TDA2003 ST Microelectronics, TDA2003 Datasheet

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TDA2003

Manufacturer Part Number
TDA2003
Description
10W CAR RADIO AUDIO AMPLIFIER
Manufacturer
ST Microelectronics
Datasheet

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DESCRIPTION
The TDA 2003 has improved performance with the
same pin configuration as the TDA 2002.
The additional features of TDA 2002, very low
number of external components,ease of assembly,
space and cost saving, are maintained.
Thedevice provides a high output currentcapability
(up to 3.5A) very low harmonic and cross-over
distortion.
Completely safe operation is guaranteed due to
protectionagainst DC and AC short circuit between
all pins and ground, thermal over-range,load dump
voltage surge up to 40V and fortuitous open
ground.
ABSOLUTE MAXIMUM RATINGS
TEST CIRCUIT
October 1998
Symbol
T
Ptot
stg
V
V
V
I
I
O
O
S
S
S
, T
j
Peak supply voltage (50ms)
DC supply voltage
Operating supply voltage
Output peak current (repetitive)
Output peak current (non repetitive)
Power dissipation at Tcase = 90 C
Storage and junction temeperature
Parameter
10W CAR RADIO AUDIO AMPLIFIER
ORDERING NUMBERS : TDA 2003H
PENTAWATT
-40 to 150
Value
3.5
4.5
40
28
18
20
TDA2003
TDA 2003V
Unit
W
V
V
V
A
A
C
1/10

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TDA2003 Summary of contents

Page 1

... O I Output peak current (non repetitive) O Ptot Power dissipation at Tcase = Storage and junction temeperature stg j TEST CIRCUIT October 1998 10W CAR RADIO AUDIO AMPLIFIER ORDERING NUMBERS : TDA 2003H Parameter TDA2003 PENTAWATT TDA 2003V Value Unit 3 ...

Page 2

... TDA2003 PIN CONNECTION (top view) SCHEMATIC DIAGRAM THERMAL DATA Symbol R Thermal resistance junction-case th-j-case 2/10 Parameter Value Unit max 3 C/W ...

Page 3

... Test conditions Min kHz 5 3 1.6 L 300 kHz 0. 0. 10W TDA2003 Typ. Max. Unit 6 3/10 ...

Page 4

... TDA2003 ELECTRICAL CHARACTERISTICS (continued) Symbol Parameter B Frequency response (-3 dB) d Distortion R Input resistance (pin Voltage gain (open loop Voltage gain (closed loop Input noise voltage N i Input noise current N Efficiency SVR Supply voltage rejection (0) Filter with noise bandwidth kHz Figure 1 ...

Page 5

... Figure 10. Supply voltage rejection vs. frequency Fi gure 5. Gain vs. inp ut sensivity Fi g ure 8. Disto r tion vs. frequency Figure 11. Power dissipa- tion and efficiency vs. output power ( TDA2003 Figure 6. Gain vs. input sensivity Figure 9. Supply voltage rejection vs. voltage gain Figure 12. Power dissipa- tion and efficiencyvs. output power ( 5/10 ...

Page 6

... TDA2003 Figure 13. Maximum power dissipation vs. supply voltage (sine wave operation) APPLICATION INFORMATION Figure 16. Typical application circuit BUILT-IN PROTECTION SYSTEMS Load dump voltage surge The TDA 2003 has a circuit which enables it to withstand a voltage pulse train, on pin 5, of the type shown in fig. 19. ...

Page 7

... There is no device damage in the case of ex- cessive junction temperature: all that happens is that P (and therefore P o Figure 21. Output power and temperature (R TDA2003 ) and I are reduced. tot 7/10 ...

Page 8

... TDA2003 PRATICAL CONSIDERATION Printed circuit board The layout shown in fig recommended. If different layouts are used, the ground points of input 1 and input 2 must be well decoupled from the ground of the output through which a ratherhigh current flows. Assembly suggestion No electrical insulation is required between the ...

Page 9

... MECHANICAL DATA 0.189 0.054 0.110 0.053 0.022 0.047 0.041 0.055 0.142 0.276 0.409 0.409 0.715 0.628 0.850 0.894 0.051 0.118 0.622 0.260 0.187 Pentawatt V 0.167 RESIN BETWEEN LEADS TDA2003 9/10 ...

Page 10

... TDA2003 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. Specification mentioned in this publication are subject to change without notice ...

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