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Content-Type: text/html; charset="utf-8" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.circuitstoday.com/few-transistor-amplifier-circuits =EF=BB=BF =20 =20 =20 Transistor amplifier circuits =20 =20 =20 =20 =20 =20 =20 =20 =09 =20 =20
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Few Transistor amplifier circuits

March - 4 - 2011
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This article is a list of various = types of=20 amplifier circuits built using Transistors alone.This includes a Class = AB=20 amplifier using 4 transistors, then we have a headphone amplifier = circuit and=20 finally a low power amplifier using transistor. This article is solely = dedicated=20 to publish more transistor amplifier circuits. So you may keep visiting = this=20 post in future for more updates.

List of  = Transistor=20 Amplifiers

1. Class=20 AB 4 Transistor Amplifier

2.=20 Headphone Amplifier using Transistors

3. A=20 Low cost amplifier circuit  using Transistor

These are circuits that can be used in = a lot of=20 low scale applications. The main feature of these circuits is that = they all=20 are just basic designs and the components used can be easily obtained = from=20 your junk box. More over the value of the components are not very = critical and=20 slight variations in it will not affect the performance.

1. 4 Transistor = Class AB=20 amplifier.

Description.

A very simple and easy to build class = AB audio=20 amplifier using four transistors is shown here. In class AB operation = each=20 output device conducts more than half of the input signal cycle. Up to = 78%=20 efficiency is possible with class AB designs and cross over distortion = is=20 reduced. The circuit shown here is suitable for small radio receivers, = audio=20 players, intercom, telephone etc.

Transistor Q1 with its associated = components is=20 wired as a pre amplifier stage. The audio input is coupled to the base = of Q1=20 through resistor R1 and capacitor C1. Resistor R3 provides collector to = base=20 bias for Q1 and C3 is an AC by pass capacitor for the collector resistor = R4.=20 Collector to base biasing is a good method of biasing for circuits like = this as=20 it provides enough negative feedback, prevents thermal runway and = stabilizes the=20 operating point. The second stage is the driver stage for the push pull = pair. Q2=20 with its associated components perform this job. This stage is also = collector to=20 base biased and its input is coupled to the output of the preamplifier = stage=20 using capacitor C2. Resistor R8 limits the collector current of Q2.The = third=20 stage is the class AB push pull section comprising of transistors Q3 and = Q4.=20 Diodes D1 and D2 provides the bias voltage for the push pull stage. The = output=20 of the amplifier is coupled to the loud speaker through the capacitor = C4. C5 and=20 C6 are power supply filter capacitors.

Circuit diagram of 4 = transistor=20 amplifier.

4 Transistor Class AB = amplifier

Notes.

  • The circuit can be assembled on a vero board.
  • K1 can be an 8 ohm/5W speaker.
  • C6 must be grounded near to the Q1 and C5 must be grounded near to = the=20 loud speaker ground. This reduces noise.
  • Use 5V DC for powering the circuit.

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2. Class A = Headphone=20 amplifier.

Description.

This is the circuit diagram of a = Headphone=20 amplifier operating in the class A push pull mode. In class A mode the = output=20 device (transistors) conduct over the entire input signal cycle. The = maximum=20 possible efficiency for Class A operation is 50% and it further reduces = when=20 capacitive coupling is used. But the advantages of Class AB amplifier = are no=20 cross over distortion, high fidelity and low harmonic distortion. These=20 amplifiers are most suitable for low power applications.

In the circuit transistor Q1 works as = the=20 preamplifier. Resistors R6 and R7 provides potential divider biasing for = Q1.=20 Audio input is coupled to the base od Q1 through capacitor C2, resistor = R9 and=20 POT R10. Emitter of Q1 is coupled to the base of Q2 through resistor R3. = Diodes=20 D1 and D2 provides bias voltage for Q2. Base of Q3 is directly coupled = to the=20 collector of Q1. Resistor R5 limits the collector current of Q2 and Q3. = C4 and=20 C5 are power supply filter capacitors. Output of the amplifier is = coupled to the=20 head phone using the capacitor C3.

Circuit diagram of head phone = amplifier.

Head phone amplifier Class = A

 

Notes.

  • The circuit can be assembled on a vero/perf board.
  • Power supply can be anything between 6 to 24V DC.
  • I used 12V DC for powering the circuit.
  • Z1 can be a 100 ohms or higher head phone.
  • Electrolytic capacitors voltage rating must be according to the = supply=20 voltage you use.

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3.Low power = transistor=20 amplifier circuit

Description.

A very simple low power three stage = transistor=20 amplifier circuit is shown below. First and second stages are pre = amplifiers and=20 third is the output stage. Collector to base biasing is employed for = each stages=20 and it is enough for circuits like this.

Collector to base=20 biasing: Consider the first stage.R1 is the collector = resistor=20 and R2 is the base resistor. This type of biasing provides some negative = feedback, avoids thermal runaway and stabilizes the operating point. = When the=20 temperature increases the collector current also increases. This = increases the=20 voltage drop across the collector resistance R1 and this decreases the = voltage=20 drop across base resistor R2. As a result, base current drops which in = turn=20 drops the collector current and thermal runaway is avoided. = Stabilization of=20 operating point is achieved by the prevention of variation in collector = current=20 with temperature.

When a transistor amplifier is = operating,=20 the collector voltage will be phase opposite to the input signal. Since = base=20 resistor R2 is connected between collector and base, some fraction of = the phase=20 opposite collector voltage is fed back to the input (base) through the = base=20 resistor R2 and thus negative feedback is achieved. Negative feed back = reduces=20 the voltage gain of the amplifier but it improves the = stability.

In the circuit collector of Q1 is = coupled to the=20 base of Q2 using the capacitor C2. R3 is the biasing resistor for Q2 and = R4 is=20 its collector resistor.Collector of Q2 is coupled to the base of Q3 = using the=20 capacitor C3. R5 is the biasing resistor for Q3 and speaker is connected = as the=20 collector load. Capacitors C4 and C5 are filters. C1 is the input DC = decoupling=20 capacitor.

Circuit diagram of low power = transistor=20 amplifier.

Low power transistor = amplifier

 

Notes.

  • The circuit can be assembled on vero or perf board.
  • Use 9V DC for powering the circuit. A 9V PP3 battery is fine.
  • All electrolytic capacitors must be rated 10 or 15V.
  • An optional protection diode can be added in series to the = positive supply=20 line. This protects the circuit from accidental polarity = reversals.
  • Type number of the transistors are not very critical. Replacement = will not=20 affect the performance to a great extend.
  • Powering the circuit using a mains adapter will induce some = noise.
  • Speaker impedance can be 64 ohms or more.

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11 Responses to =E2=80=9CFew Transistor amplifier = circuits=E2=80=9D

  • masoud says:

    thank you .do i 2n3055 used?

  • Parsa = says:

    Hi everyone
    I constructed the circuit of the 4 transistor class = AB=20 amplifier and it worked well. I just have a small question;
    Why is = C3 used=20 to bypass R4? I mean why do we need to bypass it? and why to bypass it = with=20 such a small capacitor?
    Thank u in advance
    Parsa

  • mike says:

    the class AB circuit doesn=E2=80=99t work, te currents are correct = but the load=20 isn=E2=80=99t. I don=E2=80=99t understand why people will publish this = when it ain=E2=80=99t=20 working.

  • Mihai = says:

    Hi , I just constructed Circuit diagram of low power transistor=20 amplifier
    the last one from this page=E2=80=A6I don,t know why , my = speaker pulsing=20 without any signal=E2=80=A6when I apply signal from my guitar pickup = to see if the amp=20 working, the sound coming out very noisy=E2=80=A6after the vibration = of the string=20 going down a little, the amplifying effect stops and the rhythmical = pulsing=20 going further ( like a heart)=E2=80=A6

    Why this happening? Please give me an advice where to look for = problem in=20 this schematic?

    Regards
    Mihai

  • Geoff = says:

    Hi all, I have a hearing impairment which makes listening to tv = frustrating=20 for my wife and I as I need it louder than normal, but, when the = volume alters=20 from soft speech to loud music etc we are constantly battling with the = remote,=20 is there such thing as an auto volume adjuster amplifier to keep the = tv sound=20 on a constant level to bring relief to my wife and I.
    Many thanks = in=20 anticipation.
    Geoff

  • Nico = says:

    where should I connect c3? across r3 and at the diode? or across r3 = to=20 r7?

  • Jonathan = says:

    In the first ckt, C3 should be across R7 and about 100pF, C2 can be = 1 mF,=20 and R9,R10 should be 1/2 to 1 ohm. K1 will only see about 1/4 watt at = 5V=20 supply.

  • Jonathan = says:

    Peltier cooler. Some surplus dealers have them, but they = ain=E2=80=99t cheap. You=20 might find one junked somewhere. If the cool ing unit doesn=E2=80=99t = work, take it=20 apart; sometimes if one of the little (1/8th inch long) elements is = corroded;=20 you can jump across it with a wire.

  • KI = SENEVIRATHNA=20 says:

    An eny one have a idea about light witch is giving by sun?O K,I = will give a=20 idea but i dont know how it get,enyway derect sun light can it get u = r room=20 ?Yes i think using 2 pc of magnificent glass or one reflector tyoe = glass and=20 sutable fiber optics cable.Yes may be im pool but sumone who knos = about=20 transfering light withen fiber optic cable and to be manufact the = device to=20 joint magnificent glass and fiber optic cable.
    Do u think it will = work? why=20 not think about how satalite antenna working.Out side audio vedio = signal come=20 to TV withen electric cable.Cannot wefollow this theory for this = matter.I hope=20 some day some one will do this type of lighting system,Im sure.what u=20 think?Plese write u r comments.Im inviting to every body who intrusted = about=20 this. Thank u circuits today.

  • KI = SENEVIRATHNA=20 says:

    Hi,Wish u a good day every one.I need to know what is the = construction of=20 portable 12v dc powered cooler.And what is the name of tha device = which is=20 giving cool & heat,when we give the power.

  • Mark says:

    In the first circuit the capacitor should be placed across R3 not = R4.

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"/"+c.google_unique_id)}d=3D{};nb(d,a,b,!1);d.style=3D"display:none";a=3D= q;d.id=3Dk;d.name=3Dk;a=3DEa(ea("","googleads.g.doubleclick.net"),["/page= ad/html/r20140116/r20140107/zrt_lookup.html",=0A= a?"#"+encodeURIComponent(a):""].join(""));d.src=3Da;d=3Dmb(d)}else = d=3Dnull;a=3D(new = Date).getTime();b=3Dc.google_top_experiment;k=3Dc.google_async_for_oa_exp= eriment;l=3Dc.google_always_use_delayed_impressions_experiment;d=3D["",d," =20 =20 =20 =09 =20 =20
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Few Transistor amplifier circuits

March - 4 - 2011
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This article is a list of various = types of=20 amplifier circuits built using Transistors alone.This includes a Class = AB=20 amplifier using 4 transistors, then we have a headphone amplifier = circuit and=20 finally a low power amplifier using transistor. This article is solely = dedicated=20 to publish more transistor amplifier circuits. So you may keep visiting = this=20 post in future for more updates.

List of  = Transistor=20 Amplifiers

1. Class=20 AB 4 Transistor Amplifier

2.=20 Headphone Amplifier using Transistors

3. A=20 Low cost amplifier circuit  using Transistor

These are circuits that can be used in = a lot of=20 low scale applications. The main feature of these circuits is that = they all=20 are just basic designs and the components used can be easily obtained = from=20 your junk box. More over the value of the components are not very = critical and=20 slight variations in it will not affect the performance.

1. 4 Transistor = Class AB=20 amplifier.

Description.

A very simple and easy to build class = AB audio=20 amplifier using four transistors is shown here. In class AB operation = each=20 output device conducts more than half of the input signal cycle. Up to = 78%=20 efficiency is possible with class AB designs and cross over distortion = is=20 reduced. The circuit shown here is suitable for small radio receivers, = audio=20 players, intercom, telephone etc.

Transistor Q1 with its associated = components is=20 wired as a pre amplifier stage. The audio input is coupled to the base = of Q1=20 through resistor R1 and capacitor C1. Resistor R3 provides collector to = base=20 bias for Q1 and C3 is an AC by pass capacitor for the collector resistor = R4.=20 Collector to base biasing is a good method of biasing for circuits like = this as=20 it provides enough negative feedback, prevents thermal runway and = stabilizes the=20 operating point. The second stage is the driver stage for the push pull = pair. Q2=20 with its associated components perform this job. This stage is also = collector to=20 base biased and its input is coupled to the output of the preamplifier = stage=20 using capacitor C2. Resistor R8 limits the collector current of Q2.The = third=20 stage is the class AB push pull section comprising of transistors Q3 and = Q4.=20 Diodes D1 and D2 provides the bias voltage for the push pull stage. The = output=20 of the amplifier is coupled to the loud speaker through the capacitor = C4. C5 and=20 C6 are power supply filter capacitors.

Circuit diagram of 4 = transistor=20 amplifier.

4 Transistor Class AB = amplifier

Notes.

  • The circuit can be assembled on a vero board.
  • K1 can be an 8 ohm/5W speaker.
  • C6 must be grounded near to the Q1 and C5 must be grounded near to = the=20 loud speaker ground. This reduces noise.
  • Use 5V DC for powering the circuit.

Go=20 To Top of List

2. Class A = Headphone=20 amplifier.

Description.

This is the circuit diagram of a = Headphone=20 amplifier operating in the class A push pull mode. In class A mode the = output=20 device (transistors) conduct over the entire input signal cycle. The = maximum=20 possible efficiency for Class A operation is 50% and it further reduces = when=20 capacitive coupling is used. But the advantages of Class AB amplifier = are no=20 cross over distortion, high fidelity and low harmonic distortion. These=20 amplifiers are most suitable for low power applications.

In the circuit transistor Q1 works as = the=20 preamplifier. Resistors R6 and R7 provides potential divider biasing for = Q1.=20 Audio input is coupled to the base od Q1 through capacitor C2, resistor = R9 and=20 POT R10. Emitter of Q1 is coupled to the base of Q2 through resistor R3. = Diodes=20 D1 and D2 provides bias voltage for Q2. Base of Q3 is directly coupled = to the=20 collector of Q1. Resistor R5 limits the collector current of Q2 and Q3. = C4 and=20 C5 are power supply filter capacitors. Output of the amplifier is = coupled to the=20 head phone using the capacitor C3.

Circuit diagram of head phone = amplifier.

Head phone amplifier Class = A

 

Notes.

  • The circuit can be assembled on a vero/perf board.
  • Power supply can be anything between 6 to 24V DC.
  • I used 12V DC for powering the circuit.
  • Z1 can be a 100 ohms or higher head phone.
  • Electrolytic capacitors voltage rating must be according to the = supply=20 voltage you use.

Go=20 To Top of List

3.Low power = transistor=20 amplifier circuit

Description.

A very simple low power three stage = transistor=20 amplifier circuit is shown below. First and second stages are pre = amplifiers and=20 third is the output stage. Collector to base biasing is employed for = each stages=20 and it is enough for circuits like this.

Collector to base=20 biasing: Consider the first stage.R1 is the collector = resistor=20 and R2 is the base resistor. This type of biasing provides some negative = feedback, avoids thermal runaway and stabilizes the operating point. = When the=20 temperature increases the collector current also increases. This = increases the=20 voltage drop across the collector resistance R1 and this decreases the = voltage=20 drop across base resistor R2. As a result, base current drops which in = turn=20 drops the collector current and thermal runaway is avoided. = Stabilization of=20 operating point is achieved by the prevention of variation in collector = current=20 with temperature.

When a transistor amplifier is = operating,=20 the collector voltage will be phase opposite to the input signal. Since = base=20 resistor R2 is connected between collector and base, some fraction of = the phase=20 opposite collector voltage is fed back to the input (base) through the = base=20 resistor R2 and thus negative feedback is achieved. Negative feed back = reduces=20 the voltage gain of the amplifier but it improves the = stability.

In the circuit collector of Q1 is = coupled to the=20 base of Q2 using the capacitor C2. R3 is the biasing resistor for Q2 and = R4 is=20 its collector resistor.Collector of Q2 is coupled to the base of Q3 = using the=20 capacitor C3. R5 is the biasing resistor for Q3 and speaker is connected = as the=20 collector load. Capacitors C4 and C5 are filters. C1 is the input DC = decoupling=20 capacitor.

Circuit diagram of low power = transistor=20 amplifier.

Low power transistor = amplifier

 

Notes.

  • The circuit can be assembled on vero or perf board.
  • Use 9V DC for powering the circuit. A 9V PP3 battery is fine.
  • All electrolytic capacitors must be rated 10 or 15V.
  • An optional protection diode can be added in series to the = positive supply=20 line. This protects the circuit from accidental polarity = reversals.
  • Type number of the transistors are not very critical. Replacement = will not=20 affect the performance to a great extend.
  • Powering the circuit using a mains adapter will induce some = noise.
  • Speaker impedance can be 64 ohms or more.

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11 Responses to =E2=80=9CFew Transistor amplifier = circuits=E2=80=9D

  • masoud says:

    thank you .do i 2n3055 used?

  • Parsa = says:

    Hi everyone
    I constructed the circuit of the 4 transistor class = AB=20 amplifier and it worked well. I just have a small question;
    Why is = C3 used=20 to bypass R4? I mean why do we need to bypass it? and why to bypass it = with=20 such a small capacitor?
    Thank u in advance
    Parsa

  • mike says:

    the class AB circuit doesn=E2=80=99t work, te currents are correct = but the load=20 isn=E2=80=99t. I don=E2=80=99t understand why people will publish this = when it ain=E2=80=99t=20 working.

  • Mihai = says:

    Hi , I just constructed Circuit diagram of low power transistor=20 amplifier
    the last one from this page=E2=80=A6I don,t know why , my = speaker pulsing=20 without any signal=E2=80=A6when I apply signal from my guitar pickup = to see if the amp=20 working, the sound coming out very noisy=E2=80=A6after the vibration = of the string=20 going down a little, the amplifying effect stops and the rhythmical = pulsing=20 going further ( like a heart)=E2=80=A6

    Why this happening? Please give me an advice where to look for = problem in=20 this schematic?

    Regards
    Mihai

  • Geoff = says:

    Hi all, I have a hearing impairment which makes listening to tv = frustrating=20 for my wife and I as I need it louder than normal, but, when the = volume alters=20 from soft speech to loud music etc we are constantly battling with the = remote,=20 is there such thing as an auto volume adjuster amplifier to keep the = tv sound=20 on a constant level to bring relief to my wife and I.
    Many thanks = in=20 anticipation.
    Geoff

  • Nico = says:

    where should I connect c3? across r3 and at the diode? or across r3 = to=20 r7?

  • Jonathan = says:

    In the first ckt, C3 should be across R7 and about 100pF, C2 can be = 1 mF,=20 and R9,R10 should be 1/2 to 1 ohm. K1 will only see about 1/4 watt at = 5V=20 supply.

  • Jonathan = says:

    Peltier cooler. Some surplus dealers have them, but they = ain=E2=80=99t cheap. You=20 might find one junked somewhere. If the cool ing unit doesn=E2=80=99t = work, take it=20 apart; sometimes if one of the little (1/8th inch long) elements is = corroded;=20 you can jump across it with a wire.

  • KI = SENEVIRATHNA=20 says:

    An eny one have a idea about light witch is giving by sun?O K,I = will give a=20 idea but i dont know how it get,enyway derect sun light can it get u = r room=20 ?Yes i think using 2 pc of magnificent glass or one reflector tyoe = glass and=20 sutable fiber optics cable.Yes may be im pool but sumone who knos = about=20 transfering light withen fiber optic cable and to be manufact the = device to=20 joint magnificent glass and fiber optic cable.
    Do u think it will = work? why=20 not think about how satalite antenna working.Out side audio vedio = signal come=20 to TV withen electric cable.Cannot wefollow this theory for this = matter.I hope=20 some day some one will do this type of lighting system,Im sure.what u=20 think?Plese write u r comments.Im inviting to every body who intrusted = about=20 this. Thank u circuits today.

  • KI = SENEVIRATHNA=20 says:

    Hi,Wish u a good day every one.I need to know what is the = construction of=20 portable 12v dc powered cooler.And what is the name of tha device = which is=20 giving cool & heat,when we give the power.

  • Mark says:

    In the first circuit the capacitor should be placed across R3 not = R4.

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