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E-TDA2030AV 查看數據表(PDF) - STMicroelectronics

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E-TDA2030AV
ST-Microelectronics
STMicroelectronics ST-Microelectronics
E-TDA2030AV Datasheet PDF : 23 Pages
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TDA2030A
Transient intermodulation distortion (TIM)
The "inverting-sawtooth" method of measurement is based on the response of an amplifier
to a 20 kHz sawtooth waveform. The amplifier has no difficulty following the slow ramp, but it
cannot follow the fast edge. The output will follow the upper line in Figure 26 cutting of the
shaded area and thus increasing the mean level. If this output signal is filtered to remove the
sawtooth, direct voltage remains which indicates the amount of TIM distortion, although it is
difficult to measure because it is indistinguishable from the DC offset of the amplifier. This
problem is neatly avoided in the IS-TIM method by periodically inverting the sawtooth
waveform at a low audio frequency as shown in Figure 27.
Figure 26. 20 kHz sawtooth waveform
Product(s) Figure 27. Inverting sawtooth waveform
Product(s) - Obsolete In the case of the sawtooth in Figure 27 the mean level was increased by the TIM distortion,
tefor a sawtooth in the other direction, the opposite is true. The result is an AC signal at the
output whose peak-to-peak value is the TIM voltage, which can be measured easily with an
leoscilloscope. If the peak-to-peak value of the signal and the peak-to-peak of the inverting
o sawtooth are measured, the TIM can be found very simply from:
Obs TIM=
-----V-----O---U----T------
Vsawtooth
100
In Figure 28 the experimental results are shown for the 30 W amplifier using the TDA2030A
as a driver and a low-cost complementary pair. A simple RC filter on the input of the
amplifier to limit the maximum signal slope (SS) is an effective way to reduce TIM.
Doc ID 1459 Rev 2
15/23

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