IL95106A

Method and apparatus for transmitting and receiving multiple telephone transmission signals over a single twisted pair line

Abstract

This record has no abstract on file.

IL95106A, drawing sheet 1
Sheet 1 of 7

Term

No projected expiry on record.

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

28 claims: 19 independent, 9 dependent

  1. 1
    WHAT IS CLAIMED IS:1. Apparatus for concurrently receiving n telephone signals over a twisted pair, where n is greater than 1, comprising: a) at a first location, means for receiving a digital signal from a local telephone exchange, said digital signal representing said n telephone signals in digital form, wherein said means for receiving is a means for receiving a signal between about 70 and 90 ksymbols/sec;b) means for converting said digital signal into a first higher-rate binary signal;c) means for converting said higher-rate binary signal into n analog signals for use in equipment at said first location;and d) at a second location, means for converting n analog signals from telephone company equipment into said digital signal from a local telephone exchange.
  2. 2
    Apparatus for concurrently receiving n telephone signals over a twisted pair, where n is greater than 1, comprising:a) at a first location, means for receiving a digital signal from a local telephone exchange, said digital signal representing said n telephone signals in digital form;b) means for converting said digital signal into a first higher-rate binary signal;c) means for converting said higher-rate binary signal into n analog signals for use in equipment at said first location wherein said higher-rate binary signal is a substantially 160 kbits/sec signal comprising user data;and d) at a second location, means for converting n analog signals from telephone company equipment into said digital signal from a local telephone exchange.
  3. 3
    Apparatus for concurrently receiving n telephone signals over a twisted pair, where n is greater than 1, comprising:a) at a subscriber location, means for receiving a digital signal from a local telephone exchange, said digital signal representing said n telephone signals in digital form wherein said digital signal is a quaternary signal;b) means for converting said digital signal into a first higher-rate binary signal;c) means for converting said higher-rate binary signal into n analog signals for use in equipment at said subscriber location;and d) at a local telephone exchange, means for converting n analog signals from telephone company equipment into said digital signal from said local telephone exchange.
  4. 4
    Apparatus for concurrently receiving n telephone signals over a twisted pair, where ״n” is greater than 1, comprising:a) at a subscriber location, means for receiving a digital signal from a local telephone exchange, said digital signal representing said ”n telephone signals in digital form wherein said digital signal is. a quaternary signal;b) means for converting said digital signal into a first higher-rate binary signal;c) means for converting said higher-rate binary signal into n analog signals for use in equipment at said subscriber location;and d) means for powering down a subscriber interface codec filter circuit at said subscriber location if a line is not in an active state.
  5. 9
    Apparatus for concurrent reception and transmission of multiple telephone signals from and to a local telephone exchange to and from a subscriber location over a twisted pair line, comprising:a) a remote terminal at said subscriber location, said remote terminal comprising: i) means for inputting and outputting a substantially 80 ksymbols/sec quaternary signal to and from said twisted pair;ii) means for converting said 80 ksymbols/sec quaternary signal to and from a substantially 160 kbits/ sec binary signal;iii) means for converting said 160 kbits/sec signal from and to analog four-wire signals;and iv) means for converting said four-wire signals to two-wire signals for use by the telephone subscriber;and b) a master, comprising: i) means for inputting and outputting multiple analog telephone signals from and two a local switching facility;ii) means for converting said 'analog signals to and from a 160 kbits/sec binary signal;and iii) means for converting said 160 kbits/sec signal to and from said 80 ksymbols/sec quaternary signal.
  6. 10
    A method for receiving n” telephone signals over a twisted pair, comprising:a) converting n analog signals from local telephone company equipment into a digital signal;b) transmitting said digital signal from said local telephone equipment over a twisted pair to a subscriber location;c) converting said digital signal to a higher-rate binary signal;and d) converting said higher-rate binary signal to n analog signals for use in telephone equipment at said subscriber location, wherein said binary signal is about 160 kbits/sec.
  7. 11
    Apparatus for concurrently receiving n telephone signals over a twisted pair, where n is greater than 1, comprising:a) at a local telephone exchange, means for receiving a digital signal, said digital signal representing said n telephone signals in digital form;b) means for converting said digital signal into a first higher-rate binary signal;and c) means for converting said higher-rate binary signal into n analog signals for use in equipment at said local telephone exchange, wherein said binary signal is about a 160 kbits/sec signal.
  8. 14
    15. A method for receiving n telephone signals over a twisted pair, comprising:a) transmitting a digital signal from local telephone equipment over a twisted pair to a subscriber location;b) converting said digital signal to a higher-rate binary signal;c) in a remote terminal, converting said higher-rate binary signal to n analog signals for use in telephone equipment at said subscriber location, wherein said binary signal is about 160 kbits/sec;and d) removing a portion of a subscriber interface coder filter circuit from service after a data transmission period when at least one analog signal line is not in use, said binary signals converted to said analog signals for use in said telephone equipment at said subscriber location during said data transmission period.
  9. 15
    16. A method of concurrently transmitting and receiving a plurality of telephone signals from and to a subscriber location from and to a local switching station over a single twisted pair, said local switching station adapted to transmit analog telephone signals, subscriber equipment at said subscriber location adapted to utilize analog signals, comprising the steps of:a) in a master terminal at said local switching terminal: i) converting first analog signals representing multiple telephone transmissions from said local switching station to substantially a first binary signal of about 160 kbits/sec;ii) converting said binary signal to a first quaternary signal of about 80 ksymbols/sec;iii) transmitting said first quaternary signal to said subscriber location over said twisted pair;iv) receiving a second quaternary 80 ksymbols/sec signal from said twisted pair;v) converting said second quaternary 80 ksymbols/ sec signal to a second binary signal of about 160 kbits/ sec;and vi) converting said second binary signal to second analog signals for transmission to said local switching facility;and b) at a remote terminal at said subscriber location: i) receiving said first quaternary signal from said twisted pair;ii) converting said first quaternary signal to a third binary 160 kbits/sec signal;iii) converting said third binary 160 kbits/sec signal to analog, four-wire signals;iv) converting said four-wire signals to two-wire signals for use in said subscriber equipment;v) receiving two-wire signals at said subscriber equipment;vi) converting said two-wire signals to four-wire signals;vii) converting said four-wire signals to a fourth binary 160 kbits/sec signal;and viii) converting said fourth binary 160 kbits/sec signal to provide said second 80 ksymbols/sec signal to said twisted pair.
  10. 16
    17. A kit for concurrent transmission of a plurality of telephone signals over a single twisted pair from a subscriber location to a local switching station, comprising:a) master equipment including: i) means for conversion of quaternary 80 ksymbols/ sec signals to and from binary signals;and ii) means for conversion of binary signals from and to analog signals;and b) remote terminal equipment including: i) means for conversion of quaternary 80 ksymbols/ sec signals from and to binary signals;ii) means for conversion of binary signals from and to analog signals;and iii) means for two-wire to four-wire conversion.
  11. 17
    18. A digital added main line, comprising:a) a remote terminal for use at a subscriber location, said remote terminal comprising: i) a remote terminal ISDN echo cancellation integrated circuit for converting digital quaternary signals on a twisted pair line to binary signals and converting binary signals to quaternary signals for transmission over said twisted pair line;ii) a remote terminal ISDN communications controller integrated circuit coupled to said remote terminal ISDN echo cancellation circuit for adding and removing control information to and from a data stream from and to said remote terminal ISDN echo cancellation circuit;and iii) a remote terminal subscriber interface codac filter integrated circuit coupled to said remote terminal ISDN communications controller circuit for converting binary signals from and to said remote terminal ISDN echo cancellation circuit to and from at least two analog signals for use in subscriber equipment;and b) a master comprising: i) a master subscriber interface codac filter (SICOFI) integrated circuit for conversion of analog signals at a local switch to and from digital binary signals;ii) a roster ISDN communications controller integrated circuit coupled to said master SICOFI for adding and removing control information to and from a data stream from said SICOFI;and iii) a master ISDN echo cancellation integrated circuit coupled to said master ISDN communications controller for conversion of digital binary signals to and from quaternary signals for transmission over said twisted pair.
  12. 18
    19. A digital added main line as recited in claim 18, wherein said remote terminal is located at a terminus of said twisted pair at a home or office and said master is located at a telephone company switch.
  13. 21
    22. In a system for transmission of a single analog signal from a telephone company location to a subscriber location over a twisted pair, a method of converting said system to a system for multiple signal transmission over said twisted pair, comprising:a) installing master equipment at said telephone company location, said master equipment: i) inputting multiple incoming telephone company analog signals from said telephone company equipment and outputting multiple outgoing telephone company analog signals to said telephone company equipment;ii) converting said multiple incoming telephone company analog signals to a multiplexed outgoing 2B1Q signal and converting a multiplexed incoming 2B1Q signal to said multiple outgoing telephone company analog signals;and iii) transmitting said multiplexed outgoing 2B1Q signal over said twisted pair to said subscriber location and receiving said multiplexed incoming 2B1Q signal;and b) installing a remote terminal at said subscriber location, said remote terminal: i) inputting said multiplexed outgoing 2B1Q signal from said twisted pair and outputting said multiplexed incoming 2B1Q signal on said twisted pair;ii) converting said multiplexed outgoing 2B1Q signal to multiple outgoing subscriber analog signals and converting multiple incoming subscriber analog signals to said multiplexed incoming 2B1Q signal;and iii) transmitting said multiple outgoing subscriber analog signals to said subscriber equipment and receiving said multiple incoming subscriber analog signals from said subscriber equipment.
  14. 22
    23. An apparatus for concurrently receiving n telephone signals over a twisted pair, substantially as hereinbefore described and with reference to the accompanying drawings.
  15. 23
    24. An apparatus for concurrent reception and transmission of multiple telephone signals, substantially as hereinbefore described and with reference to the accompanying drawings.
  16. 24
    25. A method for receiving n telephone signals over a twisted pair, substantially as. hereinbefore described and with reference to the accompanying drawings.
  17. 25
    26. A method of concurrently transmitting and receiving a plurality of telephone signals, substantially as hereinbefore described and with reference to the accompanying drawings.
  18. 26
    27. A kit for concurrent transmission of a plurality of telephone signals over a single twisted pair, substantially as hereinbefore described and with reference to the accompanying drawings.
  19. 27
    28. A digital added main line, substantially as hereinbefore described and with reference to the accompanying drawings.
  20. 28
    29. A method for converting a system for transmission of a single analog signal to a system for multiple signal transmission over A twisted pair, substantially as hereinbefore described and with reference to the accompanying drawings.
Independent claims20