IP Library Granted Patent US 9,330,847
Granted Patent B2
US 9,330,847 · App. 14/256,590 · Granted May 3, 2016

Conductive paste for external electrodes and multilayer ceramic electronic component manufactured using the same

Inventors: Byung Ho Jun (Suwon-Si, KR); Jung Wook Seo (Suwon-Si, KR)
Assignee: SAMSUNG ELECTRO-MECHANICS CO., LTD.
H01G4/2325H01B1/22H01G4/30H01G4/12
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Quick Facts
Patent No.
US 9,330,847
App. No.
14/256,590
Granted
May 3, 2016
Kind
B2
Abstract

A multilayer ceramic electronic component may include: a ceramic body including a plurality of dielectric layers and a plurality of internal electrodes; electrode layers disposed on outer surfaces of the ceramic body to be electrically connected to the internal electrodes and containing a conducive metal and glass; and a conductive resin layer disposed on the electrode layer and containing first copper particles, second copper particles smaller than the first copper particles, copper oxide particles smaller than the second copper particles, and a base resin. The copper oxide particles have a particle size of 20 nm or less.

Claims (22)

1. A multilayer ceramic electronic component, comprising:

a ceramic body including a plurality of dielectric layers and a plurality of internal electrodes;

electrode layers disposed on outer surfaces of the ceramic body to be electrically connected to the internal electrodes and containing a conductive metal and glass; and

a conductive resin layer disposed on the electrode layer and containing first copper particles, second copper particles smaller than the first copper particles, copper oxide particles smaller than the second copper particles, and a base resin,

wherein the copper oxide particles have a particle size of 20 nm or less.

2. The multilayer ceramic electronic component of claim 1 , wherein 50% or greater of the copper oxide particles contained in the conductive resin layer are disposed on surfaces of the second copper particles.

3. The multilayer ceramic electronic component of claim 1 , wherein the copper oxide particles have a particle size of 2 nm to 15 nm.

4. The multilayer ceramic electronic component of claim 1 , wherein the second copper particles have a particle size of 50 nm to 200 nm.

5. The multilayer ceramic electronic component of claim 1 , wherein the copper oxide particles are contained in 2 to 20 parts by weight, based on 100 parts by weight of the first and second copper particles.

6. The multilayer ceramic electronic component of claim 1 , wherein the conductive resin layer contains the second copper particles and the copper oxide particles in a ratio of 2:1 to 20:1.

7. The multilayer ceramic electronic component of claim 1 , wherein the first copper particles have a particle size of 1 μm or more.

8. The multilayer ceramic electronic component of claim 1 , wherein the first copper particles have a particle size of 1 μm to 2.5 μm.

9. A conductive paste for external electrodes, the conductive paste comprising:

first copper particles;

second copper particles smaller than the first copper particles;

copper oxide particles having a particle size of 20 nm or less; and

a base resin.

10. The conductive paste of claim 9 , wherein the second copper particles have a particle size of 50 nm to 200 nm.

11. The conductive paste of claim 9 , wherein the copper oxide particles are contained in 2 to 20 parts by weight, based on 100 parts by weight of the first and second copper particles.

12. The conductive paste of claim 9 , wherein the second copper particles and the copper oxide particles are contained in a ratio of 2:1 to 20:1.

13. The conductive paste of claim 9 , wherein the first copper particles have a particle size of 1 μm or more.

14. The conductive paste of claim 9 , wherein the first copper particles have a particle size of 1 μm to 2.5 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2014
From: JUN, BYUNG HO; SEO, JUNG WOOK
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 032710/0275 →
Priority Claims (1)
KR 10-2014-0009718 · Jan 27, 2014 · national
Continuity (1)
Related Publication 20150213953A1 · Jul 30, 2015