Low distortion amplifier
US-2024364272-A1 · Oct 31, 2024 · US
US9602066B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9602066-B2 |
| Application number | US-201414404135-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 20, 2014 |
| Priority date | Mar 29, 2013 |
| Publication date | Mar 21, 2017 |
| Grant date | Mar 21, 2017 |
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Official abstract text for this publication.
A polarity-switching amplifier circuit includes: a first amplifying transistor and a second amplifying transistor, a transformer which includes a primary winding and a secondary winding, and a polarity-switching controller. An unbalanced input signal is input to the first amplifying transistor and the second amplifying transistor. The transformer receives an output signal of the first amplifying transistor and an output signal of the second amplifying transistor as a balanced signal input to the primary winding, and outputs a signal from the secondary winding. The polarity-switching controller turns on one of the first amplifying transistor and the second amplifying transistor and turns off the other thereof.
Opening claim text (preview).
The invention claimed is: 1. A polarity-switching amplifier circuit comprising: a first amplifying transistor and a second amplifying transistor, to which an unbalanced input signal is input; a transformer which comprises a primary winding and a secondary winding, which receives an output signal of the first amplifying transistor and an output signal of the second amplifying transistor as a balanced signal input to the primary winding, and which outputs a signal from the secondary winding; a polarity-switching controller which turns on one of the first amplifying transistor and the second amplifying transistor and turns off the other thereof; a first input matching circuit which connects an input terminal of the unbalanced input signal and the first amplifying transistor; and a second input matching circuit which connects the input terminal of the unbalanced input signal and the second amplifying transistor. 2. The polarity-switching amplifier circuit according to claim 1 , wherein the polarity-switching controller switches on and off of the first amplifying transistor and the second amplifying transistor by performing switching setting of a DC bias voltage of an input terminal of the first amplifying transistor and a DC bias voltage of an input terminal of the second amplifying transistor. 3. The polarity-switching amplifier circuit according to claim 1 , wherein the first input matching circuit which performs matching with an impedance of an input signal source when the first amplifying transistor is on, and which provides an impedance higher than the impedance of the input signal source when the first amplifying transistor is off, and wherein the second input matching circuit which performs matching with the impedance of the input signal source when the second amplifying transistor is on, and which provides an impedance higher than the impedance of the input signal source when the second amplifying transistor is off. 4. The polarity-switching amplifier circuit according to claim 1 , wherein the first amplifying transistor and the second amplifying transistor comprise a dual-gate MOSFET. 5. The polarity-switching amplifier circuit according to claim 2 , wherein the polarity-switching controller changes gains of the first and second amplifying transistors by changing the DC bias voltages. 6. The polarity-switching amplifier circuit according to claim 1 , wherein the transformer comprises four terminals of a balanced input positive terminal, a balanced input negative terminal, a balanced output positive terminal and a balanced output negative terminal, wherein an output terminal of the first amplifying transistor and the balanced input negative terminal are connected, and an output terminal of the second amplifying transistor and the balanced input positive terminal are connected, and wherein said polarity-switching amplifier circuit further comprises: a first power source switch circuit which connects the balanced input positive terminal and a power source; a second power source switch circuit which connects the balanced input negative terminal and the power source; and a power switch controller that switches on and off of the first power source switch circuit and the second power source switch circuit in conjunction with the polarity-switching controller. 7. The polarity-switching amplifier circuit according to claim 6 , wherein the first power source switch circuit and the second power source switch circuit have different circuit configurations or element values. 8. The polarity-switching amplifier circuit according to claim 6 , further comprising: a first impedance adjustment circuit which connects the balanced input positive terminal and ground; a second impedance adjustment circuit which connects the balanced input negative terminal and ground; and an impedance controller which switches impedances of the first impedance adjustment circuit and the second impedance adjustment circuit in conjunction with the polarity-switching controller. 9. The polarity-switching amplifier circuit according to claim 8 , wherein the first impedance adjustment circuit and the second impedance adjustment circuit have different circuit configurations or element values. 10. The polarity-switching amplifier circuit according to claim 8 , wherein the first impedance adjustment circuit and the second impedance adjustment circuit comprise a series connection of a transistor and a capacitance, and the impedance controller switches on and off of the transistor. 11. The polarity-switching amplifier circuit according to claim 8 , wherein either one of the balanced output positive terminal and the balanced output negative terminal is connected to AC ground, and an output signal is an unbalanced signal. 12. The polarity-switching amplifier circuit according to claim 1 , wherein the transformer comprises five terminals of a balanced input positive terminal, a balanced input negative terminal, a balanced output positive terminal, a balanced output negative terminal and a balanced input center tap terminal, wherein an output terminal of the first amplifying transistor and the balanced input negative terminal are connected, and an output terminal of the second amplifying transistor and the balanced input positive terminal are connected, and wherein the balanced input center tap terminal and a power source are connected. 13. The polarity-switching amplifier circuit according to claim 12 , further comprising: a first impedance adjustment circuit which connects the balanced input positive terminal and the power source; a second impedance adjustment circuit which connects the balanced input negative terminal and the power source; and an impedance controller which switches impedances of the first impedance adjustment circuit and the second impedance adjustment circuit in conjunction with the polarity-switching controller. 14. The polarity-switching amplifier circuit according to claim 13 , wherein the first impedance adjustment circuit and the second impedance adjustment circuit have different circuit configurations or element values. 15. The polarity-switching amplifier circuit according to claim 12 , further comprising a power source impedance circuit which connects the balanced input center tap terminal and the power source. 16. The polarity-switching amplifier circuit according to claim 15 , wherein the power source impedance circuit comprises a low-pass filter. 17. The polarity-switching amplifier circuit according to claim 12 , wherein either one of the balanced output positive terminal and the balanced output negative terminal is connected to AC ground, and an output signal is an unbalanced signal.
using a combination of several amplifiers (H03F3/60 takes precedence) · CPC title
Transformer coupled at the output of an amplifier · CPC title
with field-effect devices (H03F3/195 takes precedence) · CPC title
with MOSFET's · CPC title
the LC comprising a cross coupling circuit, e.g. comprising two cross-coupled transistors · CPC title
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