Wideband power amplifiers with harmonic traps
US-10673386-B2 · Jun 2, 2020 · US
US2022069776A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2022069776-A1 |
| Application number | US-202117522082-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 9, 2021 |
| Priority date | Jun 7, 2019 |
| Publication date | Mar 3, 2022 |
| Grant date | — |
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A Doherty amplifier includes: amplifiers including a main amplifier and an auxiliary amplifier; output circuits for increase in back-off amount including a first output circuit disposed between the main amplifier and an output combination unit provided by the amplifiers, and having a first electric length, and a second output circuit disposed between the auxiliary amplifier and the output combination unit, and having a second electric length; and a frequency characteristic compensation circuit for band broadening disposed electrically in parallel to the first output circuit, for compensating for the frequency characteristics of the impedances in the output circuits.
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1 . A Doherty amplifier comprising: amplifiers including a main amplifier and an auxiliary amplifier; output circuits for increase in back-off amount including a first output circuit disposed between the main amplifier and an output combiner provided by the amplifiers, and having a first electric length, and a second output circuit disposed between the auxiliary amplifier and the output combiner, and having a second electric length; and a frequency characteristic compensation circuit for band broadening disposed electrically in parallel to the first output circuit, to compensate for frequency characteristics of impedances in the output circuits. 2 . The Doherty amplifier according to claim 1 , wherein when the auxiliary amplifier is set to an off state, the second output circuit performs a function of an open stub, thereby performing a function of a capacitive load. 3 . The Doherty amplifier according to claim 1 , wherein in a high frequency region with respect to a reference frequency, a capacitive impedance provided by the frequency characteristic compensation circuit cancels out inductive impedances provided by the output circuits, while in a low frequency region with respect to the reference frequency, an inductive impedance provided by the frequency characteristic compensation circuit cancels out capacitive impedances provided by the output circuits. 4 . The Doherty amplifier according to claim 1 , wherein the first electric length θ 1 is set to a value based on a mathematical expression: θ 1 =arctan(−√((γ(γ−1))/(γ−4))), using a value γ corresponding to a requested back-off amount, and the second electric length θ 2 is set to a value based on a mathematical expression: θ2=arctan(√(((γ−4)(γ−1))/γ)), using the value γ corresponding to the requested back-off amount. 5 . The Doherty amplifier according to claim 1 , wherein the first output circuit is constituted by a first transmission line and a second transmission line, the second output circuit is constituted by a third transmission line, and a combination circuit is constituted by the second transmission line and the third transmission line, and wherein an electric length of the first transmission line is set to 90 degrees and an electric length of the combination circuit is set to 90 degrees, so that an electric length of the output circuit is set to 180 degrees. 6 . The Doherty amplifier according to claim 1 , wherein the frequency characteristic compensation circuit is constituted by an open stub having an electric length of 180 degrees. 7 . The Doherty amplifier according to claim 1 , wherein saturated output power of the main amplifier is different from saturated output power of the auxiliary amplifier. 8 . The Doherty amplifier according to claim 1 , wherein the Doherty amplifier comprises a first output matching circuit disposed between the main amplifier and the first output circuit, and having an electric length which is an integral multiple of 180 degrees, and a second output matching circuit disposed between the auxiliary amplifier and the second output circuit, and having an electric length which is an integral multiple of 180 degrees. 9 . The Doherty amplifier according to claim 1 , wherein the Doherty amplifier comprises a first circuit disposed between the first output circuit and the output combiner, and having an electric length which is an integral multiple of 180 degrees, and a second circuit disposed between the second output circuit and the output combiner, and having an electric length which is an integral multiple of 180 degrees. 10 . The Doherty amplifier according to claim 1 , wherein the Doherty amplifier comprises: a first input terminal for the main amplifier and a second input terminal for the auxiliary amplifier, and wherein each of the first and second input terminals is electrically connected to a signal source.
using a main and one or several auxiliary peaking amplifiers whereby the load is connected to the main amplifier using an impedance inverter, e.g. Doherty amplifiers · CPC title
Modifications of input or output impedances, not otherwise provided for · CPC title
the amplifier being a radio frequency amplifier · CPC title
Amplifiers in which coupling networks have distributed constants, e.g. with waveguide resonators (H03F3/54 takes precedence) · CPC title
using a combination of several amplifiers (H03F3/60 takes precedence) · CPC title
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