EP1594274B1

Removal of a common mode voltage in a differential receiver

Abstract

This record has no abstract on file.

EP1594274B1, drawing sheet 1
Sheet 1 of 60

Term

Term ended

Expired 13 July 2020, 6.2 years ago.

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

19 claims: 3 independent, 16 dependent

  1. 1
    A transceiver circuit (1, 3) for bidirectional simultaneous transmission and reception of digital signals over a signal transmission line, the transceiver circuit comprising:a driver (11) configured to output a transmit digital signal onto a signal transmission line;and a receiver (12, 32) configured to receive a receive digital signal from said signal transmission line, wherein the receive digital signal consists of a digital signal transmitted by a driver at an opposite end of the signal transmission line superimposed on the transmit digital signal;a compensation voltage generating circuit (13, 33) configured to generate a compensation voltage based on a data sequence consisting of the present bit and at least one past bit of said transmit digital signal output from said driver (11) and on the phase relationship between said transmit digital signal and said receive digital signal in use to compensate for an interference voltage caused by said driver, and to supply said compensation voltage to said receiver, wherein bidirectional signal transmission is performed by controlling an output level of said compensation voltage generating circuit in accordance with the phase relationship between said transmit digital signal and said receive digital signal, wherein the receiver is arranged to remove from the receive digital signal the interference voltage caused by the driver so that the digital signal transmitted from the driver at the opposite end of the signal transmission line can be correctly discriminated.
  2. 16
    A signal transmission system comprising a first transceiver circuit (1), a second transceiver circuit (3), and a signal transmission line connecting between said first and second transceiver circuits, wherein at least one of said first and second transceiver circuits is a transceiver circuit according to any of claims 1 to 15.
  3. 17
    A signal transmission method for bidirectional simultaneous transmission and reception of digital signals over a signal transmission line, wherein a driver (11) outputs a transmit digital signal onto a signal transmission line and a receiver (12, 32) receives a receive digital signal from said signal transmission line, wherein the receive digital signal consists of a digital signal transmitted by a driver at an opposite end of the signal transmission line superimposed on the transmit digital signal, the method comprising generating a compensation voltage based on a data sequence consisting of the present bit and at least one past bit of said transmit digital signal output from said driver (11) and on the phase relationship between said transmit digital signal and said receiver digital signal to compensate for an interference voltage caused by said driver and supplying the compensation voltage to said receiver, wherein bidirectional signal transmission is performed by controlling the level of said compensation voltage in accordance with the phase relationship between said transmit digital signal and said receive digital signal, wherein the receiver removes from the receive digital signal the interference voltage caused by the driver so that the digital signal transmitted from the driver at the opposite end of the signal transmission line can be correctly discriminated.