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INTEGRATED CIRCUITS
DATA SHEET
TDA1563Q
2 × 25 W high efficiency car radio
power amplifier
Product specification 2000 Feb 09
Supersedes data of 1998 Jul 14
File under Integrated Circuits, IC01
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier FEATURES GENERAL DESCRIPTION • Low dissipation due to switching from Single-Ended The TDA1563Q is a monolithic power amplifier in a (SE) to Bridge-Tied Load (BTL) mode 17-lead DIL-bent-SIL plastic power package. It contains two identical 25 W amplifiers. The dissipation is minimized • Differential inputs with high Common Mode Rejection by switching from SE to BTL mode when a higher output Ratio
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier BLOCK DIAGRAM V V handbook, full pagewidth P1 P2 5 13 + SLAVE 10 CONTROL OUT2- - MUTE - 11 16 IV OUT2+ IN2- - + VI 17 + - IN2+ VI 60 60 kΩ kΩ V P V 4 ref CSE 25 kΩ 3 - CIN + 60 60 kΩ kΩ VI 2 - IN1- + VI + 1 7 - IN1+ IV OUT1- - MUTE - 8 OUT1+ SLAVE CONTROL + TDA1563Q STANDBY CLIP AND LOGIC DIAGNOSTIC 6121415 9 MGR173 MODE SC DIAG CLIP GND Fig.1 Block diagram. 2000 Feb 09 3 + +
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier PINNING SYMBOL PIN DESCRIPTION handbook, halfpage IN1+ 1 IN1+ 1 non-inverting input 1 IN1- 2 IN1- 2 inverting input 1 CIN 3 common input CIN 3 CSE 4 electrolytic capacitor for SE mode CSE 4 V 5 supply voltage 1 P1 V 5 P1 MODE 6 mute/standby/operating 6 MODE OUT1- 7 inverting output 1 7 OUT1- OUT1+ 8 non-inverting output 1 8 OUT1+ GND 9 ground GND 9 TDA1563Q OUT2- 10 inverting output 2 OUT2+ 11 n
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier FUNCTIONAL DESCRIPTION To avoid plops during switching from ‘mute’ to ‘on’ or from ‘on’ to ‘mute/standby’ while an input signal is present, a The TDA1563Q contains two identical amplifiers with built-in zero-crossing detector only allows switching at differential inputs. At low output power (up to output zero input voltage. However, when the supply voltage amplitudes of 3 V (RMS) at V = 14.4 V),
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT V supply voltage operating - 18 V P non-operating - 30 V load dump; t > 2.5 ms - 45 V r V short-circuit safe voltage - 18 V P(sc) V reverse polarity voltage - 6V rp I repetitive peak output current - 4A ORM P total power dissipation - 60 W tot T storage temperature - 55 +15
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier DC CHARACTERISTICS V = 14.4 V; T =25 °C; measured in Fig.7; unless otherwise specified. P amb SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supplies V supply voltage note 1 6 14.4 18 V P I total quiescent current R =∞- 95 150 mA q(tot) L I standby current - 150 μA stb V average electrolytic capacitor voltage at pin 4 - 7.1 - V C ⎪ΔV ⎪ DC output offset voltage on state -- 100 mV O mute state --
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier V 18 mode handbook, halfpage Operating 4 3 Mute 2 1 Standby 0 MGR176 Fig.4 Switching levels of the mode select switch. 2000 Feb 09 8
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier AC CHARACTERISTICS V = 14.4 V; R =4 Ω; CSE = 1000 μF; f = 1 kHz; T =25 °C; measured in Fig.7; unless otherwise specified. P L amb SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT P output power THD = 0.5% 15 19 - W o THD = 10% 23 25 - W EIAJ - 38 - W V = 13.2 V; THD = 0.5% - 16 - W P V = 13.2 V; THD = 10% - 20 - W P THD total harmonic distortion P = 1 W; note 1 - 0.1 - % o P dissipated power see F
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier handbook, halfpage I o 10 μs max MGR177 handbook, halfpage V o t 0 short circuit max removed short circuit to ground DIAG CLIP 0 t 50 50 50 0 ms ms ms t maximum current short circuit to supply pins MGR178 Fig.5 Clip detection waveforms. Fig.5 Clip detection waveforms. Fig.6 Protection waveforms. 2000 Feb 09 10
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier TEST AND APPLICATION INFORMATION handbook, full pagewidth V 220 nF 2200 μF P V V P1 P2 5 13 TDA1563Q - 100 nF 3.9 Ω OUT2- 10 0.5R s IN2- 16 + 100 nF 220 nF 4 Ω 3.9 Ω - 11 OUT2+ 0.5R s IN2+ 17 + 220 nF 60 60 kΩ kΩ V ref 25 kΩ 4 CIN 3 CSE 1 μF 1000 μF 60 60 kΩ kΩ 0.5R s IN1- 2 + 7 OUT1- 220 nF - 3.9 Ω 4 Ω 0.5R s IN1+ 1 100 nF + 3.9 Ω 8 OUT1+ 220 nF 100 nF - CLIP AND STANDBY signal ground DIAGNOSTI
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier 76.20 handbook, full pagewidth 35.56 + RL-98 - Out2 Out2 - + 2.5% - - In1 In2 + + 10% Mode Prot Clip Mute gnd gnd On Off Vp GND TDA1563Q MGR189 Dimensions in mm. Fig.8 PCB layout (component side) for the application of Fig.7. 2000 Feb 09 12 Clip
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier 76.20 handbook, full pagewidth 35.56 2× 25 W high efficiency Out2 Out1 1 17 1 μF 220 nF 220 nF 220 nF In2 In1 GND Vp MGR190 Dimensions in mm. Fig.9 PCB layout (soldering side) for the application of Fig.7. 2000 Feb 09 13
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier MBH692 MBH693 25 25 handbook, halfpage handbook, halfpage P P d d (W) (W) 20 20 (1) (1) 15 15 (2) (2) 10 10 5 5 0 0 01 2 46 80 01 2 46 80 P (W) P (W) o o (1) For a conventional BTL amplifier. Input signal 1 kHz, sinusoidal; V = 14.4 V. P (2) For TDA1563Q. (1) For a conventional BTL amplifier. (2) For TDA1563Q. Fig.11 Dissipation; pink noise through IEC-268 Fig.10 Dissipation; sine wave driven.
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier handbook, full pagewidth V 220 nF 2200 μF P V V P1 P2 5 13 TDA1563Q - 100 nF 3.9 Ω 10 OUT2- IN2- 16 + 100 nF 220 nF 4 Ω 3.9 Ω - 11 OUT2+ IN2+ 17 + 220 nF 60 60 kΩ kΩ V ref 25 kΩ 4 CIN 3 CSE 1 μF 1000 μF IEC-268 60 60 FILTER kΩ kΩ IN1- 2 + 7 OUT1- 220 nF pink noise - 3.9 Ω 4 Ω IN1+ 1 100 nF 3.9 Ω + 8 OUT1+ 220 nF 100 nF - CLIP AND STANDBY signal ground LOGIC DIAGNOSTIC power ground 61214 15 9 MOD
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier MDA845 MDA844 150 250 handbook, halfpage handbook, halfpage I p I (mA) q (mA) 200 100 150 100 50 50 0 0 0 8 16 24 02 46 V (V) V (V) ms p V = 5 V; R = ∞. V = 14.4 V; V =25mV ms I P i Fig.14 Quiescent current as a function of V . Fig.15 I as a function of V (pin 3). P P ms MDA843 MDA842 60 10 handbook, halfpage handbook, halfpage P o THD + N (W) (%) (1) 40 1 (1) (2) (2) - 1 20 10 (3) (3) - 2 10
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier MDA841 MDA840 10 28 handbook, halfpage handbook, halfpage G v THD + N (dB) (%) 26 (1) 1 24 (2) - 1 10 22 - 2 10 20 2 3 4 5 2 3 4 5 6 10 10 10 10 10 10 10 10 10 10 10 f (Hz) f (Hz) (1) P =10W. o V = 100 mV. (2) P =1W. i o Fig.18 THD + noise as a function of frequency. Fig.19 Gain as a function of frequency. MDA838 MDA839 - 10 0 handbook, halfpage handbook, halfpage α cs SVRR (dB) (dB) - 30 - 20
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier MDA846 0.8 handbook, halfpage P o (W) 0.6 0.4 0.2 0 08 16 24 V (V) p V =70mV. i Fig.22 AC operating as a function of V . P 2000 Feb 09 18
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier handbook, full pagewidth MGL914 V P V load 0 - V P V P V master 1/2 V P 0 V P V slave 1/2 V P 0 0 1 2 t (ms) 3 See Fig.7: V =V - V or V - V load 7 8 11 10 V =V or V master 7 11 V =V or V slave 8 10 Fig.23 Output waveforms. 2000 Feb 09 19
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Philips Semiconductors Product specification 2 × 25 W high efficiency car radio power TDA1563Q amplifier APPLICATION NOTES 5. Connect the supply decoupling capacitors of 220 nF as closely as possible to the TDA1563Qs. Example of the TDA1563Q in a car radio system 6. Place the tracks of the differential inputs as close solution together as possible. If disturbances are injected at the The PCB shown here is used to demonstrate an audio inputs, they will be amplified 20 times. Oscillation may system s