TDA2006V STMicroelectronics, TDA2006V Datasheet

IC AMP AUDIO 12W PENTAWATT5 VERT

TDA2006V

Manufacturer Part Number
TDA2006V
Description
IC AMP AUDIO 12W PENTAWATT5 VERT
Manufacturer
STMicroelectronics
Type
Class ABr
Datasheet

Specifications of TDA2006V

Output Type
1-Channel (Mono)
Max Output Power X Channels @ Load
12W x 1 @ 4 Ohm
Voltage - Supply
12 V ~ 30 V, ±6 V ~ 15 V
Features
Short-Circuit and Thermal Protection
Mounting Type
Through Hole
Package / Case
Pentawatt-5 (Vertical, Bent and Staggered Leads)
Amplifier Class
AB
No. Of Channels
1
Output Power
12W
Supply Voltage Range
± 6V To ± 15V
Thd + N
0.1% @ 4W, 8ohm, VS=± 12V
Load Impedance
8ohm
Operating Temperature Range
-40°C To +150°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-8861-5
TDA2006V

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Part Number:
TDA2006V
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TDA2006
®
12W AUDIO AMPLIFIER
DESCRIPTION
The TDA2006 is a monolithic integrated circuit in
Pentawatt package, intended for use as a low
frequency class "AB" amplifier. At
12V, d = 10 %
typically it provides 12W output power on a 4
load
and 8W on a 8
. The TDA2006 provides high
output current and has very low harmonic and
cross-over distortion. Further the device incorpo-
rates an original (and patented) short circuit protec-
PENTAWATT
tion system comprising an arrangement for
automatically limiting the dissipated power so as to
ORDERING NUMBERS : TDA2006V
keep the working point of the output transistors
TDA2006H
within their safe operating area. A conventional
thermal shutdown system is also included. The
TDA2006 is pin to pin equivalent to the TDA2030.
TYPICAL APPLICATION CIRCUIT
1/12
September 2003

Related parts for TDA2006V

TDA2006V Summary of contents

Page 1

... A conventional thermal shutdown system is also included. The TDA2006 is pin to pin equivalent to the TDA2030. TYPICAL APPLICATION CIRCUIT September 2003 12W AUDIO AMPLIFIER 12V load ORDERING NUMBERS : TDA2006V TDA2006 PENTAWATT TDA2006H 1/12 ...

Page 2

TDA2006 SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol V Supply Voltage s V Input Voltage i V Differential Input Voltage i I Output Peak Current (internaly limited Power Dissipation at T tot Storage and Junction Temperature ...

Page 3

ELECTRICAL CHARACTERISTICS (refer to the test circuit ; Symbol Parameter V Supply Voltage s I Quiescent Drain Current d I Input Bias Current b V Input Offset Voltage OS I Input Offset Current OS V Output Offset ...

Page 4

TDA2006 Figure 1 : Output Power versus Supply Voltage Distortion versus Frequency Figure 3 : Figure 5 : Sensitivity versus Output Power 4/12 Figure 2 : Distortion versus Output Power Distortion versus Frequency Figure 4 : Figure 6 : Sensitivity ...

Page 5

Figure 7 : Frequency Response with different val- ues of the rolloff Capacitor C8 (see Figure 13) Figure 9 : Quiescent Current versus Supply Voltage Figure 11 : Power Dissipation and Efficiency ver- sus Output Power Figure 8 : Value ...

Page 6

TDA2006 Figure 13 : Application Circuit with Spilt Power Supply Figure 14 : P.C. Board and Components Layout of the Circuit of Figure 13 (1:1 scale) 6/12 ...

Page 7

Figure 15 : Application Circuit with Single Power Supply Figure 16 : P.C. Board and Components Layout of the Circuit of Figure 15 (1:1 scale) TDA2006 7/12 ...

Page 8

TDA2006 Figure 17 : Bridge Amplifier Configuration with Split Power Supply (P PRACTICAL CONSIDERATIONS Printed Circuit Board The layout shown in Figure 14 should be adopted by the designers. If different layout are used, the ground points of input 1 ...

Page 9

SHORT CIRCUIT PROTECTION The TDA2006 has an original circuit which limits the current of the output transistors. Figure 18 shows that the maximum output current is a func- tion of the collector emitter voltage ; hence the output transistors work ...

Page 10

TDA2006 Figure 22 : Maximum Allowable Power Dissipa- tion versus Ambient Temperature 10/12 DIMENSION SUGGESTION The following table shows the length of the heatsink in Figure 23 for several values (W) 12 tot Lenght of Heatsink (mm) ...

Page 11

DIM. MIN. TYP. MAX. MIN. A 4.80 C 1.37 D 2.40 2.80 0.094 D1 1.20 1.35 0.047 E 0.35 0.55 0.014 E1 0.76 1.19 0.030 F 0.80 1.05 0.031 F1 1.00 1.40 0.039 G 3.20 3.40 3.60 0.126 G1 ...

Page 12

... 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 ...

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