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Electromedical device for the acceptance and processing of electric physiological signals

  • US 4,245,650 A
  • Filed: 02/15/1979
  • Issued: 01/20/1981
  • Est. Priority Date: 03/30/1978
  • Status: Expired due to Term
First Claim
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1. An electromedical device for the acceptance and processing of electrical physiological signals, comprisinga first device unit for association with a patient, having a multiplexer unit with a plurality of input channels for receiving respective input physiological signals from the patient, having an output, and having timing and synchronization input means, said multiplexer unit comprising means for scanning said input channels and supplying a scanning signal to said output thereof in accordance with said input physiological signals,a second device unit having a demultiplexer unit with a number of output channels corresponding to the respective input channels, and haviing timing and synchronizing input means for controlling demultiplexing operation of said demultiplexer unit, said demultiplexer unit having an input and having means for supplying output physiological signals to the respective output channels in accordance with a scanning signal at said input thereof,galvanically separating coupling means for coupling with the output of said multiplexer unit of the first device unit and connected wtih said input of said demultiplexer unit of said second device unit,a pulse amplitude modulator connected in series with the output of said multiplexer unit and connected with said demultiplexer unit via said galvanically separating coupling means for supplying scanning pulses in accordance with the scanning signal from said multiplexer unit, and having a control input for receiving timing pulses controlling the supply of the scanning pulses to said galvanically separating coupling means,central oscillator means coupled with the timing and synchronizing input means of said multiplexer unit and of said demultiplexer unit and coupled with said control input of said pulse amplitude modulator for supplying timing pulses thereto for effecting the channel selection for the multiplexer unit and for the demultiplexer unit, and for controlling the supply of the scanning pulses to said input of said demultiplexer unit via said galvanically separating coupling means, andsynchronizing control means coupled with the timing and synchronizing input means of said multiplexer unit and of said demultiplexer unit for synchronizing the operation thereof.

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