IL194444A

Method and system for information transmission

Abstract

This record has no abstract on file.

IL194444A, drawing sheet 1
Sheet 1 of 8

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

30 claims: 13 independent, 17 dependent

  1. 1
    A method for transmitting data between an apparatus and a write-and/or read module, wherein the data, using the spread spectrum method, is transmitted from the portable apparatus as an ultra-wideband signal, capacitively and/or resistively to a writeand/or read module.
  2. 4
    A method according to one of the preceding claims, characterised in that a maximum amplitude of the ultra-broadband signal is 5V or less.
  3. 5
    A method according to one of the preceding claims, characterised in that the data to be transmitted is first modulated with a method of digital data modulation, and subsequently spread spectrum modulated.
  4. 9
    A method according to one of the preceding claims, characterised in that the signal received from the write- and/or read module is sampled, by which means a sequence of sampling values is produced, and that part-sequences of the sequence of sampling values are correlated , with a sequence of values which represent the stored chipping code.
  5. 13
    A method according to one of the claims 9 to 12, characterised in that the partsequence or the part-sequences of the sequence of sampling values is/are correlated in parallel with different sequences of values.
  6. 16
    A method according to one of the claims 5 to 8, and one of the claims 9 to 15, characterised in that the correlation of the received signal with the stored chipping code, with an inverse operation of the digital data modulation method, is used for synchronising.
  7. 18
    A method according to one of the claims 9 to 17, characterised in that for the timing acquisition, at least two criteria are applied to the results of the correlation computations, of which a first criterion contains a comparison of the absolute value of the results to a noise-level, and a second criterion a comparison of the temporal distance of an absolute value maximum to a last absolute value maximum, to a bit length. . A method according to one of the claims 9 to 18, characterised in that a sampling frequency is adapted according to the result of the correlation computation, by which means a tuning and/or a fme tuning is achieved.
  8. 19
    20 A method according to one of the preceding claims, characterised in that a center frequency of the ultra-broadband signal is not larger than 2 MHz.
  9. 20
    21. A method according to one of the preceding claims, characterised in that the transmitter, in a continuously repeated manner, sends out the data in a manner such that the transfer of the data word begins afresh directly after the end of the transfer of a data word.
  10. 21
    22. A method according to one of the preceding claims, characterised in that the data comprises at least one data bit for a data consistency check and/or for an error correction.
  11. 23
    24. A method according to one of the preceding claims, characterised in that the data has a prior known sequence for the synchronisation.
  12. 24
    25. A method according to one of the claims 1 to 23, characterised in that the data is transmitted in a cyclically and/or anti-cyclically coded manner.
  13. 25
    26. A method according to one of the preceding claims, characterised in that the length of the chipping code corresponds to an integer multiple of a data bit length, and that the spread spectrum modulation is effected synchronously with a data bit sequence representing the data.
  14. 26
    27. A method according to one of the preceding claims, characterised in that the ultra-broadband signal is transmitted via the body of a user, or via direct, capacitive and/or resistive coupling between the transmitter and receiver, to the receiver.
  15. 27
    28. A system for transmitting data, comprising at least one apparatus and at least one write- and/or read module, wherein the apparatus comprises two electrodes 2p£) and a signal generator (203), by way of which a time-dependent electrical voltage may be applied between the two electrodes (2(Π, 202), and wherein the write- and/or read module comprises a detector (213) with which an electrical voltage or an electrical current may be detected between a first and a second receiver electrode (2Π,2Τ2), as well as a data acquisition- and decoding unit (213־) for determining data from a signal detected between the first and the second receiver electrode (24־T, 242־), characterised in that the signal generator (203) is programmed and/or activated such that an ultra-broadband signal may be produced by it, by way of which data is represented using the spread spectrum method, and that the data acquisition- and decoding unit (2tS) comprises means for recovering data from the ultra-broadband signal.
  16. 28
    29. An apparatus for transferring data to a write- and/or read module, comprising two electrodes (20Ί, 202) and a signal generator (203), by way of which a time-dependent electrical signal may be applied between the two electrodes (201,-202), characterised in that the signal generator (£03) is programmed and/or activated such that an ultrabroadband signal may be produced by it, by way of which data is represented using the spread spectrum method.
  17. 29
    30. A write- and/or read module for receiving data, which may be transmitted capacitively and/or resistively by an apparatus, comprising a detector (243) with which an electrical voltage or an electrical current may be detected between a first and a second receiver electrode (24^,(242), as well as a data acquisition- and decoding unit (215־) for determining data from a signal detected between the first and the second receiver electrode (24*1^212), characterised in that the data acquisition- and decoding unit (215) comprises means for recovering the data from an ultra-broadband signal, by way of which data is represented using the spread spectrum method.
  18. 30
    31. A write- and/or read module according to claim 30, characterised by a wake-up circuit, by way of which the data acquisition- and decoding unit (2T5) may be activated, as soon as noise- and/or interference level has reached a certain value, and/or as soon as the arrival of a signal is ascertained.
Independent claims18