Dielectric ceramic composition, electronic device, and multilayer ceramic capacitor
A dielectric ceramic composition includes a main component of a perovskite type compound represented by a general formula of ABO 3 , in which A is an element in an A-site, B is an element in a B-site, and O is an oxygen element. A includes Ba. A further includes at least one of Ca and Sr. B includes Ti. A sintered-body lattice volume obtained by X-ray diffraction method is 64.33 Å 3 or below.
1. A sintered dielectric ceramic composition comprising a main component of a perovskite type compound represented by a general formula of ABO 3 , in which A is an element in an A-site, B is an element in a B-site, and O is an oxygen element, wherein
A includes Ba,
A further includes at least one of Ca and Sr,
B includes Ti, and
a sintered-body lattice volume obtained by X-ray diffraction method is 64.33 Å 3 or below.
2. The sintered dielectric ceramic composition according to claim 1 , wherein a sintered-body lattice volume obtained by X-ray diffraction method is 64.20 Å 3 or below.
3. The sintered dielectric ceramic composition according to claim 2 , wherein A includes Ca.
4. The sintered dielectric ceramic composition according to claim 1 , wherein a sintered-body lattice volume obtained by X-ray diffraction method is 63.55 Å 3 or above.
5. An electronic device comprising the sintered dielectric ceramic composition according to claim 1 .
6. A multilayer ceramic capacitor comprising a capacitor element body where inner-layer dielectric layers and inner electrode layers are laminated alternately,
wherein the inner-layer dielectric layers are composed of the sintered dielectric ceramic composition according to claim 1 .
7. The sintered dielectric ceramic composition according to claim 1 , wherein Ba is 99 parts by mol to 90 parts by mol with respect to 100 parts by mol of a total of Ba, Ca, and Sr.
8. The sintered dielectric ceramic composition according to claim 1 , wherein Ba is 95 parts by mol to 90 parts by mol with respect to 100 parts by mol of a total of Ba, Ca, and Sr.
9. The sintered dielectric ceramic composition according to claim 1 , wherein Zr and Hf are contained in the B-site, and Hf is 0.10 parts by mol to 2.00 parts by mol with respect to 100 parts by mol of the total of Zr and Hf.
10. The sintered dielectric ceramic composition according to claim 1 , wherein when a total of Ti, Zr, and Hf in the dielectric ceramic composition is 100 parts by mol, 100 parts by mol to 95 parts by mol of Ti is contained in the dielectric ceramic composition.
11. The sintered dielectric ceramic composition according to claim 1 , wherein when a total of Ti, Zr, and Hf in the dielectric ceramic composition is 100 parts by mol, 100 parts by mol to 99 parts by mol of Ti is contained in the dielectric ceramic composition.
12. The sintered dielectric ceramic composition according to claim 1 , wherein Zr and Hf are contained in the dielectric ceramic composition so that a ratio of (Ba+Ca+Sr)/(Ti+Zr) is 1.