In this article I have explained a dual input hybrid solar and wind battery charger circuit using cheap and ordinary components.
The idea was requested by one of the interested members of this blog.
Technical Specifications
Good after noon sir am designing a " Solar and Wind energy harvest regulator circuit" which has two inputs and one output.
The PV solar panel ( 0-21V DC) and the other input is a wind turbine (15V DC).
The circuit must be designed for charging a 12v battery . the output current being delivered to the loaded battery must not deliver more than 3.5A.
My group and myself have gotten a few circuits off the internet and simulated them using pspice none of them is giving us the output current of 3.5 A. please sir can you please help us with examples of circuits which we can use.
The Design
In one of my previous posts I introduced a similar concept which enabled a battery to be charged from two sources of energy such as wind and solar simultaneously and without the need of any manual intervention.
The above design is based on PWM concept and therefore could be a bit complex and difficult to optimize for a layman or a new hobbyist.
The circuit presented here offers exactly the same features, that is, it enables the charging of a battery from two different sources, yet keeping the design extremely simple, efficient, cheap and hassle free.
So I have explained the circuit in details with the help of the following explanation:
Circuit Diagram

The figure above shows the proposed solar, wind twin hybrid battery charger circuit, using very ordinary components such as opamps and transistors.
We can see two exactly similar opamp stages being employed, one on the left side of the battery and the other on the right side of the battery.
The left side opamp stage becomes responsible for accepting and regulating the wind energy source while the right side opamp stage processes the solar electricity for charging the single common battery in the middle.
Although the two stages look similar, the modes of regulation are different. The wind energy controller circuit regulates the wind energy by shunting or shorting the excess energy to ground, while the solar processor stage does the same but by cutting of the excess energy instead of shunting.
The above explained two modes are crucial since in wind generators which are essentially alternators require the excess energy to be shunted, and not cut off, so that the coil inside can be safeguarded from over current, which also keeps the speed of the alternator at a controlled rate.
This implies that the concept can be also implemented in ELC applications also.
How the opamp is Configured to Function
Now let's investigate the functioning of the opamp stages through the following points:
The opamps are configured as comparators where the pin#3 (non-inverting input) is used as the sensing input and pin#2 (inverting input) as the reference input.
The resistors R3/R4 are selected such that at the required battery charging voltage, pin#3 just becomes higher than pin#2 reference level.
Therefore when the wind energy is applied to the left circuit, the opamp tracks the voltage and as soon as it tries to exceed the set threshold voltage, pin#6 of the IC goes high which in turn switches ON the transistor T1.
T1 instantly short circuits the excess energy restricting the voltage to the battery at the desired safe limit. This process goes on continuously ensuring the required voltage regulation across the battery terminals.
The opamp stage at the solar panel side also implements the same function however here the introduction of T2 makes sure that whenever the solar energy is higher than the set threshold, T2 keeps on cutting it OFF, thereby regulating the supply to the battery at the specified rate, which safeguards the battery as well as the panel from unusual inefficient situations.
R4 on both the sides may be replaced with a preset for facilitating easy setting up of the threshold battery charging level.
Current Control Stage
As per the request, the current to the battery must not exceed 3.5 Amps. To regulate this a standalone current limiter can be seen attached with the battery negative.
However the design shown below can be used with up to 10 amp current, and for charging up to 100 Ah battery
This design can be built using the following circuit:

R2 may be calculated with the following formula:
- R2 = 0.7 / charging current
- wattage of the resistor = 0.7 x charging current
Parts list for the solar wind dual hybrid battery charger circuit
- R1, R2, R3, R5, R6 = 10k
- Z1, Z2 = 3V or 4.7V , 1/2 watt zener diode
- C1 = 100uF/25V
- T1, T2 = TIP142,
- T3 = BC547
- D2 = 1N4007
- Red LEDs = 2nos
- D1 = 10 amp rectifier diode or Schottky diode
- Opamps = LM358 or any similar
Simplified Solar, Windmill Hybrid Battery Charger Circuit
A very effective solar, and windmill combined hybrid battery charger can be built using just a couple of transistors, as shown in the following image:

This is actually a simple yet very effective, full fledged hybrid charging system which will not only combine the solar and windmill power to charge your battery faster, but also make sure that the battery is never over charged or over discharged. That means, your battery condition will be always maintained efficiently ensuring a longer battery life.
Another great feature of this hybrid charger is that, the load can be operated simultaneously while the battery is being charged, without loading the battery.
Also, in case the solar/wind power is unavailable and the battery reaches lower discharge level, the load will be automatically cut off, to prevent over discharging of the battery.
Double DC Input Hybrid Charger Circuit
A similar second hybrid design below describes a simple idea which enables the processing of two different sources of DC inputs derived from different renewable sources.
This hybrid renewable energy processing circuit also includes a boost converter stage which effectively raises the voltage for the required output operations such as a charging a battery. The idea was requested by one of the interested readers of this blog.
Technical Specifications
Hi, I am a final year engineering student, i need to implement a multi input chopper (integrated buck/buck boost converter) for combining two dc sources(hybrid).
I have the basic circuit model, can you help me to design inductor, capacitor values and control circuit for the chopper. I have emailed you the circuit design.
Circuit Operation.
As shown in the figure the IC555 sections are two identical PWM circuits positioned for feeding the adjoining double input boost converter circuit.
Following functions take place when the shown configuration is switched ON:
DC1 may be assumed as the high DC source such as from a solar panel.
DC2 may be assumed as alow DC input source, such as from a wind turbine generator.
Assuming these sources to be switched ON, the respective mosfets start conducting these supply voltages across the following diode/inductor/capacitance circuit in response to the gate PWMs.
Now since the PWMs from the two stages might beset with different PWM rates, the switching response will also differ depending upon the above rates.
For the instant when both the mosfets receive positive pulse, both the inputs are dumped across the inductor causing a high current boost to the connected load. The diodes effectively isolate the flow of the respective inputs towards the inductor.
For the instant when the upper mosfet is ON while the lower mosfet is OFF, the lower 6A4 becomes forward biased and allows the inductor a return path in response to the switching of the upper mosfet.
Similarly when the lower moset is ON, and the upper mosfet is OFF, the upper 6A4 provides the required return path for the L1 EMF.
So basically, the mosfets can be turned oN or OFF irrespective of any kind of synchronization making things pretty easy and safe. In any case the output load would receive the average (combined) intended power from the two inputs.
The introduction of the 1K resistor and the 1N4007 diode ensures that the two mosfets never receive separate logic high pulse edge, though the falling edge may be different depending upon the setting of the respective PWMs of the 555 ICs.
The inductor L1 will need to be experimented with in order to get the desired boost at the output. Different number of turns of 22 SWG super enameled copper wire may be used over a ferrite rod or slab, and the output measured for the required voltage.





Questions & Answers
Please mr swagatam can you provide me with a 6v 4.5amp transformerless power supply circuit and also help me with hint on how to measure voltage of a transformer…u can also provide the charger with transformer.
Pls mr swagatam please provide me with a 6v 4.5ah battery transformerless charger circuit and also help me with hint on how to measure transformer voltage…also i designed a cd4047 inverter but when i connect the drains to a transformer battery voltage immediately drops wats the reason behind it?
Mr victory, you can refer to the following article for the details on 6V 4 ah battery charger circuit.
https://www.homemade-circuits.com/2012/07/make-6v-4ah-automatic-battery-charger.html
It would be difficult to troubleshoot the inverter problem unless I have the schematic with me.
I designed the charger but i get 0.00v dc at the output and transformer is humming i then removed the transformer and placed the primary in the mains then i used a dmm to measure the secondary voltage and it's also 0.0v bt i can also sense sparks at the secondary when i connect the dmm but no voltage but the transformer is rated 12-0-12 1amp please suggest to me what i can do..regards
it will be difficult to identify the fault without practically checking the circuit…there could be something severely wrong with the connections…
but please can you help me as to how to check transformer secondary voltage when connected to mains i checked my connection but i don't sense anything wrong with it
you can check it with a multimeter by selecting the AC range in it
Thanks sir i think my transformer is faulty…please can i use a 12v 1.5 amp transformer for ur inverter circuit using cd4047?…2. If i can't use the transformer please help me with how to connect 4 12v 1.5amp transformers in parallel to get 12v 6amp..thanks in advance
you can connect the input winding in parallel, no issues……but the outputs of the individual transformers will need to be terminated to separate loads….do not parallel the output winding…..
Thanks sir but for the circuit in the above link that u sent to me can i use a tyn112 transistor in place of tip122
if it's a 1amp rated transistor then it would do…
Hello sir, can i use a 12v 1amp transformer to test the first stage of ur sinewave inverter using cd4047 and three 555ic will it give me 230v 12watt output?…if i connect 4 of them in parallel how many watt will it give me and can it function properly lyk a single 12v 4amp transformer? i will use a 12v 4.5ah battery please help me as i want to design this circuit also where will i connect the positive and negative terminals of the battery to after completing the 2nd stage…please reply a.s.a.p
hello victory, I think I have already replied you many times, that if you want many trafos in parallel for an inverter application you must only make the input side of a trafo in parallel, while the output winding needs to be terminated separately to the loads.
don't jump to a sinewave directly…first make a basic square wave inverter successfully and then you can proceed for the sine mod…
Thanks Sir for your reply it has help me alot but sir can u go with detail specification regarding the solar paanel and can u help me in how does that windmill works ……reply as early
Sanket, the solar panel specs will depend on the battery specs that you may be intending to use with it…tell me the battery rating, and I'll tell you the solar panel ratings.
sir i want to charge the battery of Nokia c1-01 its specifications are 1020mAh,3.7V,,3.8Wh, and sir let me know about the wind energy gen for the above specs and what component are to be used for it??
Sanket, if you want to use only a wind generator then you can try a different circuit for it, the above hybrid design won't be applicable for you.
You can try the following design
https://www.homemade-circuits.com/2015/06/simplest-windmill-generator-circuit.html
use a bicycle dynamo for the generator motor.
and do not use the boost circuit, just use a bridge rectifier and followed by a LM317 circuit as shown here:
https://www.homemade-circuits.com/2012/02/how-to-make-current-controlled-12-volt.html
Hi Mr. Swagatam, I would like to use your circuit in my project. May I ask if I use a 4Ah or 7Ah battery, will a 40W solar panel do? Thanks sir.
Hello sir, is it possible to change the wind energy input with house grid input using this circuit? because I would like to recharge the battery using solar energy and grid energy. Thank you Sir.
the wind input cannot be changed with a mains adapter….but you can use the solar panel on the "wind" side and the mains adapter on the solar panel side for the intended results
hi sir.. can i used this circuit for solar/ac power supply dual battery charger circuit? means that i want to change wind to ac power supply. thanx in advance..
the wind input cannot be changed with a mains adapter….but you can use the solar panel on the "wind" side and the mains adapter on the solar panel side for the intended results
Is this charger efficient to charge 150Ah smps battery?
And i also need to include a battery protection circuit to decouple the charging circuit whenever not required to keep battery at safe operating region right?
you can charge any battery using the above circuit just by modifying the output transistor accordingly, for 150AH use 2N3055 transistor for T1 and T2 with adequate heatsinking.
yes you would require a high charge cut-off circuit at the respective inputs for preventing over charging of the battery
hi sir,
i would like to design a mobile battery charger similar to the one shown here.
what solar panel and wind energy dc o/p voltage is necessary to charge a mobile battery and what changes are to be made in the circuit?
angela, no changes would be required in the circuit for the mentioned application.
the current from the sources should be equivalent to the AH rating of the battery
..voltage could be much higher which may be ultimately regulated by the opamp setting
sir, the circuit above is not working in multisim. I replaced the wind and solar input sources with a constant dc voltage. How did you implement this to see the output. please help me soon.
Mohammed, I simulated the design successfully in my mind, and anything simulated by me works 95 times out of 100.
I don't trust simulator softwares, neither do I use them, so I cannot comment on them.
is it possible to use 2N3773 instead of T1 and T2….the TIP 147 is not availiable in my place…..or what are the alternatives??
T1 will require a supporting BC547 with 2N3773, configured as Darlington…then it will work.
for the other section T3 will need to be changed with 2N2222, and R5 replaced with a 470 ohm 2 watt, these mods would allow 2N3773 for T2 also
Something I have been looking for. Thanks for what you do sit
you are welcomer
Hi, just out of curiosity, which ic would you recommend for the above application?
thanks
you can use two IC 741 or LM321
Just out of curiosity, what ic would you recommend to replicate the above circuit?
Hi sir..thank u for the circuit..i m using 12 v 5w solar panel and 12v from wind and so charging battery..what should be the current given to battery?should it be constant or variable?
reply soon sir…
Hi sir..thank u for the circuit..i am using 12v 5w solar panel with 12 v from wind and so charging the battery..the current which we are providing to battery..should it be constant or variable?..reply soon plz
Hi shekhar, what is the battery AH rating?
Its 12v 1.2AH
Actually sir can i use this circuit for
Charging 12v 1.2AH battery with 12v 5W solar and 12v wind output?if yes then it will be fine,if not what should be changes required?..reply soon sir!
Shekhar, just add a 50 ohm 2 watt resistor in series with the battery positive, that'll do the job.
good day, sorry presently i do not have it!
Hello Swagatam,
I would like to contact you privately. Here is my email bvgohmslf@gmail.com. Thank you and cheers.
Hello Mr. Swagatam,
I would really like to connect with you. If you could email me with this bvgohmslf@gmail.com, it will be helpful. Thank you and Cheers
Hello Michael, pleae feel free to express your thoughts in this website through comments, I'll try to help!
Okay, I would like you to show me a schematic design for a 3kva transformerless inverter. Thanks
you can try the following concept
https://www.homemade-circuits.com/2014/11/48-v-inverter-circuit.html
for transformerless you can try this
https://www.homemade-circuits.com/2016/02/pwm-sinewave-5kva-inverter-circuit.html
Really greatful for your help. I want to know what I would need to configure to make it 3.5kva, 24volts and 2kva, 24 volts form the schematic you have given to me. Thanks again.