Radiofrequency components incorporating temperature compensated dielectric material
Disclosed are embodiments of tungsten bronze crystal structures that can have both a high dielectric constant and low temperature coefficient. Embodiments of the material can be useful for radiofrequency applications such as resonators and antennas.
1. A radio frequency component comprising:
a dielectric material formed from a Ba—Sm—Ti—Ta—O system and comprising a tungsten bronze crystal structure modified by substituting one or more lattice sites with one or more elements selected to increase a quality factor (Q) of the dielectric material, the dielectric material thereby having a dielectric constant of at least 60 and a temperature coefficient of resonant frequency of less than 15.
2. The radio frequency component of claim 1 wherein the tungsten bronze crystal structure is an orthorhombic tungsten bronze crystal structure and the one or more elements includes tantalum.
3. The radio frequency component of claim 1 wherein the dielectric material has a formula: Ba 12 Sm 28−x Ti 54−3x Ta 3x O 162 or Ba 12+3x Sm 28−3x Ti 54−3x Ta 3x O 162 , x being between 0 and 3.
4. The radio frequency component of claim 3 wherein the dielectric material has a formula Ba 12.6 Sm 27.4 Ti 53.4 Ta 0.6 O 162 .
5. The radio frequency component of claim 1 wherein the temperature coefficient of resonant frequency of less than 5.
6. The radio frequency component of claim 1 further including CeO 2 .
7. The radio frequency component of claim 1 wherein the dielectric material has a Qf at 1 GHz of at least 7000.
8. The radio frequency component of claim 1 wherein the dielectric material has no aluminum.
9. A radio frequency component comprising a dielectric material having a composition Ba 12.45 Sm 27.65 Ti 53.55 Ta 0.45 O 162 and comprising a tungsten bronze crystal structure modified by substituting one or more lattice sites with one or more elements selected to increase a quality factor (Q) of the dielectric material, the dielectric material thereby having a dielectric constant of at least 60 and temperature coefficient of resonant frequency of less than 15.
10. A radio frequency component comprising a dielectric material having a composition Ba 12.15 Sm 27.75 Ti 53.55 Ta 0.45 O 162 and comprising a tungsten bronze crystal structure modified by substituting one or more lattice sites with one or more elements selected to increase a quality factor (Q) of the dielectric material, the dielectric material thereby having a dielectric constant of at least 60 and temperature coefficient of resonant frequency of less than 15.
11. The radio frequency component of claim 9 wherein the tungsten bronze crystal structure is an orthorhombic tungsten bronze crystal structure and the one or more elements includes tantalum.
12. The radio frequency component of claim 9 wherein the temperature coefficient of resonant frequency of less than 5.
13. The radio frequency component of claim 9 further including CeO 2 .
14. The radio frequency component of claim 9 wherein the dielectric material has a Qf at 1 GHz of at least 7000.
15. The radio frequency component of claim 10 wherein the dielectric material has no aluminum.
16. The radio frequency component of claim 10 wherein the tungsten bronze crystal structure is an orthorhombic tungsten bronze crystal structure and the one or more elements includes tantalum.
17. The radio frequency component of claim 10 wherein the temperature coefficient of resonant frequency of less than 5.
18. The radio frequency component of claim 10 further including CeO 2 .
19. The radio frequency component of claim 10 wherein the dielectric material has a Qf at 1 GHz of at least 7000.
20. The radio frequency component of claim 10 wherein the dielectric material has no aluminum.