Claims
- 1. A method for servo tuning a finite Q cavity to stabilize its resonance frequency comprising the steps of
- detecting the phase difference between the magnetic and the electric fields in the cavity, and
- in response to the detected phase difference, changing the reactance inside said cavity to correct any drift in resonance frequency.
- 2. A method as defined in claim 1 wherein the step of changing the reactance inside said cavity to correct resonance frequency is effected by placing a voltage variable reactance element inside said cavity, and changing the reactance of said element in response to said detected deviation.
- 3. A method as defined in claim 1 wherein the step of changing the reactance inside said cavity to correct resonance frequency is effected by placing a voltage variable reactance element outside of said cavity, and coupling the changed reactance of said element into said cavity with a microwave coupler.
- 4. A method for servo tuning a finite Q cavity to stabilize its resonance frequency as defined in claim 1 wherein detecting the phase difference between the magnetic and the electric fields in the cavity is accomplished by using two probes, a loop for detecting the magnetic field and a dipole for detecting the electric field to produce separate signals in response to the two fields,
- comparing the phase of the separate signals to detect deviation of their phase from 90.degree., and
- in response to the detected phase difference, changing the reactance inside said cavity to correct any drift in resonance frequency.
- 5. A method as defined in claim 4 wherein the step of changing the reactance inside said cavity to correct resonance frequency is effected by placing a voltage variable reactance element inside said cavity, and changing the reactance of said element in response to said detected deviation.
- 6. A method as defined in claim 4 wherein the step of changing the reactance inside said cavity to correct resonance frequency is effected by placing a voltage variable reactance element outside of said cavity, and coupling the changed reactance of said element into said cavity with a microwave coupler.
- 7. Apparatus for servo tuning a finite Q cavity to stabilize its resonance frequency comprising
- means for detecting the phase difference between the magnetic and electric fields in said cavity, and
- means responsive to said phase detecting means for changing the reactance inside of said cavity to correct any drift in resonance frequency.
- 8. Apparatus as defined in claim 7 wherein said means for detecting said phase difference is comprised of two probes inside of said cavity, one a loop for detecting the magnetic field and one a loop for detecting the electric field, and means responsive to signals from said probes for detecting the phase difference between the signals and for low-pass filtering the detected difference, thereby producing a dc error signal.
- 9. Apparatus as defined in claim 8 wherein said means responsive to said phase detecting means for changing the reactance inside of said cavity to correct any drift in resonance frequency is comprised of a voltage variable reactance element outside of said cavity, and means for coupling the reactance of said element into said cavity.
- 10. Apparatus as defined in claim 8 wherein said two probes are collocated in said cavity.
- 11. Apparatus as defined in claim 10 wherein said two probes collocated in said cavity are supported in the same plane by a structure of dielectric material having a plane face on which said probes are placed, with the dipole inside the loop.
ORIGIN OF INVENTION
The invention described herein was made in the performance of work under a NASA contract and is subject to the provisions of Section 305 of the National Aeronautics and Space Act of 1958, Public Law 85-568 (72 Stat. 435; 42 USC 2457).
US Referenced Citations (8)