Metallized Dielectric Waveguide
20200243980 ยท 2020-07-30
Inventors
Cpc classification
G01S13/88
PHYSICS
H01P3/16
ELECTRICITY
H01Q13/28
ELECTRICITY
International classification
H01Q13/28
ELECTRICITY
Abstract
Described are a dielectric conductor arrangement, a method for producing the conductor arrangement, a level radar and a use of the conductor arrangement. The conductor arrangement has a dielectric conductor core made of a solid. Furthermore, the conductor arrangement has a coating 30 which, at least in sections, surrounds the entire circumference of the conductor core without a gap and which consists of a thin conductive layer.
Claims
1. A dielectric conductor arrangement for transmitting microwaves, comprising: a dielectric conductor core made of a solid; and a coating surrounding at least in sections an entire circumference of the conductor core gap-free, the coating consisting of a thin conductive layer.
2. The conductor arrangement according to claim 1, wherein the conductor arrangement is adapted to have a bending radius of less than 20 cm
3. The conductor arrangement according to claim 1, wherein the conductor arrangement is adapted to have a bending radius of less than 4 cm.
4. The conductor arrangement according to claim 1, wherein the conductor core comprises polytetrafluoroethylene, PTFE, polyetheretherketone, PEEK, polypropylene, PP, polyethylene, PE, ceramic and/or a temperature-resistant glass fiber or consists of at least one of these materials.
5. The conductor arrangement according to claim 1, wherein the coating has a conductivity of greater than 30.Math.10.sup.6S/m.
6. The conductor arrangement according to claim 1, wherein the coating has a conductivity of greater than 50.Math.10.sup.6 S/m.
7. The conductor arrangement according to claim 5, wherein the coating comprises metal.
8. The conductor arrangement according to claim 5, wherein the coating comprises copper, silver, gold, palladium, alloys of these metals, conductive substances, metallized plastics, graphene, a ductile conductive material and/or a combination of said materials.
9. The conductor arrangement according to claim 5, wherein the coating has a thickness of between 20 m and 200 m.
10. The conductor arrangement according to claim 5, wherein the coating has a thickness of between 50 m and 100 m.
11. The conductor arrangement according to claim 1, wherein a diameter of the conductor core is selected such that in a predefined frequency range only the fundamental mode of the microwaves is propagable.
12. The conductor arrangement according to claim 1, wherein the coating is further coated and/or enclosed with a material for shock absorption.
13. A level radar, comprising: a radio frequency unit configured to generate a microwave signal; an antenna unit adapted to radiate the microwave signal; and a dielectric conductor arrangement according to claim 1, wherein the conductor arrangement is arranged to transmit the microwave signal generated by the radio frequency unit to the antenna unit.
14. The level radar according to claim 13, wherein the conductor arrangement is designed in several parts.
15. The level radar according to claim 13, wherein the conductor arrangement is arranged spirally at least in sections.
16. A method for producing a dielectric conductor arrangement, comprising: providing a dielectric conductor core; and applying, at least in sections, a coating which surrounds an entire circumference of the conductor core gap-free and consists of a thin conductive layer.
17. A method for producing a multi-part dielectric conductor arrangement, comprising: providing a dielectric conductor core; applying, at least in sections, a coating which surrounds an entire circumference of the conductor core gap-free and consists of a thin conductive layer; and cutting one end of a first dielectric conductor core and one end of a second dielectric conductor core at a predefined angle, wherein the end of the first dielectric conductor core and the end of the second dielectric conductor core have the same angle w; joining the end of the first dielectric conductor core and the end of the second dielectric conductor core at a Z-angle w; and encasing the end portion of the first dielectric conductor core and the end portion of the second dielectric conductor core using a metallic or metallized sleeve.
18. The method according to claim 17, wherein the connection between the first dielectric conductor core and the second dielectric conductor core is made detachable.
19. Use of a dielectric conductor arrangement according to claim 1 for a transmission of microwaves in a frequency range of about 80 GHz to about 300 GHz.
20. Use of a dielectric conductor arrangement according to claim 1 for a transmission of microwaves in a frequency range of about 240 GHz.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
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[0049] In addition, it should be noted that comprising and having does not exclude other elements or steps, and the indefinite articles a or an exclude no plurality. It should also be appreciated that features or steps described with reference to any of the above embodiments may also be used in combination with other features or steps of other embodiments described above. Reference signs in the claims are not to be considered as limitations.
LIST OF REFERENCE NUMBERS
[0050] 10 dielectric conductor arrangement [0051] 20, 20a, 20b dielectric core [0052] 21a, 21b end [0053] 22a, 22b end area [0054] 25 sleeve [0055] 30, 30a, 30b coating [0056] 40 level measuring device, level radar [0057] 42 high-frequency unit [0058] 44 antenna system [0059] 45 antenna horn [0060] 46 thread [0061] 47 conical area [0062] 50 flowchart [0063] 51, 52 steps