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TPA2000D1-Q1 датащи(PDF) 10 Page - Texas Instruments

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номер детали TPA2000D1-Q1
подробное описание детали  2-W FILTERLESS MONO CLASS-D AUDIO POWER AMPLIFIER
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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TPA2000D1-Q1 датащи(HTML) 10 Page - Texas Instruments

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TPA2000D1Q1
2W FILTERLESS MONO CLASSD AUDIO POWER AMPLIFIER
SGLS137B− SEPTEMBER 2002 − REVISED SEPTEMBER 2004
10
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
APPLICATION INFORMATION
effects of applying a square wave into a speaker
Audio specialists have advised for years not to apply a square wave to speakers. If the amplitude of the
waveform is high enough and the frequency of the square wave is within the bandwidth of the speaker, the
square wave could cause the voice coil to jump out of the air gap and/or scar the voice coil. A 250-kHz switching
frequency, however, is not significant because the speaker cone movement is proportional to 1/f2 for
frequencies beyond the audio band. Therefore, the amount of cone movement at the switching frequency is
small. However, damage could occur to the speaker if the voice coil is not designed to handle the additional
power. To size the speaker for added power, the ripple current dissipated in the load needs to be calculated
by subtracting the theoretical supplied power (PSUP THEORETICAL) from the actual supply power (PSUP) at
maximum output power (POUT). The switching power dissipated in the speaker is the inverse of the measured
efficiency
MEASURED) minus the theoretical efficiency (ηTHEORETICAL) all multiplied by POUT.
(1)
PSPKR = PSUP – PSUP THEORETICAL (at max output power)
(2)
PSPKR = POUT(PSUP / POUT – PSUP THEORETICAL / POUT) (at max output power)
(3)
PSPKR = POUT(1/ηMEASURED – 1/ηTHEORETICAL) (at max output power)
The maximum efficiency of the TPA2000D1 with an 8-
Ω load is 85%. Using Equation 3 with the efficiency at
maximum power (78%), we see that there is an additional 106 mW dissipated in the speaker. The added power
dissipated in the speaker is not an issue as long as it is taken into account when choosing the speaker.
when to use an output filter
Design the TPA2000D1 without the filter if the traces from amplifier to speaker are short. The TPA2000D1
passed FCC and CE radiated emissions with no shielding with speaker wires eight inches long or less. Notebook
PCs and powered speakers where the speaker is in the same enclosure as the amplifier are good applications
for class-D without a filter.
A ferrite bead filter (shown in Figure 11) can often be used if the design is failing radiated emissions without a
filter, and the frequency sensitive circuit is greater than 1 MHz. This is good for circuits that just have to pass
FCC and CE because FCC and CE only test radiated emissions greater than 30 MHz. If choosing a ferrite bead,
choose one with high impedance at high frequencies, but low impedance at low frequencies.
Use an output filter if the EMI sensitive circuits are low frequency (<1 MHz) and/or the leads from amplifier to
speaker are long.
The LC output filter is shown in Figure 11.
D L1 = L2 = 22 µH (DCR = 110 mΩ, part number = SCD0703T−220 M−S, manufacturer = GCI)
D C1 = C2 = 1 µF
The ferrite filter is shown in Figure 11, where L is a ferrite bead.
D L1 = L2 = ferrite bead (part number = MPZ1608S221, manufacturer = TDKI)
D C1 = C2 = 1 nF


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