EP2020756A2

Multiple branch primary synchronisation detection module

Abstract

A wireless terminal is operable to receive a Wideband Code Division Multiple Access (WCDMA) signal from a base station and includes clock circuitry, a wireless interface, and a Primary Synchronization (PSYNC) module (708). The clock circuitry generates a wireless terminal clock using a wireless terminal oscillator. The wireless interface receives the WCDMA signal, which is produced by the base station using a base station clock that is produced using a base station oscillator that is more accurate than the wireless terminal oscillator. The PSYNC module includes a plurality of PSYNC correlation branches (808A-808N). Each PSYNC correlation branch phase rotates the WCDMA signal based upon a respective frequency offset (806), correlates the phase rotated WCDMA signal with a Primary Synchronization Channel (PSCH) code over a plurality of sampling positions (808), and produces PSYNC correlation energies based upon the correlations for each of the plurality of sampling positions (810).

EP2020756A2, drawing sheet 1
Sheet 1 of 30

Term

1.8 yearsto projected expiry

Projected expiry 30 July 2028, counted from filing; an application has no term until it is granted.

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

10 claims: 3 independent, 7 dependent

  1. 1
    A wireless terminal operable to receive a Wideband Code Division Multiple Access (WCDMA) signal from a base station, the wireless terminal comprising:clock circuitry operable to generate a wireless terminal clock using a wireless terminal oscillator;a wireless interface operable to receive the WCDMA signal, the WCDMA signal produced by the base station using a base station clock that is produced using a base station oscillator that is more accurate than the wireless terminal oscillator;and a Primary Synchronization (PSYNC) module coupled to the wireless interface and to the clock circuitry, the PSYNC module comprising a plurality of PSYNC correlation branches, each PSYNC correlation branch operable to: phase rotate the WCDMA signal based upon a respective frequency offset;correlate the phase rotated WCDMA signal with a Primary Synchronization Channel (PSCH) code over a plurality of sampling positions;and produce PSYNC correlation energies based upon the correlations for each of the plurality of sampling positions.
  2. 7
    A method for operating a wireless terminal to receive a Wideband Code Division Multiple Access (WCDMA) signal from a base station, the method comprising:generating a wireless terminal clock using a wireless terminal oscillator;receiving the WCDMA signal, the WCDMA signal produced by the base station using a base station clock that is produced using a base station oscillator that is more accurate than the wireless terminal oscillator;and for each of a plurality of Primary Synchronization (PSYNC) correlation branches: phase rotating the WCDMA signal based upon a respective frequency offset;correlating the phase rotated WCDMA signal with a Primary Synchronization Channel (PSCH) code over a plurality of positions;and producing PSYNC correlation energies based upon the correlations for each of the plurality of positions.
  3. 10
    A method for operating a wireless terminal to receive a broadcast signal from a base station, the method comprising:generating a wireless terminal clock using a wireless terminal oscillator;receiving the broadcast signal, the broadcast signal produced by the base station using a base station clock that is produced using a base station oscillator that is more accurate than the wireless terminal oscillator;and for each of a plurality of Primary Synchronization (PSYNC) correlation branches: phase rotating the broadcast signal based upon a respective frequency offset;correlating the phase rotated broadcast signal with a synchronization code over a plurality of positions;and producing PSYNC correlation energies based upon the correlations for each of the plurality of positions.