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Making Voltage Doublers and Multipliers


=20

Making Voltage Doublers And Multipliers

Find out how to construct an AC voltage doubler circuit. Extend it = to a=20 tripler circuit and more.

home=20 > electric=20 circuit | education=20
   Printer Friendly Version 3D"Print  =  =20  

A voltage doubler or voltage multiplier is a circuit = easily=20 made from a few components which enables the voltage from an AC = power=20 source to be increased. This is particularly useful in situations where = the load=20 current is low, but a higher voltage than is provided by the AC source = is=20 required. In addition these circuits rectify the AC volage = to DC=20 votlage which can be used to power DC loads and charge = batteries.

A=20 voltage tripler for example can be used to increase the voltage = from a 6V=20 rated Sturmey Archer = Dynohub (or other bicycle dynamo=20 hubs) so that it can be used to charge a 12V Battery, or to do the = same for=20 a low voltage stepper = motor=20 wind turbine.

In this article we will put together and test a = couple of=20 basic voltage multipler circuits. Links to online resources = explaining=20 exactly how voltage multiplier circuits work are provided at the = end of=20 the article for anyone who wants to find out more.

Voltage Doubler Circuit

To make a voltage doubler circuit = only=20 two capacitors= =20 and two diodes are=20 required costing pennies each. The circuit diagram is displayed=20 below:

3D"Simple

Testing the Voltage Doubler

A bicycle bottle dynamo was = used as=20 the AC power source (see photo below). Since this is used to power two=20 incandescent light bulbs, it should certainly have enough power to = provide=20 10-20mA of current to the LED we planned to use as the test = load.

3D"Bicycle

Fi= rst the=20 AC voltage of the dynamo was measured directly with a multimeter. = Spinning the front wheel of the bicycle as quickly as possible by hand, = the=20 maximum voltage reading recorded was 5.04 Volts = AC.

Putting this=20 AC output voltage through a bridge=20 rectifier, the maximum DC voltage was measured at 5.12 Volts DC. It = is this=20 DC voltage we are interested in seeing increase using our voltage = doubler=20 circuit since the doubler will also act as a rectifier converting = the AC=20 voltage output by the dynamo into DC voltage.

The voltage = doubler=20 was built using prototyping=20 breadboard as per the circuit diagram provided earlier in this = article. The=20 wheel was spun rapidly by hand ten times and an average taken of the = maximum=20 voltages recorded from each spin. This average was 10.12 Volts DC = -=20 almost double that recorded using the bridge rectifier - showing = that the=20 voltage doubler (5.12V to 10.12V) circuit was working.

Voltage Tripler

A voltage tripler or other larger = voltage=20 multiplier can be built simply by extending the voltage doubler = circuit with=20 the addition of extra capacitors and diodes. One extra capacitor and one = extra=20 diode are required for each increase in multiple - therefore a tripler = has a=20 total of three capacitors and three diodes as shown below.

3D"Voltage

The=20 circuit above was built again on prototyping breadboard, the wheel spun = ten=20 times, and the average maximum voltage recorded to be 13.64 Volts DC. = Not quite=20 triple, but that could be due to the increased amount of = voltage=20 dropped across the diodes in the circuit. Another alternative is = that the=20 LED was using all of the available current and emptying the third = capacitor=20 C3 before it could reach the predicted 15 VDC. (Remember that = every=20 increase in voltage is matched by a fall in current since the overall = maximum=20 power output of the dynamo is fixed. See Ohm's=20 Law)

3D"Voltage

As=20 a final test, the 510 Ohm resistor (in series with the LED) was replaced = with a=20 1,000 Ohm resistor to halve the current reaching the LED to see why the=20 voltage tripler circuit was falling short. The experiment was = repeated=20 and the new average maximum voltage recorded was 14.84=20 Volts.

Therefore the voltage tripler circuit was = working=20 perfectly - the problem was insufficient power from the small bottle = dynamo=20 reaching the LED. Had a larger dynamo been used a voltage of around 15 = Volts DC=20 would have been recorded first time.

Voltage Multipliers

Getting more multiples of voltage is simply = a matter=20 of adding more capacitors and diodes to the existing tripler circuit = until the=20 required voltage is reached. As further multiples are added the = voltage=20 rating of the capacitors used must be considered - for example in a=20 voltage quadrupler circuit, the fourth capacitor would receive = 20V, so=20 16V-rated capactitors could not be used. In addition the power of the AC = source=20 must be considered to calculate if enough current at the increased = voltage will=20 be available for the load.

Increasing Efficiency of Voltage Multipliers - Diode Choice

The=20 forward voltage drop in a standard silicon diode such as the = 1N4001 we=20 used in our experiments is 0.6-0.7 Volts. This is not insignificant, and = the=20 accumulated drops in voltage make a real difference to the final output = voltage=20 from the multiplier as power is wasted (as dissipated heat) from the = diodes. To=20 increase efficiency, it is better to use Germanium=20 diodes, or easier to find Schot= tky=20 Diodes as these have a voltage drop of just 0.25-0.4V, halving = the power=20 lost in the diodes compared to silicon diodes and therefore increasing = the=20 output voltage.

Find out More About Voltage Multipliers

In this article we have = not=20 covered the sometimes complicated theory involved in voltage = multipliers.=20 If you are interested in finding out more then there are numerous online = resources of which a few are listed below:

Voltage Multipliers from = play-hookey.com.
Basic Multiplier Circuits - introduces the = Villard=20 cascade (as seen in the voltage tripler above) and discusses the = practical=20 limitations of voltage multipliers .
Voltage doubler, tripler, and quadrupler circuits - = from=20 coolcircuit.com.

And here is a video showing a voltage=20 quadrupler in action together with the circuit diagram, and a time = lapse=20 showing its construction.




=20

Article Last Modified: = 22:21, 24th Sep=20 2014

Comment on this Article

If you have any comments on this = article, please=20 email them to neil@reuk.co.uk.


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<= IMG=20 alt=3D"Make a Simple Battery Status Monitor" = src=3D_http_/www.reuk.co.uk/article-thumb/tmb_Make-a-Simple-Battery-Stat%3d.f338 us-Monitor.jpg"=20 border=3D"0">

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Click one of = the links below=20 for further articles on the following relevant = topics:
electric = circuit, education.=20

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Making Voltage Doublers and Multipliers


=20

Making Voltage Doublers And Multipliers

Find out how to construct an AC voltage doubler circuit. Extend it = to a=20 tripler circuit and more.

home=20 > electric=20 circuit | education=20
   Printer Friendly Version 3D"Print  =  =20  

A voltage doubler or voltage multiplier is a circuit = easily=20 made from a few components which enables the voltage from an AC = power=20 source to be increased. This is particularly useful in situations where = the load=20 current is low, but a higher voltage than is provided by the AC source = is=20 required. In addition these circuits rectify the AC volage = to DC=20 votlage which can be used to power DC loads and charge = batteries.

A=20 voltage tripler for example can be used to increase the voltage = from a 6V=20 rated Sturmey Archer = Dynohub (or other bicycle dynamo=20 hubs) so that it can be used to charge a 12V Battery, or to do the = same for=20 a low voltage stepper = motor=20 wind turbine.

In this article we will put together and test a = couple of=20 basic voltage multipler circuits. Links to online resources = explaining=20 exactly how voltage multiplier circuits work are provided at the = end of=20 the article for anyone who wants to find out more.

Voltage Doubler Circuit

To make a voltage doubler circuit = only=20 two capacitors= =20 and two diodes are=20 required costing pennies each. The circuit diagram is displayed=20 below:

3D"Simple

Testing the Voltage Doubler

A bicycle bottle dynamo was = used as=20 the AC power source (see photo below). Since this is used to power two=20 incandescent light bulbs, it should certainly have enough power to = provide=20 10-20mA of current to the LED we planned to use as the test = load.

3D"Bicycle

Fi= rst the=20 AC voltage of the dynamo was measured directly with a multimeter. = Spinning the front wheel of the bicycle as quickly as possible by hand, = the=20 maximum voltage reading recorded was 5.04 Volts = AC.

Putting this=20 AC output voltage through a bridge=20 rectifier, the maximum DC voltage was measured at 5.12 Volts DC. It = is this=20 DC voltage we are interested in seeing increase using our voltage = doubler=20 circuit since the doubler will also act as a rectifier converting = the AC=20 voltage output by the dynamo into DC voltage.

The voltage = doubler=20 was built using prototyping=20 breadboard as per the circuit diagram provided earlier in this = article. The=20 wheel was spun rapidly by hand ten times and an average taken of the = maximum=20 voltages recorded from each spin. This average was 10.12 Volts DC = -=20 almost double that recorded using the bridge rectifier - showing = that the=20 voltage doubler (5.12V to 10.12V) circuit was working.

Voltage Tripler

A voltage tripler or other larger = voltage=20 multiplier can be built simply by extending the voltage doubler = circuit with=20 the addition of extra capacitors and diodes. One extra capacitor and one = extra=20 diode are required for each increase in multiple - therefore a tripler = has a=20 total of three capacitors and three diodes as shown below.

3D"Voltage

The=20 circuit above was built again on prototyping breadboard, the wheel spun = ten=20 times, and the average maximum voltage recorded to be 13.64 Volts DC. = Not quite=20 triple, but that could be due to the increased amount of = voltage=20 dropped across the diodes in the circuit. Another alternative is = that the=20 LED was using all of the available current and emptying the third = capacitor=20 C3 before it could reach the predicted 15 VDC. (Remember that = every=20 increase in voltage is matched by a fall in current since the overall = maximum=20 power output of the dynamo is fixed. See Ohm's=20 Law)

3D"Voltage

As=20 a final test, the 510 Ohm resistor (in series with the LED) was replaced = with a=20 1,000 Ohm resistor to halve the current reaching the LED to see why the=20 voltage tripler circuit was falling short. The experiment was = repeated=20 and the new average maximum voltage recorded was 14.84=20 Volts.

Therefore the voltage tripler circuit was = working=20 perfectly - the problem was insufficient power from the small bottle = dynamo=20 reaching the LED. Had a larger dynamo been used a voltage of around 15 = Volts DC=20 would have been recorded first time.

Voltage Multipliers

Getting more multiples of voltage is simply = a matter=20 of adding more capacitors and diodes to the existing tripler circuit = until the=20 required voltage is reached. As further multiples are added the = voltage=20 rating of the capacitors used must be considered - for example in a=20 voltage quadrupler circuit, the fourth capacitor would receive = 20V, so=20 16V-rated capactitors could not be used. In addition the power of the AC = source=20 must be considered to calculate if enough current at the increased = voltage will=20 be available for the load.

Increasing Efficiency of Voltage Multipliers - Diode Choice

The=20 forward voltage drop in a standard silicon diode such as the = 1N4001 we=20 used in our experiments is 0.6-0.7 Volts. This is not insignificant, and = the=20 accumulated drops in voltage make a real difference to the final output = voltage=20 from the multiplier as power is wasted (as dissipated heat) from the = diodes. To=20 increase efficiency, it is better to use Germanium=20 diodes, or easier to find Schot= tky=20 Diodes as these have a voltage drop of just 0.25-0.4V, halving = the power=20 lost in the diodes compared to silicon diodes and therefore increasing = the=20 output voltage.

Find out More About Voltage Multipliers

In this article we have = not=20 covered the sometimes complicated theory involved in voltage = multipliers.=20 If you are interested in finding out more then there are numerous online = resources of which a few are listed below:

Voltage Multipliers from = play-hookey.com.
Basic Multiplier Circuits - introduces the = Villard=20 cascade (as seen in the voltage tripler above) and discusses the = practical=20 limitations of voltage multipliers .
Voltage doubler, tripler, and quadrupler circuits - = from=20 coolcircuit.com.

And here is a video showing a voltage=20 quadrupler in action together with the circuit diagram, and a time = lapse=20 showing its construction.




=20

Article Last Modified: = 22:21, 24th Sep=20 2014

Comment on this Article

If you have any comments on this = article, please=20 email them to neil@reuk.co.uk.


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