Interferometric amplifier
First Claim
Patent Images
1. A circuit for amplifying a carrier modulated bandpass signal comprising:
- means for developing a constant amplitude cosine signal and a constant amplitude sine signal from an approximation to the frequency of said bandpass signal;
means for projecting said bandpass signal on said developed cosine signal and said developed sine signal to form a cosine projection signal and a sine projection signal, respecitvely;
means for separating said cosine projection signal into first and second constant amplitude phase modulated signals;
means for separating said sine projection signal into third and fourth constant amplitude phase modulated signals;
means for amplifying and combining said first and second constant amplitude signals to develop a first amplified signal;
means for amplifying and combining said third and fourth constant amplitude signals to develop a second amplified signal; and
means for combining said first amplified signal and said second amplified signal to form an amplified replica of said bandpass signal.
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Abstract
Improved interferometric amplification is achieved by separating the input signal in accordance with the signal'"'"'s projection on two orthogonal reference signals, with one of the reference signals capable of following the instantaneous frequency of the input signal. The separated signals are further separated into constant amplitude variable phase signal pairs defining the projected signals, and the constant amplitude signals are amplified and appropriately combined to form a signal that is in an amplified replica of the input signal.
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Citations
10 Claims
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1. A circuit for amplifying a carrier modulated bandpass signal comprising:
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means for developing a constant amplitude cosine signal and a constant amplitude sine signal from an approximation to the frequency of said bandpass signal; means for projecting said bandpass signal on said developed cosine signal and said developed sine signal to form a cosine projection signal and a sine projection signal, respecitvely; means for separating said cosine projection signal into first and second constant amplitude phase modulated signals; means for separating said sine projection signal into third and fourth constant amplitude phase modulated signals; means for amplifying and combining said first and second constant amplitude signals to develop a first amplified signal; means for amplifying and combining said third and fourth constant amplitude signals to develop a second amplified signal; and means for combining said first amplified signal and said second amplified signal to form an amplified replica of said bandpass signal. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A circuit for amplifying a bandpass signal comprising:
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a reference circuit for developing a first reference signal approximately equal to the center frequency of said bandpass signal and for developing a second reference signal orthogonal to said first reference signal; a first amplifying path responsive to said bandpass signal and to said first reference signal for developing an amplified projection of said bandpass signal on said first reference signal; a second amplifying path responsive to said bandpass signal and to said second reference signal for developing an amplified projection of said bandpass signal on said second reference signal; and means for combining said amplified projections, with each of said amplifying paths being of identical construction and including; an amplitude modulator responsive to said bandpass signal and to the applied reference signal; a low-pass filter responsive to said amplitude modulator; a phase modulator for modulating said applied reference signal with an angle equal to the arc cosine of the signal developed by said bandpass filter and for further modulating with the negative of said angle; and means for amplifying said modulated signals.
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10. An interferometric amplifier responsive to an amplitude modulated input signal, developing constant amplitude phase modulated signals that are amplified and passively combined to form an amplitude modulated signal CHARACTERIZED BY:
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circuitry for developing two constant amplitude phase modulated signals whose sum lies along a first reference signal approximating the instantaneous frequency of said input signal and equals the projection of said input signal on said first reference signal; and circuitry for developing two constant amplitude phase modulated signals whose sum lies along a second reference signal orthogonal to said first reference signal and equal to the projection of said input signal on said second reference signal.
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Specification