Claims
- 1. A gyroscope circuit, comprising:
- a resonator having a variable capacitor;
- an outputting element configured to drive said resonator;
- a receiving element configured to receive a signal from the resonator indicative of a movement to be detected;
- a reference; and
- a feedback loop that establishes an amount of drive to the resonator based on the signal from the resonator and said reference, said feedback loop including an element operating to hold a voltage on the capacitor constant, such that a charge on the capacitor varies when its capacitance is varied.
- 2. A circuit as in claim 1, wherein said feedback loop comprises a first circuit that establishes a peak output indicative of a peak received value on said input, a first amplifier, and a second amplifier, said first amplifier producing a control signal used to control the gain of said second amplifier, such that said second amplifier produces a driving output indicative of a difference between said peak output and said reference, said driving output used for driving said resonator, to thereby produce a larger output from said resonator to thereby increase said input and hence said peak received value and thereby reduce said difference.
- 3. A circuit as in claim 1, wherein said element in said feedback loop causes a charge on said variable capacitor to vary based on said movement to be detected.
- 4. A circuit as in claim 2, further comprising a element for providing an output signal indicative of rotation rate and which is based on both amplitude and phase of a signal from said resonator.
- 5. A gyroscope circuit, which operates based on an output from a gyroscope element, comprising:
- a gyroscope element, including a variable capacitor, which produces an output indicative of movement to be measured; and
- a sensing circuit that produces an output indicative of the movement based on both amplitude and phase detected from the gyroscope element, said sensing circuit configured to hold a voltage on the capacitor constant, such that a charge on the capacitor varies based on movement of the variable capacitor.
- 6. A gyroscope circuit, which operates based on an output from a gyroscope element, comprising:
- a gyroscope element that produces an output indicative of movement to be measured;
- at least one amplifier, including transconductance amplifiers, which operates to produce signals indicative of first and second parts of movement from said gyroscope element;
- a summing circuit, summing said first and second parts;
- a differencing circuit, differencing said first and second parts; and
- a detection circuit, producing a movement indicative output based on outputs of both said summing circuit and said differencing circuit.
- 7. A method of detecting movement, comprising:
- obtaining an output signal from a gyroscope element indicative of movement to be measured said obtaining including using a variable capacitor associated with said gyroscope, such that a voltage on the capacitor is held constant to vary a charge on the capacitor; and
- using both an amplitude and a phase of the output signal to detect the movement.
CROSS REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of the U.S. Provisional Application Ser. No. 60/055,548, filed on Aug. 13, 1997, which is incorporated herein by reference.
US Referenced Citations (6)