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DESIGN AND DEVELOPMENT OF MEDICAL ELECTRONIC ...

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SCR1ST330S16P0L1COILEXTREME DANGER!!! HIGH VOLTAGE / HIGH ENERGYR1400KPOWER SUPPLY+12V+12VAC HOTAC NEULED1Blinking LEDPWR GNDGNDLS1AlarmD15.1VD3T1110VAC/2.5kVACPOWERD4D2K154SW131DIODE R2DIODEDIODER3680kC32100uF 450VC22100uF 450V10k 25W HV6+C12100uF 450V5867+128SW3+4R72.7D540HF100R6330k 1W HVR5330k 1W HVR4330k 1W HVR8RDS1CHARGINGC410uFD740HF100C72100uF 450VC62100uF 450V+C52100uF 450V+++6 4R11330k 1W HVR10330k 1W HVR9330k 1W HVR19D69.1VD840HF10080MIC1MOC3010R13POT1 2C102100uF 450V++R16330k 1W HVC8C92100uF 450V R14330k 1W HV 2100uF 450VR15330k 1W HV+HV Resistor DividerR2030kR18620DVM+12VSW5SW4FIRECHARGECHARGE ENABLEINREFV+GNDV-CONTROL BOX+12VFigure 7.24 Schematic diagram of the experimental magnetic stimulator. A 2100-µF capacitor bank that can be charged to a maximum of1350 V, resulting in the storage of up to 1.93 kJ. The switching element is an International Rectifier type ST330S16P0 high-power SCR ratedfor a maximum repetitive peak and off-state voltage of 1600 V. It can handle a 9-kA peak current with a maximum dI/dt of 1 kA/µs. SCRtriggering is done through a triac-output optocoupler.J1110VACF12FUSE31SW2INTERLOCK SWITCH349

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