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PDF TDA8571J Data sheet ( Hoja de datos )

Número de pieza TDA8571J
Descripción 4 x 40 W BTL quad car radio power amplifier
Fabricantes NXP Semiconductors 
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INTEGRATED CIRCUITS
DATA SHEET
TDA8571J
4 x 40 W BTL quad car radio power
amplifier
Preliminary specification
File under Integrated Circuits, IC01
1998 Mar 13

1 page




TDA8571J pdf
Philips Semiconductors
4 x 40 W BTL quad car radio power
amplifier
Preliminary specification
TDA8571J
FUNCTIONAL DESCRIPTION
The TDA8571J contains four identical amplifiers which can
be used for bridge applications. The gain of each amplifier
is fixed at 34 dB.
Mode select switch (pin 15)
Standby: low supply current (<100 µA)
Mute: input signal suppressed
Operating: normal on condition.
Since this pin has a low input current (<80 µA), a low cost
supply switch can be applied.
To avoid switch-on plops, it is advised to keep the amplifier
in the mute mode during 150 ms (charging of the input
capacitors at pins 10, 11, 13 and 14). When switching
from standby to mute, the slope should be at least 18 V/s.
This can be realized by:
Microprocessor control
External timing circuit (see Fig.3).
SHORT-CIRCUIT DIAGNOSTIC
When a short-circuit occurs at one or more outputs to
ground or to the supply voltage, the output stages are
switched off until the short-circuit is removed and the
device is switched on again, with a delay of approximately
10 ms after removal of the short-circuit. During this
short-circuit condition, pin 9 is continuously LOW.
When a short-circuit occurs across the load of one or more
channels, the output stages are switched off during
approximately 10 ms. After that time it is checked during
approximately 50 µs to determine whether the short-circuit
is still present.
Due to this duty cycle of 50 µs/10 ms the average current
consumption during this short-circuit condition is very low.
During this short-circuit condition, pin 9 is LOW for 10 ms
and HIGH for 50 µs (see Fig.5). The protection circuits of
all channels are coupled. This means that if a short-circuit
condition occurs in one of the channels, all channels are
switched off. Consequently, the power dissipation in any
short-circuit condition is very low.
Diagnostic output (pin 9)
DYNAMIC DISTORTION DETECTOR (DDD)
At the onset of clipping of one or more output stages, the
dynamic distortion detector becomes active and pin 9
goes LOW. This information can be used to drive a sound
processor or DC volume control to attenuate the input
signal and so limit the distortion. The output level of pin 9
is independent of the number of channels that are clipping
(see Fig.4).
TEMPERATURE PRE-WARNING
When the virtual junction temperature Tvj reaches 145 °C,
pin 9 goes LOW.
OPEN COLLECTOR OUTPUTS
The diagnostic pin has an open collector output, so more
devices can be tied together. An external pull-up resistor is
needed.
handbook, halfpa+geVP
10 k
MODE
BZX79C/3.9V
47 µF
MGD959
Fig.3 Mode select switch circuitry.
handbook, halfpVagoe
0
MGG155
V9
VP
0
t
Fig.4 Distortion detector waveform.
1998 Mar 13
5

5 Page





TDA8571J arduino
Philips Semiconductors
4 x 40 W BTL quad car radio power
amplifier
Preliminary specification
TDA8571J
Test information
Figures 8 to 13 have the following conditions: VP = 14.4 V; RL = 4 ; f = 1 kHz; 80 kHz filter used; unless otherwise
specified.
handboo3k,0h0alfpage
IP
(mA)
200
MGM566
100
0
04
8 12 16 20
VP (V)
Fig.8 IP as a function of VP.
handbook,8h0alfpage
Po
(W)
60
MGM567
40
(1)
(2)
20
(3)
0
8 10 12 14 16 18
VP (V)
(1) EIAJ; 100 Hz.
(2) THD + N = 10%.
(3) THD + N = 0.5%.
Fig.9 Po as a function of VP.
10
handbook, halfpage
THD + N
(%)
1
MGM568
(1)
101
102
102
101
(2)
(3)
1 10 102
Po (W)
(1) f = 10 kHz.
(2) f = 1 kHz.
(3) f = 100 Hz.
Fig.10 THD + N as a function of Po.
1998 Mar 13
10
handbook, halfpage
THD + N
(%)
1
101
MGM569
(1)
(2)
102
10
102 103 104 105
f (Hz)
(1) Po = 1 W.
(2) Po = 10 W.
Fig.11 THD + N as a function of frequency.
11

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