end of the inductor wire, and extends to the first principal surface; a second vertical wire that is in the element body, is connected to a second end of the inductor wire, and extends to the first principal surface; a first external terminal that is connected to the first vertical wire and is exposed on the first principal surface; and a second external terminal that is connected to the second vertical wire and is exposed on the first principal surface. The magnetic powder contains an Fe element as a main component, and the side surface has oxidized and non-oxidized regions.

Claims (49)

1 . An inductor component comprising:

an element body that includes magnetic powder and has a first principal surface, a second principal surface, and a side surface connecting the first principal surface and the second principal surface;

an inductor wire that is in the element body;

a first vertical wire that is in the element body, is connected to a first end of the inductor wire, and extends to the first principal surface;

a second vertical wire that is in the element body, is connected to a second end of the inductor wire, and extends to the first principal surface;

a first external terminal that is connected to the first vertical wire and is exposed on the first principal surface; and

a second external terminal that is connected to the second vertical wire and is exposed on the first principal surface,

the magnetic powder containing an Fe element as a main component, and

the side surface including an oxidized region in which an oxide film configured by oxidizing a plurality of magnetic powders is exposed, and a non-oxidized region in which the plurality of magnetic powders are exposed,

wherein the oxide film is on a cut section of the magnetic powder.

2 . The inductor component according to claim 1 , wherein

the element body includes a resin containing the magnetic powder, and

the magnetic powder in the oxidized region includes magnetic powder that is in contact with the resin with the oxide film interposed therebetween.

3 . The inductor component according to claim 1 , wherein

the element body includes a resin containing the magnetic powder, and

the magnetic powder in the oxidized region includes magnetic powder that is in direct contact with the resin.

4 . The inductor component according to claim 1 , wherein

the oxidized region has a larger ratio of a reflectance of a wavelength of from 600 nm to 800 nm to a reflectance of a wavelength of less than 600 nm than the non-oxidized region.

5 . The inductor component according to claim 1 , wherein

a thickness of the oxide film is smaller than D50 of a grain diameter of the magnetic powder.

6 . The inductor component according to claim 1 , wherein

the inductor wire has a first extended portion that is connected to the first end of the inductor wire and is exposed from the side surface of the element body.

7 . The inductor component according to claim 1 , wherein

the inductor wire includes a plurality of inductor wires, and

the plurality of inductor wires are disposed on the same plane parallel to the first principal surface and are electrically separated from each other.

8 . The inductor component according to claim 6 , wherein

the inductor wire includes a plurality of inductor wires, and

the plurality of inductor wires are disposed along a direction orthogonal to the first principal surface.

9 . The inductor component according to claim 1 , further comprising:

an insulating layer that is on the first principal surface.

10 . The inductor component according to claim 1 , wherein

the first principal surface has the oxidized region and the non-oxidized region.

11 . The inductor component according to claim 1 , wherein

the side surface of the element body has a first region in a predetermined range from the first principal surface in a direction orthogonal to the first principal surface, and a second region other than the first region,

D50 of the grain diameter of the magnetic powder in the second region is larger than D50 of the grain diameter of the magnetic powder in the first region, and

on the side surface, the first region has a larger area of the non-oxidized region than the second region, and the second region has a larger area of the oxidized region than the first region.

12 . The inductor component according to claim 1 , wherein

the element body has a plurality of magnetic layers stacked in a direction orthogonal to the first principal surface, and

the magnetic layer in contact with the inductor wire is disposed along a part of an outer shape of the inductor wire.

13 . The inductor component according to claim 1 , wherein

D50 of the grain diameter of the magnetic powder in the oxidized region is larger than D50 of the magnetic powder in the non-oxidized region.

14 . The inductor component according to claim 13 , wherein

an amount of Fe element in the oxidized region is larger than an amount of Fe element in the non-oxidized region.

15 . The inductor component according to claim 1 , wherein

the side surface further has a recess.

16 . The inductor component according to claim 2 , wherein

the oxidized region has a larger ratio of a reflectance of a wavelength of from 600 nm to 800 nm to a reflectance of a wavelength of less than 600 nm than the non-oxidized region.

17 . The inductor component according to claim 2 , wherein

a thickness of the oxide film is smaller than D50 of a grain diameter of the magnetic powder.