Dielectric ceramic material and monolithic ceramic capacitor
A dielectric ceramic material is composed of a perovskite compound represented by ABO 3 as a main component. In the case where ABO 3 is, for example, BaTiO 3 , the crystal grains include BaTiO 3 crystal grains composed of the main component and, as secondary phases, Mg—Ni—Ti-containing crystalline grains composed of a crystalline oxide containing at least Mg, Ni, and Ti and Ba—Si-containing crystalline grains composed of a crystalline oxide containing at least Ba and Si.
1. A dielectric ceramic material comprising:
crystal grains and grain boundaries; and
a perovskite compound represented by ABO 3 in which A comprises Ba or Ba and at least one of Sr and Ca, and B comprises Ti or Ti and at least one of Zr and Hf, main component, and the dielectric ceramic material comprising crystal grains and grain boundaries in which
the crystal grains comprise the main component and, as secondary phases, a Mg—Ni—Ti-containing crystalline grain comprising a crystalline oxide comprising Mg, Ni, and Ti, and a Ba—Si-containing crystalline grain comprising a crystalline oxide comprising Ba and Si.
2. The dielectric ceramic material according to claim 1 , further comprising, as auxiliary components, at least one of:
R which is at least one of La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, and Y;
M which is at least one of Mg, Ni, Mn, Co, Fe, Cr, Cu, Al, Mo, W, and V; and
Si.
3. The dielectric ceramic material according to claim 2 ,
wherein the total R content is in the range of about 0.1 to about 3.0 parts by mole with respect to about 100 parts by mole of the main component, and
the total M content is in the range of about 0.2 to about 5.0 parts by mole with respect to about 100 parts by mole of the main component.
4. The dielectric ceramic material according to claim 3 ,
wherein A of the main component ABO 3 has a Ba content of about 78 to about 100 mol %, a Sr content of about 0 to about 2 mol %, and a Ca content of about 0 to about 20 mol %, and the B of the main component has a Ti content of about 96 to about 100 mol %, a Zr content of about 0 to about 2 mol %, and a Hf content of about 0 to about 2 mol %.
5. The dielectric ceramic material according to claim 4 , wherein the crystalline oxide comprising Mg, Ni, and Ti has a content, excluding oxygen, of at least about 10 mol % Mg, at least about 40 mol % Ni, and at least about 5 ml % Ti.
6. The dielectric ceramic material according to claim 2 ,
wherein A of the main component ABO 3 has a Ba content of about 78 to about 100 mol %, a Sr content of about 0 to about 2 mol %, and a Ca content of about 0 to about 20 mol %, and the B of the main component has a Ti content of about 96 to about 100 mol %, a Zr content of about 0 to about 2 mol %, and a Hf content of about 0 to about 2 mol %.
7. The dielectric ceramic material according to claim 6 , wherein the crystalline oxide comprising Mg, Ni, and Ti has a content, excluding oxygen, of at least about 10 mol % Mg, at least about 40 mol % Ni, and at least about 5 ml % Ti.
8. The dielectric ceramic material according to claim 1 ,
wherein A of the main component ABO 3 has a Ba content of about 78 to about 100 mol %, a Sr content of about 0 to about 2 mol %, and a Ca content of about 0 to about 20 mol %, and the B of the main component has a Ti content of about 96 to about 100 mol %, a Zr content of about 0 to about 2 mol %, and a Hf content of about 0 to about 2 mol %.
9. The dielectric ceramic material according to claim 8 , wherein the crystalline oxide comprising Mg, Ni, and Ti has a content, excluding oxygen, of at least about 10 mol % Mg, at least about 40 mol % Ni, and at least about 5 ml % Ti.
10. The dielectric ceramic material according to claim 1 , wherein the crystalline oxide comprising Mg, Ni, and Ti has a content, excluding oxygen, of at least about 10 mol % Mg, at least about 40 mol % Ni, and at least about 5 ml % Ti.
11. A monolithic ceramic capacitor comprising:
a capacitor main body comprising
a plurality of stacked dielectric ceramic layers;
a plurality of first and second internal electrodes wherein each of the first and second internal electrodes are disposed at different interfaces between adjacent dielectric ceramic layers; and
a first external electrode and a second external electrode disposed on different portions of outer surfaces of the capacitor main body,
wherein the first internal electrodes are electrically connected to the first external electrode,
the second internal electrodes are electrically connected to the second external electrode, and
the first internal electrodes and the second internal electrodes are alternately arranged in the stacking direction, and
wherein the dielectric ceramic layers are composed of the dielectric ceramic material according to claim 1 .
12. The monolithic ceramic capacitor according to claim 11 , wherein the first and second internal electrodes comprise Ni.
13. A monolithic ceramic capacitor comprising:
a capacitor main body comprising
a plurality of stacked dielectric ceramic layers;
a plurality of first and second internal electrodes wherein each of the first and second internal electrodes are disposed at different interfaces between adjacent dielectric ceramic layers; and
a first external electrode and a second external electrode disposed on different portions of outer surfaces of the capacitor main body,
wherein the first internal electrodes are electrically connected to the first external electrode,
the second internal electrodes are electrically connected to the second external electrode, and
the first internal electrodes and the second internal electrodes are alternately arranged in the stacking direction, and
wherein the dielectric ceramic layers are composed of the dielectric ceramic material according to claim 2 .
14. The monolithic ceramic capacitor according to claim 13 , wherein the first and second internal electrodes comprise Ni.
15. A monolithic ceramic capacitor comprising:
a capacitor main body comprising
a plurality of stacked dielectric ceramic layers;
a plurality of first and second internal electrodes wherein each of the first and second internal electrodes are disposed at different interfaces between adjacent dielectric ceramic layers; and
a first external electrode and a second external electrode disposed on different portions of outer surfaces of the capacitor main body,
wherein the first internal electrodes are electrically connected to the first external electrode,
the second internal electrodes are electrically connected to the second external electrode, and
the first internal electrodes and the second internal electrodes are alternately arranged in the stacking direction, and
wherein the dielectric ceramic layers are composed of the dielectric ceramic material according to claim 3 .
16. The monolithic ceramic capacitor according to claim 15 , wherein the first and second internal electrodes comprise Ni.
17. A monolithic ceramic capacitor comprising:
a capacitor main body comprising
a plurality of stacked dielectric ceramic layers;
a plurality of first and second internal electrodes wherein each of the first and second internal electrodes are disposed at different interfaces between adjacent dielectric ceramic layers; and
a first external electrode and a second external electrode disposed on different portions of outer surfaces of the capacitor main body,
wherein the first internal electrodes are electrically connected to the first external electrode,
the second internal electrodes are electrically connected to the second external electrode, and
the first internal electrodes and the second internal electrodes are alternately arranged in the stacking direction, and
wherein the dielectric ceramic layers are composed of the dielectric ceramic material according to claim 1 .
18. The monolithic ceramic capacitor according to claim 17 , wherein the first and second internal electrodes comprise Ni.
19. A monolithic ceramic capacitor comprising:
a capacitor main body comprising
a plurality of stacked dielectric ceramic layers;
a plurality of first and second internal electrodes wherein each of the first and second internal electrodes are disposed at different interfaces between adjacent dielectric ceramic layers; and
a first external electrode and a second external electrode disposed on different portions of outer surfaces of the capacitor main body,
wherein the first internal electrodes are electrically connected to the first external electrode,
the second internal electrodes are electrically connected to the second external electrode, and
the first internal electrodes and the second internal electrodes are alternately arranged in the stacking direction, and
wherein the dielectric ceramic layers are composed of the dielectric ceramic material according to claim 5 .
20. The monolithic ceramic capacitor according to claim 19 , wherein the first and second internal electrodes comprise Ni.