Nova Patents
IL76617A

Modem for telephone system

Abstract

This record has no abstract on file.

IL76617A, drawing sheet 1
Sheet 1 of 5

Term

No projected expiry on record.

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

30 claims: 4 independent, 26 dependent

  1. 1
    CLAIMS:1. A modem comprising a multiple phase modulator and a multiple phase demodulator;said modulator being adapted to convert a digitized bit stream, wherein each given number of successive bits defines a symbol, into a phase modulated signal, and comprising: means for phase modulating each symbol;a digitally implemented finite-duration impulseresponse filter for digitally filtering each phase modulated symbol;and a digital-to-analog converter for converting the filtered signal to an analog signal;and said demodulator comprising: a steady-state signal generating means for generating a sine wave signal alternately toggled between two quadratic states;a multiplying means for combining said steady-state signal with a multiple phase modulator signal;an analog-to-digital converter for converting the resultant signal to digital form;means including a digital memory means to conform the resultant signal to signals of predetermined frequencies;and means to recover the digital information in an original signal, thereby producing a digital bit stream as an output.
  2. 2
    The modem of Claim 1, wherein the output of the modulator is coupled to the input of the demodulator by a circuit including at least one analog filter, and wherein said demodulator includes means to cause said demodulator to compensate for changes in said analog filter.
  3. 3
    The modem of Claim 1, wherein there is provided means to cause the modulator to transmit a variable duration of lack of signal presence periodically and wherein there are means to cause said demodulator to provide an output identifying the various input signals.
  4. 4
    A multiple phase modulator for use in a modem according to Claim 1 for converting a digitized bit stream, wherein each given number of successive bits defines a symbol, into a phase modulated signal, comprising:means for phase modulating each symbol;a digitally implemented finite-duration impulseresponse filter for digitally filtering each phase modulated symbol;and a digital-to-analog converter for converting the filtered signal to an analog signal.
  5. 5
    The modulator of Claim 4, further comprising a bandpass filter to separate desired from undesired signals.
  6. 6
    The modulator of Claim 5, further comprising an up converter to increase the frequency of the filtered signal.
  7. 7
    The modulator of Claim 4, further comprising means to provide a gray-code to each symbol.
  8. 8
    A multiple phase demodulator for use in a modem according to Claim 1, said demodulator comprising:a steady-state signal generating means for generating a sine wave signal alternately toggled between two quadratic states;a multiplying means for combining said steady-state signal with a multiple phase modulator signal;an analog-to-digital converter for converting the resultant signal to digital form;means including a digital memory means to conform the resultant signal to signals of predetermined frequencies;and means to recover the digital information in an original signal, thereby producing a digital bit stream as output.
  9. 9
    The demodulator of Claim 8, further comprising an input filter.
  10. 10
    The demodulator of Claim 8, wherein there Is provided means that compensates for time delays in the reception of different signals.
  11. 11
    The demodulator of Claim 8, wherein there is provided means to extract control information from received signals.
  12. 12
    The demodulator of Claim 8, wherein there is provided means for extracting timing information from received signals.
  13. 13
    The demodulator of Claim 8, wherein there is provided means to determine which signal of a sequence of signals is first received.
  14. 14
    The demodulator of Claim 8, wherein there is provided means to determine frame synchronization.
  15. 15
    A system for converting a bit stream, wherein each given number of successive bits defines a symbol, into a phase modulated intermediate frequency (IF) signal at a predetermined IF frequency for use in a modulator according to Claim 4, said system comprising:means for phase modulating each symbol;means for digitally filtering each phase modulated symbol to provide a filtered signal that, when converted to an analog signal, provides a modulation signal of a modulation frequency that is centered about a predetermined 10 frequency and deviates therefrom in accordance with the value of the phase modulated symbol;12'־ means for converting the filtered signal into an analog signal to provide said modulation signal;and 14 means for mixing the modulation signal with a steady-state signal at a predetermined frequency to provide a 16 ;phase modulated IF signal that is a frequency modulated (FM) signal having an IF frequency that is a modulation product of 18 the modulation frequency and the predetermined frequency.
  16. 16
    A system according to Claim 15, wherein the phase modulating means comprises means for converting the symbols in accordance with a digital phase shift keying (DPSK) code.
  17. 17
    A system according to Claim 15, wherein for each sample, 2 the filtering means provides said filtered signal in accordance with both the in-phase (I) and quadrature (Q) 4 .components of the phase modulated signal.
  18. 18
    A system according to Claim 15, wherein the filtering 2 means filters a plurality of phase modulated symbols I simultaneously in a sequentially overlapping relationship.
  19. 19
    A system according to Claim IB, wherein the filtering 2 means comprises a finite-duration, impulse response (FIR) digital filter.
  20. 20
    A system, according to Claim 19, wherein the FIR filter 2 samples each phase modulated symbol a predetermined number of times, with successive simultaneous samples being factored 4 together in accordance with a predetermined sequential pattern to provide the filtered signal that, when converted 6 to an analog signal, provides said modulation signal.
  21. 21
    . A system according to Claim 20, wherein the FIR filter 2 comprises a read only memory (ROM) that provides the filtered signal in accordance with the combined digital values of the 4 simultaneously sampled phase modulated symbols.
  22. 22
    A system according to Claim 15, wherein the filtering means comprises a finite-duration, impulse response (FIR) digital filter.
  23. 23
    A system according to Claim 22, wherein the FIR filter 2 samples each symbol a predetermined number of times, with successive samples being factored in accordance with a 4 predetermined sequential pattern to provide the. filtered t , signal that, when .converted to an analog signal, provides 6 said modulation signal.
  24. 24
    A system according to Claim 23, wherein the FIR filter 2 comprises a read only memory (ROM) that provides the filtered signal in accordance with the digital value of the phase 4 modulated signal.
  25. 25
    A system according to Claim 22, further comprising demodulating means for converting a received said phase modulated IF signal to the bit stream from which said received phase modulated IF signal was derived, wherein the demodulating means comprises 6 means for mixing the received phase modulated IF signal with a steady-state signal of the same frequency as the 8 steady-state signal used to produce the received phase modulated IF signal to thereby provide a received analog 10 signal;־ means for converting the received analog signal into a 12 received digital signal;a FIR digital filter for digitally filtering the 14 received digital signal-to provide phase modulated symbols;and 16 means for converting the received phase modulated ;;.,-־׳;.;i-mbols into a received bit stream corresponding to the bit 18 stream from which the received phase modulated IF signal was ־.?rived.
  26. 26
    A system according to. Claim 25, wherein within the 2 demodulating means, the FIR digital filter comprises a microprocessor -for said filtering of the received digital 4 signal, and wherein the .microprocessor includes a memory for storing FIR filter coefficients for use in said filtering of 6 the received digital signal.
  27. 27
    A system according to Claim 26,׳ further comprising * 2 means for providing a sequence of predetermined symbols to the first-recited filtering means;4 means for providing to the demodulating means the phase modulated IF signal provided by the first-recited mixing 6 means;and means in the microprocessor for adjusting the FIR ;6 .filter coefficients .stored in the microprocessor memory until the received phase modulated symbols correspond to the 10 sequence of predetermined symbols provided to the'first recited filtering means.
  28. 28
    A system according to Claim 25, wherein within the 2 demodulating means, the combination of the FIR digital filter and the means for converting the phase modulated symbols 4 comprises a microprocessor for said filtering of the received digital signal and for said converting of the received phase 6 modulated symbols, wherein the microprocessor includes a memory for storing FIR filter coefficients for use in said filtering of the received digital signal and a memory for storing a predetermined code for use in said conversion of 10 the received phase modulated symbols.
  29. 29
    A system according to Claim 15, further comprising 2 demodulating means for converting a received said phase modulated IF signal to the bit stream from which said 3 received phase modulated IF signal was derived.
  30. 30
    A system according to..Claim 29, wherein the demodulating 2 means comprise means for mixing the received phase modulated IF signal 4 . with a steady-state signal of the same frequency as the steady-state signal;used to produce the received phase 6 modulated IF signal to thereby provide a received analog signal;8 means for converting the received analog signal into a received digital signal;10 means for digitally filtering the received digital signal to provide phase modulated symbols;and 12 means for converting the received phase modulated symbols into a received bit stream corresponding to the bit 14 stream from which the received phase modulated IF signal was derived.
Independent claims30