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TDA1910STN/a375avai10W AUDIO AMPLIFIER WITH MUTING


TDA1910 ,10W AUDIO AMPLIFIER WITH MUTINGELECTRICAL CHARACTERISTICS amb thotherwise specified)Symbol Parameter Test condition Min. Typ. Max. ..
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TDA1910
10W AUDIO AMPLIFIER WITH MUTING
10W AUDIO AMPLIFIER WITH MUTING
DESCRIPTION

The TDA 1910 is a monolithic integrated circuit in
MULTIWATT® package, intended for use in Hi-Fi
audio power applications, as high quality TV sets.
The TDA 1910 meets the DIN 45500 (d = 0.5%)
guaranteed output power of 10W when used at
24V/4W. At 24V/8W the output power is 7W min.
Features: muting facility protection against chip over temperature very low noise high supply voltage rejection low "switch-on" noise.
The TDA 1910 is assembled in MULTIWATT®
package that offers: easy assembly simple heatsink
May 1997
ABSOLUTE MAXIMUM RATINGS
TEST CIRCUIT
space and cost saving high reliability
1/14
PIN CONNECTION (Top view)
SCHEMATIC DIAGRAM
TDA1910
TEST CIRCUIT
MUTING CIRCUIT
TDA1910
THERMAL DATA
ELECTRICAL CHARACTERISTICS (Refer to the test circuit, Tamb = 25 °C, Rth (heatsink) = 4°C/W, unless

otherwise specified)
TDA1910
MUTING FUNCTION (Refer to Muting circuit)
ELECTRICAL CHARACTERISTICS (continued)
Note :

(°) Weighting filter = curve A.
(° °) Filter with noise bandwidth: 22 Hz to 22 KHz.
(*) See fig. 29 and fig. 30.
TDA1910
Figure 1. Quiescent output
voltage vs. supply voltage
Figure 2. Quiescent drain
current vs. supply voltage
Figure 3. Open loop fre-
quency response
Figure 4. Output power vs.
supply voltage
Figure 5. Output power vs.
supply voltage
Figure 6. Distortion vs.
output power
Figure 7. Distortion vs.
output power
Figure 8. Output power vs.
frequency
Figure 9. Output power vs.
frequency
TDA1910
Figure 10. Output power vs.
input voltage
Figure 11. Output power vs.
input voltage
Figure 12. Total input noise
vs. source resistance
Figure 13. Values of capaci-
tor CX vs. bandwidth (BW)
and gain (GV)
Figure 14. Supply voltage
rejection vs. voltage gain
Figure 15. Supply voltage
rejection vs. source
resistance
Figure 16. Power dissipa-
tion and efficiency vs. output
power
Figure 17. Power dissipa-
tion and efficiency vs. output
power
Figure 1 8. Max power
dissipation vs. supply
voltage
TDA1910
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