EP0719014A2

Modulation circuit used in an IC-card reading/writing apparatus

Abstract

A modulator (240) used in an IC card reader/writer (200) includes a phase variation detector (347) for detecting a varying point of the phase of a modulated signal, a signal processing circuit (340) for modifying the modulated signal for a half period at the phase varying point to have a frequency and amplitude twice those of the modulated signal, a first Miller integrator (350) for integrating the modified signal to produce a triangular wave signal, and a second Miller integrator (360) for integrating the triangular wave signal to produce a sinusoidal wave signal having a continuous phase. A demodulator (250) used in the reader/writer (200) includes a sync control circuit which controls a carrier sync signal (CSS) generation circuit (570) thereby to control the phase of a carrier sync signal in response to the discrimination as to whether the carrier sync signal (CSS) is in lead-phase or lag-phase relative to the signal modulated based on binary phase shift keying (BPSK). A control data signal and non-modulated carrier wave sent from the reader/writer (200) to the IC card (100) are converted into power for use by the IC card.

EP0719014A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 23 August 2015, 11.1 years ago.

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

10 claims: 6 independent, 4 dependent

  1. 1
    A modulation circuit for use in an IC card reading/writing apparatus comprising:a differential encoder (310) for performing differential encoding for a signal to be sent to an IC card;a modulator (330) for implementing the binary phase shift keying modulation based on the exclusive logical sum operation on the encoded signal and a pulse signal having a carrier frequency;a phase change detector (347) for detecting a change point of the phase of the modulated signal;a signal processing circuit (340) for modifying the modulated signal for a half cycle at the phase change point to have a frequency and an amplitude twice those of the modulated signal;a first Miller integration circuit (350) which integrates the modified signal to produce a triangular wave signal;and a second Miller integration circuit (360) which integrates the triangular wave signal provided by said first Miller integration circuit (350) to produce a sinusoidal wave signal having a continuous phase.
  2. 4
    A demodulation circuit for use in an IC card reading/writing apparatus, said circuit having a carrier synchronizer (420) and a bit synchronizer (450), said carrier synchronizer (420) comprising:a carrier sync signal generation circuit (570) for generating a carrier sync signal (CSS);an exclusive logical sum circuit (410) which receives a signal modulated by binary phase shift keying sent from an IC card and the carrier sync signal (CSS) provided by said carrier sync signal generation circuit (570);a sync gate counter (510) which counts up or count down clock pulses of said reading/writing apparatus depending on the output signal of said exclusive logical sum circuit (410);a majority discriminator (520) which determines, while said sync gate counter (510) performs a count operation during a half cycle of the carrier sync signal (CSS), the majority level of the signal modulated by binary phase shift keying thereby to detect whether the carrier sync signal (CSS) and the BPSK-modulated signal are in common phase or opposite phase;a former/latter halves comparator (550) which compares the duration of a pulse of the signal modulated by binary phase shift keying between the former half and latter half of a half period of the carrier sync signal (CSS);and a sync control circuit (560) which controls said carrier sync signal generation circuit (570) thereby to control the phase of the carrier sync signal in response to the detection as to whether the carrier sync signal is in lead-phase or lag-phase relative to the signal modulated by binary phase shift keying based on the detection result of said majority discriminator (520) and the comparison result of said former/latter comparator (550).
  3. 6
    An antenna coupling circuit for use in an IC card reading/writing apparatus for delivering a signal received by an antenna (210) of said apparatus to a receiver of said apparatus and feeding a signal from a transmitter of said apparatus to said antenna (210), said antenna coupling circuit comprising:a coupling transformer (T) having an antenna coil (603) connected to said antenna (210), a receiving coil (605), and a sending coil (604) connected to said transmitter;an operational amplifier (606) having one input terminal connected to said receiving coil (605) of said coupling transformer (T) and an output terminal connected to said receiver;and resistors (609, 610) which divide an output voltage of said transmitter and deliver the divided voltage to another input of said operational amplifier (606), said divided voltage having such an amplitude as to offset on said operational amplifier (606) a transmitter output voltage induced on said receiving coil (605) of said coupling transformer.
  4. 7
    An antenna coupling circuit for use in an IC card reading/writing apparatus for delivering a signal received by an antenna (210) of said apparatus to a receiver of said apparatus and feeding a signal from a transmitter of said apparatus to said antenna (210), said antenna coupling circuit comprising:a coupling transformer (T) having an antenna coil (603) connected to said antenna, and a transmitting/receiving coil (612) connected to said transmitter;an operational amplifier (606) having one input terminal connected to said receiving coil (612) of said coupling transformer (T) and an output terminal connected to said receiver;and resistors (609, 610) which divide an output voltage of said transmitter and delivers the divided voltage to another input of said operational amplifier (606), said divided voltage having such an amplitude as to offset on said operational amplifier (606) a transmitter output voltage induced on said transmitting/receiving coil (612) of said coupling transformer.
  5. 9
    A method of supplying power from an IC card reading/writing apparatus to an IC card, said method comprising the steps of:transmitting a control data signal from said reading/writing apparatus (200);transmitting a non-modulated carrier wave for power supply from said reading/writing apparatus (200) to said IC card (100) subsequently to the transmitting of said control data signal;receiving the control data signal and the non-modulated carrier wave by said IC card (100), and converting continuously the control data signal and the carrier wave into power to be used by said IC card (100);and transmitting a data signal from said IC card (100) to said reading/writing apparatus (200) during a period of receiving the carrier wave following the reception of the control data signal transmitted from said reading/writing apparatus (200).
  6. 10
    A method of supplying power from an IC card reading/writing apparatus to an IC card comprising:a first step of transmitting a control data signal from said reading/writing apparatus (200) to said IC card (100);a second step, on the part of said IC card (100), of receiving the control data signal and converting the signal into power to be used by said IC card;a third step of transmitting a data signal from said IC card (100) to said reading/writing apparatus (200);a fourth step of transmitting a non-modulated carrier wave for power supply from said reading/writing apparatus (200) to said IC card (100);a fifth step of receiving the non-modulated carrier wave and converting the carrier wave into power to be used by said IC card (100);and a sixth step of transmitting a data signal from said IC card (100) to said reading/writing apparatus (200);and a seventh step of repeating said fourth through sixth steps.