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Electromedical apparatus

  • US 4,363,324 A
  • Filed: 08/25/1980
  • Issued: 12/14/1982
  • Est. Priority Date: 08/31/1979
  • Status: Expired due to Term
First Claim
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1. Electromedical apparatus, in particular stimulation current apparatus, comprising a patient output, an operating voltage circuit comprising operating voltage input means for supplying an operating voltage (UB) to the patient output, a control input means for supplying a preselected control value (UST), a patient current sensing means for supplying a measure of patient current, an output stage as current waveform generator operatively associated with the patient output and responsive to the preselected control value (UST) for controlling patient current in accordance therewith, and for effecting constant-current supply of such patient current, and a protection installation associated with the operating voltage circuit which protection installation disconnects the patient output from the operating voltage when a specifiable maximum value of the patient current has been exceeded, said protection installation comprising a safety circuit having switching means for the purpose of disconnecting the patient output from the operating voltage (UB), said safety circuit having control means for actuating said switching means when the patient current deviates from the preselected control value (UST), said control means comprising comparator means connected with said patient current sensing means for receiving a measure of patient current and connected with said control input means for receiving a measure of said preselected control value (UST), the switching means comprising a bistable switching circuit controlled by the comparator means, said bistable switching circuit connecting the patient output with the operating voltage (UB) in one switching state, and disconnecting the patient output from the operating voltage (UB) in the other switching state, said comparator means being connected with said bistable switching circuit for controlling switchover of said bistable switching circuit between said one switching state and said other switching state, characterized in that said bistable switching circuit comprises first and second transistor means, said first transistor means (31) being disposed in said operating voltage circuit between said operating voltage input means (2) and said patient output (4), and being conductive in said one switching state of said bistable switching circuit, said second transistor means (32) being nonconducting in said one switching state and being coupled with said comparator means (41) so as to become conductive when the patient current deviates from the preselected control value (UST), said second transistor means (32) being coupled with said first transistor means (31) so as to render said first transistor means nonconducting and to switch said bistable switching circuit to said other switching state when said second transistor means becomes conducting, said operating voltage circuit having voltage drop means (33) therein for producing a voltage drop as a function of a patient current in the operating voltage circuit, said voltage drop means (33) being connected with said second transistor means (32) such that with a patient current exceeding said specifiable maximum value said second transistor means (32) is rendered conducting to switch said bistable switching circuit to said other switching state and to thereby render said first transistor means (31) nonconducting and disconnect said patient output from said operating voltage, said voltage drop means (33) being connected with said second transistor means (32) separately from the coupling of said comparator means (41) with said second transistor means (32), so that said voltage drop means (33) is capable of actuating said second transistor means (32) to conducting condition in response to a patient current exceeding said specifiable maximum value independently of said comparator means (41), a passive current path coupling said voltage drop means (33) with control electrodes of said second transistor means (32), said voltage drop means being a resistance of value such that a current therethrough above said specifiable maximum value supplies a voltage to the control electrodes of said second transistor means (32) via said passive current path above the threshold turn-on voltage for said second transistor means (32).

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