Differential coupler
US-8981870-B2 · Mar 17, 2015 · US
US9716306B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9716306-B2 |
| Application number | US-201414904462-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 30, 2014 |
| Priority date | Aug 19, 2013 |
| Publication date | Jul 25, 2017 |
| Grant date | Jul 25, 2017 |
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A directional coupler including a first transmission line including a terminal part provided with a matched termination, and a front end part being an end portion on a side opposite to a side of the terminal part; a second transmission line electromagnetically coupled with the first transmission line; and a third transmission line electromagnetically coupled with the first transmission line, wherein each of the second and third transmission lines includes a near end and a far end, the near end being positioned on a side closer to the front end part when tracing the first transmission line from the front end part, the far end being positioned on a side farther from the front end part when tracing the first transmission line from the front end part, and wherein the near end is terminated to have an impedance smaller than a characteristic impedance of the second transmission line.
Opening claim text (preview).
The invention claimed is: 1. A directional coupler comprising: a first transmission line including a terminal part provided with a matched termination, and a front end part which is an end portion on a side opposite to a side of the terminal part; a second transmission line electromagnetically coupled with the first transmission line; and a third transmission line electromagnetically coupled with the first transmission line, wherein each of the second transmission line and the third transmission line includes a near end and a far end, the near end being positioned on a side closer to the front end part when tracing the first transmission line from the front end part, the far end being positioned on a side farther from the front end part when tracing the first transmission line from the front end part, and wherein the near end of the second transmission line is terminated to have an impedance smaller than a characteristic impedance of the second transmission line. 2. The directional coupler according to claim 1 , wherein the far end of the second transmission line outputs a signal of a negative polarity upon an input of a signal input into the front end part, and wherein the near end of the third transmission line outputs a signal of a positive polarity upon the input of the signal input into the front end part. 3. The directional coupler according to claim 1 , wherein the second transmission line is positioned closer to the front end part than the third transmission line. 4. The directional coupler according to claim 1 , wherein the second transmission line is positioned farther from the front end part than the third transmission line. 5. The directional coupler according to claim 1 , wherein the near end of the second transmission line is provided with a short circuit termination. 6. The directional coupler according to claim 1 , wherein the far end of the third transmission line is provided with a matched termination. 7. The directional coupler according to claim 1 , wherein the far end of the third transmission line is terminated to have an impedance smaller than a characteristic impedance of the third transmission line. 8. The directional coupler according to claim 7 , wherein the far end of the third transmission line is provided with a short circuit termination. 9. The directional coupler according to claim 8 , wherein a connection part between the near end of the second transmission line and the far end of the third transmission line is provided with a short circuit termination. 10. The directional coupler according to claim 9 , wherein a transmission line of a U-like shape is formed by the second transmission line and the third transmission line. 11. The directional coupler according to claim 7 , wherein a connection part between the near end of the second transmission line and the far end of the third transmission line is terminated to have an impedance smaller than a characteristic impedance of the second transmission line or the third transmission line. 12. The directional coupler according to claim 1 , wherein the far end of the third transmission line is terminated to have an impedance greater than a characteristic impedance of the second transmission line. 13. The directional coupler according to claim 12 , wherein the far end of the third transmission line is provided with an open circuit termination. 14. The directional coupler according to claim 1 , wherein the second transmission line or the third transmission line has a characteristic impedance equal to a characteristic impedance of the first transmission line. 15. The directional coupler according to claim 1 , wherein the second transmission line or the third transmission line has a characteristic impedance different from a characteristic impedance of the first transmission line. 16. The directional coupler according to claim 1 , wherein the first transmission line includes a plurality of transmission line parts between the front end part and the terminal part, and wherein the plurality of transmission line parts couples the second transmission line and the third transmission line. 17. The directional coupler according to claim 16 , wherein the transmission line part among the plurality of transmission line parts having a longer distance of tracing the first transmission line from the front end part is connected stronger to the second transmission line and the third transmission line. 18. A communication device comprising: the directional coupler according to claim 1 , a single end circuit connected to the front end part, and a differential circuit connected to the far end of the second transmission line and the near end of the third transmission line. 19. A directional coupler comprising: a first transmission line including a first transmission line part, and a fourth transmission line part; a second transmission line including a second transmission line part electromagnetically coupled with the first transmission line part, and a third transmission line part electromagnetically coupled with the fourth transmission line part; and a switch circuit, wherein each of the first transmission line part and the fourth transmission line part includes a near end and a far end, the near end being positioned on a side closer to an end of the second transmission line when tracing the second transmission line from the end of the second transmission line, the far end being positioned on a side farther from the end when tracing the second transmission line from the end the second transmission line, wherein each of the second transmission line part and the third transmission line part includes a near end and a far end, the near end being positioned on a side closer to an end of the first transmission line when tracing the first transmission line from the end, the far end being positioned on a side farther from the end of the first transmission line when tracing the first transmission line from the end, wherein the first transmission line includes a first connection part where the near end of the first transmission line part is connected with the far end of the fourth transmission line part, wherein the second transmission line includes a second connection part where the near end of the second transmission line part is connected with the far end of the third transmission line part, wherein the switch circuit switches the near end of the third transmission line part to provide a matched termination when the first connection part terminates to have a first impedance smaller than a characteristic impedance of the first transmission line part or the fourth transmission line part in a case where the second connection part is not short-circuited, and wherein the switch circuit switches the near end of the fourth transmission line part to provide the matched termination when the second connection part terminates to have a second impedance smaller than a characteristic impedance of the second transmission line part or the third transmission line part in a case where the first connection part is not short-circuited. 20. A communication device comprising: the directional coupler according to claim 19 ; a first single end circuit connected to the far end of the second transmission line part when the near end of the third transmission line part is switched to provide the matched termination; a first differential circuit connected to the far end of the first transmission line part and the near end
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