Question

The following circuit is a buck-boost converter where M1 functions as a switch. a. Describe how the converter works when M1 is switched on and off. b. Provide proof that V where D is the duty cycle controlled by the MOSFET, M1. 1-D Ignore the voltage drop across the transistor and the diode. D1 Vin C1 Gate drive circuit L1 RL c. Plot the transistor current, the inductor current, the capacitor current, and the load current as a function of time.

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Suo R1 ナ NO ес. T D 1レ dt itRdt clt- c duo dt 2. unda Pdeat tondPhons 0 OCLCOT L.uch IDVa Saf ON AVconto レ aレ (Hヅケー 2. Voconto レ aレ (Hヅケー 2. VoDVdc , hurda t-D) Ndc L CCM

answered by: ANURANJAN SARSAM
Add a comment
Know the answer?
Add Answer to:
The following circuit is a buck-boost converter where M1 functions as a switch. a. Describe how...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Design a boost converter power stage to the following specification: Input voltage Output voltage: Output voltage...

    Design a boost converter power stage to the following specification: Input voltage Output voltage: Output voltage ripple:max 20mV Load power: Switching frequency: 15kHz 110-125V 300V 1.5kW Calculate: (i) Maximum duty cycle (ii) Minimum duty cycle (iii) Average diode current (iv) Assuming the Rds(on) of the MOSFET is 0.01 Ω, and the diode forward voltage is 0.8V, calculate the approximate efficiency of the circuit. 2. A switching power supply shown in the circuit below has its switch driven by a signal...

  • Buck Converter Question Q3. A Buck converter is used to produce a regulated 10V, 5A DC...

    Buck Converter Question Q3. A Buck converter is used to produce a regulated 10V, 5A DC power supply from a variable DC source with an nominal input voltage of Vin = 20V±5V. The Buck converter switches at 250kHz, and operates entirely in the continuous conduction mode. The output filter capacitance is C1.0uF 3.a. Draw the circuit topology for the Buck converter. Ensure that your circuit includes the input DC source, the output load resistance, the switching devices (i.e. MOSFET and...

  • Following figure shows the circuit diagram for a buck-boost converter for switch off and switch o...

    Following figure shows the circuit diagram for a buck-boost converter for switch off and switch on. The plots for inductor voltage Vl and inductor current iL are also shown. The average value of i, is denoted by I1, average output current is -l and average input current is ld. Similarly, the average value of u1 is denoted by V1, output voltage is-, and input DC voltage is Va. Time period of the switch is Ts 1/f and its duty cycle...

  • 1) (6 points) It is desired to design a 50 W buck-boost converter to regulate its...

    1) (6 points) It is desired to design a 50 W buck-boost converter to regulate its output voltage at 26V from a solar panel whose output voltage varies between 20 and 40 V. The desired switching frequency is 20 kHz. The ripple current in the inductor should remain within +/-0.1 A, and the output voltage ripple should not exceed +/- 2%. a. Determine the duty cycle range for operating this converter. b. Design this buck-boost converter by finding lower limits...

  • Q4. (a) Fig. Q4(a) shows a buck-boost converter. Sketch waveforms for the choke current when in b...

    Q4. (a) Fig. Q4(a) shows a buck-boost converter. Sketch waveforms for the choke current when in both the continuous conduction mode (CCM) and thre discontinuous conduction mode (DCM). If data are: switching frequency 100kHz L1 20yH calculate the average choke current at which the converter transitions from thre CCM to the DCM D1 Vin out 0V Fig. Q4 (a) 8 marks (b) The diode D1 in Fig. Q4(a) is depicted as a p-n type. Give reasons why a 2 mark...

  • A Buck-boost converter has an output voltage 100 V, output power 60 W and input voltage...

    A Buck-boost converter has an output voltage 100 V, output power 60 W and input voltage 12 V. Switching frequency is 15 kHz. Calculate duty ratios for the switch and the diode. Find values for the inductor L and capacitor C, when the allowed output voltage ripple is ±0.15 % and the inductor current ripple is ±1 % (of the average value). If the on-time of the switch has an inaccuracy of ±50 ns, what is the new output voltage...

  • The given converterhas the following requirements: Vin: 250V Vout: 50V regulated Load power: 200W Switching frequency: 100kHz Max. output ripple: 20mV

    (a) Differentiate the difference and advantage of the synchronous buck converter with a typical buck converter circuit.(b) Sketch the waveforms of the gate drive voltages G1 and G2 assuming a duty cycle of 25% and a maximum gate drive voltage of 10V. How would you prevent the two MOSFET to turn on simultaneously.(c) Calculate L1 and C1, stating all necessary design criteria (e.g. value of duty cycle at the required output voltage).(d) Describe the circuit if a capacitor is connected...

  • Problems,,,,,

    1 2 + – i(t) C R L iT i(t) iD + – L C R 1. Analysis and design of a buck-boost converter: A buck-boost converter is illustrated in Fig. 1(a), and a practical implementation using a transistor and diode is shown in Fig. 1(b). + (a) Vg v Figure 1 Buck–boost converter of Problem 1: (a) ideal converter circuit, (b) implementation using MOSFET and diode. – Q1 D1 (b) + Vg v Page 2 iL (t) + vL...

  • ****Please ALL answers questions with complete steps.**** 1. Analysis and design of a buck-boost converter. A...

    ****Please ALL answers questions with complete steps.**** 1. Analysis and design of a buck-boost converter. A buck-boost converter is illustrated below. + licit) + reee c= R { v(t) A practical implementation using a MOSFET and diode is illustrated below. D + Voi(t) – H + iqi(t) IT int) lic(t) iz(t) + LE vi(t) c R v(t) For this problem, you must employ the methods of inductor volt-second balance, capacitor charge balance, and the small ripple approximation as discussed in...

  • A buck-boost converter has input voltage of 12V and operates with a duty cycle of 0.6...

    A buck-boost converter has input voltage of 12V and operates with a duty cycle of 0.6 at a frequency of 50kHz and a load current of 5A average. Assuming sufficiently large L, and C = 500uF, calculate the peak-peak output voltage ripple and the rms current rating for the capacitor and inductor.

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT