Claims
- 1. A switched-mode power amplifier configured for integrally amplifying and combining a plurality of signals input thereto, said amplifier comprising:
(a) an input component for each of said plurality of input signals wherein each said input component comprises at least one active device configured to be alternately switched by said input signal to present an amplified signal corresponding to said input signal, said amplified signal constituting a low output impedance voltage source; (b) an output resonator component; and, (c) an impedance inverter between each said input component and said resonator component, said impedance inverter configured for transforming said low output impedance voltage source to a high output impedance current source, wherein said high output impedance sources are combined in parallel before being passed to said resonator component.
- 2. A switched-mode power amplifier according to claim 1 wherein said signals are analog phase modulated signals.
- 3. A switched-mode power amplifier according to claim 2 wherein said amplifier is one of class D, E or F.
- 4. A switched-mode power amplifier according to claim 3 wherein said amplifier is balanced.
- 5. A switched-mode power amplifier according to claim 3 wherein said amplifier is unbalanced.
- 6. A switched-mode power amplifier according to claim 2 wherein said impedance inverter is a quarter-wavelength (λ/4) transmission line.
- 7. A switched-mode power amplifier according to claim 2 wherein said impedance inverter is a lumped element equivalent component to quarter-wavelength (λ/4) transmission line.
- 8. A switched-mode power amplifier according to claim 7 wherein said lumped element equivalent component comprises a series inductor and two shunt-to-ground, negative inductors connected to each terminal end of said series inductor, said inductors being of equal absolute value.
- 9. A switched-mode power amplifier according to claim 7 wherein said lumped element equivalent component comprises two series negative inductors and a shunt-to-ground inductor between said series inductor, said inductors being of equal absolute value.
- 10. A switched-mode power amplifier according to claim 7 wherein said lumped element equivalent component comprises a series capacitor and two shunt-to-ground, negative capacitors connected to each terminal end of said series capacitor, said capacitors being of equal absolute value.
- 11. A switched-mode power amplifier according to claim 7 wherein said lumped element equivalent component comprises two series negative capacitors and a shunt-to-ground capacitor between said series capacitor, said capacitors being of equal absolute value.
- 12. A method for integrally amplifying and combining a plurality of input signals to produce a single amplified, summation signal for input to a resonator component, said method comprising:
(a) amplifying each said input signal by a separate amplifier input component to produce an amplified signal corresponding to said input signal and constituting a low output impedance voltage source, said amplifying comprising applying said input signal to at least one active device of said input component to cause alternate switching of said active device; and, (b) transforming each said low output impedance voltage source to a high output impedance current source; and, (c) combining said high output impedance sources in parallel to produce a single amplified, summation signal.
- 13. A method according to claim 12 whereby said signals are analog phase modulated signals.
- 14. A method according to claim 13 whereby said transforming is performed by an impedance inverter.
- 15. A method according to claim 14 whereby said impedance inverter is a quarter-wavelength (λ/4) transmission line.
- 16. A method according to claim 14 whereby said impedance inverter is a lumped element equivalent component to a quarter-wavelength (λ/4) transmission line.
- 17. A method according to claim 16 whereby said lumped element equivalent component comprises a series inductor and two shunt-to-ground, negative inductors of equal absolute value connected to each terminal end of said series inductance.
- 18. A method according to claim 16 whereby said lumped element equivalent component comprises two series negative inductors and a shunt-to-ground inductor between said series inductor, said inductors being of equal absolute value.
- 19. A method according to claim 16 whereby said lumped element equivalent component comprises a series capacitor and two shunt-to-ground, negative capacitors connected to each terminal end of said series capacitor, said capacitors being of equal absolute value.
- 20. A method according to claim 16 whereby said lumped element equivalent component comprises two series negative capacitors and a shunt-to-ground capacitor between said series capacitor, said capacitors being of equal absolute value.
RELATED APPLICATION
[0001] This application is a continuation-in-part application of application Ser. No. 10/004,703 filed on Dec. 3, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10004703 |
Dec 2001 |
US |
Child |
10610145 |
Jun 2003 |
US |