Claims
- 1. A method, comprising:
introducing a control signal to an input stage; using a bang-bang controller at the input stage to trigger generation of a first signal representative of the control signal; using the first signal to drive an output stage to generate a second signal; and filtering the second signal generated by the output stage to obtain an amplified output signal substantially representative of an input signal from which the control signal is derived.
- 2. The method of claim 1, further comprising feeding the unfiltered second signal generated by the output stage back to the input stage.
- 3. The method of claim 2 wherein feeding the second signal back to the input stage includes integrating the second signal via a feedback network comprising a resistor and a capacitor.
- 4. The method of claim 1, further comprising adding phase margin to the second signal fed back to the input stage via a capacitor coupled to an output node that provides the amplified output signal.
- 5. The method of claim 2 wherein using the bang-bang controller to trigger generation of the first signal comprises:
comparing the control signal with a signal derived from a hysteresis associated with the first signal; and changing a state of the first signal based on the comparison, the change in state of the first signal indicative of a change in value of the control signal.
- 6. The method of claim 2 wherein using the first signal to drive the output stage to generate the second signal comprises selectively and alternately activating a pair of switching devices based on states of the first signal.
- 7. An apparatus, comprising:
an input stage to receive a control signal, the input stage including a bang-bang controller to trigger generation of a first signal representative of the control signal; an output stage coupled to the input stage and responsive to the first signal to generate a second signal; and a filter coupled to an output node of the output stage to filter the second signal to obtain an amplified output signal substantially representative of an input signal from which the control signal is derived.
- 8. The apparatus of claim 7, further comprising a feedback network coupled between the output node of the output stage and an input node of the input stage, the feedback network being capable to integrate the second signal and to feed the integrated second signal back to the input stage.
- 9. The apparatus of claim 8 wherein the feedback network includes a resistor coupled to a capacitor that is coupled to ground, the capacitor capable of cooperating with the resistor to integrate the second signal.
- 10. The apparatus of claim 8 wherein the input stage includes a comparator having a signal associated with the control signal at an inverting input and a signal derived from a hysteresis associated with the first signal at a non-inverting input.
- 11. The apparatus of claim 8 wherein the output stage comprises:
a minimum pulse width block to receive the first signal from the input stage and to output third and fourth signals having opposite states, the minimum pulse width block capable of sending the third signal to a first driver; a level-shift circuit to receive the fourth signal from the minimum pulse width block and having an output coupled to a second driver; and first and second transistors coupled to and responsive to the first and second drivers, respectively, the first and second transistors capable of alternately activating and deactivating to generate the second signal, based on the third and fourth signals respectively received by the first and second drivers.
- 12. The apparatus of claim 11 wherein the second driver is biased by a floating power supply connected between the output of the output stage and a node of the second driver.
- 13. The apparatus of claim 12 wherein the floating power supply comprises a capacitor that is charged if the second transistor is activated.
- 14. The apparatus of claim 8, further comprising a load coupled to the filter to receive the amplified output signal.
- 15. The apparatus of claim 8 wherein the input signal and output signal comprise continuous-time analog signals, and wherein the first and second signals comprise substantially rectangular waveforms.
- 16. The apparatus of claim 8 wherein the bang-bang controller is coupled to:
compare the control signal with a signal derived from a hysteresis associated with the first signal; and change a state of the first signal based on the comparison, the change in state of the first signal indicative of a change in value of the control signal.
- 17. The apparatus of claim 8 wherein the input stage comprises an amplifier having an inverting configuration.
- 18. The apparatus of claim 8 wherein the input stage comprises an amplifier having a non-inverting configuration.
- 19. The apparatus of claim 8, further comprising another feedback network coupled between an output node of the filter and the input node of the input stage, including a capacitor to add a phase margin and noise shaping to the second signal fed back to the input stage.
- 20. An apparatus, comprising:
an input stage to receive a control signal, the input stage including a bang-bang controller to trigger generation of a first signal representative of the control signal; an output stage coupled to the input stage and responsive to the first signal to generate a second signal; a filter coupled to an output node of the output stage to filter the second signal to obtain an amplified output signal substantially representative of an input signal from which the control signal is derived; and a feedback network, coupled between the output node of the output stage and an input node of the input stage, to integrate the second signal and to provide the integrated second signal to the input node of the input stage.
- 21. The apparatus of claim 20, further comprising a feedback network coupled between the output node of the output stage and an input node of the input stage, the feedback network being capable to integrate the second signal and to feed the integrated second signal back to the input stage.
- 22. The apparatus of claim 20 wherein the feedback network includes a resistor coupled to a capacitor that is coupled to ground, the capacitor capable of cooperating with the resistor to integrate the second signal.
- 23. The apparatus of claim 20, further comprising another feedback network, coupled between an output node of the filter and the input node of the input stage, to add phase margin to the second signal fed back to the input stage.
- 24. The apparatus of claim 23 wherein the another feedback network includes a capacitor to add phase lead to the second signal fed back to the input stage.
- 25. The apparatus of claim 24 wherein the filter coupled to the output node of the output stage and a feedback network filter coupled between the output node of the output stage and the input node of the input stage have substantially the same low pass cut-off frequency.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims the benefit of and is a continuation-in-part of U.S. patent application Ser. No. 09/614,410, entitled “CLASS D AUDIO AMPLIFIER,” filed Jul. 12, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09614410 |
Jul 2000 |
US |
| Child |
09885155 |
Jun 2001 |
US |