EP1524775A1

Radio-frequency receiver and integrated circuit for use in receiver

Abstract

A radio-frequency (RF) receiver includes an input terminal for receiving RF signals in a first frequency band and a second frequency band lower than the first frequency band, a first tuned filter allowing a signal of a passing frequency in the RF signal in the first frequency band to pass through the filter, a local oscillator, a frequency divider for frequency-dividing a signal output from the local oscillator, a first mixer operable to convert the signal output from the first tuned filter into a signal of an intermediate frequency, a second tuned filter allowing a signal of a passing frequency of the RF signal in the second frequency band to pass through the filter, a second mixer operable to convert the signal output from the second tuned filter into a signal of the intermediate frequency, and a phase-locked-loop (PLL) circuit operable to control an oscillation frequency of the local oscillator and the passing frequencies of the first tuned filter and the second tuned filter. The signal output from the frequency divider contains a first output signal and a second output signal different in phase from the first output signal. The second mixer includes a third mixer operable to mix the signal output from the second tuned filter with the first output signal of the frequency divider, a first phase shifter operable to shift a signal output from the third mixer, and a fourth mixer operable to mix the signal output from the second tuned filter with the second output signal of the frequency divider. A signal output from the fourth mixer and a signal output from the first phase shifter are output from an output terminal. The RF receiver reduces image interfering components of the second frequency band which may inevitably cause image interference.

EP1524775A1, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 8 October 2024, 2 years ago.

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30 claims: 6 independent, 24 dependent

  1. 1
    A radio-frequency (RF) receiver comprising:an input terminal for receiving an RF signal in a first frequency band and an RF signal in a second frequency band lower than the first frequency band;a first tuned filter connected with the input terminal and allowing a signal of a passing frequency in the RF signal in the first frequency band to pass through the first tuned filter;a local oscillator;a frequency divider for frequency-dividing a signal output from the local oscillator;a first mixer operable to mix a signal output from the first tuned filter with the signal output from the local oscillator to convert the signal output from the first tuned filter into a signal of an intermediate frequency;a second tuned filter connected with the input terminal and allowing a signal of a passing frequency of the RF signal in the second frequency band to pass through the second tuned filter;a second mixer operable to mix a signal output from the second tuned filter with a signal output from the frequency divider to convert the signal output from the second tuned filter into a signal of the intermediate frequency;an output terminal for outputting the signals of the intermediate frequency output from the first mixer and the second mixer;and a phase-locked-loop (PLL) circuit operable to control an oscillation frequency of the local oscillator, the passing frequency of the first tuned filter, and the passing frequency of the second tuned filter,    wherein the signal output from the frequency divider contains a first output signal and a second output signal different in phase by 90 degrees from the first output signal, the first and second output signal being produced by frequency-dividing the signal output from the local oscillator,    wherein the second mixer includes a third mixer operable to mix the signal output from the second tuned filter with the first output signal of the frequency divider, a first phase shifter operable to shift a signal output from the third mixer in phase by 90 degrees, and a fourth mixer operable to mix the signal output from the second tuned filter with the second output signal of the frequency divider, and    wherein a signal output from the fourth mixer and a signal output from the first phase shifter are output from the output terminal.
  2. 16
    A radio-frequency (RF) receiver comprising:an input terminal for receiving an RF signal in a first frequency band and an RF signal in the a second frequency band lower than the first frequency band;a first tuned filter connected with the input terminal and allowing a signal of a passing frequency in the RF signal in the first frequency band to pass through the first tuned filter;a local oscillator;a frequency divider for frequency-dividing a signal output from the local oscillator;a first mixer operable to mix a signal output from the first tuned filter with the signal output from the local oscillator to convert the signal output from the first tuned filter into a signal of an intermediate frequency;a second tuned filter connected with the input terminal and allowing a signal of a passing frequency in the RF signal in the second frequency band to pass through the second tuned filter;a second mixer operable to mix a signal output from the second tuned filter with a signal output from the frequency divider to convert the signal output from the second tuned filter into a signal of an intermediate frequency;an output terminal for outputting the signals of the intermediate frequency from the first mixer and the second mixer;and a phase-locked-loop (PLL) circuit operable to control an oscillation frequency of the local oscillator, the passing frequency of the first tuned filter, and the passing frequency of the second tuned filter,    wherein the signal output from the frequency divider contains at least three signals which are different in phase from each other and are generated by frequency-dividing the signal output from the local oscillator, and    wherein the second mixer comprises a harmonic rejection mixer including at least three mixers, said at least three mixers receiving said at least three signals generated by the frequency divider, respectively.
  3. 20
    A radio-frequency (RF) receiver comprising:an input terminal for receiving an RF signal in a first frequency band and an RF signal in a second frequency band lower than the first frequency band;a tuned filter connected with the input terminal and allowing the RF signals to pass through the tuned filter;a local oscillator;a frequency divider for frequency-dividing a signal output from the local oscillator;a first mixer operable to mix the RF signal in the first frequency band output from the tuned filter with a signal output from the frequency divider to convert the RF signal in the first frequency band output from the tuned filter into a signal of an intermediate frequency;a second mixer operable to mix the RF signal in the second frequency band output from the tuned filter with the signal output from the frequency divider to convert the RF signal in the second frequency band output from the tuned filter into a signal of the intermediate frequency;an output terminal for outputting the signals of the intermediate frequency output from the first mixer and the second mixer;a phase-locked-loop (PLL) circuit operable to control an oscillation frequency of the local oscillator and a passing frequency of the tuned filter;and a switch for switching a dividing ratio of the frequency divider in response to a frequency band to be received,    wherein the signal output from the frequency divider contains a first output signal and a second output signal different in phase by 90 degrees from the first output signal, the first and second output signal being produced by frequency dividing the signal output from the local oscillator,    wherein the first mixer includes a third mixer operable to mix the RF signal in the first frequency band output from the tuned filter with the first output signal of the frequency divider, a first phase shifter for shifting a signal output from of the third mixer in phase by 90 degrees, and a fourth mixer operable to mix the RF signal in the first frequency band output from the tuned filter with the second output signal of the frequency divider,    wherein the second mixer includes a fifth mixer operable to mix the RF signal in the second frequency band output from the tuned filter and the first output signal of the frequency divider, a second phase shifter for shifting a signal output from of the fifth mixer in phase by 90 degrees, and a sixth mixer operable to mix the RF signal in the second frequency band output from the tuned filter with the second output signal of the frequency divider, and    wherein signals output from the fourth mixer, the first phase shifter, the sixth mixer, and the second mixer are output from the output terminal.
  4. 23
    A radio-frequency (RF) receiver comprising:an input terminal for receiving an RF signal in a first frequency band and an RF signal in a second frequency band lower than the first frequency band;a first tuned filter connected with the input terminal and allowing a signal of a passing frequency in the RF signal in the first frequency band to pass through the first tuned filter;a local oscillator;a frequency divider for frequency dividing a signal output from the local oscillator;a first mixer for mixing a signal output from the first tuned filter with the signal output from the local oscillator to convert the signal output from the first tuned filter into a signal of an intermediate frequency;a second tuned filter connected with the input terminal and allowing a signal of a passing frequency in the RF signal in the second frequency band to pass through the second tuned filter;a second mixer for mixing a signal output from the second tuned filter with the signal output from the frequency divider to convert the signal output from the second tuned filter into a signal of the intermediate frequency;an output terminal for outputting the signals of the intermediate frequency output from the first mixer and the second mixer;and a phase-locked-loop (PLL) circuit operable to control an oscillation frequency of the local oscillator and the passing frequencies of the first tuned filter and the second tuned filter,    wherein the first mixer comprises an image rejection mixer including a phase shifter and two mixers, and    wherein the second mixer comprises a harmonic rejection mixer including a phase shifter and at least three mixers.
  5. 26
    An integrated circuit adapted to be used in a radio-frequency (RF) receiver for receiving an RF signal in a first frequency band and an RF signal in a second frequency band lower than the first frequency band, said integrated circuit comprising:a package;a local oscillator accommodated in the package;a frequency divider accommodated in the package, for frequency-dividing a signal output from the local oscillator;a first mixer accommodated in the package and being operable to mix a signal in the first frequency band with the signal output from the local oscillator to convert the signal in the first frequency band into a signal of an intermediate frequency;a second mixer accommodated in the package and being operable to mix a signal in the second frequency band with the signal output from the frequency divider to convert the signal in the second frequency band into a signal of the intermediate frequency, an output terminal for outputting the signals of the intermediate frequency output from the first mixer and the second mixer, and a phase-locked-loop (PLL) circuit accommodated in the package and being operable to control an oscillation frequency of the local oscillator,    wherein the signal output from the frequency divider contains a first output signal and a second output signal different in phase by 90 degrees from the first output signal, the first and second output signals being produced by frequency-dividing the signal output from the local oscillator,    wherein the second mixer includes a third mixer operable to mix a signal output from a tuned filter with the first output signal of the frequency divider, a first phase shifter for shifting a signal output from the third mixer I phase by 90 degrees, and a fourth mixer operable to mix the signal output from the tuned filter with the second output signal of the frequency divider, and    wherein signals output from the fourth mixer and the first phase shifter are output from the output terminal.
  6. 30
    An integrated circuit adapted to be used in a radio-frequency (RF) receiver for receiving an RF signal in a first frequency band and an RF signal in a second frequency band lower than the first frequency band, said integrated circuit comprising:a package;a local oscillator accommodated in the package;a frequency divider accommodated in the package, for frequency-dividing a signal output from the local oscillator;a first mixer accommodated in the package and being operable to mix a signal in the first frequency band with the signal output from the local oscillator to convert the signal in the first frequency band into a signal of an intermediate frequency;a second mixer accommodated in the package and being operable to mix a signal in the second frequency band with a signal output from the frequency divider to convert the signal in the second frequency band into a signal of the intermediate frequency;an output terminal for output the signals of the intermediate frequency from the first mixer and the second mixer;and a phase-locked-loop (PLL) circuit accommodated in the package and being operable to control an oscillation frequency of the local oscillator;wherein the first mixer comprises an image rejection mixer including a phase shifter and a plurality of mixers, and    wherein the second mixer comprises a harmonic rejection mixer including at least two phase shifter and at least three mixers.