2. Draw a circuit schematic indicating how you will connect your DC power supply to provide +8 V,-8V and a 0 V common. 3. Draw a circuit schematic (including lC nin numbers and hyngss conacitors) for Part A DE being
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- Power Electronics. In the Buck-Boost DC-DC converter circuit:Welding voltage [40-80]VSwitching frequency (f) 25khzVoltage between load terminals 55VCapacitance value 470uFLoad current value [10-25]A Under these conditions, which is the lowest ripple (delta IL) amount of the current passing through the coil (L) in Amps for the lowest L inductance value that can keep the DC-DC converter in a continuous current state? A) 23.9803B) 118.75C) 84.3750D) 47.5E) 59.9507F) 33.75apply loop analysis to obtain i0 in the circuit Commentary:PLEASE, describe the procedure step by step, in detail. Do not do it on paper, digitally here :)1. A thyristor operating from a peak supply voltage of 400 V has the followingspecifications:Repetitive peak current, Ip = 200 A, = 50 A/µs, = 200 V/ µs. Choosing a factor safety forthe above-mentioned parameters, design a suitable snubber circuit. The minimum valueof load resistance is 10 Ω. 2. A boost converter with vin = 12 V is required to be designed for a 100 W rating. If theoutput voltage is maintained at 96 V, find out load resistance and duty ratio. Furtherdesign the filter components in consideration with a ripple of 10% and 5% in inputcurrent and output voltage. Take the switching frequency be 30 kHz. 3. Following are the specifications of a thyristor operating from a peak voltage supply of500 V: Repetitive peak current, Ip = 250 A, = 60 A/µs, = 200 V/µs. Take the factor ofsafety of 2 for the three specifications mentioned above. Design a suitable snubber circuitif the minimum load resistance is 20 Ω. Take ξ = 0.65. 4. A buck–boost converter operating at 20 kHz, L = 0.05 mH.…
- Briefly outline two (2) steps to consider during electrical load estimation in design works.draw a qpsk demodulation circuit using circuit components for instance resistors, capacitors, transistors etca)A 3-phase full converter delivers power to a load R=50 ohms. the source voltage is 400V,50Hz.For a firing-angle delay of 45 degrees, find the power delivered to the load R.(b)A single phase fully-controlled bridge converter supplies a load drawing constant ripple free current. if the firing angle is 30degrees.find the input power factor.
- For the circuit given below, let VBEQ=0.7 V, then the Q-point(VCEQ,ICEQ) equals:In the Buck - Boost DA-DA converter circuit, given below; 1) Source voltage (E) value: in the voltage range of [AB] (Volts) 2) Switching frequency (f) value: M kHz 3) Voltage between load terminals (Vload) F (Volt) 4) Capacitance value 470 (UF) 5) Load current lload) value: [KS] (Amps) current range The lowest Linductance value that can keep the DC-DC converter in continuous current condition under The lowest ripple (AIL) amount of the current passing through the coil (L) is given below in Amps. Which option do you see? A = 40 Volts B = 80 Volts M = 25kHz F = 55 Volts K = 10 Amps S = 25 AmpsSubject : ELECTRONIC CIRCUIT ANALYSIS AND DEVICES Please give the DC ANALYSIS circuit and AC EQUIVALENT CIRCUIT of this problem before proceeding to find letters a, and b. (Note : Neglect Vbe)
- For the Circuit shown, Let: VCC = 3.3V R1 = 85 kΩ RE = 500 Ω R2 = 35 k Ω RC = 4k Ω β = 150 Using approximation, determine the Q-point parameters: IBQ, ICQ, and VCEQ. Indicate the exact numerical values, following the given unit.A transformer-coupled (3:1) class A amplifier supplies its output power at an RL of 10 ohms, if the maximum AC output power is 2 watts, calculate the collector currentDesign a lattice-type balanced modulator.