A duplex unit
US-2016134325-A1 · May 12, 2016 · US
US10560129B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10560129-B2 |
| Application number | US-201916512550-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 16, 2019 |
| Priority date | Oct 12, 2015 |
| Publication date | Feb 11, 2020 |
| Grant date | Feb 11, 2020 |
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A radio frequency (RF) multiplexer includes, for example, a common port, a first port for a first frequency band, a second port for a second frequency band, and a third port for a third frequency band. The RF multiplexer also includes, for example, a first quadrature hybrid coupler (QHC), a second QHC and a third QHC. A coupling of the first QHC, a first pair of filters, and the second QHC separates the first frequency band and the second frequency band from the common port to the first port and to the second port, respectively. A coupling of the first QHC, a second pair of filters, and the third QHC separates the first frequency band and the third frequency band from the common port to the first port and to the third port respectively.
Opening claim text (preview).
What is claimed is: 1. A radio frequency multiplexer, comprising: a plurality of ports including a common port, a first port for a first frequency band, a second port for a second frequency band, and a third port for a third frequency band; a plurality of quadrature hybrid couplers (QHCs) including a first QHC, a second QHC, and a third QHC; a plurality of pairs of filters including a first pair of filters and a second pair of filters, wherein: the first pair of filters are coupled between the first QHC and the second QHC, and are configured to pass the second frequency band and not pass the first frequency band and the third frequency band; the second pair of filters are coupled between the first QHC and the third QHC, and are configured to pass the third frequency band and not pass the first frequency band and the second frequency band; the first QHC, the first pair of filters, and the second QHC are configured to separate the first frequency band from the common port to the first port, and separate the second frequency band from the common port to the second port; and the first QHC, the second pair of filters, and the third QHC are configured to separate the first frequency band from the common port to the first port, and separate the third frequency band from the common port to the third port; a first pair of equalizers coupled between the first pair of filters and the second QHC; and a first pair of impedance matching networks coupled between the first QHC and the first pair of filters. 2. The radio frequency multiplexer of claim 1 further comprising an additional filter coupled between the first port and the first QHC, and configured to pass the first frequency band. 3. The radio frequency multiplexer of claim 1 further comprising a second pair of equalizers coupled between the second pair of filters and the third QHC. 4. The radio frequency multiplexer of claim 3 further comprising a second pair of impedance matching networks coupled between the first QHC and the second pair of filters. 5. The radio frequency multiplexer of claim 4 further comprising an additional filter coupled to the first port and configured to pass the first frequency band. 6. The radio frequency multiplexer of claim 4 further comprising a first termination resistor coupled between the second QHC and ground, and a second termination resistor coupled between the third QHC and ground. 7. The radio frequency multiplexer of claim 4 further comprising a first tunable or variable impedance coupled between the second QHC and ground, and a second tunable or variable impedance coupled between the third QHC and ground. 8. The radio frequency multiplexer of claim 3 further comprising an additional filter coupled to the first port and configured to pass the first frequency band. 9. The radio frequency multiplexer of claim 3 further comprising a first termination resistor coupled between the second QHC and ground, and a second termination resistor coupled between the third QHC and ground. 10. The radio frequency multiplexer of claim 3 further comprising a first tunable or variable impedance coupled between the second QHC and ground, and a second tunable or variable impedance coupled between the third QHC and ground. 11. The radio frequency multiplexer of claim 1 further comprising a first termination resistor coupled between the second QHC and ground, and a second termination resistor coupled between the third QHC and ground. 12. The radio frequency multiplexer of claim 1 further comprising a first tunable or variable impedance coupled between the second QHC and ground, and a second tunable or variable impedance coupled between the third QHC and ground. 13. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a front-end of a wireless communication system that supports carrier aggregation. 14. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a front-end of a wireless communication system that supports frequency division duplexing. 15. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a front-end of a multiband communication system. 16. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a hand portable device supporting wireless communication. 17. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a base station supporting a wireless communication infrastructure. 18. The radio frequency multiplexer of claim 1 , wherein the radio frequency multiplexer is included in a repeater supporting a wireless communication infrastructure. 19. The radio frequency multiplexer of claim 1 , wherein the plurality of pairs of filters include one or more of surface acoustic wave (SAW) filters and bulk acoustic wave (BAW) filters.
using diplexing or multiplexing filters for selecting the desired band · CPC title
Hybrid arrangements, i.e. arrangements for transition from single-path two-direction transmission to single-direction transmission on each of two paths or vice versa · CPC title
in circuits for connecting transmitter and receiver to a common transmission path, e.g. by energy of transmitter {(H04B1/46 takes precedence)} · CPC title
Carrier suppressed; Single sideband; Double sideband or vestigial · CPC title
Two-way operation using the same type of signal, i.e. duplex · CPC title
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