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 TDA7490L
20W + 20W STEREO CLASS-D AMPLIFIER 40W MONO IN BTL
1
FEATURES
20W + 20W OUTPUT POWER: @RL = 8/4; THD = 10% HIGH EFFICIENCY WIDE SUPPLY VOLTAGE RANGE (FROM 10 TO 25V) SPLIT SUPPLY, SINGLE SUPPLY OPERATION TURN OFF/ON POP FREE ST-BY AND MUTE FEATURES SHORT CIRCUIT PROTECTION ACROSS THE LOAD THERMAL OVERLOAD PROTECTION EXTERNALLY SINCHRONIZABLE BRIDGE CONFIGURATION
Figure 1. Package

Flexiwatt 25
Table 1. Order Codes
Part Number TDA7490L Package Flexiwatt 25

2
DESCRIPTION

The TDA7490L is a dual audio class D amplifier assembled in Flexiwatt 25 package; it is specially designed for high efficiency application mainly for TV and Home Stereo sets.
Figure 2. Test and Application Circuit. (Stereo Configuration)
R1 10K +VCC R17 52.3K -VCC +VCC
MUTE
STBY
R2 30K C27 2.2F 6
R21 4.7K
C26 470pF C25 470pF R20 68K 7 9
R3 10K
R4 130K
C23 2200F 14 2
C22 100nF 4
C21 2200F
-VCC R15 100
C1 330nF INPUT1 C2 1nF
10
G=2.5
PWM-stage1 INTEGRATOR1
5
C20 33nF C18 330pF
C19 560pF L1 30
OUT1 C10 220nF
PREAMPLIFIER1 12
3
C3 100nF C4 100nF R1 10K -VCC C7 100nF -VCC R 6.8 C5 330nF INPUT2 C6 1nF
11 R14 22K OSC 8 C17 24pF 15 C16 330pF R13 10K EXT_CK
13
16
1
25 PREAMPLIFIER2 18
G=2.5
INTEGRATOR2 PWM-stage2 20 24 22
23
R12 22K C14 33nF
L2 30 C15 560pF R11 100 -VCC
OUT2 C29 220nF
21
19 R5 4.7K C8 470pF R6 68K
17
C9 470pF
C28 2200F -VCC R9 52.3K
C11 100nF
C12 2200F +VCC
D98AU978A
December 2005
Rev. 2 1/11
TDA7490L
Figure 3. Test and Application Circuit. (Bridge Configuration)
470pF
470pF
R5 52.3K
C40
R4 68K
C41
The LC filter is optimized for 8 (<->LC filter for 4 in single-ended) It hos to be changed for other loads 9
7
PRE +
L9 30 Int. PWM-stage 3 C23 235nF C26 470nF R27 10 R28 10 C29 470nF dumping (common mode)
INPUT
10
R63 4.7K
R25 Rload
C24 235nF 18
PRE + -
Int.
PWM-stage
23 L10 30
19 470pF
17 470pF
C60 R61 68K
C59 R62 52.3K
D99AU1081
Table 2. Absolute Maximum Ratings
Symbol VCC Ptot Tstg, Tj Top V6,8,10,18 Parameter DC Supply Voltage (no signal) Power Dissipation Tcase = 70C Storage and Junction Temperature Operating Temperature Range Maximum Voltage on pins # 6,8,10,18 referred to GND Value 30 35 -40 to 150 0 to 70 5 Unit V W C C V
Table 3. Thermal Data
Symbol Rth j-case Parameter Thermal Resistance Junction-case Typ. Value 1 Unit C/W
2/11
TDA7490L
Figure 4. Application in Supply Voltage
52.3K R1
1 2 1 2
R17
+Vs
C26 470pF
1 2 2
+VS
100nF C22
1 2 +Vs 1
10K Mute
1 1
R2
2 2
Stby
2
30k R21
1 2
470pF C25
1
1
2
R3
1
1
C27
2
R20 68K
6
130K 100
14 9 2 4 12
1K
R15 C19 560pF L1 30uF
1 2
1
10k
2
1
R4
2
4.7K
1
2
* *
1 2 1 1 2
R22 1K
C21 2200uF
1
*
1
1 2 2 1 2 1 2
1 uF
R23
2200uF C12
2
U1
IN 1 1 2 2 10 IN 1
7
33nF
BOOT1 OUT1 5 3 11
MUTE
CURREF
FEED1
FEED2
+VSP1
-VSP1
C1
C20
1
*
OUT 1
330nF
1
C2 1nF
12
2
+5V REG T1
330pF
2
2
C18
C10 220nF
1 2 1
C3
21
100nF
13 SGND
C4 100nF
1 16 1 -5V REG
C16
T2 -VS OUT2 10V REG FEED4 FEED3 +VSP2 -VSP2 BOOT2 N.C. IN 2 15 1 23 1 21 2 1
C17 24pF 330pF
2 2
1
TDA7490L
OSC
8
R14 22K
2
EXT_CK
R13 10K
2
R12
1
22K C15 560pF
1
2 2
C7
1 1
2 2
100nF
25 18
19
17
24
20
22
330nF C5
2
33nF
12
IN 2
C14
220nF
1nF C6
R11 100
1
1 1
2
C8 470pF
2 1
1
2
+Vs
100uF
2
2
470pF C9
C11
*
New component
R5 4.7K
2
R6 68K
1
R9
2 1
52.3K
2
30uH L2 C29
1
OUT 2
3/11
TDA7490L
Figure 5. Pin Connection
1
25
+5V
STBY-MUTE
CURREF
FEED1
FEED2
OUT1
T1
BOOT1
BOOT2
FEED3
FEED4
OUT2
N.C.
-5V
T2
-VCC
-VCC
+VCC
D97AU816B
Table 4. Pin Description
Pin N 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 Name -VCC sign/sub -VCCpow1 out 1 +VCCpow1 BOOT1 STBY-MUTE FEED1 OSC FEED2 IN1 T1 +5V GND CURREF T2 -5V FEED3 IN2 FEED4 NC BOOT2 +VCCpow2 OUT2 -VCCpow2 Vreg Negative signal/substrate supply Negative power supply CH1 PWM output of CH1 Positive power supply CH1 Bootstrap CH1 Control State Pin Feedback pin 1 CH1 Master Oscillator Setting Freequency Pin (or external sync.) Feedback pin2 CH1 Input CH1 Triangular waveform CH1 +5V regulator (only for internal purposes) Signal ground Setting current resistor Triangular waveform CH2 -5V regulator (only for internal purposes) Feedback pin1 CH2 Input CH2 Feedback pin2 CH2 Not connected Bootstrap CH2 Positive power supply CH2 PWM output of CH2 Negative power supply CH2 10V regulator Function
4/11
+VCC
GND
-VCC
OSC
Vreg
IN1
IN2
TDA7490L
Table 5. Electrical Characteristics (Refer to the test circuit, VCC = 19V; RL = 8; Demod. filter L = 30H, C = 220nF; f = 1KHz; fsw = 200kHz; Tamb = 25C unless otherwise specified.)
Symbol VS Iq VOS Po Po(BTL) Parameter Supply Range Total Quiescent Current Output Offset Voltage Output Power Output Power in Bridge Configuration THD = 10% THD= 1% VS = 20V; RL = 16 THD = 10% THD=1% VS =15.5V; RL = 8 THD = 10% THD=1% Po(1) Output Power RL = 4 Vcc=13.5V THD = 10% THD=1% VCC = 19V; RL = 8 P = 20W + 20W; THD = 10% Po = 20W + 20W RL = 8; Po = 1 W RL = 0 RL = no LC filter -150 20 16 40 32 40 32 18 14.5 5.6 86 0.1 5 150 29 -1 A Curve f = 20Hz to 22KHz f = 1 KHz, Po = 1W 20 f = 100Hz; Vr = 0.5
(5)
Test Condition
Min. 10
Typ. 70
Max. 25 120 +150
Unit V mA mV W W W W W W W W W % % A C
PD THD Imax Tj Gv Gv eN CT Ri SVR Vrmax Tr, Tt RDSON Fsw
(4)
(3)
Maximum Dissipated Power Efficiency (') Total Harmonic Distortion Overcurrent Protection Threshold Thermal Shut-down Junction Temperature Closed Loop Gain Gain Matching Total Input Noise RG = 50 Cross talk Input Resistance Supply Voltage Rejection Overvoltage Threshold
30
31 +1
dB dB V V dB k dB
7 12 55 30 60 55 50 0.4 100 0 1.7 4 55 60 3 5 200 60 70 0.8 230 07 2.5 5
V ns KHz V V V dB mA
Rising and Falling Time Power Transistor on Resistance Switching Frequency Range Stand-by range Mute Range Play Range Mute Attenuation Quiescent Current @ Stand-by
MUTE & STAND-BY FUNCTIONS VST-BY VMUTE VPLAY AMUTE IqST-BY
*: Po = measured across the load using the following inductor: COIL58120 MPPA 2 (magnectics) TURNS= 20 1 mm (1) L = 15H, C = 470nF (3) Gv is intended with R2, R17, R5, R9 1% precision (4) Fsw = 0.25 * (1/(300ns + R13 * (C17 + 76pF) . 0.85) (5) VRMAX = (+Vcc) - (-Vcc) when VR VRMAX the device goes in Stand-By mode
5/11
TDA7490L
Figure 6. P.C. Board and Component Layout of the Figs. 2, 3 (for Stereo and Bridge Compatible Configuration)
Component Side
Solder Side
6/11
TDA7490L
Figure 7. Distortion vs. Output Power
10 THD (%) 5
Figure 10. Frequency Response
AMP (dB) 2
D99AU1103
2 1 0.5
Stereo Vcc=+/-19V Rl = 8 ohm f = 1KHz Filter AES
0 -2 -4 -6 -8 -10 VS= 17V; Rl= 8; 0dB= 1W
0.2 0.1 0.05
0.02 0.01 200m
-12
500m 1 2 Pout (W) 5 10 20 30
-14 0.01
0.1
1
10
f(KHz)
Figure 8. Distortion vs. Output Power
THD(%) 10 5 2 1 0.5 0.2 0.1 0.05 0.02 0.01 200m Stereo Vs=+/-13.5V, Rl=4Ohm f = 1KHz
Figure 11. Power Dissipation vs. Output Power
Ptot(W) 8 7 6 5 4 3 2 1 0 Vs= 19V Rl = 8 ohm f = 1KHz
500m
1
2 Pout(W)
5
10
20
0.5
2
4
6
8
10
12
14
16
18
20
2xPo(W)
Figure 9. Crosstalk vs. Frequency
CT (dB) -20 -30 VS 17V; Rl=8; 0dB=1W
D99AU1102
Figure 12. Distortion vs. Output Power in BTL
THD (%)
10 5
BTL Vcc=+/-15.5 V
2 1
Rl = 8ohm f = 1KHZ Filter AES
-40
0.5
-50 -60 -70 -80 -90 -100 0.001 0.01 0.1 1 f(KHz)
0.2 0.1 0.05
0.02 0.01 200m
500m
1
2
5
10
20
50
Pout (W)
7/11
TDA7490L
Figure 13. Distortion vs. Output Power in BTL
THD (%) 10 5 BTL Vcc=+/-20V 2 1 0.5 Rl=16ohm f = 1KHz Filter AES
Figure 14. Pout vs Supply Voltage
25 Pout (W) Stereo 20 Rl = 8ohm f = 1KHZ 15 THD=10%
0.2 0.1 0.05
10
THD=1%
5
0.02 0.01 200m
0
500m 1 2 Pout (W) 5 10 20 50
10
12
14
16 Vs ( +/-V)
18
20
8/11
TDA7490L
Figure 15. Flexiwatt 25 Mechanical Data & Package Dimensions
DIM. A B C D E F (1) G G1 H (2) H1 H2 H3 L (2) L1 L2 (2) L3 L4 L5 M M1 N O R R1 R2 R3 R4 V V1 V2 V3 MIN. 4.45 1.80 0.75 0.37 0.80 23.75 28.90 mm TYP. 4.50 1.90 1.40 0.90 0.39 1.00 24.00 29.23 17.00 12.80 0.80 22.47 18.97 15.70 7.85 5 3.5 4.00 4.00 2.20 2 1.70 0.5 0.3 1.25 0.50 MAX. 4.65 2.00 1.05 0.42 0.57 1.20 24.25 29.30 MIN. 0.175 0.070 0.029 0.014 0.031 0.935 1.139 inch TYP. 0.177 0.074 0.055 0.035 0.015 0.040 0.945 1.150 0.669 0.503 0.031 0.884 0.747 0.618 0.309 0.197 0.138 0.157 0.157 0.086 0.079 0.067 0.02 0.12 0.049 0.019 MAX. 0.183 0.079 0.041 0.016 0.022 0.047 0.955 1.153
OUTLINE AND MECHANICAL DATA
22.07 18.57 15.50 7.70
22.87 19.37 15.90 7.95
0.869 0.731 0.610 0.303
0.904 0.762 0.626 0.313
3.70 3.60
4.30 4.40
0.145 0.142
0.169 0.173
5 (T p.) 3 (Typ.) 20 (Typ.) 45 (Typ.)
Flexiwatt25 (vertical)
(1): dam-bar protusion not included (2): molding protusion included
V C B V V3 H3 H H1 H2 R3 R4 V1 R2 R L L1 A
L4
O
L2
N
L3
V1
V2
R2 L5 G G1 F
FLEX25ME
R1 R1 R1 E M M1
D
Pin 1
7034862
9/11
TDA7490L
Table 6. Revision History
Date March 2001 December 2005 Revision 1 2 First Issue Corrected the value of the inductance in the caption of the Table 5 "Electrical Characteristics". Description of Changes
10/11
TDA7490L
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 (c) 2005 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 www.st.com
11/11


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