METHOD OF CONTROLLING FREQUENCY VARIABLE FILTER CIRCUIT AND RECEIVING APPARATUS

PROBLEM TO BE SOLVED: To provide a method of controlling a frequency variable filter circuit, calculating a capacitor bank capacitance value corresponding to the frequency of reception signals, by simple operation processing, and also to provide a receiving apparatus. SOLUTION: For the center freque...

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description PROBLEM TO BE SOLVED: To provide a method of controlling a frequency variable filter circuit, calculating a capacitor bank capacitance value corresponding to the frequency of reception signals, by simple operation processing, and also to provide a receiving apparatus. SOLUTION: For the center frequency of a frequency variable filter comprising a resonator circuit of an inductor L1 and a variable capacitance means comprising a capacitor bank 11, the capacitance value Y of the capacitor bank is indicated by using equation (A): Y=A×(α-X)n+B×(α-X)(n-1)×C(α-X)(n-2)+...+β (in the equation (A), X indicates specified frequency data, Y indicates the capacitor bank capacitance value, α indicates an offset frequency coefficient, β indicates a correction coefficient for correcting frequency deviation to the upper limit or lower limit frequency of a frequency cover range, A, B, C, ... indicate a correction coefficient for correcting the frequency deviation of the center frequency to the specified frequency, and n indicates a positive integer ≥2, respectively) for the specified frequency, and by determining the coefficients α, β, A, B, C, ..., the center frequency of the frequency variable filter circuit is adjusted. COPYRIGHT: (C)2010,JPO&INPIT
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SOLUTION: For the center frequency of a frequency variable filter comprising a resonator circuit of an inductor L1 and a variable capacitance means comprising a capacitor bank 11, the capacitance value Y of the capacitor bank is indicated by using equation (A): Y=A×(α-X)n+B×(α-X)(n-1)×C(α-X)(n-2)+...+β (in the equation (A), X indicates specified frequency data, Y indicates the capacitor bank capacitance value, α indicates an offset frequency coefficient, β indicates a correction coefficient for correcting frequency deviation to the upper limit or lower limit frequency of a frequency cover range, A, B, C, ... indicate a correction coefficient for correcting the frequency deviation of the center frequency to the specified frequency, and n indicates a positive integer ≥2, respectively) for the specified frequency, and by determining the coefficients α, β, A, B, C, ..., the center frequency of the frequency variable filter circuit is adjusted. 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SOLUTION: For the center frequency of a frequency variable filter comprising a resonator circuit of an inductor L1 and a variable capacitance means comprising a capacitor bank 11, the capacitance value Y of the capacitor bank is indicated by using equation (A): Y=A×(α-X)n+B×(α-X)(n-1)×C(α-X)(n-2)+...+β (in the equation (A), X indicates specified frequency data, Y indicates the capacitor bank capacitance value, α indicates an offset frequency coefficient, β indicates a correction coefficient for correcting frequency deviation to the upper limit or lower limit frequency of a frequency cover range, A, B, C, ... indicate a correction coefficient for correcting the frequency deviation of the center frequency to the specified frequency, and n indicates a positive integer ≥2, respectively) for the specified frequency, and by determining the coefficients α, β, A, B, C, ..., the center frequency of the frequency variable filter circuit is adjusted. 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SOLUTION: For the center frequency of a frequency variable filter comprising a resonator circuit of an inductor L1 and a variable capacitance means comprising a capacitor bank 11, the capacitance value Y of the capacitor bank is indicated by using equation (A): Y=A×(α-X)n+B×(α-X)(n-1)×C(α-X)(n-2)+...+β (in the equation (A), X indicates specified frequency data, Y indicates the capacitor bank capacitance value, α indicates an offset frequency coefficient, β indicates a correction coefficient for correcting frequency deviation to the upper limit or lower limit frequency of a frequency cover range, A, B, C, ... indicate a correction coefficient for correcting the frequency deviation of the center frequency to the specified frequency, and n indicates a positive integer ≥2, respectively) for the specified frequency, and by determining the coefficients α, β, A, B, C, ..., the center frequency of the frequency variable filter circuit is adjusted. 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subjects BASIC ELECTRONIC CIRCUITRY
ELECTRIC COMMUNICATION TECHNIQUE
ELECTRICITY
IMPEDANCE NETWORKS, e.g. RESONANT CIRCUITS
PICTORIAL COMMUNICATION, e.g. TELEVISION
RESONATORS
SELECTING RESONANT CIRCUITS
TUNING RESONANT CIRCUITS
title METHOD OF CONTROLLING FREQUENCY VARIABLE FILTER CIRCUIT AND RECEIVING APPARATUS
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