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 INTEGRATED CIRCUITS
DATA SHEET
TDA7057AQ 2 x 8 W stereo BTL audio output amplifier with DC volume control
Product specification Supersedes data of 1997 July 15 File under Integrated Circuits, IC01 1998 Apr 07
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
FEATURES * DC volume control * Few external components * Mute mode * Thermal protection * Short-circuit proof * No switch-on and switch-off clicks * Good overall stability * Low power consumption * Low HF radiation * ESD protected on all pins. QUICK REFERENCE DATA SYMBOL VP Pout output power PARAMETER supply voltage VP = 12 V; RL = 16 VP = 12 V; RL = 8 VP = 15 V; RL = 8 Gv Gv Iq(tot) THD voltage gain voltage gain control total quiescent current total harmonic distortion VP = 12 V; RL = Po = 0.5 W CONDITIONS MIN. 4.5 3.0 - - 39.5 68 - - GENERAL DESCRIPTION
TDA7057AQ
The TDA7057AQ is a stereo BTL output amplifier with DC volume control. The device is designed for use in TVs and monitors, but is also suitable for battery-fed portable recorders and radios. Missing Current Limiter (MCL) A MCL protection circuit is built-in. The MCL circuit is activated when the difference in current between the output terminal of each amplifier exceeds 100 mA (typical 300 mA). This level of 100 mA allows for single-ended headphone applications.
TYP. - 3.5 5.3 8 40.5 73.5 22 0.3
MAX. 18 - - - 41.5 - 25 1
UNIT V W W W dB dB mA %
ORDERING INFORMATION TYPE NUMBER TDA7057AQ PACKAGE NAME DBS13P DESCRIPTION plastic DIL-bent-SIL power package; 13 leads (lead length 12 mm) VERSION SOT141-6
1998 Apr 07
2
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
BLOCK DIAGRAM
TDA7057AQ
V
handbook, full pagewidth
P 4
TDA7057AQ
input 1 DC volume control 1 3 1 I I i 13 positive output 1
i 11 negative output 1
Vref
STABILIZER
TEMPERATURE PROTECTION
input 2 DC volume control 2
5 7
I
i
10
negative output 2
I i 8 positive output 2
2
6
12
9
MSA714
not connected
signal ground
power ground 1
power ground 2
Fig.1 Block diagram.
1998 Apr 07
3
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
PINNING SYMBOL VC1 n.c. Vl (1) VP Vl (2) SGND VC2 OUT2+ PGND2 OUT2- OUT1- PGND1 OUT1+ PIN 1 2 3 4 5 6 7 8 9 10 11 12 13 DESCRIPTION DC volume control 1 not connected voltage input 1 positive supply voltage voltage input 2 signal ground DC volume control 2 positive output 2 power ground 2 negative output 2 negative output 1 power ground 1 positive output 1
OUT2 OUT1 PGND1 OUT1 10 11 12 13
handbook, halfpage
TDA7057AQ
VC1 n.c. V I (1) VP V I (2) SGND VC2 OUT2 PGND2
1 2 3 4 5 6 7 8 9 TDA7057AQ
MSA716
Fig.2 Pin configuration.
FUNCTIONAL DESCRIPTION The TDA7057AQ is a stereo output amplifier with two DC volume control stages. The device is designed for TVs and monitors, but is also suitable for battery-fed portable recorders and radios. In conventional DC volume control circuits the control or input stage is AC-coupled to the output stage via external capacitors to keep the offset voltage low. In the TDA7057AQ the two DC volume control stages are integrated into the input stages so that no coupling capacitors are required and a low offset voltage is still maintained. The minimum supply voltage also remains low. The BTL principle offers the following advantages: * Lower peak value of the supply current * The frequency of the ripple on the supply voltage is twice the signal frequency. Consequently, a reduced power supply with smaller capacitors can be used which results in cost reductions.
For portable applications there is a trend to decrease the supply voltage, resulting in a reduction of output power at conventional output stages. Using the BTL principle increases the output power. The maximum gain of the amplifier is fixed at 40.5 dB. The DC volume control stages have a logarithmic control characteristic. Therefore, the total gain can be controlled from +40.5 dB to -33 dB. If the DC volume control voltage falls below 0.4 V, the device will switch to the mute mode. The amplifier is a short-circuit protected to ground, VP and across the load. A thermal protection circuit is also implemented. If the crystal temperature rises above +150 C the gain will be reduced, thereby reducing the output power. Special attention is given to switch-on and switch-off clicks, low HF radiation and a good overall stability.
1998 Apr 07
4
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL VP IORM IOSM Ptot Tamb Tstg Tvj tsc Vn PARAMETER supply voltage repetitive peak output current non-repetitive peak output current total power dissipation operating ambient temperature storage temperature virtual junction temperature short-circuit time input voltage pins 1, 3, 5 and 7 Tcase < 60 C CONDITIONS - - - - -40 -55 - - - MIN.
TDA7057AQ
MAX. 18 1.25 1.5 22.5 +85 +150 150 1 5 V A A W
UNIT
C C C hr V
THERMAL CHARACTERISTICS SYMBOL Rth j-c Rth j-a PARAMETER thermal resistance from junction to case thermal resistance from junction to ambient in free air VALUE 4 40 UNIT K/W K/W
Power dissipation Assume VP = 12 V and RL = 16 . The maximum sine wave dissipation is 2 x 1.8 W = 3.6 W. At Tamb(max) = 60 C: Rth tot = (150 - 60)/3.6 = 25 K/W. Rth tot = Rth j-c + Rth c-hs + Rth hs. Rth c-hs + Rth hs = 25 - 4 = 21 K/W.
1998 Apr 07
5
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
CHARACTERISTICS VP = 12 V;Tamb = 25 C; fi = 1 kHz; RL = 16 ; unless otherwise specified (see Fig.13). SYMBOL VP Iq(tot) PARAMETER voltage supply total quiescent current VP = 12 V; RL = ; note 1 THD = 10%; RL = 16 THD = 10%; RL = 8 THD=10%; RL = 8 ; VP = 15 V THD Gv Vi(rms) Vo(n) B SVRR VOS Zi cs Gv total harmonic distortion voltage gain input signal handling (RMS value) noise output voltage bandwidth supply voltage ripple rejection DC output offset voltage input impedance (pins 3 and 5) channel separation channel unbalance RS = 5 k note 5 G1 = 0 dB; note 6 Mute position; V1 = V7 =0.4 V 30 mV Vo(mute) Gv lDC Notes output voltage in mute position Vi = 1.0 V; note 7 - 35 Gv = 0 dB; THD < 1% fi = 500 kHz; note 2 at -1 dB note 4 |V13 - V11| and |V10 - V8| Po = 0.5 W CONDITIONS - MIN. 4.5 - 22 TYP.
TDA7057AQ
MAX. 18.5 25 - - - 1 41.5 - - - - 200 25 - 1 1
UNIT V mA
Maximum gain; V1,7 1.4 V Po output power 3.0 - - - 39.5 1 - - 34 - 15 40 - - 3.5 5.3 8 0.3 40.5 - 210 note 3 38 0 20 - - - W W W % dB V V dB dB mV k dB dB dB V
45 - -30
DC volume control gain control range volume control current V1 = V7 = 0 V 68 -20 73.5 -25 dB A
1. With a load connected to the outputs the quiescent current will increase, the maximum value of this increase being equal to the DC output offset voltage divided by RL. 2. The noise output voltage (RMS value) at fi = 500 kHz is measured with RS = 0 and bandwidth = 5 kHz. 3. 20 Hz to 300 kHz (typical. 4. The ripple rejection is measured with RS = 0 and f = 100 Hz to 10 kHz. The ripple voltage (Vripple = 200 mV RMS) is applied to the positive supply rail. 5. The channel unbalance is measured with VDC1 = VDC2. 6. The channel unbalance at G1 = 0 dB is measured with VDC1 = VDC2. 7. The noise output voltage (RMS value) is measured with RS = 5 k unweighted.
1998 Apr 07
6
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
TDA7057AQ
handbook, halfpage
40
MBG672
handbook, halfpage
12
MBG675
Iq (mA) 30
THD (%)
8
(1) (2)
20
4 10
0 0 4 8 12 16 VP (V) 20
0 10-2
10-1
1
Pout (W)
10
(1) RL = 16 . (2) RL = 8 .
Fig.3
Quiescent current as a function of supply voltage.
Fig.4 THD as a function of output power.
MBG674
handbook, halfpage
10
handbook, halfpage
12
MBG676
THD (%) 8
Po (W) 8
(1) (2)
6
4 4 2
(1) (2)
0 10-2
10-1
0 1 10 f (kHz) 102 0 4 8 12 16 VP (V) 20
(1) Gv = 40 dB; Po = 0.5 W. (2) Gv = 30 dB; Po = 0.5 W.
THD = 10%; f = 1 kHz. (1) RL = 8 . (2) RL = 16 .
Fig.6 Fig.5 THD as a function of frequency.
Output power as a function of supply voltage.
1998 Apr 07
7
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
TDA7057AQ
handbook, halfpage
15
MBG677
handbook, halfpage
(1)
80
MBG667
Pd (W) 10
Gv (dB)
40
0
(2)
-40 5 -80
0
-120 0 4 8 12 16 VP (V) 20
0
0.4
0.8
1.2
2.0 1.6 VVC (V)
(1) RL = 8 . (2) RL = 16 .
Fig.7
Total worst case power dissipation as a function of supply voltage.
Fig.8
Voltage gain as a function of volume control voltage.
handbook, halfpage
1
MBG678
MBG663
handbook, halfpage
0
Vno (mV)
SVRR (dB) -20
(1)
10-1
-40
-60
(2)
10-2
0
0.4
0.8
1.2
1.6 2.0 VVC (V)
-80 10-2
10-1
1
10
f (kHz)
102
f = 22 Hz to 22 kHz.
(1) VDC = 1.4 V; Vripple = 0.2 V. (2) VDC = 0.4 V; Vripple = 0.2 V.
Fig.9
Noise voltage as a function of volume control voltage.
Fig.10 SVRR as a function of frequency.
1998 Apr 07
8
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
TDA7057AQ
handbook, halfpage
2.0
MBG665
handbook, halfpage
Vin (V) 1.6
30 IVC (A) 20
MBG666
10 1.2 0 0.8 -10 0.4 -20 -30 0 4 8 12 16 VP (V) 20 0 0.4 0.8 1.2 2.0 1.6 VVC (V)
0
THD = 1 %.
Fig.11 Input signal handling.
Fig.12 Volume control current as a function of volume control voltage.
APPLICATION INFORMATION The application diagram is illustrated in Fig.13. Test conditions Tamb = 25 C unless otherwise specified; VP = 12 V; VDC = 1.4 V; fi = 1 kHz; RL = 16 . The quiescent current has been measured without load impedance. The output power as a function of the supply voltage has been measured at THD = 10%. The maximum output power is limited by the maximum power dissipation and the maximum available output current. The maximum input signal voltage is measured at THD = 1% at the output with a voltage gain of 0 dB. To avoid instabilities and too high a distortion, the input ground and power ground must be separated as far as possible and connected as close as possible to the IC. The DC volume control can be applied in several ways. Two possible circuits are shown below the main application diagram. The circuits at the control pin will influence the switch-on and switch-off behaviour and the maximum voltage gain. 1998 Apr 07 9
For single-end applications the output peak current must not exceed 100 mA. At higher output currents the short-circuit protection (MCL) will be active. Thermal considerations: At high junction temperatures (>125 C) the voltage gain will decrease when it is higher than 0 dB. This results in a decrease of the output voltage and an increase of the distortion level. Thus for an optimal performance of the IC the heatsink has to be designed properly. Calculation example for application: VP = 15 V; RL = 8 , stereo sine wave; worst case sine wave power dissipation is 12 W. For Tamb(max) = 40 C the thermal resistance from junction ( 125 - 40 ) to ambient R th j-a = ---------------------------- = 7.1 K/W 12 The thermal resistance of the heatsink becomes: Rth h-a = Rth j-a - (Rth j-c + Rth c-h); Rth h-a = 7.1 - (4 + 0.1) = 3 K/W. It should be noted that for `music power' the power dissipation will be approximately half of the sine wave dissipation. Thus a smaller heatsink can be used.
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
TDA7057AQ
handbook, full pagewidth
(1)
100 nF
220 F
VP = 12 V
4
TDA7057AQ
13 470 nF input 1 Rs = 5 k 3 1 I+i
(2)
+
I-i
11
-
STABILIZER
TEMPERATURE MCL PROTECTION 10 -
470 nF input 2 DCvolume
5 7
I-i
(2)
I+i
8
Rs = 5 k
+
6
9
12
signal ground
power ground
VP = 12 V
volume control
1, 7 maximum voltage gain 34 dB 1 M
volume control
100 k 1, 7 maximum voltage gain 40 dB
1 F
1 F
22 k
MBG679
(1) This capacitor can be omitted if the 220 F electrolytic capacitor is connected close to pin 5. (2) RL = 16 .
Fig.13 Test and application diagram.
1998 Apr 07
10
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
PACKAGE OUTLINE DBS13P: plastic DIL-bent-SIL power package; 13 leads (lead length 12 mm)
TDA7057AQ
SOT141-6
non-concave x D Dh
Eh
view B: mounting base side
d
A2
B j E A
L3
L
Q c vM
1 Z e e1 bp wM
13 m e2
0
5 scale
10 mm
DIMENSIONS (mm are the original dimensions) UNIT mm A 17.0 15.5 A2 4.6 4.2 bp 0.75 0.60 c 0.48 0.38 D (1) 24.0 23.6 d 20.0 19.6 Dh 10 E (1) 12.2 11.8 e 3.4 e1 1.7 e2 5.08 Eh 6 j 3.4 3.1 L 12.4 11.0 L3 2.4 1.6 m 4.3 Q 2.1 1.8 v 0.8 w 0.25 x 0.03 Z (1) 2.00 1.45
Note 1. Plastic or metal protrusions of 0.25 mm maximum per side are not included. OUTLINE VERSION SOT141-6 REFERENCES IEC JEDEC EIAJ EUROPEAN PROJECTION
ISSUE DATE 95-03-11 97-12-16
1998 Apr 07
11
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
SOLDERING Introduction There is no soldering method that is ideal for all IC packages. Wave soldering is often preferred when through-hole and surface mounted components are mixed on one printed-circuit board. However, wave soldering is not always suitable for surface mounted ICs, or for printed-circuits with high population densities. In these situations reflow soldering is often used. This text gives a very brief insight to a complex technology. A more in-depth account of soldering ICs can be found in our "IC Package Databook" (order code 9398 652 90011). Soldering by dipping or by wave The maximum permissible temperature of the solder is 260 C; solder at this temperature must not be in contact with the joint for more than 5 seconds. The total contact time of successive solder waves must not exceed 5 seconds. DEFINITIONS Data sheet status Objective specification Preliminary specification Product specification Limiting values
TDA7057AQ
The device may be mounted up to the seating plane, but the temperature of the plastic body must not exceed the specified maximum storage temperature (Tstg max). If the printed-circuit board has been pre-heated, forced cooling may be necessary immediately after soldering to keep the temperature within the permissible limit. Repairing soldered joints Apply a low voltage soldering iron (less than 24 V) to the lead(s) of the package, below the seating plane or not more than 2 mm above it. If the temperature of the soldering iron bit is less than 300 C it may remain in contact for up to 10 seconds. If the bit temperature is between 300 and 400 C, contact may be up to 5 seconds.
This data sheet contains target or goal specifications for product development. This data sheet contains preliminary data; supplementary data may be published later. This data sheet contains final product specifications.
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or at any other conditions above those given in the Characteristics sections of the specification is not implied. Exposure to limiting values for extended periods may affect device reliability. Application information Where application information is given, it is advisory and does not form part of the specification. LIFE SUPPORT APPLICATIONS These products are not designed for use in life support appliances, devices, or systems where malfunction of these products can reasonably be expected to result in personal injury. Philips customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such improper use or sale.
1998 Apr 07
12
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
NOTES
TDA7057AQ
1998 Apr 07
13
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
NOTES
TDA7057AQ
1998 Apr 07
14
Philips Semiconductors
Product specification
2 x 8 W stereo BTL audio output amplifier with DC volume control
NOTES
TDA7057AQ
1998 Apr 07
15
Philips Semiconductors - a worldwide company
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For all other countries apply to: Philips Semiconductors, International Marketing & Sales Communications, Building BE-p, P.O. Box 218, 5600 MD EINDHOVEN, The Netherlands, Fax. +31 40 27 24825 (c) Philips Electronics N.V. 1998
SCA59
All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license under patent- or other industrial or intellectual property rights.
Printed in The Netherlands
545102/1200/04/pp16
Date of release: 1998 Apr 07
Document order number:
9397 750 03255


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