Duplexer
US-2016173062-A1 · Jun 16, 2016 · US
US10141913B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10141913-B2 |
| Application number | US-201815893759-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 12, 2018 |
| Priority date | Feb 13, 2017 |
| Publication date | Nov 27, 2018 |
| Grant date | Nov 27, 2018 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A multiplexer includes filters and a common terminal connected to an antenna element by a connection path, a first inductance element being connected between the connection path and a reference terminal. A terminal closer to the antenna element among an input terminal and an output terminal of one filter among the filters is connected to a parallel resonator and is connected to the common terminal with a second inductance element interposed therebetween. A terminal closer to the antenna element among an input terminal and an output terminal of each of other filters other than the one filter among the filters is connected to the common terminal and a series resonator.
Opening claim text (preview).
What is claimed is: 1. A multiplexer that transmits and receives a plurality of high-frequency signals via an antenna element, the multiplexer comprising: a plurality of elastic wave filters that have pass bands different from one another; and a common terminal that is connected to the antenna element by a connection path, a first inductance element being connected between the connection path and a reference terminal; wherein each of the plurality of elastic wave filters includes at least one of a series resonator connected between an input terminal and an output terminal of each of the plurality of elastic wave filters, and a parallel resonator connected between the reference terminal and a connection path connecting the input terminal and the output terminal to each other; a terminal closer to the antenna element among the input terminal and the output terminal of one elastic wave filter among the plurality of elastic wave filters is connected to the parallel resonator and is connected to the common terminal with a second inductance element interposed therebetween; and a terminal closer to the antenna element among the input terminal and the output terminal of each of other elastic wave filters other than the one elastic wave filter among the plurality of elastic wave filters is connected to the common terminal and the series resonator. 2. The multiplexer according to claim 1 , wherein the second inductance element is connected to the terminal of the one elastic wave filter that is closer to the antennal element, so that impedance in bands other than a pass band of the one elastic wave filter becomes inductive. 3. The multiplexer according to claim 1 , wherein the first inductance element and the second inductance element are included in a mounting substrate on which the plurality of elastic wave filters are mounted. 4. The multiplexer according to claim 3 , wherein a direction in which a wiring of the first inductance element is wound is identical to a direction in which a wiring of the second inductance element is wound in the mounting substrate. 5. The multiplexer according to claim 1 , wherein characteristic impedance R+jX [Ω] viewed from the common terminal of all the plurality of elastic wave filters before the first inductance element is connected satisfies about 40≤R≤about 60 and about −40≤X<about 0. 6. The multiplexer according to claim 1 , wherein another elastic wave filter that is to be isolated from the one elastic wave filter among the plurality of elastic wave filters includes a third inductance element connected in series or parallel to a terminal opposite to the terminal closer to the antenna element. 7. The multiplexer according to claim 1 , wherein complex impedance in a predetermined pass band provided when the one elastic wave filter is viewed through the second inductance element in a state in which the second inductance element and the terminal closer to the antenna element among the input terminal and the output terminal of the one elastic wave filter are connected in series to each other and complex impedance in the predetermined pass band provided when the other elastic wave filters other than the one elastic wave filter are viewed from the terminals closer to the antenna element to which the common terminal is connected in a state in which the terminals closer to the antenna element among the input terminals and the output terminals of the other elastic wave filters other than the one elastic wave filter are connected to the common terminal provide a relationship of complex conjugates. 8. The multiplexer according to claim 3 , wherein a first filter with a highest center frequency among the other elastic wave filters among the plurality of elastic wave filters includes a shortest wiring disposed between the first filter and the common terminal in the mounting substrate; and a second filter with a lowest center frequency among the other elastic wave filters other than the one elastic wave filter among the plurality of elastic wave filters includes a longest wiring disposed between the second filter and the common terminal in the mounting substrate. 9. The multiplexer according to claim 8 , wherein a length of the wiring of the second filter in the mounting substrate is less than about λ/4. 10. The multiplexer according to claim 1 , wherein a piezoelectric substrate included in each of the plurality of elastic wave filters includes: a piezoelectric film including interdigital transducer electrodes on one surface thereof; a high-acoustic-velocity supporting substrate through which a bulk wave propagates at an acoustic velocity higher than an acoustic velocity of an elastic wave that propagates through the piezoelectric film; and a low-acoustic-velocity film that is disposed between the high-acoustic-velocity supporting substrate and the piezoelectric film and through which a bulk wave propagates at an acoustic velocity lower than the acoustic velocity of the elastic wave that propagates through the piezoelectric film. 11. The multiplexer according to claim 1 , wherein the multiplexer includes, as the plurality of elastic wave filters: a first elastic wave filter that provides a first pass band and that outputs a transmission signal to the antenna element; a second elastic wave filter that provides a second pass band adjacent to or in a vicinity of the first pass band and that receives a reception signal from the antenna element; a third elastic wave filter that provides a third pass band lower than the first pass band and the second pass band and that outputs a transmission signal to the antenna element; and a fourth elastic wave filter that provides a fourth pass band higher than the first pass band and the second pass band and that receives a reception signal from the antenna element; wherein an elastic wave filter to which the second inductance element is connected in series is at least one of the second elastic wave filter and the fourth elastic wave filter. 12. A transmission apparatus that receives a plurality of high-frequency signals with carrier frequency bands different from one another, performs filtering on the plurality of high-frequency signals, and wirelessly transmits a resultant signal from a single antenna element, the transmission apparatus comprising: a plurality of transmission elastic wave filters each of which receives the plurality of high-frequency signals from a transmission circuit and passes therethrough a signal of a predetermined frequency band; and a common terminal connected to the antenna element by a connection path, a first inductance element being connected between the connection path and a reference terminal; wherein each of the plurality of transmission elastic wave filters includes at least one of a series resonator connected between an input terminal and an output terminal of the transmission elastic wave filter, and a parallel resonator connected between the reference terminal and a connection path connecting the input terminal and the output terminal to each other; an output terminal of one transmission elastic wave filter among the plurality of transmission elastic wave filters is connected to the parallel resonator and is connected to the common terminal with a second inductance element interposed therebetween, the second inductance element being connected to the output terminal and the common terminal; and an output terminal of a remainder of the plurality of transmission elastic wave filters other than the one transmission elastic wave filter is connected to the common terminal and is connected to the series resonator among the series resonator and the parallel resonator. 13
using diplexing or multiplexing filters for selecting the desired band · CPC title
Duplexers · CPC title
Duplexers · CPC title
having one acoustic track only · CPC title
including surface acoustic wave [SAW] devices · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.