System and method of tethering for remote DC logic control
US-10038469-B1 · Jul 31, 2018 · US
US11223097B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11223097-B2 |
| Application number | US-202016749715-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 22, 2020 |
| Priority date | Feb 15, 2019 |
| Publication date | Jan 11, 2022 |
| Grant date | Jan 11, 2022 |
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A radiofrequency transmission line configured so as to allow a radiofrequency electrical signal to be transmitted between a first end and a second end, the transmission line including a main conductor and a ground plane electrically connected to an electrical ground of the transmission line. The ground plane includes a set of portions that are connected in series between the first end and the second end and a set of second capacitors, the set of portions including a set of second portions, each second capacitor being inserted between two contiguous second portions.
Opening claim text (preview).
The invention claimed is: 1. A radiofrequency transmission line having a first end and a second end, the transmission line being configured so as to allow the transmission of a radiofrequency electrical signal between the first end and the second end, the transmission line including a main conductor and a ground plane electrically connected to an electrical ground of the transmission line, the main conductor including a set of portions connected in series between the first end and the second end and a set of first capacitors, the set of portions including a set of first portions, each first capacitor being inserted between two contiguous first portions, each first capacitor including a first electrode electrically connected to one of the first portions between which each first capacitor is inserted and a second electrode electrically connected to the other of the first portions between which each first capacitor is inserted, wherein the ground plane comprises a set of portions connected in series between the first end and the second end and a set of second capacitors, the set of portions including a set of second portions, each second capacitor being inserted between two contiguous second portions, each second capacitor including a third electrode electrically connected to one of the second portions between which each second capacitor is inserted and a fourth electrode electrically connected to the other of the second portions between which each second capacitor is inserted, and wherein each first capacitor is configured for preventing the passage of an electrical current between the first electrode and the second electrode in the case of an electrical failure of said each first capacitor and each second capacitor is configured for preventing the passage of an electrical current between the third electrode and the fourth electrode in the case of an electrical failure of said each second capacitor. 2. A radiofrequency device comprising a radiofrequency transmission line according to claim 1 . 3. The radiofrequency device according to claim 2 , comprising a control module, an antenna connected to the control module via the radiofrequency transmission line and a power supply able to receive a first electrical voltage and to convert the first electrical voltage into a second electrical voltage supplying the control module. 4. A system for monitoring an installation comprising a housing, the system comprising a radiofrequency device according to claim 3 and a centralization device, the antenna being disposed outside of the housing, the control module being accommodated inside the housing, the transmission line being configured for transmitting radiofrequency electrical signals between the control module and the antenna, the control module being configured for communicating with the centralization device by radiofrequency communications via the antenna. 5. The radiofrequency device according to claim 3 , wherein the first electrical voltage is greater than or equal to 24 volts. 6. The radiofrequency transmission line according to claim 1 , in which each first capacitor and each second capacitor has a capacitance greater than or equal to 10 picofarads. 7. The radiofrequency transmission line according to claim 6 , in which the main conductor further comprises at least two third portions and at least one third capacitor having a capacitance less than or equal to 50 picofarads, the third capacitor being inserted between the two third portions and including a fifth electrode electrically connected to one of the third portions and a sixth electrode electrically connected to the other third portion. 8. The radiofrequency transmission line according to claim 6 , in which each first capacitor and each second capacitor has a capacitance in a range between 10 picofarads and 4.7 nanofarads. 9. The radiofrequency transmission line according to claim 1 , further comprising at least one voltage clipping circuit configured for limiting, in absolute value, a difference of electrical potential between the main conductor and the ground plane. 10. The radiofrequency transmission line according to claim 9 , in which each voltage clipping circuit comprises a first connection terminal electrically connected to a second portion of the main conductor and a second connection terminal electrically connected to the ground plane. 11. The radiofrequency transmission line according to claim 1 , comprising a substrate having two mounting faces parallel to one another, each first capacitor of the main conductor being mounted on one of the mounting faces, each second capacitor of the ground plane being mounted on the other mounting face, each mounting face being perpendicular to a direction normal to the substrate, each first capacitor of the main conductor being aligned in the normal direction with a corresponding second capacitor of the ground plane.
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