IP Library Granted Patent US 12,387,877
Granted Patent B2
US 12,387,877 · App. 17/859,122 · Granted Aug 12, 2025

Multilayer ceramic capacitor

Inventor: Jeffrey Cain (Greenville, SC)
Assignee: KYOCERA AVX Components Corporation
H01G4/2325H01G4/005H01G4/30H05K1/181H05K2201/10015
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Quick Facts
Patent No.
US 12,387,877
App. No.
17/859,122
Granted
Aug 12, 2025
Kind
B2
Abstract

The present invention is directed to a multilayer capacitor and a circuit board containing the multilayer capacitor. The capacitor includes a main body containing a set of alternating dielectric layers and internal electrode layers. Each internal electrode layer includes a top edge, a bottom edge, and two side edges extending between the top and bottom edges that define a main body; at least one lead tab extending from the top edge; and at least one lead tab extending from the bottom edge. At least one lead tab extending from the top edge and at least one lead tab extending from the bottom edge include a lateral edge aligned with a side edge of the main body. External terminals electrically connected to the internal electrode layers are formed on a top surface of the capacitor, a bottom surface of the capacitor, and an end surface between the top and bottom surfaces.

Claims (36)

1. A multilayer capacitor comprising:

a main body containing a set of alternating dielectric layers and internal electrode layers, the set containing a first internal electrode layer and a second internal electrode layer,

the first internal electrode layer including:

a main body having a top edge, a bottom edge opposite the top edge, a first side edge, and a second side edge opposite the first side edge along a length direction, the first side edge and the second side edge extending between the top edge and the bottom edge, and

a first lead tab and a second lead tab extending from the top edge of the main body, and a first lead tab and a second lead tab extending from the bottom edge of the main body, wherein each of the first lead tab extending from the top edge of the main body and the first lead tab extending from the bottom edge of the main body includes a first lateral edge aligned with the first side edge of the main body, and

the second internal electrode layer including:

a main body having a top edge, a bottom edge opposite the top edge, a first side edge, and a second side edge opposite the first side edge along the length direction, the first side edge and the second side edge extending between the top edge and the bottom edge,

a first lead tab and a second lead tab extending from the top edge of the main body and a first lead tab and a second lead tab extending from the bottom edge of the main body, wherein each of the first lead tab extending from the top edge of the main body and the first lead tab extending from the bottom edge of the main body includes a first lateral edge aligned with the first side edge of the main body, wherein the first side edge of the first internal electrode layer is opposite the first side edge of the second internal electrode layer along the length direction; and

external terminals electrically connected to the internal electrode layers, the external terminals formed on a top surface of the capacitor, a bottom surface of the capacitor opposing the top surface of the capacitor, and a pair of opposing end surfaces of the capacitor extending along a width direction between the top surface and the bottom surface,

wherein the external terminals include a first external terminal electrically connected to the first internal electrode layer along the top surface, the bottom surface, and a first end surface of the pair of opposing end surfaces, and

wherein the external terminals include a second external terminal electrically connected to the second internal electrode layer along the top surface, the bottom surface, and a second end surface of the pair of opposing end surfaces.

2. The capacitor according to claim 1 , wherein the first internal electrode layer and the second internal electrode layer are interleaved in an opposed relation and a dielectric layer is positioned between the first internal electrode layer and the second internal electrode layer.

3. The capacitor according to claim 2 , wherein the dielectric layers comprise a ceramic.

4. The capacitor according to claim 1 , wherein the internal electrode layers comprise a conductive metal.

5. The capacitor according to claim 1 , wherein the external terminals include an electroplated layer.

6. The capacitor according to claim 1 , wherein the external terminals include an electroless plated layer.

7. The capacitor according to claim 1 , wherein the external terminals include an electroless plated layer and an electroplated layer.

8. The capacitor according to claim 1 , wherein the external terminals include a first electroless plated layer, a second electroplated layer, and a third electroplated layer.

9. The capacitor according to claim 8 , wherein the first electroless plated layer includes copper, the second electroplated layer includes nickel, and the third electroplated layer includes tin.

10. The capacitor according to claim 1 , wherein the capacitor includes at least three sets of alternating dielectric layers and internal electrode layers.

11. A circuit board including the capacitor according to claim 1 positioned on the circuit board.

12. The circuit board according to claim 11 , wherein the circuit board further comprises an integrated circuit package and wherein the capacitor is positioned between the circuit board and the integrated circuit package in a vertical direction such that the circuit board, the capacitor, and the integrated circuit package are present in a stacked arrangement.

13. The circuit board according to claim 12 , wherein the capacitor is directly connected to the circuit board and the integrated circuit package.

14. An integrated circuit package containing the capacitor according to claim 1 .

15. The capacitor according to claim 1 , wherein each of the second lead tab extending from the top edge of the main body of the first internal electrode layer and the second lead tab extending from the bottom edge of the main body of the first internal electrode layer are offset from and positioned between the first side edge and the second side edge of the first internal electrode layer, and

wherein each of the second lead tab extending from the top edge of the main body of the second internal electrode layer and the second lead tab extending from the bottom edge of the main body of the second internal electrode layer are offset from and positioned between the first side edge and the second side edge of the second internal electrode layer.

16. The capacitor according to claim 1 , wherein, along the length direction, the first lead tab and the second lead tab extending from the top edge of the main body of the first internal electrode layer are offset from one another and from each of the first lead tab and the second lead tab extending from the top edge of the main body of the second internal electrode layer.

17. The capacitor according to claim 1 , wherein the capacitor includes a pair of opposing side surfaces extending between the top surface and the bottom surface along a height direction and extending between the pair of opposing end surfaces in the length direction, the pair of opposing side surfaces including a first side surface and a second side surface,

wherein the first external terminal is offset from both the first side surface and the second side surface along the width direction, and

wherein the second external terminal is offset from both the first side surface and the second side surface along the width direction.

18. The capacitor according to claim 1 , wherein the external terminals include a third external terminal electrically connected to the first internal electrode layer along the top surface of the capacitor and a fourth external terminal electrically connected to the first internal electrode layer along the bottom surface of the capacitor.

19. The capacitor according to claim 18 , wherein the first external terminal is electrically connected to the first internal electrode layer along the first lead tab extending from the top edge of the main body of the first internal electrode layer, the first side edge of the main body of the first internal electrode layer, and the first lead tab extending from the bottom edge of the main body of the first internal electrode layer,

wherein the third external terminal is electrically connected to the first internal electrode layer along the second lead tab extending from the top edge of the main body of the first internal electrode layer, and

wherein the fourth external terminal is electrically connected to the first internal electrode layer along the second lead tab extending from the bottom edge of the main body of the first internal electrode layer.

20. The capacitor according to claim 18 , wherein the external terminals include a fifth external terminal electrically connected to the second internal electrode layer along the top surface of the capacitor and a sixth external terminal electrically connected to the second internal electrode layer along the bottom surface of the capacitor, and

wherein the first, third, and fourth external terminals have a first polarity and the second, fifth, and sixth external terminals have a second and opposite polarity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2022
From: CAIN, JEFFREY
To: KYOCERA AVX COMPONENTS CORPORATION
Reel/Frame 060428/0068 →
Continuity (2)
Provisional Application 63219559 · Jul 8, 2021
Related Publication 20230019800A1 · Jan 19, 2023
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