[Erickson 19.6(2"d edition)/22.6(3rd edition)]In a certain resonant inverter application, the de input voltage is V, = 320 V. The inverter must produce an approximately sinusoidal output voltage having a frequency of 200 kHz. Under no load (output open-circuit) conditions, the inverter should produce a peak-to-peak output voltage of 1500 V. The nominal resistive operating point is 200 VRMS applied to 100 2. A non-isolated LCC inverter is employed, It is desired that the inverter operate with zero-voltage switching, at least for load resistances less than 200 n.

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2. [Erickson 19.6(2nd edition)/22.6(3rd edition)]In a certain resonant inverter application, the
de input voltage is V, = 320 V. The inverter must produce an approximately sinusoidal
output voltage having a frequency of 200 kHz. Under no load (output open-circuit)
conditions, the inverter should produce a peak-to-peak output voltage of 1500 V. The
nominal resistive operating point is 200 VRMS applied to 100 n. A non-isolated LCC
inverter is employed, It is desired that the inverter operate with zero-voltage switching, at
least for load resistances less than 200 N.
(a) Derive expressions for the output open-circuit voltage Voc and short-circuit current Isc
of the LCC inverter. Express your results as functions of F =,V,, R.
,and n = The open-circuit resonant frequency is f, =-
(b) To meet the given specifications above, what should the short-circuit current Isc be
chosen?
(c) Specify tank element values that meet the specifications.
(d) Under what conditions does your design operate with zero-voltage switching?
(e) Calculate the peak transistor current under no-load and short-circuit conditions.
Transcribed Image Text:2. [Erickson 19.6(2nd edition)/22.6(3rd edition)]In a certain resonant inverter application, the de input voltage is V, = 320 V. The inverter must produce an approximately sinusoidal output voltage having a frequency of 200 kHz. Under no load (output open-circuit) conditions, the inverter should produce a peak-to-peak output voltage of 1500 V. The nominal resistive operating point is 200 VRMS applied to 100 n. A non-isolated LCC inverter is employed, It is desired that the inverter operate with zero-voltage switching, at least for load resistances less than 200 N. (a) Derive expressions for the output open-circuit voltage Voc and short-circuit current Isc of the LCC inverter. Express your results as functions of F =,V,, R. ,and n = The open-circuit resonant frequency is f, =- (b) To meet the given specifications above, what should the short-circuit current Isc be chosen? (c) Specify tank element values that meet the specifications. (d) Under what conditions does your design operate with zero-voltage switching? (e) Calculate the peak transistor current under no-load and short-circuit conditions.
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