IP Library › Granted Patent US 10,843,974
Granted Patent B2
US 10,843,974 · App. 16/390,368 · Granted Nov 24, 2020

Radiofrequency component incorporating temperature compensated dielectric material

Inventor: Michael David Hill (Frederick, MD)
Assignee: Skyworks Solutions, Inc.
C04B35/62675C01B13/145C01G23/003C01G33/006C04B35/462C04B35/4686C04B35/499C04B35/6262H01B3/12C01P2002/76C01P2006/10C01P2006/40C04B2235/3215C04B2235/3224C04B2235/3229C04B2235/3251C04B2235/72C04B2235/76C04B2235/77
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Quick Facts
Patent No.
US 10,843,974
App. No.
16/390,368
Granted
Nov 24, 2020
Kind
B2
Abstract

Disclosed are embodiments of tungsten bronze crystal structures that can have both a high dielectric constant and low temperature coefficient, making them advantageous for applications that experience temperature changes and gradients. In particular, tantalum can be substituted into the crystal structure to improve properties. Embodiments of the material can be useful for radiofrequency applications such as resonators and antennas.

Claims (22)

1. A radiofrequency component having a high dielectric constant and minimized temperature coefficient, the component comprising:

a ceramic material having Ba—Sm—Ti—O and a tungsten bronze crystal structure modified by inserting tantalum and adjusting barium and samarium content to charge balance, the ceramic material thereby having a dielectric constant of at least 60, a Qf at 1 GHz of at least 7000, and temperature coefficient of resonant frequency of less than 15.

2. The radiofrequency component of claim 1 wherein the component is an antenna.

3. The radiofrequency component of claim 1 wherein the component is a resonator.

4. The radiofrequency component of claim 1 wherein the material has a dielectric constant of at least 80.

5. The radiofrequency component of claim 1 wherein the material has a temperature coefficient of resonant frequency of less than 5.

6. The radiofrequency component of claim 1 wherein the material has a Qf at 1 GHz of at least 8000.

7. The radiofrequency component of claim 1 wherein the material contains no aluminum.

8. A radiofrequency component having a high dielectric constant and minimized temperature coefficient, the component comprising:

a ceramic material having a chemical formula Ba 12+3x Sm 28-3x Ti 54-3x Ta 3x O 162 , x being between 0 and 3, a Ba—Sm—Ti—O tungsten bronze crystal structure of the ceramic material being modified by inserting tantalum and adjusting barium and samarium content.

9. The radiofrequency component of claim 8 wherein the ceramic material has a chemical formula Ba 12.6 Sm 27.4 Ti 53.4 Ta 0.6 O 162 .

10. The radiofrequency component of claim 8 wherein the ceramic material has a dielectric constant of at least 60, a Qf at 1 GHz of at least 7000, and a temperature coefficient of resonant frequency of less than 15.

11. The radiofrequency component of claim 8 wherein the ceramic material has a temperature coefficient of resonant frequency of less than 5.

12. The radiofrequency component of claim 8 wherein the ceramic material has a Qf at 1 GHz of at least 8000.

13. The radiofrequency component of claim 8 wherein the component is an antenna.

14. The radiofrequency component of claim 8 wherein the component is a resonator.

15. A radiofrequency component having a high dielectric constant and minimized temperature coefficient, the component comprising a ceramic material having a chemical formula Ba 12.6 Sm 27.4 Ti 53.4 Ta 0.6 O 162 .

16. The radiofrequency component of claim 15 wherein the ceramic material has a tungsten bronze crystal structure.

17. The radiofrequency component of claim 15 wherein the ceramic material has a dielectric constant of at least 60 and a temperature coefficient of resonant frequency of less than 15.

18. The radiofrequency component of claim 15 wherein the ceramic material has a temperature coefficient of resonant frequency of less than 5.

19. The radiofrequency component of claim 15 wherein the component is an antenna.

20. The radiofrequency component of claim 15 wherein the component is a resonator.

Continuity (3)
Division 15714934 · Sep 25, 2017
Provisional Application 62401596 · Sep 29, 2016
Related Publication 20190308911A1 · Oct 10, 2019
Cited By (1)
US 12,590,034