Obsolete Product(s) - Obsolete Product(s)

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1 FEATURES + OUTPUT L = 8Ω/4Ω; THD = 0% HIGH EFFICIENCY IDE SUPPLY VOLTAGE RANGE (FROM ±0 TO ±V) SPLIT SUPPLY TURN OFF/ON POP FREE ST-BY AND MUTE FEATURES SHORT CIRCUIT PROTECTION ACROSS THE LOAD THERMAL OVERLOAD PROTECTION EXTERNALLY SINCHRONIZABLE BRIDGE CONFIGURATION TDA STEREO CLASS-D AMPLIFIER 0 MONO IN BTL Figure. Test and Application Circuit. (Stereo Configuration) R 0K MUTE R3 0K C3 00nF INPUT C4 00nF R 0K INPUT STBY C 330nF C nf C7 00nF R 6.8 C 330nF C6 nf R 30K C7.µF 6 0 R 4.7K G=. PREAMPLIFIER 3 6 R 4.7K C6 470pF C 470pF R0 68K INTEGRATOR PREAMPLIFIER INTEGRATOR G=. 8 C8 470pF R4 30K +V CC PM-stage PM-stage Figure. Package Table. Order Codes DESCRIPTION The TDA7490 is a dual audio class D amplifier assembled in Flexiwatt package; it is specially designed for high efficiency application mainly for TV and Home Stereo sets. R7.3K C3 00µF OSC C 00nF +V CC C 00µF Flexiwatt Part Number Package TDA7490 Flexiwatt C0 33nF C8 330pF R4 K C7 4pF C6 330pF R K C4 33nF R 00 C9 60pF R3 0K C 60pF R 00 L 30µ L 30µ OUT C0 0nF OUT C9 0nF EXT_CK R6 68K C9 470pF C8 00µF C 00nF C 00µF +V CC R9.3K D98AU978A December 00 Rev. 6 /0

2 Figure 3. Test and Application Circuit. (Bridge Configuration) 470pF 470pF R.3K C40 R4 68K C4 7 9 The LC filter is optimized for 8Ω (<->LC filter for 4Ω in single-ended) It hos to be changed for other loads INPUT R63 4.7K Table. Absolute Maximum Ratings 0 8 Symbol Parameter Value Unit V CC DC Supply Voltage (no signal) ±30 V P tot Power Dissipation T case = 70 C 3 T stg, T j Storage and Junction Temperature 40 to 0 C T op Operating Temperature Range 0 to 70 C V 6,8,0,8 Maximum Voltage on pins # 6,8,0,8 referred to GND ± V Table 3. Thermal Data - Int. PRE + PRE + Int pF C60 R6 68K 470pF C9 PM-stage PM-stage R6.3K Symbol Parameter Value Unit R th j-case Thermal Resistance Junction-case Typ. C/ 3 3 L9 30µ C3 3nF C4 3nF L0 30µ C6 470nF R7 0 R8 0 C9 470nF D99AU08 dumping (common mode) R Rload /0

3 Figure 4. Pin Connection Table 4. Pin Description Pin N Name Function sign/sub Negative signal/substrate supply pow Negative power supply CH 3 out PM output of CH 4 +V CCpow Positive power supply CH BOOT Bootstrap CH 6 STBY-MUTE Control State Pin 7 FEED Feedback pin CH 8 OSC Master Oscillator Setting Freequency Pin (or external sync.) 9 FEED Feedback pin CH 0 IN Input CH T Triangular waveform CH +V +V regulator (only for internal purposes) 3 GND Signal ground 4 CURREF Setting current resistor T Triangular waveform CH 6 -V -V regulator (only for internal purposes) 7 FEED3 Feedback pin CH 8 IN Input CH -VCC -VCC OUT +VCC 9 FEED4 Feedback pin CH 0 NC Not connected BOOT Bootstrap CH +V CCpow Positive power supply CH 3 OUT PM output of CH 4 pow Negative power supply CH V reg 0V regulator BOOT STBY-MUTE FEED OSC FEED IN T +V GND CURREF T -V FEED3 IN FEED4 N.C. BOOT +VCC OUT D97AU86B -VCC Vreg 3/0

4 Table. Electrical Characteristics (Refer to the test circuit, V CC = ±V; R L = 8Ω; Demod. filter L = 30µH, C = 0nF; f = KHz; fsw = 00kHz; T amb = C unless otherwise specified.) Symbol Parameter Test Condition Min. Typ. Max. Unit V S Supply Range ±0 ± V I q Total Quiescent Current R L = no LC filter 70 0 ma V OS Output Offset Voltage mv P o Output Power THD = 0% THD= % P o(btl) Output Power in Bridge Configuration V S = ±V; R L = 6Ω THD = 0% THD=% V S =±7V; R L = 8Ω THD = 0% THD=% P () o Output Power R L = 4Ω Vcc=±6V THD = 0% THD=% P D Maximum Dissipated Power V CC = ±V; R L = 8Ω Pο = + ; THD = 0% η () Efficiency (*) P o = % THD Total Harmonic Distortion R L = 8Ω; Po = 0. % I max Overcurrent Protection R L = 0 3. A Threshold T j Thermal Shut-down Junction Temperature 0 C G v Closed Loop Gain db G v (3) Gain Matching - + db e N Total Input Noise R G = 0Ω A Curve f = 0Hz to KHz 7 µv µv C T Cross talk f = KHz, P o = db R i Input Resistance 0 30 kω SVR Supply Voltage Rejection f = 00Hz; V r = db V rmax Overvoltage Threshold () 60 V T r, T t Rising and Falling Time 0 70 ns R DSON Power Transistor on Resistance Ω Fsw (4) Switching Frequency Range KHz MUTE & STAND-BY FUNCTIONS V ST-BY Stand-by range V V MUTE Mute Range.7. V V PLAY Play Range 4 V A MUTE Mute Attenuation 60 db I qst-by Quiescent Stand-by 3 ma *: Po = measured across the load using the following inductor: COIL80 MPPA (magnectics) TURNS= 0 mm () L = µh, C = 470nF () η Top = 90% where V cc = ±V; R L = 8Ω; Po = ; THD = 0% (3) Gv is intended with R, R7, R, R9 % precision (4) Fsw = 0. (/(300ns + R3 (C7 + 76pF). 0.8) () V RMAX = (+Vcc) - (-Vcc) when V R V RMAX the device goes in Stand-By mode 4/0

5 Figure. P.C. Board and Component Layout of the Figs., 3 (for Stereo and Bridge Compatible Configuration) Component Side Solder Side /0

6 Figure 6. Distortion vs. Output Power Figure 9. Frequency Response THD (%) Stereo V S ± V; Rl=8Ω; f=khz D99AU088 AMP (db) 0 D99AU P O() Figure 7. Distortion vs. Output Power THD (%) Stereo V S ± 6V; Rl=4Ω; f=khz P O() Figure 8. Crosstalk vs. Frequency CT (db) D99AU089 Figure 0. Power Dissipation vs. Output Power Figure. Distortion vs. Output Power in BTL V S ± 7V; Rl=8Ω; 0dB= D99AU V S ± V; Rl=8Ω; 0dB= f(khz) Power Dissipation () Vs= +/- V; Rl = 8 Ohm; f= KHz Output Power () THD (%) Bridge V S ± 7V; Rl=8Ω; f=khz D99AU f(khz) P O() 6/0

7 Figure. Distortion vs. Output Power in BTL THD (%) 0. Bridge V S ± V; Rl=6Ω; f=khz D99AU P O() 7/0

8 Figure 3. Package Dimensions DIM. mm inch MIN. TYP. MAX. MIN. TYP. MAX. A B C D E F () G G H () H H H L () L L () L L L M M N O R R R R R V (T p.) V 3 (Typ.) V 0 (Typ.) V3 4 (Typ.) (): dam-bar protusion not included (): molding protusion included L B O L3 L4 V V3 H3 H H R3 H OUTLINE AND MECHANICAL DATA Flexiwatt (vertical) N R4 V V R R C R L L V R A V D Pin G G F FLEXME L R R E M M /0

9 Table 6. Revision History Date Revision Description of Changes March 00 First Issue December 00 6 Corrected the value of the inductance in the caption of the Table Electrical Characteristics. 9/0

10 Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics. All other names are the property of their respective owners 00 STMicroelectronics - All rights reserved STMicroelectronics group of companies Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan - Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America 0/0

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