Multi-channel guided wave radar level gauge
US-2015377678-A1 · Dec 31, 2015 · US
US11128024B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11128024-B2 |
| Application number | US-201716480341-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 30, 2017 |
| Priority date | Jan 30, 2017 |
| Publication date | Sep 21, 2021 |
| Grant date | Sep 21, 2021 |
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A combiner-divider includes a first impedance converter disposed between the first port and the second port, a second impedance converter disposed between the first port and the third port, and an isolation unit disposed between the second port and the third port. The isolation unit includes a balun formed of a first semi-rigid cable and a second semi-rigid cable, and terminating resistors. Each line length of the first impedance converter, the second impedance converter, and the third impedance converter corresponds to ¼ wavelength at a center frequency. A relationship of each impedance Ri of the second port and the third port, an impedance Ro of the first port, and each impedance W of the first impedance converter and the second impedance converters is expressed by W=(2×Ri×Ro)1/2.
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The invention claimed is: 1. A combiner-divider comprising: a first port; a second port; a third port; a first impedance converter disposed between the first port and the second port; a second impedance converter disposed between the first port and the third port; and an isolation unit disposed between the second port and the third port, wherein the isolation unit includes a balun formed of a first semi-rigid cable and a second semi-rigid cable, and terminating resistors, each one end of the terminating resistors is connected to the balun, and each of the other ends of the terminating resistors is grounded, each line length of the first impedance converter and the second impedance converter corresponds to ¼ wavelength at a center frequency, and a relationship of each impedance Ri of the second port and the third port, an impedance Ro of the first port, and each impedance W of the first impedance converter and the second impedance converter is expressed by W=(2□Ri□Ro)½. 2. The combiner-divider according to claim 1 , wherein a relationship of an impedance T of the terminating resistor, and each impedance B of the first semi-rigid cable and the second semi-rigid cable is expressed by B/2=T/N, where N denotes an integer equal to or larger than 2. 3. The combiner-divider according to claim 2 , wherein one end of a center conductor of the first semi-rigid cable is connected to the second port, one end of a center conductor of the second semi-rigid cable is connected to the third port, the other end of the center conductor of the first semi-rigid cable is connected to one end of an outer conductor of the second semi-rigid cable and the first port, and the other end of the center conductor of the second semi-rigid cable is connected to one end of an outer conductor of the first semi-rigid cable and a grounding wire. 4. The combiner-divider according to claim 1 , wherein the isolation unit further includes a plurality of third impedance converters, each one end of the third impedance converters is connected to the balun, and each of the other ends of the third impedance converters is connected to one ends of the terminating resistors, respectively, and a relationship of each impedance I of the third impedance converters, an impedance T of the terminating resistor, and each impedance B of the first semi-rigid cable and the second semi-rigid cable is expressed by I=(B□T□N/2)½, where N denotes an integer equal to or larger than 2. 5. The combiner-divider according to claim 4 , wherein one end of a center conductor of the first semi-rigid cable is connected to the second port, one end of a center conductor of the second semi-rigid cable is connected to the third port, the other end of the center conductor of the first semi-rigid cable is connected to one end of an outer conductor of the second semi-rigid cable and the first port, and the other end of the center conductor of the second semi-rigid cable is connected to one end of an outer conductor of the first semi-rigid cable and a grounding wire. 6. The combiner-divider according to claim 1 , wherein the isolation unit further includes a third impedance converter, one end of the third impedance converter is connected to the balun, and the other end of the third impedance converter is connected to each one end of the terminating resistors, respectively, and a relationship of an impedance I of the third impedance converter, an impedance T of the terminating resistor, and each impedance B of the first semi-rigid cable and the second semi-rigid cable is expressed by I=(B□T/(2□N))½, where N denotes an integer equal to or larger than 2. 7. The combiner-divider according to claim 6 , wherein one end of a center conductor of the first semi-rigid cable is connected to the second port, one end of a center conductor of the second semi-rigid cable is connected to the third port, the other end of the center conductor of the first semi-rigid cable is connected to one end of an outer conductor of the second semi-rigid cable and the first port, and the other end of the center conductor of the second semi-rigid cable is connected to one end of an outer conductor of the first semi-rigid cable and a grounding wire. 8. The combiner-divider according to claim 1 , wherein one end of a center conductor of the first semi-rigid cable is connected to the second port, one end of a center conductor of the second semi-rigid cable is connected to the third port, the other end of the center conductor of the first semi-rigid cable is connected to one end of an outer conductor of the second semi-rigid cable and the first port, and the other end of the center conductor of the second semi-rigid cable is connected to one end of an outer conductor of the first semi-rigid cable and a grounding wire.
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