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STA540SAN Datasheet(PDF) 19 Page - STMicroelectronics

Part # STA540SAN
Description  4 x 10-watt dual/quad power amplifier
PDF  26 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STA540SAN Datasheet(HTML) 19 Page - STMicroelectronics

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STA540SAN
General structure
Doc ID 18306 Rev 1
19/26
8.6
Output stage
The fully complementary output stage is possible with the power ICV PNP component.
This novel design is based on the connection shown in Figure 27 and allows the full
exploitation of its capabilities. The clear advantages this new approach has over classical
output stages are described in the following sections.
8.6.1
Rail-to-rail output voltage swing with no need of bootstrap capacitors
The output swing is limited only by the VCEsat of the output transistors, which are in the
range of 0.3
Ω (Rsat) each.
Classical solutions adopting composite PNP-NPN for the upper output stage have higher
saturation loss on the top side of the waveform.
This unbalanced saturation causes a significant power reduction. The only way to recover
power includes the addition of expensive bootstrap capacitors.
8.6.2
Absolute stability without any external compensation
With reference to the circuit shown in Figure 27, the gain Vout/Vin is greater than unity, that
is, approximately 1+R2/R1. The DC output (VCC/2) is fixed by an auxiliary amplifier common
to all the channels.
By controlling the amount of this local feedback, it is possible to force the loop gain (A*
β) to
less than unity at a frequency where the phase shift is 180 °. This means that the output
buffer is intrinsically stable and not prone to oscillation.
The above feature has been achieved even though there is very low closed-loop gain of the
amplifier.
This is in contrast with the classical PNP-NPN stage where the solution adopted for
reducing the gain at high frequencies makes use of external RC networks, namely the
Boucherot cells.
Figure 27.
The new output stage



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