IP Library Granted Patent US 12706243
Granted Patent B2
US 12706243 · App. 17/831,382 · Granted Aug 11, 2026

Inductor component

Inventors: Yoshimasa Yoshioka (Nagaokakyo, JP); Kiyotaka Nishi (Nagaokakyo, JP)
Assignee: Murata Manufacturing Co., Ltd.
H01F27/346H01F27/2866H01F27/324
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Quick Facts
Patent No.
US 12706243
App. No.
17/831,382
Filed
Jun 2, 2022
Granted
Aug 11, 2026
Kind
B2
Art Unit
2837
USPC
336/199
Abstract

An inductor component comprising a base; a coil in the base body and wound along a direction of an axis; and first and second external electrodes disposed on the base body and electrically connected to the coil. The base body includes first and second end surfaces and a second end surface at ends in the length direction, first and second side surfaces at ends in the width direction, and bottom and top surfaces at ends in the height direction. The first and second external electrodes are respectively disposed toward the first and second end surfaces with respect to a center in the length direction and exposed from an outer surface of the base body. When viewed from the first end surface in the length direction, at least a part of a respective portion of the first and second external electrodes exposed from the outer surface do not overlap.

Claims (66)

1 . An inductor component comprising:

a base body having a length, a width, and a height;

a coil disposed in the base body and wound along a direction of an axis; and

a first external electrode and a second external electrode both disposed on the base body and electrically connected to the coil,

the base body including a first end surface and a second end surface at both ends in the length direction, a first side surface and a second side surface at both ends in the width direction, and a bottom surface and a top surface at both ends in the height direction,

the first external electrode being disposed toward the first end surface with respect to a center in the length direction of the base body and exposed from an outer surface of the base body, and

the second external electrode being disposed toward the second end surface with respect to the center in the length direction of the base body and exposed from the outer surface of the base body, wherein:

when viewed from the first end surface in the length direction, at least a part of a portion of the first external electrode exposed from the outer surface of the base body does not overlap at least a part of a portion of the second external electrode exposed from the outer surface of the base body,

when viewed from the first end surface in the length direction, a center-of-gravity position of an area of the portion of the first external electrode exposed from the outer surface of the base body is opposite to the center-of-gravity position of the area of the portion of the second external electrode exposed from the outer surface of the base body with respect to a center in the width direction of the base body, and

when viewed from the first end surface in the length direction, the coil has an upper end and a lower end, the first external electrode has an upper end and a lower end, and the coil upper end extends to connect to the upper end of the first external electrode.

2 . The inductor component of claim 1 wherein

the base body comprises: a substrate having a bottom surface and a top surface at both ends in the height direction; and an insulating layer covering each of the bottom surface and the top surface of the substrate, and wherein

the coil comprises: a bottom surface wire arranged above the bottom surface of the substrate and covered with the insulating layer; a top surface wire arranged above the top surface of the substrate and covered with the insulating layer; and a pair of through wires extending through the substrate from the bottom surface to the top surface,

the through wires being arranged opposite to each other with respect to the axis, and

the bottom surface wire, a first through wire of the pair of through wires, the top surface, and a second through wire of the pair of through wires being connected in order, to configure at least a part of the coil wound in the direction of the axis.

3 . The inductor component of claim 2 , wherein

the first external electrode is disposed continuously on the first end surface and the bottom surface, and

when viewed from the first end surface in the length direction, the first end surface portion of the first external electrode disposed on the first end surface lies on a same side as the through wire to which the first external electrode is connected lies, with respect to the center in the width direction of the base body.

4 . The inductor component of claim 2 , wherein

the first external electrode is disposed continuously on the first end surface and the bottom surface, and

the second external electrode is disposed continuously on the second end surface and the bottom surface.

5 . The inductor component of claim 2 , wherein

when viewed from the first end surface in the length direction, the first end surface portion of the first external electrode disposed on the first end surface and a second end surface portion of the second external electrode disposed on the second end surface do not overlap each other.

6 . The inductor component of claim 1 , wherein

the first external electrode is disposed continuously on the first end surface and the bottom surface, and

the second external electrode is disposed continuously on the second end surface and the bottom surface.

7 . The inductor component of claim 1 , wherein

when viewed from the first end surface in the length direction, the first end surface portion of the first external electrode disposed on the first end surface and a second end surface portion of the second external electrode disposed on the second end surface do not overlap each other.

8 . The inductor component of claim 1 , wherein

the first external electrode is disposed continuously on the first end surface and the bottom surface, and

when viewed from the first end surface in the length direction, the first end surface portion of the first external electrode disposed on the first end surface includes three or more regions each having a dimension different in the width direction along the height direction.

9 . The inductor component of claim 8 , wherein

the three or more regions of the first end surface portion have alternately changing dimensions in the width direction along the height direction in their magnitude relations.

10 . The inductor component of claim 1 , wherein

the first end surface portion of the first external electrode disposed on the first end surface and a second end surface portion of the second external electrode disposed on the second end surface do not overlap the axis of the coil.

11 . The inductor component of claim 10 , wherein

when viewed from the direction of the axis of the coil, the first end surface portion and the second end surface portion do not overlap an inner diameter part of the coil.

12 . The inductor component of claim 1 , wherein

the first end surface portion of the first external electrode disposed on the first end surface and a second end surface portion of the second external electrode disposed on the second end surface each have a dimension in the height direction that is one half or more of a dimension in the height direction of the base body.

13 . The inductor component of claim 1 , wherein

the first external electrode is disposed continuously on the first end surface and the bottom surface, and

the first end surface portion of the first external electrode disposed on the first end surface is at least partly raised from the first end surface.

14 . The inductor component of claim 1 , wherein

the first external electrode and the second external electrode are disposed only on the bottom surface, and

at least a part of the first external electrode and at least a part of the second external electrode protrude from the bottom surface outward of the base body.

15 . The inductor component of claim 1 , wherein

the base body includes a single-layer glass plate.

16 . The inductor component of claim 1 , wherein

a part of the outer surface of the base body is made of a material different from that of remaining parts of the outer surface.

17 . The inductor component of claim 1 , wherein

the inductor component has a volume of 0.08 mm 3 or less, and

the inductor component has a long side whose dimension is 0.65 mm or less.

18 . The inductor component of claim 1 , wherein

when viewed from the height direction, the first external electrode and the second external electrode do not overlap the coil.

19 . The inductor component of claim 1 , wherein

when viewed from the first end surface in the length direction, a portion of the first external electrode exposed from the outer surface of the base body is equal in area to a portion of the second external electrode exposed from the outer surface of the base body.

20 . An inductor component comprising:

a base body having a length, a width, and a height;

a coil disposed in the base body and wound along a direction of an axis; and

a first external electrode and a second external electrode both disposed on the base body and electrically connected to the coil,

the base body including a first end surface and a second end surface at both ends in the length direction, a first side surface and a second side surface at both ends in the width direction, and a bottom surface and a top surface at both ends in the height direction,

the first external electrode being disposed toward the first end surface with respect to a center in the length direction of the base body and exposed from an outer surface of the base body, and

the second external electrode being disposed toward the second end surface with respect to the center in the length direction of the base body and exposed from the outer surface of the base body, wherein:

when viewed from the first end surface in the length direction, at least a part of a portion of the first external electrode exposed from the outer surface of the base body does not overlap at least a part of a portion of the second external electrode exposed from the outer surface of the base body,

when viewed from the first end surface in the length direction, a center-of-gravity position of an area of the portion of the first external electrode exposed from the outer surface of the base body is opposite to the center-of-gravity position of the area of the portion of the second external electrode exposed from the outer surface of the base body with respect to a center in the width direction of the base body, and

when viewed from the first end surface in the length direction, a first end surface portion of the first external electrode disposed on the first end surface includes three or more regions, each of the three or more regions of the first end surface portion has side edges at both ends in the width direction, and the side edges of each of the three or more regions have a different tilt angle relative to the height direction.