Systems and methods for high-speed data transmission across an electrical isolation barrier
US-12161290-B2 · Dec 10, 2024 · US
US9653769B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9653769-B2 |
| Application number | US-201314379754-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 18, 2013 |
| Priority date | Feb 21, 2012 |
| Publication date | May 16, 2017 |
| Grant date | May 16, 2017 |
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Antenna 2 and radio communication apparatus 1 include mount portions 9 and 15 , flat proximity opposing surfaces 13 and 20 , and waveguide portions 12 and 19 penetrating through proximity opposing surfaces 13 and 20 , respectively. For example, in proximity opposing surface 13 of radio communication apparatus 1 , choke groove 14 is formed outside waveguide portion 12 . With mount portions 9 and 15 of antenna 2 and radio communication apparatus 1 abutted against and fixed to each other, proximity opposing surfaces 13 and 20 are set parallel to, and directly opposite to each other with a clearance interposed therebetween so that waveguide portions 12 and 19 , opposite to each other and with a clearance, form a waveguide.
Opening claim text (preview).
What is claimed is: 1. A radio communication system, comprising: a radio communication apparatus including a first waveguide; an antenna apparatus including a second waveguide; a fastener that fixes the radio communication apparatus to the antenna apparatus by setting the first waveguide and the second waveguide to be opposite to each other, with the opposing end faces of the first waveguide and the second waveguide kept apart from without coming into contact with each other, while a mount portion of the radio communication apparatus and a mount portion of the antenna apparatus abut against each other; a choke groove formed along the outer circumference of an opening in, at least, one of the opposing end faces of the first waveguide and the second waveguide to prevent the high-frequency signal that passes through the first waveguide and the second waveguide from leaking; a fitting groove provided outside the opposing end face of one apparatus selected from the antenna apparatus and the radio communication apparatus; a fitting rib to be inserted into the fitting groove, provided for the remaining antenna apparatus or the radio communication apparatus; and a seal for isolating the opposing end faces from the surroundings by inserting the fitting rib into the fitting groove with a waterproof packing interposed therein. 2. The radio communication system according to claim 1 , wherein when the antenna apparatus and the radio communication apparatus are fixed to each other, the mount portions abut and are fixed to each other. 3. The radio communication system according to claim 1 , wherein the opposing end faces are flat. 4. The radio communication system according to claim 1 , wherein: the antenna apparatus is a single antenna having a reflector unit and a base unit for supporting the reflector unit, the radio communication apparatus includes: a housing joined to the base unit of the antenna; a cover attached to the housing to form a hollow container; a circuit board sealed inside the container formed by the housing and the cover; and electric parts mounted on the circuit board, and the opposing end face and the waveguide are arranged in each base unit of the antenna and are also arranged in the housing of the radio communication apparatus. 5. The radio communication system according to claim 1 , wherein the antenna apparatus includes an antenna having a reflector unit and a base unit for supporting the reflector unit and a directional coupler to which the antenna is connected, the radio communication apparatus includes: a housing to be joined to the directional coupler; a cover to be attached to the housing to form a hollow container; a circuit board sealed inside the container formed by the housing and the cover; and electric parts provided on the circuit board, and the opposing end face and the waveguide are arranged in each directional coupler and the housing of the radio communication apparatus. 6. The radio communication system according to claim 1 , wherein the depth of the choke groove is equal to or smaller than three times the width of the choke groove in the direction toward the waveguide. 7. The radio communication system according to claim 1 , wherein: the depth of the choke groove is one-fourth of the wavelength of the signal propagating through the waveguide, and the distance between the choke groove and the waveguide is one-fourth of the wavelength of the signal. 8. A radio communication system, comprising: a radio communication apparatus including a first waveguide; an antenna apparatus including a second waveguide; a fastener that fixes the radio communication apparatus to the antenna apparatus by setting the first waveguide and the second waveguide to be opposite to each other, with the opposing end faces of the first waveguide and the second waveguide kept apart from without coming into contact with each other, while a mount portion of the radio communication apparatus and a mount portion of the antenna apparatus abut against each other; and a choke groove formed along the outer circumference of an opening in, at least, one of the opposing end faces of the first waveguide and the second waveguide to prevent the high-frequency signal that passes through the first waveguide and the second waveguide from leaking, wherein: the antenna apparatus is a single antenna having a reflector unit and a base unit for supporting the reflector unit, the radio communication apparatus includes: a housing joined to the base unit of the antenna; a cover attached to the housing to form a hollow container; a circuit board sealed inside the container formed by the housing and the cover; and electric parts mounted on the circuit board, and the opposing end face and the waveguide are arranged in each base unit of the antenna and are also arranged in the housing of the radio communication apparatus. 9. The radio communication system according to claim 8 , wherein when the antenna apparatus and the radio communication apparatus are fixed to each other, the mount portions abut and are fixed to each other. 10. The radio communication system according to claim 8 , wherein the opposing end faces are flat. 11. The radio communication system according to claim 8 , wherein the housing of the radio communication apparatus is formed by casing metal. 12. The radio communication system according to claim 8 , wherein the depth of the choke groove is equal to or smaller than three times the width of the choke groove in the direction toward the waveguide. 13. The radio communication system according to claim 8 , wherein: the depth of the choke groove is one-fourth of the wavelength of the signal propagating through the waveguide, and the distance between the choke groove and the waveguide is one-fourth of the wavelength of the signal. 14. A radio communication system, comprising: a radio communication apparatus including a first waveguide; an antenna apparatus including a second waveguide; a fastener that fixes the radio communication apparatus to the antenna apparatus by setting the first waveguide and the second waveguide to be opposite to each other, with the opposing end faces of the first waveguide and the second waveguide kept apart from without coming into contact with each other, while a mount portion of the radio communication apparatus and a mount portion of the antenna apparatus abut against each other; and a choke groove formed along the outer circumference of an opening in, at least, one of the opposing end faces of the first waveguide and the second waveguide to prevent the high-frequency signal that passes through the first waveguide and the second waveguide from leaking, wherein: the antenna apparatus includes an antenna having a reflector unit and a base unit for supporting the reflector unit and a directional coupler to which the antenna is connected, the radio communication apparatus includes: a housing to be joined to the directional coupler; a cover to be attached to the housing to form a hollow container; a circuit board sealed inside the container formed by the housing and the cover; and electric parts provided on the circuit board, and the opposing end face and the waveguide are arranged in each directional coupler and the housing of the radio communication apparatus. 15. The radio communication system according to claim 14 , wherein when the antenna apparatus and the radio communication apparatus are fixed to each other, the mount portions abut and are fixed to each other. 16. The radio communication sy
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