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Basic Series Inverter : Detailed Working and Output Waveforms

Learning Electronics

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Basic Series Inverter : Detailed Working and Output Waveforms

9 033 просмотра · 4 года назад
Learning Electronics
22,4 тыс. подписчиков
9 033 просмотра · 4 года назад
BASIC SERIES INVERTER Important Features This inverter uses Class A commutation technique(Self commutation by resonating the load ) The combination of R-L-C form under damped resonance circuit and RLC circuit should be underdamped for Load commutation. As the SCRs S1 and S2 turn off themselves by natural commutation , it is also called as self commutated inverter. It is also called as series inverter because in this circuit the inductor and capacitor are connected in series with switching devise that is thyristor. It is used at high frequencies 200 Hz to 100 KHz. Used for induction Heating and Fluorescent lightening . WORKING MODE -1 We assume that initially VC = - VCO At switching instant : As I0 = 0 ⇨ VL = VS + VCO When S1 is triggered Capacitor starts charging and Load current starts increasing with initial rate of rise of (ⅆ𝐼_0)/ⅆ𝒕 VC = VS + VCO When I0 reaches peak value ⇨ VL = 0 ⇨ VC = VS MODE -2 S1 and S2 both are OFF in this mode Load current I0 = 0 and V0 = I0.R = 0 As capacitor is not getting any path to discharge it self, the voltage across capacitor is maintained as before. VC = VS + VCO VL = 0 MODE -3 S2 is F.B due to voltage across capacitor Load current I0 reverses its direction and V0 = - I0.R Capacitor starts discharging and inductor starts absorbing the energy. As S1 is OFF ⇨ source current IS will not flow VL = VS + VCO VC = - VCO MODE -4 S2 is F.B due to voltage across capacitor Load current I0 reverses its direction and V0 = - I0.R Capacitor starts discharging and inductor starts absorbing the energy. As S1 is OFF ⇨ source current IS will not flow VL = VS + VCO VC = - VCO #BasicSeriesInverter #OutputWaveformsofBasicSeriesInverter #WorkingOfBasicSeriesInverter #LoadCommutatedInverter #SelfCommutatedInverter