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- Explain briefly the l-V characteristic of the real diode under the effect of the forward biasing.Q2/ Determine the minimum input voltage required for regulation to be established in the figure. Assume an ideal zener diode with Izk = 1.5 mA and Vz = 14 V. R 560 0 VINDetermine the state of diode for the circuit shown and find ID, VD. Assume simplified model for the diode. 4k02 2V 1k02. Off, 0.00mA, 0.4V O Off, -0.005mA, 0.0v On, 0.48mA, 0.6v On, 0.55mA, 0.7v Option 5
- Consider diode circuit shown below with Vcc=5V and V₂ = 3V. U₁A HH +V₂ ū The peak inverse voltage on the diode is close to V₁ V. A VoDetermine the minimum value of RL to ensure that the Zener diode is in the "on" state.Select any diode from LTSpice Library. (The type of diode should either be RECTIFIER or SILICON) Create a Half-Wave Rectifier circuit. Use a resistor of 1000 Ohms. Input Voltage should be 95VAC - 65Hz Plot both the Input voltage and output voltage. Determine the Voltage drop across the diode by subtracting the output voltage to the input voltage peaks. Create a Bridge-Type Full Wave Rectifier Circuit. Repeat the steps done on the Half-Wave Rectifier circuit.
- * The 4-layer diode in below figure is biased such that it is in the forward-conduction region. Detemine the anode current for and VBRF) = 20 V, VBE = 0.7 V, VCE(sat) = 0.2 V. Rs 1.0 kn VBIAS 25 VDetermine the value of RL that will establish maximum power conditions for the Zener diode.consider the figure below that shows an approximated reverse recovery turn-off characteristics for a power diode. Show that the following relation can express the total reverse recovery charge, Qrr = 1/2(trr*ts1) di1/dt =1/2(trr*ts21) di2/dt * ip Isl 1s2! -Ir