Amplifier output stage using toroidal transformer
An audio amplifier includes an output stage including a first toroidal transformer with a first pair of secondary windings that are coupled in parallel across an output terminal. The output stage further includes a second toroidal transformer with a second pair of secondary windings that are connected in a series combination that is coupled across the output terminal.
1. An audio amplifier comprising:
first and second amplifying elements driven by associated control signals that are 180 degrees out of phase with each other;
a first toroidal transformer with first and second primary windings coupled together at center terminals to a common voltage source and coupled in push-pull configuration to the first and second amplifying elements, and with first and second secondary windings that are coupled in parallel across output terminals; and
a second toroidal transformer with first and second primary windings coupled at center terminals to corresponding constant current sources and coupled in push-pull configuration to the first and second amplifying elements, and with first and second secondary windings that are coupled in series across the output terminals.
2. The audio amplifier of claim 1 wherein the first and second amplifying elements are vacuum tube devices.
3. The audio amplifier of claim 2 wherein the first toroidal transformer and the second toroidal transformer are 60 Hertz power transformers having a pair of 120 Volt primary windings and a pair of 12 Volt secondary windings.
4. The audio amplifier of claim 1 wherein the first and second amplifying elements are solid-state transistor devices.
5. The audio amplifier of claim 1 wherein magnitudes of current supplied by the constant current sources are balanced to prevent magnetic saturation of the first and second toroidal transformers over a predetermined frequency range.
6. The audio amplifier of claim 1 further comprising a non-polarized capacitor coupled between center terminals of the first and second primary windings of the second toroidal transformer.
7. The audio amplifier of claim 1 wherein a magnitude of current supplied by each of the constant current sources is selected to enable operation of the first and second amplifying elements in a Class A mode and the first and second amplifying elements are operated in the Class A mode of operation.
8. An output stage for an audio amplifier comprising:
a first toroidal transformer with a first pair of primary windings coupled together at center terminals to a common voltage source and coupled in push-pull configuration to first and second amplifying elements, and with a first pair of secondary windings that are coupled in parallel across output terminals; and
a second toroidal transformer with a second pair of primary windings coupled at center terminals to separate constant current sources and coupled in push-pull configuration to the first and second amplifying elements, and with a second pair of secondary windings that are coupled in series across the output terminals.
9. The output stage of claim 8 wherein the first and second amplifying elements are driven by associated controls signals that are 180 degrees out of phase from each other.
10. The output stage of claim 8 wherein the first and second amplifying elements are vacuum tube devices, and the first toroidal transformer and the second toroidal transformer are 60 Hertz power transformers having a pair of 120 Volt primary windings and a pair of 12 Volt secondary windings.
11. The output stage of claim 8 wherein magnitudes of current supplied by the constant current sources are balanced to prevent magnetic saturation of the first and second toroidal transformers over a predetermined frequency range.
12. The output stage of claim 8 wherein the first and second amplifying elements are operated in a Class A mode of operation.
13. The output stage of claim 8 further comprising a non-polarized capacitor that is coupled between the center terminals of the second pair of primary windings.