Nova Patents
EP1750436A1

Receiving device

Abstract

To lower the central frequency of a signal to be processed in the demodulating part without changing the intermediate frequency in a tuner, an image canceling mixer 3 mixes a carrier frequency signal of a broadcast wave received through an antenna 1 with a local oscillation signal thereby to convert a carrier frequency of the broadcast wave to an intermediate frequency. After an intermediate frequency signal produced in the image canceling mixer 3 is converted to a digital signal in the A/D converter 10, the intermediate frequency of the broadcast signal subjected to the conversion to a digital signal is converted to a lower frequency in the frequency conversion IQ separating part 11, and the OFDM demodulating part 15 performs an OFDM demodulation process.

EP1750436A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 3 August 2026, 0.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

5 claims: 2 independent, 3 dependent

  1. 1
    A receiving device, comprising:an antenna for receiving a broadcast wave;a tuner for mixing a carrier frequency signal of the broadcast wave received through the antenna with a local oscillation signal thereby to convert a carrier frequency of the broadcast wave to an intermediate frequency;an analog/digital converter for converting a broadcast signal subjected to the conversion to the intermediate frequency to a digital signal;a frequency-converting part for converting the intermediate frequency of the broadcast signal subjected to the conversion to the digital signal to a lower frequency;and a demodulating part for performing a demodulation process of the broadcast signal subjected to the frequency conversion by the frequency-converting part.
  2. 2
    The receiving device of Claim 1, wherein the tuner includes:an oscillator for producing a SIN wave corresponding to a local oscillation frequency;a COS wave-producing unit for shifting a phase of the SIN wave by 90° thereby to produce a COS wave from the SIN wave;a first mixing unit for mixing a carrier frequency signal of a broadcast wave received through the antenna with the SIN wave thereby to convert a carrier frequency of the broadcast wave to an intermediate frequency;a second mixing unit for mixing the carrier frequency signal of the broadcast wave received through the antenna with the COS wave thereby to convert the carrier frequency of the broadcast wave to an intermediate frequency;a phase shifter for shifting a phase of an intermediate frequency signal produced in the second mixing unit by - 90° with respect to a phase of an intermediate frequency signal produced in the first mixing unit;and an adder for adding the intermediate frequency signal produced in the first mixing unit and the intermediate frequency signal shifted in phase in the phase shifter to each other.
  3. 3
    The receiving device of Claim 1 or 2, wherein the intermediate frequency obtained in the tuner is made constant regardless of a received segment number, and the intermediate frequency of the broadcast signal subjected to the conversion to the digital signal is changed according to the received segment number.
  4. 4
    The receiving device of Claim 3, wherein the intermediate frequency obtained in the tuner is (64/63)×4MHz, and a central frequency of the broadcast signal subjected to the conversion to the digital signal is (64/63)MHz in the case of 3-segment receiving, and is (64/63)×0.5MHz in the case of 1-segment receiving.
  5. 5
    The receiving device of any one of Claims 1 to 4, wherein the frequency-converting part includes a numerical controlled oscillator for changing a readout position on a table with a SIN signal waveform or COS signal waveform registered therein on a time axis thereby to change the frequency.