Claims
- 1. A fuse for a transmission line, the fuse having an impedance matched to the impedance of the transmission line and comprising:a substrate made of a dielectric material; and a conductor trace formed on the substrate, the conductor trace having opposed ends for interconnecting with a first conductor of the transmission line for passing current flowing through the transmission line, the material and the cross-sectional area of the conductor trace being selected to cause the conductor trace to open when the current flowing through the transmission line exceeds a predetermined level for a predetermined duration.
- 2. The fuse according to claim 1, wherein the substrate is a thin, flat member having a first side and a second side, the conductor trace being formed on the first side, and wherein the fuse further comprises a conductor layer formed on the second side, the conductor layer having opposed ends for interconnecting with a second conductor of the transmission line.
- 3. The fuse according to claim 1, wherein the conductor layer has a greater cross-sectional area than the cross-sectional area of the conductor trace.
- 4. The fuse according to claim 1, further comprising:a housing containing the substrate; a pair of terminals within the housing, each of the terminals for connecting to an end of the transmission line; and a connector on each of the ends of the conductor trace for connecting one of the opposed ends of the conductor trace to a respective one of the terminals.
- 5. A fuse comprising:a housing having a chamber and a pair of terminals for interconnecting with a transmission line; a substrate made of a dielectric material and mounted within the chamber of the housing, the substrate having a first side and a second side opposite the first side; and a conductor trace formed on the first side of the substrate and having opposed ends; wherein the terminals have connectors electrically connected to the opposed ends of the conductor trace for passing current flowing through the transmission line; and wherein the dimensions and the material of the conductor trace are selected to cause the conductor trace to open if the current exceeds a predetermined level for a predetermined duration.
- 6. The fuse according to claim 5, whereinthe transmission line is a coaxial line having inner and outer conductors; each of the connectors is connected to the inner conductor of the coaxial line; and the fuse further comprises a conductor layer on the second side of the substrate, the conductor layer being capable of passing a greater current flowing through the coaxial line than the conductor trace, the conductor layer having opposed ends electrically connected to the outer conductor.
- 7. The fuse according to claim 5, further comprising:a voltage protector mounted within the housing outside of the chamber, the voltage protector being electrically connected to the conductor trace and to a ground, the voltage protector providing a conductive path to the ground if the voltage on the transmission line exceeds a predetermined value.
- 8. A fuse for a transmission line having an inner conductor and an annular outer conductor, the fuse comprising:a dielectric substrate having a first side and a second side opposite the first side; a conductor trace formed on the first side of the substrate and having opposed ends for interconnecting with the inner conductor of the transmission line; and a conductor layer formed on the second side of the substrate and having opposed ends for interconnecting with the outer conductor of the transmission line; wherein the conductor trace and the conductor layer are separated by the substrate to form a circuit board having a preselected capacitance for characteristic impedance matching with the transmission line.
- 9. The fuse according to claim 8, wherein the conductor layer has a greater cross-sectional area than the cross-sectional area of the conductor trace.
- 10. The fuse according to claim 8, whereinthe transmission line is a coaxial line having a pair of coaxial cable terminals, each of the terminals having an inner connector for electrically connecting to the inner conductor of the coaxial cable and an outer connector for electrically connecting to the outer conductor of the coaxial cable; and wherein the conductor layer is capable of passing a greater current flowing through the coaxial line than the conductor trace.
- 11. A protection device for a transmission line comprising:a fuse comprising a substrate made of a dielectric material; and a conductor trace formed on the substrate, the conductor trace having opposed ends for interconnecting with a first conductor of the transmission line for passing current flowing through the transmission line, the material and the cross-sectional area of the conductor trace being selected to cause the conductor trace to open if the current flowing through the transmission line exceeds a predetermined level for a predetermined duration; a housing containing the fuse; and a voltage protector mounted within the housing and being electrically connected to the conductor trace and to a ground, the voltage protector providing a conductive path to the ground if the voltage exceeds a predetermined value.
- 12. The protection device according to claim 11, wherein the housing has a first chamber and a second chamber, the fuse being located in the first chamber and the voltage protector being located in the second chamber.
- 13. The protection device according to claim 11, wherein the transmission line has an inherent capacitance, the fuse has a capacitance, and the voltage protector has a capacitance and wherein the combined capacitance of the fuse and the voltage protector are matched to the inherent capacitance of the transmission line.
- 14. A protection device for a coaxial cable having an inner conductor and an annular outer conductor, the protection device comprising:a housing; a pair of coaxial cable terminals located on the housing, each of the terminals having an inner connector for connecting to the inner conductor of the coaxial cable and an outer connector for connecting to the outer conductor of the coaxial cable; a conductive strip located within the housing and electrically connected between the inner connectors of the terminals for passing current flowing through the inner conductor, the conductive strip being of a material and having a cross-sectional area that are selected to cause the conductive strip to open if the current flowing through the conductive strip reaches a predetermined level for a predetermined duration; an outer conductive path located within the housing between the outer connectors of the terminals for providing electrical continuity for the outer conductor; and a voltage protector mounted within the housing, the voltage protector electrically connected to the conductive strip and to a ground, the voltage protector conducting to the ground if the voltage on the inner conductor exceeds a predetermined value; wherein the conductive strip comprises a conductor trace formed on a first side of a dielectric substrate, and the conductive path comprises a conductor layer formed on a second side of the substrate.
- 15. A protection device for a transmission line, comprising:a housing having a chamber; a pair of terminals on the housing for interconnecting with the transmission line; a substrate made of a dielectric material and being mounted with the chamber of the housing, the substrate having a first side and a second side opposite the first side; a conductor trace formed on the first side of the substrate and having opposed ends; the terminals having connectors electrically connected to the opposed ends of the conductor trace for passing current flowing through the transmission line, the conductor trace being of a material and having a cross-sectional area selected to cause the conductor trace to open if the current reaches a predetermined level for a predetermined duration; and a conductor layer on the second side of the substrate, the conductor layer having opposed ends, each of the opposed ends of the conductor layer connected to an electrical ground.
- 16. The protection device according to claim 15, wherein the conductor layer has a greater cross-sectional area than the cross-sectional area of the conductor trace.
- 17. The protection device according to claim 15, further comprising:a voltage protector mounted within the housing, the voltage protector being electrically connected to the conductor trace and connected to the ground, the voltage protector providing a conductive path to the ground if the voltage on the transmission line exceeds a predetermined value.
- 18. The protection device according to claim 15, further comprising an insulation material within a portion of the chamber of the housing adjacent the first side of the substrate.
CROSS REFERENCE TO RELATED APPLICATION
This application is a division of U.S. application Ser. No. 09/167,756 filed Oct. 7, 1998, the disclosure of which is incorporated herein by reference in its entirety.
US Referenced Citations (19)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2252433 |
May 1974 |
DE |