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TDA2030 Power Amplifiers

Konusu 'Amplifikatör Devreleri' forumundadır ve guclusat tarafından 5 Mart 2010 başlatılmıştır.

  1. guclusat
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    guclusat Tanınmış Üye Süper Moderatör

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    TDA2030 Power Amplifiers devreleri ektedir

    amp136-5..jpg

    amp136-4..jpg
     

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    Son düzenleme: 27 Şubat 2016
  2. uydudoktoru
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    TDA2030.gif


    TDA2030A Devresi​
     
    Son düzenleyen: Moderatör: 27 Şubat 2016
  3. uydudoktoru
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    200W Transistor Audio Amplifier Circuit

    This audio amplifier circuit delivers up to 200 W of top-class quality for loudspeaker from 4 to 16 ohm. Operating voltage is between 24 and 36 V, max 5 A. The frequency response is from 20 to 20000 Hz.
    Please take special care that the transistors and the IC’s have been fixed firmly and solely one or two separated cooling elements with sufficient dimensions for this purpose (thermal resistance < 1K/W).


    Doing so it is necessary to mount the transistors and the IC’s insulated (with mica washes and plastic nipple). Please make sure before first operation that the transistors and the IC’s really do not have any electrical connection towards the cooling plate! The transistors have to be placed plane and firmly onto the cooling element! It is of extraordinary importance with this high-power amplifier that there is a considerable heat dissipation. The already mounted cooling element should be situated in a well ventilated case.

    200W Power Amplifier Circuit Schematic
    [​IMG]


    The PSU should be sufficiently powerful, power consumption of the amplifier may increase up to 5A. In case of using an unstabilised power supply. It is advisable to place a transformer of max 28V.

    The amplifier will the show approx. 120W at a 4-Ohm loudspeaker, for it no-load voltage of the power supply will not be to high. If it is desired to use complete power, it is necessary to place a stabilised power supply with approx. 36V 5A. No-load voltage should not pass over 44V!
    The cables leading the current supply and to the loudspeakers should have at least a cross section of min. 1.5 mm^2. The connected loudspeaker have to be equiped according to the high output power and should not have a lower impedance as 4 Ohm! With lower connection impedance and short circuit within the loudspeaker wiring, the transistors will be destructed.


    The amplifier has an input sensitivity of approx. 500 … 800 mV. Therefore, it is possibile to connect directly at the amplifier tape decks, tuners, etc. In case there are connected signal sources with lower output voltage, it is necessary to pre-connect a preamplifier. Then it will alse be posible to connect microphones, etc.

    200W audio amplifier PCB
    [​IMG]
    [​IMG]


    Audio power amplifier components
    IC1, IC2 = 2 IC’s TDA2030
    T1, T3 = 2 transistors KT818 or BD708
    T2, T4 = 2 transistors KT819 or BD705
    C1, C2, C3, C4, C7 = 5 capacitors 150 nF
    C5 = 1 elca 10uF 63V
    C8 – 1 capacitor 1.8 nF
    R1, R7, R9 = 3 resistances 100K
    R2, R3, R10, R11 = 4 resistances 2.2 Ohm
    R4, R5 = 2 res. 2K
    R6, R8 = 2 res. 1 Ohm
    R12, R13 = 2 res. 2 res. 3.3K
    D1…D4 = 1N4001, 1N4002, 1N4003
    1 PCB board approx 56×51 mm

     

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    Son düzenleyen: Moderatör: 27 Şubat 2016
  4. guclusat
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    TDA 2030 lu 14W Amplifikatör Devresi

    tda2003.png

    Yukarıda verilen devre TDA2030 yükselteç entegresi kullanılarak düzenlenmiş mono 14W amplifikatör devresidir. Devre tek kaynaktan 12 ile 28V arası besleme gerilimi ile çalışmaktadır. TDA2030 bir soğutucuya, izole edilerek monte edilmelidir.
     

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    Ferhat199558 bunu beğendi.
  5. guclusat
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    guclusat Tanınmış Üye Süper Moderatör

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    I needed a stand-in for the now non-operational headphone amp on the Alesis Mixer I recently ‘resurrected’. An op-amp and two discrete transistors came to mind, but I dismissed this for my solution. The TDA2030A has been around a long time, but is still readily available, and more importantly, is only pennies more than an op-amp in price.
    The schematic I present below is lifted unashamedly from the TDA2030A datasheet. There is also a PCB design in the Application Notes for the device, but I preferred to roll my own, paying cautious attention to the layout of the PCB – the GND runs in particular. With the components given, the amp output is clean and shows no signs of instability. I did all my testing on a 15-0-15 volt power-supply. Note I’ve included two 10 ohm resistors for two sets of headphones, and I’ve also brought out the amp output to a pin-header so that the amp can be used as a power-amp also.
    The Eagle Schematic and PCB files are here: http://joebrown.org.uk/images/Headphone Amp/Headphone Amp.zip

    [​IMG]
    The fully-working amplifier, including hand-made heatsink.


    Note that if only heaphones are to be connected, then a much smaller heatsink will suffice. I used the amp without any heatsink at all, and it made no complaints.
    [​IMG]
    The completed amp, before fitting the heatsink.

    [​IMG]
    The PCB, after etching.

    [​IMG]
    The TDA2030A Headphone Amp Schematic

    [​IMG]
    The TDA2030A Headphone Amp PCB Foil Pattern
     

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