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TDA2050 查看數據表(PDF) - STMicroelectronics

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TDA2050
ST-Microelectronics
STMicroelectronics ST-Microelectronics
TDA2050 Datasheet PDF : 13 Pages
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TDA2050
ent. Fig. 17 shows this dissipable power as a
function of ambient temperature for different ther-
mal resistance.
Figure 17: Maximum Allowable Power Dissipa-
tion vs. Ambient Temperature
cient. Between the heatsink and the package is
better to insert a layer of silicon grease, to opti-
mize the thermal contact; no electrical isolation is
needed between the two surfaces. Fig. 18 shows
an example of heatsink.
Dimension suggestion
The following table shows the length that the
heatsink in fig. 18 must have for several values
of Ptot and Rth.
Ptot (W)
Lenght of heatsink (mm)
Rth of heatsink (°C/W)
12
8
6
60
40
30
4.2 6.2 8.3
Figure 18: Example of heat-sink
MOUNTING INSTRUCTIONS
The power dissipated in the circuit must be re-
moved by adding an external heatsink.
Thanks to the PENTAWATT package, the
heatsink mounting operation is very simple, a
screw or a compression spring (clip) being suffi-
APPENDIX A
A.1 - MUSIC POWER CONCEPT
MUSIC POWER is (according to the IEC clauses
n.268-3 of Jan 83) the maximum power which the
amplifier is capable of producing across the rated
load resistance (regardless of non linearity) 1 sec
after the application of a sinusoidal input signal of
frequency 1 KHz.
According to this definition our method of meas-
urement comprises the following steps:
- Set the voltage supply at the maximum oper-
ating value;
- Apply a input signal in the form of a 1KHz tone
burst of 1 sec duration: the repetition period
of the signal pulses is 60 sec;
- The output voltage is measured 1 sec from the
start of the pulse;
- Increase the input voltage until the output sig-
nal shows a THD=10%;
- The music power is then V2out /RL, where
Vout is the output voltage measured in the
condition of point 4 and RL is the rated load
impedance;
10/13
The target of this method is to avoid excessive
dissipation in the amplifier.
A.2 - INSTANTANEOUS POWER
Another power measurement (MAXIMUM IN-
STANTANEOUS OUTPUT POWER) was pro-
posed by IEC in 1988 (IEC publication 268-3 sub-
clause 19.A).
We give here only a brief extract of the concept,
and a circuit useful for the measurement.
The supply voltage is set at the maximum operat-
ing value.
The test signal consists of a sinusoidal signal
whose frequency is 20 Hz, to which are added al-
ternate positive and negative pulses of 50 µs du-
ration and 500 Hz repetition rate. The amplitude
of the 20 Hz signal is chosen to drive the amplifier
to its voltage clipping limits, while the amplitude of
the pulses takes the amplifier alternately into its
current-overload limits.

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