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DIELECTRIC CERAMIC COMPOSITION, DIELECTRIC ELEMENT, ELECTRONIC COMPONENT AND LAMINATED ELECTRONIC COMPONENT
PROBLEM TO BE SOLVED: To provide a dielectric ceramic composition having a relatively high dielectric constant of 800 or greater when a DC bias of at least 8 V/μm is applied, and also provide a dielectric element, an electronic component, and a laminated electronic component employing the dielectric ceramic composition.SOLUTION: This invention provides a dielectric ceramic composition in which the composition of the main component is in accordance with the following formula (1): (BiNaSr)(MgTi) O, where a, b, c and d satisfy the following: 0.10≤a≤0.65, 0
【課題】少なくとも8V/μmのDCバイアス印加時に800以上の比較的高い比誘電率を有する誘電体磁器組成物およびその誘電体磁器組成物を用いた誘電体素子、電子部品および積層電子部品を提供すること。【解決手段】主成分が下記式(1)の組成を有する誘電体磁器組成物であって、a、b、c、dは、それぞれ、0.10≰a≰0.65、0<b≰0.45、0<c≰0.85、0<d<0.20および0.95≰a+b+c≰1.05を満たすことを特徴とする。(BiaNabSrc)(MgdTi1−d)O3…(1)【選択図】なし
DIELECTRIC CERAMIC COMPOSITION, DIELECTRIC ELEMENT, ELECTRONIC COMPONENT AND LAMINATED ELECTRONIC COMPONENT
PROBLEM TO BE SOLVED: To provide a dielectric ceramic composition having a relatively high dielectric constant of 800 or greater when a DC bias of at least 8 V/μm is applied, and also provide a dielectric element, an electronic component, and a laminated electronic component employing the dielectric ceramic composition.SOLUTION: This invention provides a dielectric ceramic composition in which the composition of the main component is in accordance with the following formula (1): (BiNaSr)(MgTi) O, where a, b, c and d satisfy the following: 0.10≤a≤0.65, 0
【課題】少なくとも8V/μmのDCバイアス印加時に800以上の比較的高い比誘電率を有する誘電体磁器組成物およびその誘電体磁器組成物を用いた誘電体素子、電子部品および積層電子部品を提供すること。【解決手段】主成分が下記式(1)の組成を有する誘電体磁器組成物であって、a、b、c、dは、それぞれ、0.10≰a≰0.65、0<b≰0.45、0<c≰0.85、0<d<0.20および0.95≰a+b+c≰1.05を満たすことを特徴とする。(BiaNabSrc)(MgdTi1−d)O3…(1)【選択図】なし
DIELECTRIC CERAMIC COMPOSITION, DIELECTRIC ELEMENT, ELECTRONIC COMPONENT AND LAMINATED ELECTRONIC COMPONENT
誘電体磁器組成物、誘電体素子、電子部品および積層電子部品
TAUCHI TAKESHI (author) / IMURA TOMOYA (author) / HIROSE MASAKAZU (author)
2015-07-30
Patent
Electronic Resource
Japanese
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