Claims
- 1. A heat cutoff signal transmission unit characterized by being comprised of a flat circuit body provided with a substrate and with a signal transmission line and a ground layer both formed on this substrate, where the substrate is comprised of a dielectric material having a low heat conductivity and where conductor portions forming the signal transmission line and ground layer are formed with a thin thickness enabling suppression of the flow of heat from the outside.
- 2. A heat cutoff signal transmission unit as set forth in claim 1, wherein said flat circuit body is configured by a microstrip line structure.
- 3. A heat cutoff signal transmission unit as set forth in claim 1, wherein the flat circuit is configured by a coplanar waveguide structure.
- 4. A heat cutoff signal transmission unit as set forth in claim 1, wherein slits for making the sectional area of said ground layer substantially smaller are formed in said ground layer.
- 5. A heat cutoff signal transmission unit as set forth in claim 1, wherein said unit has a connector provided at least at one of a signal input end and signal output end of said flat circuit body and wherein said connector is used for electrically connecting a center conductor and outer conductor of the coaxial cable connected from the outside and said signal transmission line and ground layer.
- 6. A heat cutoff signal transmission unit as set forth in claim 5, further provided with a support having a small heat conductivity for supporting said substrate and said coaxial cable near said connector.
- 7. A heat cutoff signal transmission unit as set forth in claim 1, wherein conductor portions forming the signal transmission line and the ground layers are formed by metal plating and the thickness is made at least the thickness of about a skin of the metal at a working frequency.
- 8. A heat cutoff signal transmission unit as set forth in claim 1, wherein conductor portions forming the signal transmission line and the ground layers are formed by metal thin films and the thickness is made about 1 to 3 times a skin thickness of said metal at a working frequency.
- 9. A heat cutoff signal transmission unit as set forth in claim 1, wherein said dielectric material forming said substrate is comprised of a glass-ceramic composite material.
- 10. A heat cutoff signal transmission unit as set forth in claim 6, wherein said support is comprised of a resin material or a resin-glass composite material.
- 11. A heat cutoff signal transmission unit as set forth in claim 10, wherein said resin material or resin-glass composite material is a polycarbonate resin, glass-epoxy resin composite material, or glass-polyimide resin composite material.
- 12. A heat cutoff signal transmission unit as set forth in claim 6, wherein said substrate and said support and said coaxial cable and said support are joined using a polyimide resin or epoxy resin.
- 13. A superconducting signal transmission apparatus is characterized by being provided with a vacuum container, a superconducting electronic device provided in the vacuum container, an input side transmission line and output side transmission line both passing through the vacuum container and connected, respectively, to a signal input end and signal output end of the superconducting electronic device, and a cooling mechanism for cooling the superconducting electronic device,
wherein a heat cutoff signal transmission unit is inserted into part of at least one of the input side transmission line and output side transmission line.
- 14. A superconducting signal transmission apparatus as set forth in claim 13, wherein said heat cutoff signal transmission unit is comprised of a flat circuit body provided with a substrate and a signal transmission line and a ground layer formed on this substrate, where the substrate is configured by a dielectric material having a low heat conductivity and where conductor portions forming the signal transmission line and ground layer are formed with a thin thickness enabling suppression of the flow of heat from the outside.
- 15. A superconducting signal transmission apparatus as set forth in claim 13, wherein said heat cutoff signal transmission unit is inserted to at least one of the input side transmission line and output side transmission line comprised of coaxial cables.
- 16. A superconducting signal transmission apparatus as set forth in claim 15, wherein said coaxial cable is a coaxial cable having a heat cutoff structure at its outer conductor.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation application and is based upon PCT/JP00/00524, filed on Jan. 31, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP00/00524 |
Jan 2000 |
US |
Child |
10208701 |
Jul 2002 |
US |