EP0809828A1

Cellular communication system working under one operating system

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 31 January 2016, 10.6 years ago.

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  5. Today

22 claims: 2 independent, 20 dependent

  1. 1
    Claims of equivalent WO 9625711 A1 CLA1MS What is claimed is:1. An integrated cellular communication system comprising: a data pump for performing modem signal processing;a cellular transceiver communicatively coupled to said data pump for performing cellular signaling protocols and signal conditioning;a radio transceiver communicatively coupled to said cellular transceiver for transmitting and receiving control commands and radio waves;and a single system control unit for controlling said data pump, said cellular transceiver, and said radio transceiver so that said data pump, said cellular transceiver, and said radio transceiver operate under a single operating system.
  2. 13
    14. A method according to claim 13 wherein said step of converting said cellular signal into said radio waves comprises the steps of:converting said cellular signal into an analog cellular signal under said operating system;and converting said analog cellular signal into said radio waves in an analog domain under said operating system.
  3. 14
    15. A computer system comprising:a memory for storing an instruction;a system bus coupled to said memory to provide a data communication path for said computer system;a processor coupled to said system bus for decoding said instruction;and an integrated cellular communication system coupled to said system bus including: a data pump for performing modem signal processing;a cellular transceiver communicatively coupled to said data pump for performing cellular signaling protocols and signal conditioning;a radio transceiver communicatively coupled to said cellular transceiver for transmitting and receiving control commands and radio waves;and a single system control unit for controlling said data pump, said cellular transceiver, and said radio transceiver so that said data pump, said cellular transceiver, and said radio transceiver operate under a single operating system.
  4. 15
    16. A computer system according to claim 15 wherein said integrated cellular communication system further includes:a host interface for interfacing said data pump to a computer host, said host interface controlled by said system control unit;and a digital-to-analog (D/A) and analog-to-digital (A D) converter communicatively coupled between said cellular transceiver and said radio transceiver;wherein said cellular transceiver is a digitally implemented cellular transceiver;and wherein said system control unit controls said host interface and said D/A & A/D converter so that said host interface and said D/A & A/D converter operate under said single operating system.
  5. 16
    17. A computer system according to claim 16 wherein said integrated cellular communication system further includes:a microphone for converting first acoustic waves into a first signal;a speaker for converting a second signal to second acoustic waves;and an encoder and decoder (CODEC) unit communicatively coupled to said microphone, said speaker and said cellular transceiver, said CODEC unit for converting said first signal into a third signal and transmitting said third signal to said cellular transceiver, and for converting a fourth signal received from said cellular transceiver into said second signal.
  6. 18
    19. A computer system according to claim 18 wherein said data pump and said cellular transceiver both operate in a digital domain.
  7. 22
    23. A computer system according to claim 22 wherein said cellular transceiver includes:(a) a signal conditioning block comprising: a CODEC driver for interfacing a second decoder to said CODEC unit, said CODEC driver for converting said fourth signal to a fifth signal, said second decoder for converting said fifth signal that is non-linear into a sixth signal that is linear;a multiplexer for selecting one of a first data signal from said data pump and said sixth signal from said second decoder as an input and for outputting a seventh signal;adjustable compression means for manipulating said seventh signal based on its amplitude and for outputting an eighth signal, said adjustable compression means that adjusts its characteristics depending on whether said seventh signal originated from said data pump or said CODEC unit;adjustable pre-emphasis means for manipulating said eighth signal based on its frequency and for outputting a ninth signal, said adjustable pre-emphasis means that adjusts its characteristics depending on whether said eighth signal originated from said data pump or said CODEC unit;a first adjustable filter for band-limiting said ninth signal and for outputting a tenth signal, said first adjustable filter that adjusts its characteristics depending on whether said ninth signal originated from said data pump or said CODEC unit;a transmit buffer coupled to said first adjustable filter and to said D/A & A/D converter;a receiver buffer coupled to said D/A & A/D converter;a second adjustable filter for removing unwanted components of an eleventh signal received from said receiver buffer and for producing a twelfth signal, said second adjustable filter that adjusts its characteristics depending on whether said eleventh signal is destined to said data pump or said CODEC unit;adjustable de-emphasis means for manipulating said twelfth signal based on its frequency and for outputting a thirteenth signal, said adjustable de-emphasis means that adjusts its characteristics depending on whether said twelfth signal is destined to said data pump or said CODEC unit;adjustable expansion means for manipulating said thirteenth signal based on its amplitude and for outputting a fourteenth signal, said adjustable expansion means that adjusts its characteristics depending on whether said thirteenth signal is destined to said data pump or said CODEC unit;a de-multiplexer for receiving said fourteenth signal as an input and for outputting one of a second data signal for said data pump or a fifteenth signal;and an encoder unit coupled to said CODEC driver for receiving said fifteenth signal and converting said fifteenth signal into a sixteenth signal that is non-linear wherein said CODEC unit uses a non-linear transfer function;and (b) a cellular signaling protocol block coupled to said receiver buffer and said transmit buffer.