EP1522151B1

System and method for a direct conversion multi-carrier processor

Abstract

This record has no abstract on file.

EP1522151B1, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 5 June 2023, 3.3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

5 claims: 2 independent, 3 dependent

  1. 1
    A multi-carrier direct conversion receiver (130) for receiving and processing a multi-carrier radio frequency, RF, signal, comprising:an antenna (131) for receiving the multi-carrier RF signal;an RF amplifier (133) configured to interface between the antenna (131) and a demodulator (144), and to amplify the received multi-carrier RF signal;the demodulator (144) coupled to the RF amplifier (133) and configured to convert the multi-carrier RF signal into in-phase, I, and quadrature, Q, baseband signals;first and second analog to digital converters (161, 162), the first converter (161) configured to convert the I baseband signal to a digital I signal and the second converter (162) configured to convert the Q baseband signal to a digital Q signal;and a direct conversion circuit (171), connected to the analog to digital converters (161, 162), for converting the digital I and Q signals into a plurality of channel signals (198-202);characterised by : first and second baseband stages, each stage comprising a low pass filter (145, 146) and an adjustable gain amplifier (151, 152), the first stage configured to process the I baseband signal and the second stage configured to process the Q baseband signal, wherein the bandwidth of each of the low pass filters (145, 146) is adjustable;and a bandwidth control circuit (147) for controlling the bandwidth of the low pass filters.
  2. 3
    A multi-carrier direct modulation transmitter (230) for processing and transmitting a plurality of channel signals (231-234), the transmitter comprising:a digital up converter (247), configured to receive said plurality of channel signals and to output a digital in-phase, I, signal corresponding to said plurality of channel signals (231, 232, 233, 234) and a digital quadrature, Q, signal corresponding to said plurality of channel signals (231, 232, 233, 234);first and second digital-to-analog converters (251, 252), the first converter (251) configured to convert said digital I signal to an I analog signal at a baseband frequency and the second converter (252) configured to convert said digital Q signal to a Q analog signal at a baseband frequency;a modulator (260) configured to modulate said analog baseband digital I and Q signals to provide a combined radio frequency, RF, signal;and an antenna (270) configured to transmit said RF signal characterized by : first and second low pass filters (253, 254), said first filter (253) coupled to said first digital-to-analog converter (251) and configured to filter said analog I signal and said second filter (254) coupled to said second digital-to-analog converter (252) and configured to filter said analog Q signal, wherein the bandwidth of each of the low pass filters (253, 254) is adjustable;a bandwidth control circuit (255) configured to control the frequency response of the transmitter by controlling the bandwidth of said low pass filters (253, 254;.