Showing posts with label amplifier circuits. Show all posts
Showing posts with label amplifier circuits. Show all posts

Stereo Amplifier 12V 20W Full Power Performance Scheme

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For those of you who like to audia definitely want to listen to the music in good quality. a power which is not much but can produce incredible sound. And we will learn how to create a series of amplifiers that we dream.
This is an ideal project for anyone wanting a compact stereo amplifier that can run from a 12V battery. It could be just the ticket for buskers who want a small but gutsy amplifier which will run from an SLA battery or it could used anywhere that 12V DC is available – in cars, recreational vehicles, remote houses with 12V DC power or where ever.
12 Volt 20W Stereo Amplifier circuit schematic 
Because it runs from DC, it will be an ideal beginner’s or schoolie’s project, with no 240VAC power supply to worry about. You can run it from a 12V battery or a DC plugpack. But while it may be compact and simple to build, there is no need to apologise for “just average” performance. In listening tests from a range of compact discs, we were very impressed with the sound quality.

Long-time readers might recall that we presented a similar 12V power amplifier design back in May 2001. It was a similar configuration to this one but it is now completely over-shadowed by the much lower distortion and greatly improved signal-to-noise ratio of this new design. In fact, let’s be honest: the previous unit is not a patch on this new design. It used two TDA1519A ICs which resulted in distortion figures above 1% virtually across the board and a signal-to-noise ratio of only -69dB unweighted.

However, by using the TDA­7377 power amplifier IC and making some other improvements, the THD (total harmonic distortion) of the new design is about 50 times better than the older unit (see performance graphs for details). The bottom line is that the THD under typical conditions is around just 0.03% or less. It is also able to deliver more output power due to the improved output transistors in the new power amplifier IC.

In addition, its idle power consumption is low – not much more than 1W. As a result, if you don’t push it too hard it will run cool and won’t drain the battery too quickly. And because the IC has self-protection circuitry, it’s just about indestructible. It will self-limit or shut down if it overheats and the outputs are deactivated if they are shorted.

12V 20W Stereo Amplifier circuit schematic 
With a 12V supply, the largest voltage swing a conventional solid-state power amplifier can generate is ±6V. This results in a meagre 4.5W RMS into 4O and 2.25W RMS into 8O, without considering losses in the output transistors. Even if the DC supply is around 14.4V (the maximum that can normally be expected from a 12V car battery), that only brings the power figures up to 6.48W and 3.24W for 4O and 8O loads respectively – still not really enough.

There are three common solutions to this problem. The first is to boost the supply voltage using a switchmode DC converter. This greatly increases the cost and complexity of the amplifier but it is one way of getting a lot of power from a 12V supply. However, we wanted to keep this project simple and that rules out this technique.

There are variations on the boosting method, such as the class H architecture used in the TDA1562Q IC featured in the Portapal PA Amplifier (SILICON CHIP, February 2003). It is able to achieve 40W/channel but with >0.1% THD. In that case, the amplifier output itself provides the switching for a charge pump. The second method is to lower the speaker impedance. Some car speakers have an impedance as low as 2O, which allows twice as much power to be delivered at the same supply voltage. However, we don’t want to restrict this amplifier to 2O loudspeakers.

source: http://www.extremecircuits.net/2010/05/compact-high-performance-12v-20w-stereo.html
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Hybrid Audio Amplifier Circuit Diagram

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Hybrid Audio Amplifier Circuit Diagram.  Attention please: Download 15 electronics books in PDF fomat click the link or read details
Simple Hybrid Audio Amplifier
 Author: Circuit ProjectsCategory: amplifier circuits
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The controversy still continues regarding that are better, valves or transistors. We don’t plan to get involved with that argument here. But when you can’t make your choice, you should attempt out this straightforward amplifier. This amplifier utilizes a valve like a pre-amplifier along with a MOSFET within the output stage. The strong negative feedback helps make the frequency response as flat like a pancake. Within the prototype from the amplifier we’ve also tried several alternative components.


For instance, the BUZ11 could be replaced by an IRFZ34N as well as an ECC83 may be used rather than the ECC88. If so the anode voltage ought to be reduced slightly to 155 V. The ECC83 (or its US equivalent the 12AX7) requires 2 x 6.3 V for that filament supply and there's no screen between your two triodes, normally attached to pin 9. This pin has become attached to the common of these two filaments.


The filaments are attached to ground via R5. If you’re keeping track of the standard, you need to a minimum of use MKT types for coupling capacitors C1, C4 and C7. Better yet are MKP capacitors. For C8 you ought to have a glance at Panasonic’s selection of audio grade electrolytics. P1 can be used to create the quantity of negative feedback. The greater the negative feedback is, the flatter the regularity response is going to be, however the smaller the general gain becomes.

With P2 you are able to set the quiescent current through T2. We've chosen a reasonably high current of just one.3 A, making the output stage operate in Class A mode. This may produce a relatively great deal of heat, which means you should make use of a large heatsink for T2 having a thermal coefficient of just one K/W or better. For L1 we connected two secondary windings in series from the 2x18V/225 VA toroidal transformer.

The resulting inductance of 150 mH was a great deal a lot more than the recommended 50 mH. However, by having an output power of just one W the amplifier struggled reproducing signals below 160 Hz. The distortion rose up to 9% for any signal of 20 Hz at 100 mW. To correctly reproduce low-frequency signals the amplifier requires a bigger coil by having an iron core as well as an air gap. Jetski from the core from saturating whenever a large DC current flows with the coil.
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