When it comes to making an FM receiver it's always thought to be a complex design, however the one transistor simple FM receiver circuit explained here simply shows that it isn't the case after all. Here a single transistor acts as a receiver, demodulator, amplifier to constitute a wonderful tiny FM radio.
It's basically based on a superregenerative audion receiver circuit where the use of minimal components becomes the main feature of the unit.
However fewer components also means a few compromises involved, here the receiver requires a large metal base for grounding the unwanted signals, and for keeping the noise factor to the lowest, and also this system would work only in places where the reception is rather strong and thus may not be suitable in areas where the signal strength is thinner.
How the One Transistor FM Radio Receiver Works
As mentioned above, the circuit is basically a single transistor superregenerative RF oscillator with a constant amplitude.
Here we have tried to enhance the design such that the amplitude becomes considerably magnified in order to turn OFF the transistor completely during the oscillations.
This called for an increase in the feedback capacitor and also to use a transistor specifically designed for handling extreme high frequency ranges such as a BF494.
Further modifications include an inductor with the emitter of the transistor, and a capacitor across the emitter resistor of the transistor.
Due to this the transistor is switched ON as soon as the base emitter voltage of the transistor falls significantly, resulting in an abrupt cut off in the oscillations.
However this prompts the emitter capacitor to discharge, allowing the collector current to yet again resume its flow, initiating a fresh cycle of oscillation.
The above happening forces the circuit to flip flop between two situations, oscillator OFF and oscillator ON, resulting a sawtooth frequency of about 50kHz at the output.
Each time the circuit flips across the above ON/OFF states, results in a significant stepping up of the amplitude which in turn constitutes greater amplification of the received signals. The procedure also gives rise to noise but only as long as a station is not being detected.

The above design has one drawback, though. The output received from the above circuit would have greater content of sawtooth noise compared to the actual FM reception.
A smart technique can be seen employed in the following single transistor FM radio circuit to attribute better efficiency to this simple design.
Here we pull out the emitter capacitor C5 ground link and connect it with the output.
This results in a fall in the collector voltage as the collector current rises, which in turn forces the emitter voltage to rise, prompting the emitter capacitor to negate the situation at the output.
This enforcement results in making the sawtooth effect on the received signal practically to zero, thus presenting an FM audio with much reduced background noise.

Single Transistor Radio with Audio Amplifier
To make the above circuit self-contained, an additional transistor stage may be introduced for enabling the radio to play the music loudly over a small loudspeaker.
The circuit is self explanatory, just the inclusion of a general purpose BC559 transistor along with a few inexpensive passive components can be witnessed in the design.

How to Make the Inductors
The involved coils or the inductors are very simply to wind.
L1 which is the oscillator coil is an air cored inductor, meaning no core is required, wire is super enamelled type, 0.8mm in thickness, diameter of 8mm, with five turns.
L2 is wound over R6 itself using 0.2mm super enameled copper wire with 20 turns.
How to Set Up the Circuit
- Initially when the circuit is switched ON, the output will be accompanied with substantial background noise which will gradually tend to disappear on detection of am FM station.
- This may be done by carefully tuning C2 with the help of an insulated screwdriver.
- Try to keep the tuning at the edge of the band of the particular FM station, with some practice and patience this would get easier with time.
- Once tuned, the circuit would respond to that reception every time its switched without the need for further alignment.
- As indicated at the beginning of the article, the circuit should be installed over a wide circular meta plate, preferably a solderable material, and all the ground of the circuit soldered on this plate.
- This is important to keep the circuit stable and avoid drifting away of the received stations and also for cancelling unwanted noise.
- The antenna in the proposed single transistor FM radio receiver circuit is not crucial and in fact should be kept as small as possible, a 10cm wire would be just enough.
Remember, the circuit also acts a like an effective transmitter circuit, therefore keeping the antenna size bigger would mean transmitting noise across the ether and disturbing your neighbors radio reception.
The upside being that the design can also used as a walkie talkie within a small radial distance....more on this next time.
Smallest One Transistor FM Radio Receiver Circuit

Parts List
- C1 = 10 pf variable trimmer capacitor.
- D1 = 1N82 diode.
- L1 = 5 turns using No. 16 magnet wire wound on a 3/4 -inch diameter coil former, 1/2 inch long. It should be tapped at 1/2 turn from the ground side for connecting the antenna, and tapped 2 turns from top of coil for connecting the diode.
- T1 = BC547 transistor.
- R1 = 1K 1/4 watt 5% resistor.
- Earphone (magnetic)
This is a fascinating small single transistor FM receiver that, unbelievably, can tune the full 88-108 MHz FM music band while still producing enough energy to power a typical set of magnetic earbuds.
The tiny receiver is so small that it could be integrated into an empty cigarette pack. This tiny FM receiver can additionally catch the audio paths of some television channels.
How to Setup
The only challenging aspect is really the L/C circuit, that comprises of a 10-pf trimmer capacitor and a tapped antenna coil connected in parallel.
After completing L1 winding, test the circuit first. Try flipping the taps on the coil if you are having trouble hearing the FM stations.
If you're still having trouble, try experimenting a little with the coil by adjusting the taps a fraction of a turn at a time, individually, while attentively listening via the headphones and tweaking C1 with each adjustment you make.
Antenna Specifications
Just about any length of strong (whip-like) No. 10 or No. 12 wire could be used for the antenna. However we discovered that 3 and 1/8 inches worked best for the middle of the f-m band.
If the indicated 1N82 diode cannot be found, any other vhf diode could be used instead.
Other diodes like the OA91 work well at this frequency as well.
If magnetic earbuds are used, which we advise, simply remove R1 from the circuit.
Single IC Small FM Radio Circuit
If you are looking for an FM radio circuit which should be as small as possible yet have a very high accuracy in terms of band selection, then you can try the following concept.
It uses a single chip TDA7000 for the modulation and demodulation of the FM stations, and uses the IC LM386 for amplifying the captured audio signals.

Everything in this single chip FM radio circuit looks straightforward except the two inductors. The two inductors L1 and L2 can be built in the following manner.
Both the coils have 100 turns and uses 28 SWG super enameled copper wire. Coil L1 has a center tap exactly at the midway of the 100 turns, that is at the 50th turn.




Questions & Answers
Send you a mail regarding a project to ' homemadecircuits@gmail.com ' hope this is the mail id that you check regularly
Riz
read your email, but sorry to say i won't be able to make the prototype for you….you can use the specified circuit for your purpose, there's no restriction from my side.
Hey Mr. Swagatam,
Is a good circuit and very simple, I have 2 question.
1. How many turns for L1
2. The circuit is't work on DTMF Decoder?
Hi Saman,
It's five turns
yes it will work with DTMF inputs, apply it at the base of T1 via a 0.1uF cap
yes you can do it.
Thank's I will try
Hi Swagatam,
super circuit, adding a band-pass_filter to allow only a particular frequency and reject all others will reduce noise and give a smooth tuning. is it?
-AND, i am making a wind charger setup to charge a 6V 4.2Ah battery. Can you provide some details on winding coils, turns & voltages.
Hi Max,
Thanks very much!
I am not very sure how that would be possible in this smallish design, will try to it figure it out.
For the wind charger what kind of circuit are you using? If you specify some more details then may be i can help.
Good day! All the caps are ordinary disc ceramic types.
its a crank circuit, macq.comuv.com/projects/img/lED.png
the battery discharges so fast in this design. i need an efficient circuit to charge battery from variable voltage source, like wind charger (0~30v, 1watt), and protect battery from quick discharge.
OK, I'll try to figure out a circuit and let you know! By the way you could also try a buck boost design as shown here:
https://www.homemade-circuits.com/2013/06/universal-ic-555-buck-boost-circuit.html
Good day sir!!
I have some questions and doubts.
1. Can I change the L1 w/ inductor? And if possible what value?
2. Where is the antenna?
3. Can I use a 9V pp3 battery as power source?
4. Can I connect the output to an earphone instead of amplifier?
that's all thanks in advance!!!
Good day Achilles,
Here are the answers:
1) You can change but it's not recommended, moreover the given data is too straightforward to need a change.
2)Antenna for the receiver is not crucial ad may not be used.
3)yes will do.
4) yes that would be OK.
sir, i have a fm transmitter of range just 1 feet. it works on 1.5v.
how can i increase its range?
Can i use any amplifier circuit?
Syed, even the most ordinary FM Tx circuit will have a range of 20 meters and above, your circuit could be faulty or not tuned correctly.
sir
how much cost is reqired for making this project
Rs.40/-
will it work on frequency band 88-108 MHz??
Please Rply
yes it will work.
Please c0nfirm 2 things:
Thickness of L2 is 0.2mm ??
What is the Diameter 0f L2?
it's to be wound on R6
can y0u tell me the values 0f L1 and L2 in 'henry' ?
It is aesy to found induct0rs in henry..
that's not important, you can make it as per the give instructions
….readymade coils will not work.
What must be the range of C2 for 87-108MHz range? Should we use 1/4W or 1/2W resistors?
C2 is a trimmer you will need to tweak it manually for the required range.
all are 1/4 watts
Other question: There is no R2 in the cirtuit? And I don't really understand your notation, wich side of C6 is the +? black or white strip? thanks
R2 is there in the first two circuits. the white block is the positive.
sir,
Is it possible to sweep radio station by 555 timer wave genarator instead of trimer.,actually I am making a "ghost box". where i need to change fm station very fast without lock any station.this circuit is eligible for this method.
555 with a 4017 IC can be used but will be a complex circuit.
The above circuit is a crude FM receiver, will work only if the FM radio station is very near.
can i use a bread board instead of a metal base ?
can you give me the entire list of components with its specifications ?
metal base is strictly required, therefore a general purpose board would suit better with a metal base.
Components are all standard: resistors are 1/4 watt rated and the capacitors 25V rated.
can you suggest me ways for making the antenna ?
antenna is a piece of 3 inch wire.
any specific wire for making this antenna
any ordinary flexible wire will do
hi !
can i use a voltage regulator instead of the variable capacitor ?
if not how do you turn the capacitors screw ?
turn it with a screw driver
hi sir.,
i m your big fan
i want a walkie talkie circuit within the range of 100m or variable distance above 100m
plz sir help me to do this by your circuit…
Hi Abdul,
Thanks! I would surely try to post one such circuit very soon in this blog. Please keep in touch.
How can I change the circuit to tune with a varicap and a pot?
I'll have to do some research and figure it out, presently I do not know about it.
Hi bro, i'm a beginner and have some troubles with this circuit, so please tell me how this circuit can:
– acts as a tuned RF circuit.
– detects audio signal from modulated -RF signal.
my e-mail: dnv1836@gmail.com
Thanks a lot.
Hi bro, I have roughly explained the working in the article, please refer to it.
Well, what can I say? All I get is a "humming" noise from the speaker. I built it ugly fashion, on a bit of copper-clad, everything in the air apart from grounds, where indicated, and everything as short as possible. I made the circuit third picture down from the top. I am not at all sure what that winding around the resistor is for, but I suspect it.
I have never been able to get an FM receiver or even an oscillator to work. Ever. This one is no exception, and now I really do give up. In any case, thanks for the effort and your time posting this, it was fun to make, at least :D.
optimizing tuned circuits is never easy unless you are an expert in the field.
As for the above circuit it's a tested design from elektor electronic engineers so definitely the design is OK.
you'll need to attach a ground plate under the circuit with all the negative connections soldered to this plate…as shown in the top image.
However the above circuit will be able to receive the signals only if the FM station is fairly close by, for weaker receptions the circuit will not respond.
by the way be positive, keep trying I am sure you'll succeed some day:)
what are the actual value of L1 and L2………….i need it emergency ………because its my project…………and i have to submit it very soon…………
the values are not known, the construction details are given which is more important than exact values.
hare is only given the structure of L1 and L2…………but i need value……….please help me………….its designed by you………so u know it batter……….
No, it's not designed by me,
to know the values you can quickly make the coils practically, and measure the values using an Inductance meter, it's very simple.