IP Library › Granted Patent US 12,627,057
Granted Patent B2
US 12,627,057 · App. 18/985,110 · Granted May 12, 2026

Electronic device and multilayer substrate

Inventor: Kentaro Kawabe (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H01Q9/0414H01Q1/48
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Quick Facts
Patent No.
US 12,627,057
App. No.
18/985,110
Granted
May 12, 2026
Kind
B2
Abstract

A first radiation conductor layer is provided in a multilayer body. A second radiation conductor layer is provided in or on the multilayer body, is located above the first radiation conductor layer, and overlaps the first radiation conductor layer when viewed in an up-down direction. A first floating conductor has a shape surrounding at least a part of a periphery of the first radiation conductor layer when viewed in the up-down direction, is located on a same layer as or above the first radiation conductor layer and on a same layer as or below the second radiation conductor layer in the up-down direction, and is not electrically connected to any conductor present in or on the multilayer body. A second floating conductor has a shape surrounding at least a part of a periphery of the second radiation conductor layer.

Claims (53)

1 . An electronic device comprising:

a multilayer substrate; and

a second floating conductor,

wherein the multilayer substrate comprises:

a multilayer body having a structure in which a plurality of insulator layers is stacked in an up-down direction;

a first radiation conductor layer provided in the multilayer body;

a second radiation conductor layer that is provided in or on the multilayer body, that is located above the first radiation conductor layer, and that overlaps the first radiation conductor layer when viewed in the up-down direction; and

a first floating conductor that has a shape surrounding at least a part of a periphery of the first radiation conductor layer when viewed in the up-down direction, that is located on a same layer as or above the first radiation conductor layer and on a same layer as or below the second radiation conductor layer in the up-down direction, and that is not electrically connected to any conductor present in or on the multilayer body, and

wherein the second floating conductor is not electrically connected to any conductor present in or on the multilayer body, has a shape surrounding at least a part of a periphery of the second radiation conductor layer when viewed in the up-down direction, and is located above the second radiation conductor layer.

2 . The electronic device according to claim 1 , wherein a frequency of an electromagnetic wave radiated or received by the second radiation conductor layer is higher than a frequency of an electromagnetic wave radiated or received by the first radiation conductor layer; or an area of the second radiation conductor layer is smaller than an area of the first radiation conductor layer.

3 . The electronic device according to claim 2 , wherein the first floating conductor has an annular shape surrounding the periphery of the first radiation conductor layer when viewed in the up-down direction.

4 . The electronic device according to claim 3 , wherein the second floating conductor has an annular shape surrounding the periphery of the second radiation conductor layer when viewed in the up-down direction.

5 . The electronic device according to claim 4 , wherein an opening surrounded by the first floating conductor is contained in an opening surrounded by the second floating conductor when viewed in the up-down direction.

6 . The electronic device according to claim 5 , further comprising:

a third radiation conductor layer provided in the multilayer body; and

a fourth radiation conductor layer that is provided in or on the multilayer body, that is located above the third radiation conductor layer, and that overlaps the third radiation conductor layer when viewed in the up-down direction,

wherein

the first floating conductor has a shape surrounding at least a part of the third radiation conductor layer when viewed in the up-down direction, and

the second floating conductor has a shape surrounding at least a part of the fourth radiation conductor layer when viewed in the up-down direction.

7 . The electronic device according to claim 6 , wherein the first radiation conductor layer and the second radiation conductor layer each have a diamond shape with diagonal lines extending in a front-back direction and a left-right direction when viewed in the up-down direction.

8 . The electronic device according to claim 7 , wherein the first floating conductor includes one or more interlayer connection conductors passing through one or more of the insulator layers in the up-down direction.

9 . The electronic device according to claim 8 , wherein

the first floating conductor includes an upper floating conductor layer located on an upper surface of the multilayer body and a lower floating conductor layer located below the upper floating conductor layer, and

the one or more interlayer connection conductors electrically connect the upper floating conductor layer and the lower floating conductor layer.

10 . The electronic device according to claim 9 , wherein

the multilayer substrate further comprises a protective layer that has a dielectric constant higher than a dielectric constant of the insulator layers and that covers an upper surface of the multilayer body, and

no conductor layer is located on an upper surface of the protective layer.

11 . A multilayer substrate comprising:

a multilayer body having a structure in which a plurality of insulator layers is stacked in an up-down direction;

a first radiation conductor layer provided in the multilayer body;

a second radiation conductor layer that is provided in or on the multilayer body, that is located above the first radiation conductor layer, and that overlaps the first radiation conductor layer when viewed in the up-down direction;

a first floating conductor that has a shape surrounding at least a part of the first radiation conductor layer when viewed in the up-down direction, that is located on a same layer as or above the first radiation conductor layer and on a same layer as or below the second radiation conductor layer in the up-down direction, and that is not electrically connected to any conductor present in or on the multilayer body; and

a second floating conductor that has a shape surrounding at least a part of the second radiation conductor layer when viewed in the up-down direction, that is located above the second radiation conductor layer, and that is not electrically connected to any conductor present in or on the multilayer body.

12 . The multilayer substrate according to claim 11 , wherein a frequency of an electromagnetic wave radiated or received by the second radiation conductor layer is higher than a frequency of an electromagnetic wave radiated or received by the first radiation conductor layer; or an area of the second radiation conductor layer is smaller than an area of the first radiation conductor layer.

13 . The multilayer substrate according to claim 12 , wherein the first floating conductor has an annular shape surrounding a periphery of the first radiation conductor layer when viewed in the up-down direction.

14 . The multilayer substrate according to claim 13 , wherein the second floating conductor has an annular shape surrounding a periphery of the second radiation conductor layer when viewed in the up-down direction.

15 . The multilayer substrate according to claim 14 , wherein an opening surrounded by the first floating conductor is contained in an opening surrounded by the second floating conductor when viewed in the up-down direction.

16 . The multilayer substrate according to claim 15 , further comprising:

a third radiation conductor layer provided in the multilayer body; and

a fourth radiation conductor layer that is provided in or on the multilayer body, that is located above the third radiation conductor layer, and that overlaps the third radiation conductor layer when viewed in the up-down direction,

wherein

the first floating conductor has a shape surrounding at least a part of the third radiation conductor layer when viewed in the up-down direction, and

the second floating conductor has a shape surrounding at least a part of the fourth radiation conductor layer when viewed in the up-down direction.

17 . The multilayer substrate according to claim 16 , wherein the first radiation conductor layer and the second radiation conductor layer each have a diamond shape with diagonal lines extending in a front-back direction and a left-right direction.

18 . The multilayer substrate according to claim 17 , wherein the first floating conductor includes one or more interlayer connection conductors passing through one or more of the insulator layers in the up-down direction.

19 . The multilayer substrate according to claim 18 , wherein

the first floating conductor includes an upper floating conductor layer located on an upper surface of the multilayer body and a lower floating conductor layer located below the upper floating conductor layer, and

the one or more interlayer connection conductors electrically connect the upper floating conductor layer and the lower floating conductor layer.

20 . The multilayer substrate according to claim 19 , further comprising:

a protective layer that has a dielectric constant higher than a dielectric constant of the insulator layers and that covers an upper surface of the multilayer body,

wherein

no conductor layer is located on an upper surface of the protective layer, and

the second floating conductor is electrically connected to the first floating conductor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2024
From: KAWABE, KENTARO
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 069626/0470 →
Priority Claims (1)
JP 2022-100859 · Jun 23, 2022 · national
Continuity (2)
Continuation PCTJP2023017489 · May 9, 2023
Related Publication 20250118897A1 · Apr 10, 2025
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