Claims
- 1. A mixture of at least two high dielectric constant powders of lead magnesium niobate containing from about 2 to about 50 molar percent of a ferroelectric material, said dielectric powder mixtures having different Curie temperatures.
- 2. A mixture according to claim 1 wherein said ferroelectric material is lead titanate.
- 3. A mixture according to claim 1 wherein the dielectric powders includes up to 5 molar percent of a dopant selected from the group consisting of sodium, potassium, bismuth, antimony, ferric ion, aluminum, chromium, barium and lanthanum.
- 4. A capacitor ink comprising a mixture of at least two high dielectric constant powders of lead magnesium niobate containing from about 2 to about 50 molar percent of a ferroelectric material, said dielectric powder mixtures having different Curie temperatures, a flux, a lead-based glass and an organic vehicle.
- 5. A capacitor ink according to claim 4 wherein said ferroelectric material is lead titanate.
- 6. A capacitor ink according to claim 4 wherein the dielectric powders include up to 5 molar percent of a dopant selected from the group consisting of sodium, potassium, bismuth, antimony, ferric ion, aluminum, chromium, barium and lanthanum.
- 7. A capacitor ink according to claim 4 wherein the dopant is lanthanum.
- 8. A capacitor ink according to claim 4 wherein said first mixture contains about 7 molar percent of lead titanate and said second mixture contains about 35 molar percent of lead titanate.
- 9. A capacitor ink according to claim 4 wherein said first mixture contains about 7 molar percent of lead titanate, said second mixture contains about 35 molar percent of lead titanate, and a third mixture contains about 23.5 molar percent of lead titanate.
- 10. A capacitor ink according to claim 4 wherein said capacitor ink comprises a low melt temperature glass containing less than 2% by weight of barium oxide, over 5.0% by weight of boron oxide, less than 2.0% by weight of silica, over 12.0% by weight of zinc oxide and the remainder lead oxide.
- 11. An embedded capacitor having a high dielectric constant and low temperature coefficient of capacitance comprisinga) a plurality of green tapes, each green tape having printed circuitry thereon; b) a dielectric layer of green tape having a conductive layer of silver thereon; c) one of more green tapes screen printed with a capacitor ink comprising a mixture of two or more dielectric powder mixtures of lead magnesium niobate, and a ferroelectric material, said mixtures having different Curie temperatures, a flux, a lead-based glass and an organic vehicle; d) a green tape layer having a conductive silver layer thereon; and e) an overlying dielectric green tape layer.
- 12. An embedded capacitor according to claim 11 wherein the green tapes are supported on a metal support substrate.
Parent Case Info
This application claims priority from Provisional application Ser. No. 60/107,098 filed Nov. 5, 1998.
Government Interests
This invention was made with Government support under Contract No. F33615-96-2-5105. The Government has certain rights in this invention.
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
4482935 |
Wheeler |
Nov 1984 |
|
5004715 |
Hakotani et al. |
Apr 1991 |
|
5032558 |
Bailey et al. |
Jul 1991 |
|
5337209 |
Sutherland et al. |
Aug 1994 |
|
5345139 |
Gururaja et al. |
Sep 1994 |
|
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/107098 |
Nov 1998 |
US |