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TDA7476 数据表(PDF) 5 Page - STMicroelectronics

部件名 TDA7476
功能描述  CAR RADIO DIAGNOSTIC PROCESSOR
Download  15 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

TDA7476 数据表(HTML) 5 Page - STMicroelectronics

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On bridge (or bridge equivalent) devices if there is no short circuit to GND or to Vs, Isource goes into
saturation mode (for Vout > 3V), and in the load flows Isink. As the turn-on diagnostic thresholds are
fixed, it is possible to calculate the ranges of loudspeaker resistance in which short circuit, normal op-
eration and open load are detected.
For example, here below are two cases, with Rcs = 3.3KOhm and Rcs = 1.8KOhm. (RL = Vthr*/Isink).
S.C. across Load
x
Open Load
0
1.1
11
infinite
x
Normal Operation
0.27
27
D96AU500
S.C. across Load
x
Open Load
0
2
20
infinite
x
Normal Operation
0.5
50
The exact values of the above mentioned resistive ranges may vary a little, depending on the power
amplifier used. These values for the various possible ST power amplifiers will be communicated later.
When single-ended devices are used and the application circuit is as shown in fig. 5,6, it is necessary
to use:
- a greater timing capacitor so that the time tm is high and the outputs of the amplifiers are able to rise
over 1V;
- a resistor RCS 1.5 times higher than that used for the bridge amplifiers.
In this case, the loudspeaker resistance ranges in which short circuit, normal operation and open load
are detected will be as follows with Rcs = 4.7KOhm and Rcs = 2.7KOhm (RL = Vthr/Isource)
S.C. across Load
x
Open Load
0
1.9
19
infinite
x
Normal Operation
0.47
47
D96AU501
S.C. across Load
x
Open Load
0
1.1
11
infinite
x
Normal Operation
0.27
27
The exact values of the above mentioned resistive ranges may vary a little, depending on the power
amplifier used. These values will be communicated later.
Turn-on diagnostic - CH1, CH2, CH3, CH4, CH5 - Short to GND and Vs.
To detect if there is short circuit to GND or Vs, the subsonic current pulse is exploited. The information
related to the status of the outputs are measured and memorized at the top of the current pulse (tm in
fig.1). If no faults are present, the pins connected to the audio outputs (CH1,..CH5) will reach about 3V.
If one or more outputs are shorted to GND, these voltages become lower than 3V.
If one or more outputs are shorted to Vs, the output voltage increases over 3V.
The fault status can be know by sensing the output voltages. The reason way voltage threshold has
been preferred instead of a current threshold to declare short circuit resistor ranges is two fold:
1) The amplifier can drain current in the resistive path of the short circuit, hence this current and conse-
quently the short circuit resistor cannot be determined with a sufficient level of accuracy.
2) The voltage difference between the car radio ground (reference) and the position of the chassis of the
car where the loudspeaker line is connected (due to an accidental short circuit) can be up to some
hundreds of mV. This does not permit a correct measure of the short circuit resistor.
Rcs = 3.3k
Rcs = 1.8k
Rcs = 4.7k
Rcs = 2.7k
(*) Vthr is the threshold described in the table on page 3/14 - 4/14 (for example Pgnd-min, Pvs - max, Pnop - min, Pnop - max etc..)
TDA7476
5/15


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