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TDA7297DSTMN/a5750avai10W+10W DUAL BRIDGE AMPLIFIER
TDA7297D13TRSTN/a176avai10W+10W DUAL BRIDGE AMPLIFIER
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TDA7297D13TRSTMN/a280avai10W+10W DUAL BRIDGE AMPLIFIER
TDA7297D13TRPb-freeN/a21600avai10W+10W DUAL BRIDGE AMPLIFIER


TDA7297D13TR ,10W+10W DUAL BRIDGE AMPLIFIERFEATURES Figure 1. Package■ TECHNOLOGY BI20II■ WIDE SUPPLY VOLTAGE RANGE (6.5 - 18V)■ OUTPUT POWER ..
TDA7297D13TR ,10W+10W DUAL BRIDGE AMPLIFIERFEATURES Figure 1. Package■ TECHNOLOGY BI20II■ WIDE SUPPLY VOLTAGE RANGE (6.5 - 18V)■ OUTPUT POWER ..
TDA7297D13TR ,10W+10W DUAL BRIDGE AMPLIFIERFEATURES Figure 1. Package■ TECHNOLOGY BI20II■ WIDE SUPPLY VOLTAGE RANGE (6.5 - 18V)■ OUTPUT POWER ..
TDA7297D13TR ,10W+10W DUAL BRIDGE AMPLIFIERTDA7297D10W+10W DUAL BRIDGE AMPLIFIER1
TDA7297SA ,10W+10W DUAL BRIDGE AMPLIFIERTDA7297SA10W+10W DUAL BRIDGE AMPLIFIER■ WIDE SUPPLY VOLTAGE RANGE (6V-18V)TECHNOLOGY BI20II■ MINIMU ..
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TDA7297D-TDA7297D13TR
10W+10W DUAL BRIDGE AMPLIFIER
1/11
TDA7297D

May 2004
1FEATURES
TECHNOLOGY BI20II WIDE SUPPLY VOLTAGE RANGE (6.5 - 18V) OUTPUT POWER 10+10W @ THD = 10%,
RL = 8Ω, VCC = 13V MINIMUM EXTERNAL COMPONENTS NO SVR CAPACITOR NO BOOTSTRAP NO BOUCHEROT CELLS INTERNALLY FIXED GAIN STAND-BY & MUTE FUNCTIONS SHORT CIRCUIT PROTECTION THERMAL OVERLOAD PROTECTIONE
2DESCRIPTION

The TDA7297D is a dual bridge amplifier specially
designed for Home Audio, Plasma TV, LCD TV appli-
cations.
10W+10W DUAL BRIDGE AMPLIFIER
Figure 2. TEST AND APPLICATION CIRCUIT

REV. 1
TDA7297D
Table 2. Absolute Maximum Ratings
Table 3. Thermal Data
Figure 3. PIN CONNECTION
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TDA7297D
Table 4. Electrical Characteristcs (VCC = 13V, RL = 8Ω, f = 1KHz, Tamb = 25°C unless otherwise
specified) APPLICATIVE SUGGESTIONS

STAND-BY AND MUTE FUNCTIONS
3.1 Microprocessor Application

In order to avoid annoying "Pop-Noise" during Turn-On/Off transients, it is necessary to guarantee the right St-
by and mute signals sequence.It is quite simple to obtain this function using a microprocessor (Fig. 4 and 5).
At first St-by signal (from µP) goes high and the voltage across the St-by terminal (Pin 9) starts to increase ex-
ponentially. The external RC network is intended to turn-on slowly the biasing circuits of the amplifier, this to
avoid "POP" and "CLICK" on the outputs.
When this voltage reaches the St-by threshold level, the amplifier is switched-on and the external capacitors in
series to the input terminals (C1, C3) start to charge.
It's necessary to mantain the mute signal low until the capacitors are fully charged, this to avoid that the device
goes in play mode causing a loud "Pop Noise" on the speakers.
A delay of 100-200ms between St-by and mute signals is suitable for a proper operation.
TDA7297D
Figure 4. Microprocessor Application
Figure 5. Microprocessor Driving Signals
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TDA7297D
Figure 6. THD+N vs Output Power
Figure 7. THD+N vs Output Power
Figure 8. THD+N vs Frequency
Figure 9. Frequency Response
Figure 10. Output Power vs supply Voltage
Figure 11. Power Dissipation vs Pout
TDA7297D
Figure 12. Mute Attenuation vs. Vpin 8t
Figure 13. Standard-By Attenuation vs Vpin. 9
Figure 14. Quiescent Curent vs. Supply Voltage
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