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PHILIPS TDA1013B 4 W audio power amplifier with DC volume control handbook

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1. 8 Q Tamp 60 C To 150 C max for a 4 W application the maximum dissipation is approximately 2 5 W The thermal resistance from junction to ambient can be expressed as Rth ja Rth jab Rth tab h Rih h a Tias T jmax ambmax _ 150 60 _ P aa T SENE max Since Rih j tab 9 K W and Rih tab h 1 K W Rih h a 36 9 1 26 K W July 1994 4 Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TORNE CHARACTERISTICS Vp 18 V R 8 Q f 1 kHz Tamb 25 C see Fig 10 unless otherwise specified PARAMETER CONDITIONS SYMBOL MIN TYP MAX UNIT Supply voltage range Vp 10 18 40 V Total quiescent current ltot 25 60 mA Noise output voltage note 1 at maximum gain Rg 020 Vn 0 5 mV at maximum gain Rg 5kQ Vn 0 6 1 4 mV at minimum gain Rg 020 Vn 5 0 25 mV Total sensitivity Po 2 5 W DC control at max gain Vi 44 55 69 mV Audio amplifier Repetitive peak output current loRM E 1 5 A Output power THD 10 Ry 8 Q Po 4 0 4 2 WwW Total harmonic distortion P 2 5 W R 2890 THD 0 15 1 0 96 Sensitivity P 2 5 W Vi 100 125 160 mV Input impedance pin 5 IZil 100 200 500 kQ Power bandwidth Bp 30 to 40000 Hz DC volume control unit Gain control range IAG 80 90 dB Signal handling THD 196 DC control 0 dB Vi 1 2 1 7 V Sensitivity pin 6 Vo 2 125 mV max voltage gain Vi 39 44 55 mV Input impedance pin 8 IZil 23 29 35 kQ Output im
2. 10 RL 8 Q Po 4 0 4 2 W Total harmonic distortion P 2 5 W R 2890 THD 0 15 0 1 96 Sensitivity Po 2 5 W Vi 100 125 160 mV DC volume control unit Gain control range IAG 80 dB Signal handling THD 196 DC control 0 dB Vi 1 2 1 7 V Sensitivity pin 6 Vg 125 mV max voltage gain Vi 39 45 55 mV Input impedance pin 8 IZ 23 29 35 kQ PACKAGE OUTLINE 9 lead SIL plastic SOT110B SOT110 1 1996 July 23 July 1994 2 Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TDA1013B TDA1013B input reference voltage A input reference voltage B L 9 Fig 1 Block diagram 7221638 1 PINNING power ground amplifier output supply voltage electronic filter amplifier input control unit output control voltage control unit input 99 SN OP x dis i09 dr c signal ground substrate July 1994 3 Philips Semiconductors Product specification 4 W audio power amplifier with TDA1013B DC volume control RATINGS Limiting values in accordance with the Absolute Maximum System IEC 134 SYMBOL PARAMETER MIN MAX UNIT Supply voltage Non repetitive peak output current Repetitive peak output current Storage temperature range Crystal temperature Total power dissipation see Fig 2 7221647 infinite heatsink without heatsink Fig 2 Power derating curve HEATSINK DESIGN EXAMPLE Assume Vp 18 V RB
3. C volume control TDA1013B 7221646 Fig 9 Noise output voltage as a function of the control voltage Vp 18 V R 8 Q in accordance with IEC 179 curve A 7221639 1 1 Belongs to power supply circuitry Fig 10 Application diagram July 1994 9 Philips Semiconductors Product specification 4 W audio power amplifier with TDA1013B DC volume control PACKAGE OUTLINE SIL9MPF plastic single in line medium power package with fin 9 leads SOT110 1 o E a o E E o eo DIMENSIONS mm are the original dimensions A2 max UNIT As A4 b by bo 37 8 7 40 ad 8 0 14 1 1 Note 1 Plastic or metal protrusions of 0 25 mm maximum per side are not included OUTLINE REFERENCES EUROPEAN VERSION JEDEC EIAJ PROJECTION SOT110 1 E Q 95 02 25 ISSUE DATE July 1994 10 Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TDA1013B 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 ci
4. O0 0 TDA101389 1 INTEGRATED CIRCUITS DATA SHEET TDA1013B 4 W audio power amplifier with DC volume control Product specification July 1994 File under Integrated Circuits ICO1 Philips PHILIPS Semiconductors D fal l L Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TDA1013B GENERAL DESCRIPTION The TDA1013B is an integrated audio amplifier circuit with DC volume control encapsulated in a 9 lead single in line SIL plastic package The wide supply voltage range makes this circuit ideal for applications in mains and battery fed apparatus such as television receivers and record players The DC volume control stage has a logarithmic control characteristic with a range of more than 80 dB control is by means of a DC voltage variable between 2 and 6 5 V The audio amplifier has a well defined open loop gain and a fixed integrated closed loop This device requires only a few external components and offers stability and performance Features Few external components e Fixed gain e Wide supply voltage range e High signal to noise ratio e Wide control range e Thermal protection Pin compatible with TDA1013A QUICK REFERENCE DATA PARAMETER CONDITIONS SYMBOL MIN TYP MAX UNIT Supply voltage Vp 10 18 40 V Repetitive peak output current loRM 1 5 A Total sensitivity Po 2 5 W DC control at max gain Vi 44 55 69 mV Audio amplifier Output power THD
5. pedance pin 6 IZol 45 60 75 Q Note to the characteristics 1 Measured in a bandwidth in accordance with IEC 179 curve A July 1994 5 Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TDA1013B APPLICATION INFORMATION 7221640 1 Fig 3 Output power as a function of supply voltage f 1 kHz THD 10 and control voltage V7 6 5 V 7221641 Fig 4 Power dissipation as a function of output power Vp 18 V f 1 kHz R 8 Q and control voltage V7 6 5 V July 1994 6 Philips Semiconductors Product specification 4 W audio power amplifier with TDA1013B DC volume control 7221642 ER E E e r 1 LE EL LED N A LEE as EIS S SEE PA A LL a t Hz 6 5 V AL L LU CLIE LL LN CLBTUL LLLI LAU E LIII rh feet HR o HE rre 1 Fig 6 Total harmonic distortion as a function of frequency Vp 18 V R 8 Q P 2 5 W and control voltage 6 5 V July 1994 Philips Semiconductors Product specification 4 W audio power amplifier with DC volume control TDA1013B 27221644 0 10 20 40 60 80 0 6 0 4 0 2 0 0 2 gain control dB 17 mA Fig 8 Typical control curve July 1994 8 Philips Semiconductors Product specification 4 W audio power amplifier with D
6. rcuits 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 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 may 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 DEFINITIONS Data sheet status Objective specification This data sheet contains target or goal specifications for product development Preliminary specification This data sheet contains preliminary data supplementary data may be published later Prod
7. uct specification This data sheet contains final product specifications Limiting values 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 July 1994 11

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