Claims
- 1. An amplifier comprising:
a main amplifier circuit; at least one auxiliary amplifier circuit, the auxiliary amplifier circuit being selectively operable to operate in combination with the main amplifier circuit; at least one hybrid coupler circuit having an output port and an isolation port and coupled to combine output signals of the amplifiers at the coupler output port; the amplifier circuits having associated reflection coefficients at their outputs; a termination coupled at the isolation port of the coupler circuit, the termination configured to have a reflection coefficient based upon the reflection coefficient at the output of the amplifier circuits.
- 2. The amplifier of claim 1 further comprising a matching network proximate an amplifier circuit output, the reflection coefficient of the amplifier circuit output being a function of the matching network.
- 3. The amplifier of claim 1 further comprising a phasing line proximate an amplifier circuit output, the reflection coefficient of the amplifier circuit output being a function of the phasing line.
- 4. The amplifier of claim 1 wherein the termination is configured by terminating a length of transmission line with one of an electrical short circuit and an electrical open circuit.
- 5. The amplifier of claim 1 wherein the termination is configured so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according the following relationship:
- 6. The amplifier of claim 1 wherein the termination is configured so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according the following relationship:
- 7. The amplifier of claim 4 wherein the termination is configured by terminating a length of transmission line with an electrical open circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 8. The amplifier of claim 4 wherein the termination is configured by terminating a length of transmission line with an electrical short circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 9. The amplifier of claim 4 wherein the length of the transmission line for the termination includes a length of transmission line internal to the hybrid coupler circuit.
- 10. The amplifier of claim 1 wherein the reflection coefficient presented to the isolation port has an angle that is a function of the angle of the output reflection coefficient of the amplifier.
- 11. An amplifier comprising:
a plurality of amplifier circuits having associated reflection coefficients at their outputs; at least one hybrid coupler circuit having an output port and an isolation port and coupled to combine output signals of the amplifier circuits at the coupler output port; a termination coupled at the isolation port of the coupler circuit, the termination configured to have a reflection coefficient based upon the reflection coefficient at the output of the amplifier circuits.
- 12. The amplifier of claim 11 further comprising a matching network proximate an amplifier circuit output, the reflection coefficient of the amplifier output being a function of the matching network.
- 13. The amplifier of claim 11 further comprising a phasing line proximate an amplifier circuit output, the reflection coefficient of the amplifier output being a function of the phasing line.
- 14. The amplifier of claim 1 wherein the termination is configured by terminating a length of transmission line with one of an electrical short circuit and an electrical open circuit.
- 15. The amplifier of claim 11 wherein the termination is configured so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according the following relationship:
- 16. The amplifier of claim 11 wherein the termination is configured so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according the following relationship:
- 17. The amplifier of claim 14 wherein the termination is configured by terminating a length of transmission line with an electrical open circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 18. The amplifier of claim 14 wherein the termination is configured by terminating a length of transmission line with an electrical short circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 19. The amplifier of claim 14 wherein the length of the transmission line for the termination includes a length of transmission line internal to the hybrid coupler circuit.
- 20. The amplifier of claim 11 wherein the reflection coefficient presented to the isolation port has an angle that is a function of the angle of the output reflection coefficient of the amplifier.
- 21. A method of configuring an amplifier comprising:
combining output signals of a main amplifier circuit and at least one auxiliary amplifier circuit with at least one hybrid coupler circuit having an output port and an isolation port, and providing an output at an output port of the coupler circuit; the main and auxiliary amplifier circuits having associated reflection coefficients at their outputs; coupling a termination at the isolation port of the coupler circuit; configuring the termination to have a reflection coefficient based upon the reflection coefficient at the output of the amplifier circuits.
- 22. The method amplifier of claim 21 further comprising coupling a matching network proximate to an amplifier output, the reflection coefficient of the amplifier output being a function of the matching network.
- 23. The method of claim 21 further comprising coupling a phasing line proximate to an amplifier output, the reflection coefficient of the amplifier output being a function of the phasing line.
- 24. The method of claim 21 wherein configuring the termination includes terminating a length of transmission line with one of an electrical short circuit and an electrical open circuit.
- 25. The method of claim 21 comprising configuring the termination so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according the following relationship:
- 26. The method of claim 21 comprising configuring the termination so the reflection coefficient of the termination is based upon the reflection coefficient at the output of the amplifier circuits according to the following relationship:
- 27. The method of claim 24 comprising configuring the termination by terminating a length of transmission line with an electrical open circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 28. The method of claim 24 comprising configuring the termination by terminating a length of transmission line with an electrical short circuit so the reflection coefficient of the termination has an angle according to the following relationship:
- 29. The method of claim 24 wherein the length of the transmission line for the termination includes a length of transmission line internal to the hybrid coupler circuit.
- 30. The method of claim 21 wherein the reflection coefficient presented to the isolation port has an angle that is a function of the angle of the output reflection coefficient of the amplifier.
RELATED APPLICATIONS
[0001] This application is a Continuation-In-Part Application of pending U.S. patent application Ser. No. 10/402,800, entitled “High Efficiency Amplifier,” filed Mar. 28, 2003.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
10402800 |
Mar 2003 |
US |
| Child |
10795055 |
Mar 2004 |
US |