IP Library Granted Patent US 12683082
Granted Patent B2
US 12683082 · App. 18/616,240 · Granted Jul 14, 2026

Multilayer ceramic capacitor

Inventors: Tatsunori Yasuda (Nagaokakyo, JP); Kazuki Kurokawa (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H01G4/2325H01G4/012H01G4/30
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Quick Facts
Patent No.
US 12683082
App. No.
18/616,240
Granted
Jul 14, 2026
Kind
B2
Abstract

A multilayer ceramic electronic component includes a multilayer body including first and second internal electrode layers alternately laminated with ceramic layers and exposed at one of first and second end surfaces, first step layers on a same plane as a respective one of the second internal electrode layers and exposed at the first end surface, and second step layers on a same plane as a respective one of the first internal electrode layers and exposed at the second end surface. Each of the first step layers and a corresponding one of the second internal electrode layers have a distance therebetween that increases closer to the first main surface than the second main surface, and each of the second step layers and a corresponding one of the first internal electrode layers have a distance therebetween that increases closer to the first main surface than the second main surface.

Claims (72)

1 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of first internal electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers and each exposed at the first end surface, a plurality of second internal electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers and each exposed at the second end surface, a plurality of first step layers that are each provided on a same plane as a respective one of the plurality of second internal electrode layers and each exposed at the first end surface, and a plurality of second step layers that are each provided on a same plane as a respective one of the plurality of first internal electrode layers and each exposed at the second end surface;

a first external electrode on the first end surface; and

a second external electrode on the second end surface; wherein

each of the plurality of first step layers and a corresponding one of the plurality of second internal electrode layers have a distance therebetween in the length direction that increases closer to the first main surface than the second main surface; and

each of the plurality of second step layers and a corresponding one of the plurality of first internal electrode layers have a distance therebetween in the length direction that increases closer to the first main surface than the second main surface.

2 . The multilayer ceramic electronic component according to claim 1 , wherein

each of the plurality of first step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of second internal electrode layers and the first end surface; and

each of the plurality of second step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of first internal electrode layers and the second end surface.

3 . The multilayer ceramic electronic component according to claim 1 , wherein each of the plurality of first internal electrode layers includes:

a counter portion at which the plurality of first internal electrode layers and the plurality of second internal electrode layers are opposed to each other; and

an extension portion extending from the counter portion of each of the plurality of first internal electrode layers toward the first end surface;

the extension portion includes a bent portion that bends toward the second main surface; and

the bent portion has a length in the length direction of the multilayer body, and the length decreases closer to the second main surface than the first main surface.

4 . The multilayer ceramic electronic component according to claim 3 , wherein, when a height of the bent portion in the height direction of the multilayer body is defined as a distance between a start point of bending and an end point of bending in the height direction of the multilayer body, the height of the bent portion in the height direction of the multilayer body decreases closer to the second main surface than the first main surface.

5 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of lateral surface step layers that are each provided on a same plane as a respective one of the plurality of lateral surface-exposed electrode layers and each exposed at the first lateral surface and the second lateral surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of lateral surface step layers and a corresponding one of the plurality of lateral surface-exposed electrode layers have a distance therebetween in the width direction that increases closer to the first main surface than the second main surface.

6 . The multilayer ceramic electronic component according to claim 5 , wherein

each of the plurality of first step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of second internal electrode layers and the first end surface; and

each of the plurality of second step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of first internal electrode layers and the second end surface.

7 . The multilayer ceramic electronic component according to claim 5 , wherein each of the plurality of first internal electrode layers includes:

a counter portion at which the plurality of first internal electrode layers and the plurality of second internal electrode layers are opposed to each other; and

an extension portion extending from the counter portion of each of the plurality of first internal electrode layers toward the first end surface;

the extension portion includes a bent portion that bends toward the second main surface; and

the bent portion has a length in the length direction of the multilayer body, and the length decreases closer to the second main surface than the first main surface.

8 . The multilayer ceramic electronic component according to claim 7 , wherein, when a height of the bent portion in the height direction of the multilayer body is defined as a distance between a start point of bending and an end point of bending in the height direction of the multilayer body, the height of the bent portion in the height direction of the multilayer body decreases closer to the second main surface than the first main surface.

9 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of lateral surface step layers that are each provided on a same plane as a respective one of the plurality of lateral surface-exposed electrode layers and each exposed at the first lateral surface and the second lateral surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of lateral surface step layers and a corresponding one of the plurality of lateral surface-exposed electrode layers have a distance therebetween in the length direction that increases closer to the first main surface than the second main surface.

10 . The multilayer ceramic electronic component according to claim 9 , wherein

each of the plurality of first step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of second internal electrode layers and the first end surface; and

each of the plurality of second step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of first internal electrode layers and the second end surface.

11 . The multilayer ceramic electronic component according to claim 9 , wherein each of the plurality of first internal electrode layers includes:

a counter portion at which the plurality of first internal electrode layers and the plurality of second internal electrode layers are opposed to each other; and

an extension portion extending from the counter portion of each of the plurality of first internal electrode layers toward the first end surface;

the extension portion includes a bent portion that bends toward the second main surface; and

the bent portion has a length in the length direction of the multilayer body, and the length decreases closer to the second main surface than the first main surface.

12 . The multilayer ceramic electronic component according to claim 11 , wherein, when a height of the bent portion in the height direction of the multilayer body is defined as a distance between a start point of bending and an end point of bending in the height direction of the multilayer body, the height of the bent portion in the height direction of the multilayer body decreases closer to the second main surface than the first main surface.

13 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of end surface step layers that are each provided on a same plane as a respective one of the plurality of lateral surface-exposed electrode layers and each exposed at the first end surface and the second end surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of end surface step layers and a corresponding one of the plurality of lateral surface-exposed electrode layers have a distance therebetween in the length direction that increases closer to the first main surface than the second main surface.

14 . The multilayer ceramic electronic component according to claim 13 , wherein

each of the plurality of first step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of second internal electrode layers and the first end surface; and

each of the plurality of second step layers has a length in the length direction equal to about 20% or more of a distance in the length direction between a corresponding one of the plurality of first internal electrode layers and the second end surface.

15 . The multilayer ceramic electronic component according to claim 13 , wherein each of the plurality of first internal electrode layers includes:

a counter portion at which the plurality of first internal electrode layers and the plurality of second internal electrode layers are opposed to each other; and

an extension portion extending from the counter portion of each of the plurality of first internal electrode layers toward the first end surface;

the extension portion includes a bent portion that bends toward the second main surface; and

the bent portion has a length in the length direction of the multilayer body, and the length decreases closer to the second main surface than the first main surface.

16 . The multilayer ceramic electronic component according to claim 15 , wherein, when a height of the bent portion in the height direction of the multilayer body is defined as a distance between a start point of bending and an end point of bending in the height direction of the multilayer body, the height of the bent portion in the height direction of the multilayer body decreases closer to the second main surface than the first main surface.

17 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of lateral surface step layers that are each provided on a same plane as a respective one of the plurality of end surface-exposed electrode layers and each exposed at the first lateral surface and the second lateral surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of lateral surface step layers and a corresponding one of the plurality of end surface-exposed electrode layers have a distance therebetween in the width direction that increases closer to the first main surface than the second main surface.

18 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of end surface step layers that are each provided on a same plane as a respective one of the plurality of end surface-exposed electrode layers and each exposed at the first end surface and the second end surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of end surface step layers and a corresponding one of the plurality of end surface-exposed electrode layers have a distance therebetween in the width direction that increases closer to the first main surface than the second main surface.

19 . A multilayer ceramic electronic component comprising:

a multilayer body including a plurality of laminated ceramic layers, a first main surface and a second main surface opposed to each other in a height direction, a first lateral surface and a second lateral surface opposed to each other in a width direction orthogonal or substantially orthogonal to the height direction, a first end surface and a second end surface opposed to each other in a length direction orthogonal or substantially orthogonal to the height direction and the width direction, a plurality of end surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first end surface and the second end surface, and each function as an internal electrode layer, a plurality of lateral surface-exposed electrode layers that are each alternately laminated with a respective one of the plurality of ceramic layers, each exposed at the first lateral surface and the second lateral surface, and each function as an internal electrode layer, and a plurality of end surface step layers that are each provided on a same plane as a respective one of the plurality of end surface-exposed electrode layers and each exposed at the first end surface and the second end surface;

first external electrodes respectively on the first end surface and the second end surface; and

second external electrodes respectively on the first lateral surface and the second lateral surface; wherein

each of the plurality of end surface step layers and a corresponding one of the plurality of end surface-exposed electrode layers have a distance therebetween in the length direction that increases closer to the first main surface than the second main surface.