70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications

Recent trends in the electronic passive component manufacturing industry have been to eliminate or reduce reliance of pure Pd and high palladium contained Ag/Pd electrodes by substituting nickel or significantly lowers palladium content in Ag/Pd alloys. The conversion to base metal technology repres...

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Main Authors: R. C. Stephenson, Juin-wei Peng
Format: Article
Language:English
Published: Wiley 2002-01-01
Series:Active and Passive Electronic Components
Online Access:http://dx.doi.org/10.1080/08827510212344
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author R. C. Stephenson
Juin-wei Peng
author_facet R. C. Stephenson
Juin-wei Peng
author_sort R. C. Stephenson
collection DOAJ
description Recent trends in the electronic passive component manufacturing industry have been to eliminate or reduce reliance of pure Pd and high palladium contained Ag/Pd electrodes by substituting nickel or significantly lowers palladium content in Ag/Pd alloys. The conversion to base metal technology represents a substantial capital expense; the resistance to replace traditional air-fired kilns to nitrogen or reducing atmosphere kilns has created the need for new low cost air fired electrode technology. This paper presents a new electrode technology incorporating a uniform, continually coated AgPd over engineered dielectric particles. The resulting powder greatly reduces the consumption of precious metal, and provides superior thermal mechanical properties. This is achieved by matching the core ceramic structure of the powder to the manufacturer's dielectric, thereby controlling shrinkage while maintaining desired electrical properties.
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series Active and Passive Electronic Components
spelling doaj-art-c69de076f52642a398b033cd8416b0b12025-08-20T02:19:16ZengWileyActive and Passive Electronic Components0882-75161563-50312002-01-0125215515910.1080/0882751021234470% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode ApplicationsR. C. Stephenson0Juin-wei Peng1Heraeus Metal Processing, Inc., Santa Fe Springs 90670, CA, USATeam Young Advanced Ceramic Ltd. Co., Taoyuan, TaiwanRecent trends in the electronic passive component manufacturing industry have been to eliminate or reduce reliance of pure Pd and high palladium contained Ag/Pd electrodes by substituting nickel or significantly lowers palladium content in Ag/Pd alloys. The conversion to base metal technology represents a substantial capital expense; the resistance to replace traditional air-fired kilns to nitrogen or reducing atmosphere kilns has created the need for new low cost air fired electrode technology. This paper presents a new electrode technology incorporating a uniform, continually coated AgPd over engineered dielectric particles. The resulting powder greatly reduces the consumption of precious metal, and provides superior thermal mechanical properties. This is achieved by matching the core ceramic structure of the powder to the manufacturer's dielectric, thereby controlling shrinkage while maintaining desired electrical properties.http://dx.doi.org/10.1080/08827510212344
spellingShingle R. C. Stephenson
Juin-wei Peng
70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
Active and Passive Electronic Components
title 70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
title_full 70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
title_fullStr 70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
title_full_unstemmed 70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
title_short 70% Ag30% Pd Coated BaTiO3 Powder for Internal Electrode Applications
title_sort 70 ag30 pd coated batio3 powder for internal electrode applications
url http://dx.doi.org/10.1080/08827510212344
work_keys_str_mv AT rcstephenson 70ag30pdcoatedbatio3powderforinternalelectrodeapplications
AT juinweipeng 70ag30pdcoatedbatio3powderforinternalelectrodeapplications