Claims
- 1. A vector monitor for use with a transmitter employing in-phase and quadrature phase input and feedback signals, comprising:
an error detection circuit configured to provide first and second components of an error signal based on said input and feedback signals; and a comparator circuit, coupled to said error detection circuit, configured to compare a resultant vector of said first and second components to a comparison boundary and control a power level of said transmitter based on said comparison.
- 2. The vector monitor as recited in claim 1 further comprising a vector monitor controller configured to provide corrected feedback loop gain and phase errors based on said input signals, and said first and second components of said error signal.
- 3. The vector monitor as recited in claim 1 wherein said error detection circuit comprises employing an input delay circuit.
- 4. The vector monitor as recited in claim 1 wherein said error detection circuit comprises employing an input attenuator circuit.
- 5. The vector monitor as recited in claim 1 wherein said comparator circuit comprises employing a window comparator.
- 6. The vector monitor as recited in claim 1 wherein said comparator circuit comprises employing a polar comparator.
- 7. The vector monitor as recited in claim 1 wherein said error detection circuit comprises employing a difference amplifier.
- 8. A method of controlling a transmitter employing in-phase and quadrature phase input and feedback signals, comprising:
providing first and second components of an error signal based on said input and feedback signals; comparing a resultant vector of said first and second components to a comparison boundary; and controlling a power level of said transmitter based on said comparison.
- 9. The method as recited in claim 8 further comprising:
applying said in-phase and quadrature phase input and feedback signals to corresponding operational amplifiers; receiving output signals from said operational amplifiers into said error detection circuit; and providing corrected feedback loop gain and phase errors based on said input signals, said output signals and said first and second components of said error signal.
- 10. The method as recited in claim 8 wherein said providing is performed by an error detection circuit comprising an input delay circuit.
- 11. The method as recited in claim 8 wherein said providing is performed by an error detection circuit comprising an input attenuator circuit.
- 12. The method as recited in claim 8 wherein said comparing is performed by a comparator circuit comprising a window comparator.
- 13. The method as recited in claim 8 wherein said comparing is performed by a comparator circuit comprising a polar comparator.
- 14. The method as recited in claim 8 wherein said providing is performed by an error detection circuit comprising a difference amplifier.
- 15. A transmitter, comprising:
an input section having first and second operational amplifiers that receive in-phase and quadrature phase input and feedback signals and provide first and second output signals, respectively; a feedback section having in-phase and quadrature phase feedback signals; a power amplifier that employs said input and feedback sections; and a vector monitor, including:
an error detection circuit that receives said input and output signals and provides first and second components of an error signal based thereon, and a comparator circuit, coupled to said error detection circuit, that compares a resultant vector of said first and second components to a comparison boundary and controls a power level of said power amplifier based on said comparison.
- 16. The transmitter as recited in claim 15 wherein said vector monitor further comprises a vector monitor controller that provides corrected feedback loop gain and phase errors based on said input signals, said output signals and said first and second components of said error signal.
- 17. The transmitter as recited in claim 15 wherein said error detection circuit comprises an input delay circuit.
- 18. The transmitter as recited in claim 15 wherein said error detection circuit comprises an input attenuator circuit.
- 19. The transmitter as recited in claim 15 wherein said comparator circuit comprises a window comparator.
- 20. The transmitter as recited in claim 15 wherein said comparator circuit comprises a polar comparator.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is related to U.S. patent application Ser. No. ______ entitled “Comparator Circuit, Related Method of Comparing a Vector to Comparison Boundaries and Transmitter Employing the Same,” to Erik B. Busking, filed concurrently herewith, which is commonly assigned with the present invention and incorporated herein by reference as if reproduced herein in its entirety.