TDA7296 STMicroelectronics, TDA7296 Datasheet

IC AMP AUDIO 60W AB MULTIWATT15

TDA7296

Manufacturer Part Number
TDA7296
Description
IC AMP AUDIO 60W AB MULTIWATT15
Manufacturer
STMicroelectronics
Type
Class ABr
Datasheet

Specifications of TDA7296

Output Type
1-Channel (Mono)
Max Output Power X Channels @ Load
60W x 1 @ 8 Ohm
Voltage - Supply
±10 V ~ 35 V
Features
Depop, Mute, Short-Circuit and Thermal Protection, Standby
Mounting Type
Through Hole
Package / Case
Multiwatt-15 (Vertical, Bent and Staggered Leads)
Product
Class-AB
Output Power
60 W
Available Set Gain
80 dB
Thd Plus Noise
0.01 %
Maximum Power Dissipation
50000 mW
Maximum Operating Temperature
+ 70 C
Mounting Style
Through Hole
Audio Load Resistance
8 Ohms
Dual Supply Voltage
+/- 12 V, +/- 15 V, +/- 18 V, +/- 24 V, +/- 28 V
Input Bias Current (max)
0.5 uA
Input Offset Voltage
10 mV
Input Signal Type
Differential
Minimum Operating Temperature
0 C
Output Signal Type
Single
Supply Type
Dual
Amplifier Class
AB
No. Of Channels
1
Supply Voltage Range
± 10V To ± 35V
Thd + N
0.005% @ 5W, 8ohm, VS = ± 24V
Load Impedance
8ohm
Operating Temperature Range
0°C To +70°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
497-3966-5

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1
2
The TDA7296 is a monolithic integrated circuit in
Multiwatt15 package, intended for use as audio
class AB amplifier in Hi-Fi field applications (Home
Stereo, self powered loudspeakers, Topclass TV).
Figure 2. Typical Application and Test Circuit
February 2005
MULTIPOWER BCD TECHNOLOGY
VERY HIGH OPERATING VOLTAGE RANGE
(±35V)
DMOS POWER STAGE
HIGH OUTPUT POWER (UP TO 60W MUSIC
POWER)
MUTING/STAND-BY FUNCTIONS
NO SWITCH ON/OFF NOISE
NO BOUCHEROT CELLS
VERY LOW DISTORTION
VERY LOW NOISE
SHORT CIRCUIT PROTECTION
THERMAL SHUTDOWN
FEATURES
DESCRIPTION
70V - 60W DMOS AUDIO AMPLIFIER WITH MUTE/ST-BY
VSTBY
VM
Note: The Boucherot cell R6, C10, normally not necessary for a stable operation it could
22µF
C2
R1 22K
C3 10µF
be needed in presence of particular load impedances at V
R4 22K
C1 470nF
R5 10K
680Ω
R2
IN+MUTE
MUTE
STBY
IN+
IN-
C4 10µF
R3 22K
2
3
4
10
9
MUTE
STBY
1
STBY-GND
C7 100nF
-
+
Thanks to the wide voltage range and to the high
out current capability it is able to supply the high-
est power into both 4Ω and 8Ω loads even in pres-
ence of poor supply regulation, with high Supply
Voltage Rejection.
The built in muting function with turn on delay sim-
plifies the remote operation avoiding switching on-
off noises.
Figure 1. Package
Table 1. Order Codes
+Vs
7
8
-Vs
C9 100nF
SHUTDOWN
THERMAL
S
<±25V.
Part Number
TDA7296HS
TDA7296
Multiwatt15V
-Vs
+Vs
15
-PWVs
PROTECTION
+PWVs
13
S/C
C6 1000µF
C8 1000µF
14
Multiwatt15H (Short Leads)
6
22µF
OUT
BOOT-
STRAP
C5
D93AU011
(Short Leads)
Multiwatt15H
Multiwatt15V
TDA7296
Package
100nF
2.7Ω
C10
R6
Rev. 10
1/15

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TDA7296 Summary of contents

Page 1

... VERY LOW NOISE ■ SHORT CIRCUIT PROTECTION ■ THERMAL SHUTDOWN ■ 2 DESCRIPTION The TDA7296 is a monolithic integrated circuit in Multiwatt15 package, intended for use as audio class AB amplifier in Hi-Fi field applications (Home Stereo, self powered loudspeakers, Topclass TV). Figure 2. Typical Application and Test Circuit C2 R2 22µF 680Ω ...

Page 2

... TDA7296 Figure 3. Pin Connection Table 2. Absolute Maximum Ratings Symbol V Supply Voltage (No Signal Output Peak Current O P Power Dissipation T tot T Operating Ambient Temperature Range Storage and Junction Temperature stg j Table 3. Thermal Data Symbol R Thermal Resistance Junction-case th j-case Figure 4. Block Diagram 2/15 Parameter = 70° ...

Page 3

... R = 8Ω ± 24V 6Ω ± 22V 4Ω 5W 1kHz 0.1 to 20W 20Hz to 20kHz ± 18V 4Ω 5W 1kHz 0.1 to 20W 20Hz to 20kHz curve f = 20Hz to 20kHz P = 100Hz 0.5Vrms ripple TDA7296 = 8Ω 30dB 50Ω Min. Typ. Max. Unit ±10 ± 500 nA - -100 100 ...

Page 4

... TDA7296 Figure 5. P.C.B. and Components Layout of the Circuit of figure 2. Note: The Stand-by and Mute functions can be referred either to GND or -VS. On the P.C.B. is possible to set both the configuration through the jumper J1. 4/15 ...

Page 5

... Decoupling Mute Time Constant Larger Mute ON/OFF Time St-by Time Constant Larger St-by ON/OFF Time Bootstrapping Supply Voltage Bypass Supply Voltage Bypass TDA7296 SMALLER THAN SUGGESTED Decrease Input Impedance Increase of Gain Decrease of Gain Smaller St-by ON/OFF Time; Pop Noise Smaller Mute ...

Page 6

... TDA7296 4 TYPICAL CHARACTERISTICS (Application Circuit of fig 2 unless otherwise specified) Figure 6. : Output Power vs. Supply Voltage. Figure 7. Distortion vs. Output Power Figure 8. Output Power vs. Supply Voltage 6/15 Figure 9. Distortion vs. Output Power Figure 10. Distortion vs. Frequency Figure 11. Distortion vs. Frequency ...

Page 7

... Figure 12. Quiescent Current vs. Supply Voltage Figure 13. Supply Voltage Rejection vs. Frequency Figure 14. Mute Attenuation vs. V Figure 15. St-by Attenuation vs. V Figure 16. Power Dissipation vs. Output Power Figure 17. Power Dissipation vs. Output Power pin10 TDA7296 pin9 7/15 ...

Page 8

... The main design task one is confronted with while developing an integrated circuit as a power operational amplifier, independently of the technology used, is that of realising the output stage. The solution shown as a principle schematic by Fig 18 represents the DMOS unity-gain output buffer of the TDA7296. This large-signal, high-power buffer must be capable of handling extremely high current and voltage levels while maintaining acceptably low harmonic distortion and good behaviour over frequency response ...

Page 9

... The sequence that we recommend during the ON/OFF transients is shown by Figure 19. The application of figure 20 shows the possibility of using only one command for both st-by and mute func- tions. On both the pins, the maximum applicable range corresponds to the operating supply voltage OFF PLAY MUTE MUTE TDA7296 ST-BY OFF D93AU013 9/15 ...

Page 10

... ST-BY 6 BRIDGE APPLICATION Another application suggestion is the BRIDGE configuration, where two TDA7296 are used, as shown by the schematic diagram. In this application, the value of the load must not be lower than 8 Ohm for dissipation and current capability reasons. A suitable field of application includes HI-FI/TV subwoofers realizations. The main advantages offered by this solution are: – ...

Page 11

... Figure 22. Frequency Response of the Bridge Application Figure 23. Distortion vs. Output Power Figure 24. Distortion vs. Output Power TDA7296 11/15 ...

Page 12

... TDA7296 Figure 25. Multiwatt15V Mechanical Data & Package Dimensions mm DIM. MIN. TYP. MAX 2. 0.49 0.55 F 0.66 0.75 G 1.02 1.27 1.52 G1 17.53 17.78 18.03 H1 19.6 H2 20.2 L 21.9 22.2 22.5 L1 21.7 22.1 22.5 L2 17.65 18.1 L3 17.25 17.5 17.75 L4 10.3 10.7 10.9 L7 2.65 2 ...

Page 13

... Multiwatt15 H (Short leads) 0.075 0.102 0.144 0.152 Diam OUTLINE AND MECHANICAL DATA MW15HME 0067558 E TDA7296 13/15 ...

Page 14

... TDA7296 Table 5. Revision History Date Revision January 2004 September 2004 February 2005 14/15 8 First Issue in EDOCS DMS 9 Added Package Multiwatt15 Horizontal (Short leads) 10 Corrected mistyping error in Table 2. Description of Changes ...

Page 15

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