Temperature stable monolithic capacitors and ceramic composition

Electricity: electrical systems and devices – Electrostatic capacitors – Fixed capacitor

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Details

361321, 501138, 501139, H01G 412, C04B 3546

Patent

active

045009422

ABSTRACT:
Multilayer ceramic capacitors, and in particular NPO class capacitors are produced from dielectric compositions comprising a mixture of BaO, PbO, Nd.sub.2 O.sub.3, Bi.sub.2 O.sub.3, TiO.sub.2 and one of the rare earth oxides selected from the group consisting of Pr.sub.6 O.sub.11 and Sm.sub.2 O.sub.3, the selected rare earth oxide being present in an amount ranging from approximately 10 to 100 wt. % of the amount of Nd.sub.2 O.sub.3 in the mixture. In one embodiment an acrylic binder is added to the mixture to produce ceramic sheets which are screen printed with a Pt-Pd-Au electrode, and then cut into thin layers, stacked, laminated, sintered and terminated to produce a multilayer capacitor having an extremely stable TC and effective dielectric constant as high as 120. A high bismuth glass frit composition may be mixed with the dielectric ceramic mixture to produce a low sintering temperature mixture which is processed as above and then screen printed with a Ag-Pd alloy and laminated to produce a multilayer capacitor which can be sintered at a temperature as low as 1100.degree. C.

REFERENCES:
patent: 3775142 (1973-11-01), Roup
patent: 3811937 (1974-05-01), Maher
patent: 4082906 (1978-04-01), Amin et al.
patent: 4283753 (1981-08-01), Burn
patent: 4338403 (1982-07-01), Kawashima et al.
patent: 4394456 (1983-07-01), Sakabe et al.
Muhlstadt, W. J.; "The Effect of Rare Earth Oxides on Barium Titanate Class I Capacitors", Master of Science in Ceramic Engineering Thesis, University of Illinois, 1968.

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