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Home » 220V AC to DC Voltage Converter Circuit

220V AC to DC Voltage Converter Circuit

Last updated on 24 June 2025 by Admin-Lavi Leave a Comment

This 220V AC to DC Voltage Converter is small circuit like small adapter for our devices.

Wall socket gives AC power but many electronics like phone, laptop, LED light they need DC power to work.

This circuit work like translator, it take big AC power from wall and change it to smooth DC power so our device can use it.

Circuit Working:

220V AC to DC Voltage Converter Circuit Diagram

Parts List:

CategoryComponentQuantity
Resistors (All resistors are 1/4 watt unless specified)10k 3W1
7.5k1
1M1
100k1
10k1
1.2k1
100k 1W2
CapacitorsElectrolytic 10µF 25V1
Electrolytic 470µF 25V1
Electrolytic 330µF 250V2
SemiconductorsIC MC341611
Triac TIC2161
Bridge rectifier 1N40074
Zener diode 12V 5W1
Fuse 3AF1

This circuit changes AC voltage from 70V up to 260V into DC voltage between 180V and 350V.

It can work with both 110V and 220V systems.

It uses one chip called MC34161 and this chip work like voltage doubler when AC voltage is low and like normal rectifier when voltage is high.

Inside this chip is pin 1 which give 2.54V power and pin 2 checks signal and compare it with 1.27V.

One Zener diode D5, resistor R1 and capacitor C4 make 12V power for the chip to work.

Capacitors C2 and C3 must be strong and can handle more than 250V.

The chip control triac so circuit can work like full wave doubler or full wave bridge which depend on AC input.

Channel 1 look at negative side of AC voltage.

If voltage goes below 150V circuit wait short time which is set by 100k resistor and 10uF capacitor and then switch to voltage doubler mode.

If voltage goes above 150V again it switches back to full wave bridge mode right away.

Warning: This circuit makes very high voltage and can be very dangerous or even deadly so be very careful if anyone touches or work with it.

Formulas:

MC34161 is mainly made for PWM control but in some cases it can also work like voltage doubler or normal rectifier.

Below are formulas for both:

Voltage Doubler:

Vout = 2 × Vpeak – diode voltage loss

here,

  • Vpeak is the highest point of AC voltage.

Normal Rectifier:

Vout = Vpeak – diode voltage loss

  • Again Vpeak is the AC voltage peak value.

Note:

It is better to use special rectifier circuits like diode bridge or full wave rectifier for this kind of job.

They give better performance and work more efficient.

MC34161 is best used for PWM control and that is what it made for.

How to Build:

To build a 220V AC to DC Voltage Converter Circuit we need to follow the connections steps mentioned below:

Safety First:

  • Before starting be sure power is OFF and unplugged.
  • Use tools with insulation and work in dry place only.

Circuit Assembly:

  • First put all parts on PCB as per circuit diagram.
  • Solder resistors, capacitors, diodes and IC in right places.
  • Use wires to connect all parts and check the polarity and connection is correct.

Testing and Adjustment:

  • Before connecting to AC power check all parts and wire again for mistakes.
  • Use multimeter to check short circuit and insulation.
  • Then give power and check output voltage with multimeter.
  • Make small changes if needed.

Safety Precautions:

  • Put the circuit inside good cover so no one touches high voltage by mistake.
  • Add fuse or circuit breaker in input wire for safety from too much current.

Final Testing:

  • After everything is done and tested connect to AC power.
  • Use some load and see if circuit gives correct DC voltage with load.

Important Note:

  • Be careful with high voltage its very dangerous.
  • If not sure how to do something better try to ask help from expert or trained person.

Conclusion:

A Simple 220V AC to DC Voltage Converter Circuit is very important part in electronics.

It changes high voltage AC from 220V power into stable DC power at needed voltage.

This help electronic devices work good and safe.

References:

220 AC to 220 DC Converter

Datasheet IC MC34161

Datasheet Triac TIC216

Filed Under: Power Supply Circuits

About Admin-Lavi

Lavi is a B.Tech electronics engineer with a passion for designing new electronic circuits. Do you have questions regarding the circuit diagrams presented on this blog? Feel free to comment and solve your queries with quick replies

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