SGS Thomson Microelectronics TDA7396 Datasheet

45W/2Ω BRIDGECAR RADIO AMPLIFIER
HIGHPOWER CAPABILITY:
- 65W/2ΩMAX
- 60W/2ΩEIAJ
ENDED OR DIFFERENTIAL INPUT SIGNALS ARE ACCEPTED)
MINIMUMEXTERNALCOMPONENTCOUNT:
- NO BOOTSTRAPCAPACITORS
- NO BOUCHEROT CELLS
- INTERNALLYFIXEDGAIN (26dB)
- NO SVR CAPACITOR ST.-BYFUNCTION (CMOS COMPATIBLE) AUTOMATIC MUTE DURING TURN-ON/OFF AUTOMUTEATMINIMUMSUPPLY
VOLTAGEDETECTION SYNCHRONIZING PIN FOR SIMULTANEOUS
TURN-ONIN MULTI-DEVICEAPPLICATIONS NO AUDIBLE POP DURING MUTE AND ST-
BY OPERATIONS
DiagnosticFacilities:
CLIPPINGDETECTOR
Figure 1: Test And ApplicationCircuit
S= 14.4V,f = 1KHz,d = 10%
TDA7396
WITH DIAGNOSTICFACILITY
Multiwatt11
ORDERING NUMBER: TDA7396
SHORTCIRCUIT OPENLOAD THERMALSHUTDOWN
PROTECTIONS:
SHORT CIRCUIT (TO GND, TO V THELOAD)
VERYINDUCTIVE LOADS CHIP OVER-TEMPERATURE LOADDUMP OPENGND ESD
ACROSS
S,
+V
S
1000µF
Vref
10K
TO µC
7
5
4
GND
100nF
OUT+
OUT-
CD-DIA
0.22µF 39
CM
10µF
2
1
8
11
TDA7396
10 6
RS
51K
IN+
0.22µF
IN-
STANDBY
TO µCorV
October 1998
This is advanced informationon a new product now in development or undergoing evaluation. Details are subject to change without notice.
S
D93AU004
1/11
TDA7396
DESCRIPTION
The TDA7396 is a BRIDGE class AB audio power amplifier especially intended for car radio High Power applications. The 2power capability together with the possi­bility to operate either in DIFFERENTIAL INPUT MODE or SINGLE ENDED INPUT MODE makes it suitable for boostersand high end car radio ap-
Figure 2:
BlockDiagram
STANDBYTHRESHOLD
1
IN-
2
IN+
V
CC1VCC2
39
+
-
ICM
500
500
-
+
gm
REFERENCES
10K
COMMON
MODE
-
+
V
CC/2
10K
plications. The exclusive fully complementary output stage and the internallyfixed gain configurationdrop the externalcomponent count. The on board clipping detector allows easy imple­mentationof gain compressionsystems. The diagnostics facility allows to detect any mis­takes during car radio set assembly and wiring in the car.
CIRCUIT
SHORT
DUMP &
THERMAL
PROTECTION
5
POWER AMP
LTS
POWER AMP
DETECT
THD
V=f (Tj)
LTS
DISABLE
OUT-
4
DIAGN
CD
7
OUT+
+
-
MUTE THRESHOLD
MUTE SYNC GND STANDBY
PIN CONNECTION (Topview)
TAB CONNECTED TO PIN 6
THERMAL DATA
PROGRAMMABLE
CURRENT CIRCUIT
1011 8
11 10
DIAGNOSTIC
CIRCUIT
6
D94AU107
MUTE
SYNC 9 8 7 6 5 4 3 2 1
D93AU003A
+V
S
STAND-BY
OUT+
GND
OUT-
CD-DIA (CLIPPING DETECTOR - DIAG.)
+V
S
IN+
IN-
Symbol Description Value Unit
R
th j-case
Thermal Resistance Junction-case Max 1.5
2/11
C/W
°
TDA7396
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value Unit
V
V
V
PEAK
P
T
stg,Tj
OP
I
O
tot
DC Supply Voltage 28 V
S
Operating Supply Voltage 18 V Peak Supply Voltage (t = 50ms) 50 V Output Peak Current repetitive (f > 10Hz)
Output Peak Current non repetitive Power Dissipation (T
=85°C) 43 W
CASE
6 7
Storage and Junction-Case -40 to 150 °C
A A
ELECTRICAL CHARACTERISTICS (VS= 14.4V; RL=2Ω, f = 1KHz, T
=25°C, unless otherwise
amb
specified)
Symbol Parameter Test Condition Min. Typ. Max. Unit
V
S
I
q
V
OS
I
SB
I
SBin
V
SBon
V
SBoff
ATT
ST-BY
R
EXT/RS
I
Min
A
M
P
O
d Distortion P
G
V
f
H
R
IN
E
IN
CMRR Input Common Mode Rejection f = 1KHz; V
SVR Supply Voltage Rejection R
CDL Clipping Detection Level 0.5 %
T
sd
Supply Voltage Range 8 18 V Total Quiescent Current 100 mA Output Offset Voltage 150 mV ST-BY Current V ST-BY Input Bias Current V
= 1.5V 100 µA
ST-BY
=5V 10 µA
ST-BY
ST-BY On Threshold Voltage 1.5 V ST-BY Off threshold Voltage 3.5 V ST-BY Attenuation 90 dB Mute Resistor Ratio for External
(see Application Circuit of fig. 4) 0.63 0.69 V
Mute Control Mute Input Bias Current V
=5V 10
MUTE
Mute Attenuation 90 dB RMS Output Power d = 10%
d=1% d = 10%; R
EIAJ Output Power V
= 13.7V 60 W
S
= 0.1 to 20W
O
P
= 0.1 to 15W; RL=4
O
=4
L
45 35 27
0.06
0.03 Voltage Gain 25 26 27 dB High Frequency rolloff PO= 1W; -3dB 75 KHz Input Impedance Differential 60 K
Single Ended 55 K
Input Noise Voltage Rg=0Ω;f= 22Hz to 22KHz 4 mV
= 1Vrms 70 dB
IN
=0Ω;Vr= 1Vrms 60 dB
g
Absolute Thermal Shutdown
160 dB
Junction Temperature
A
µ
W W W
% %
Ω Ω
3/11
TDA7396
FUNCTIONAL DESCRIPTION
Pin Function Description
1, 2 INPUTS
4 CD - DIA
5, 7 OUTPUTS
8 STAND-BY
10 SYNC
11 MUTE
The input stage is a high impedance differential type also capable of operation in single ended mode with one input capacitively coupled to the signalGND. the impedance seen by the inverting and non inverting input pins must be matched.
The TDA7396 is equipped with a diagnostics circuitry able to detect the following events:
-Clipping in the Output Signal
-Thermal Shutdown
-Open Load (before turn-on)
-Shorted Output: to GND, to Vs, across the load (afterturn-on) The CD-DIA(open collector) pin gives out the diagnostics signal (low during clipping or output fault condition). The device does not work as long as the faulty condition holds; the normal operation is automatically restored after the fault removal.
The output stage is a bridge type able to drive loads as high as 2Ω. It consists of two class AB fully complementary PNP/NPN stages fully protected. A rail to rail output voltage swing is achieved with no need of bootstrap capacitors. No external compensation is necessary.
The device features a ST-BY functionwhich shuts down all the internal bias supplies when the ST-BY input is low. In ST-BY mode the amplifier sinks a small current (in the range of few µA). When the ST-BY pin is high the IC becomes fully operational.
A resistor (R current that flows into C required to bias the amplifier.
a) The pin will have a capacitor(C automatic Mute duringturn on/off is provided to prevent noisy transients b) If a independent Mute function is needed,an external transistor circuit (see fig. 4) may be connected to thispin; 1% precision resistors have to be used for R to reach the fixed limits 0.63
) has to be connect between pin 10 and GND in orderto program the
S
capacitor (pin 11). Thevalues of CMand RSdetermine the time
M
) tied to GND to set the MUTE/STAND-BY time. An
M
R
EXT/RS
0.69
EXT/RS
in to order
Figure 3: ApplicationCircuit with ExternalMute Control
0.22µF 39
2
1
TDA7396
8
11
CM
10 6
RS
TO µCorV
TO µC
IN+
0.22µF
IN-
STANDBY
S
REXT
7
5
4
GND
100nF
OUT+
OUT-
CD-DIA
1000µF
Vref
10K
D93AU007
+V
S
TO µC
4/11
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