TDA2030AV STMicroelectronics, TDA2030AV Datasheet - Page 8

IC AMP AUDIO 18W MONO PENTAWATT5

TDA2030AV

Manufacturer Part Number
TDA2030AV
Description
IC AMP AUDIO 18W MONO PENTAWATT5
Manufacturer
STMicroelectronics
Type
Class ABr
Datasheets

Specifications of TDA2030AV

Output Type
1-Channel (Mono)
Max Output Power X Channels @ Load
18W x 1 @ 4 Ohm
Voltage - Supply
12 V ~ 44 V, ±6 V ~ 22 V
Features
Short-Circuit and Thermal Protection
Mounting Type
Through Hole
Package / Case
Pentawatt-5 (Vertical, Bent and Staggered Leads)
Product
Class-AB
Output Power
18 W
Available Set Gain
80 dB
Thd Plus Noise
0.5 %
Operating Supply Voltage
22 V
Supply Current
80 mA
Maximum Power Dissipation
20000 mW
Maximum Operating Temperature
+ 150 C
Mounting Style
Through Hole
Audio Load Resistance
8 Ohms
Dual Supply Voltage
+/- 9 V, +/- 12 V, +/- 15 V, +/- 18 V
Input Bias Current (max)
2 uA
Input Offset Voltage
15 V
Input Signal Type
Differential
Minimum Operating Temperature
- 40 C
Output Signal Type
Single
Supply Type
Dual
Amplifier Type
MIC
Bandwidth
100 MHz
Current, Input Bias
0.2 μA
Current, Input Offset
±20 nA
Current, Output
3.5 A
Current, Supply
50 mA
Harmonic Distortion
0.08 %
Impedance, Thermal
3 °C/W
Open Loop Gain
80
Package Type
Pentawatt
Power Dissipation
20 W
Resistance, Input
5 Megohms
Slew Rate
8
Voltage, Input
±22 V
Voltage, Input Offset
±2 mV
Voltage, Noise
3 μV
Voltage, Supply
±6 to ±22 V
Amplifier Class
AB
No. Of Channels
1
Supply Voltage Range
± 6V To ± 22V
Load Impedance
4ohm
Operating Temperature Range
-50°C To +150°C
Amplifier Case Style
Pentawatt V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-2165-5

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TDA2030A
Figure 16 : Bridge Amplifier with Split Power Supply (P
Figure 17 : P .C. Board and Component Layout for the Circuit of Figure 16 (1:1 scale)
MULTIWAY SPEAKER SYSTEMS AND ACTIVE
BOXES
Multiway loudspeaker systems provide the best
possible acoustic performance since each loud-
speaker is specially designed and optimized to
handle a limited range of frequencies. Commonly,
these loudspeaker systems divide the audio spec-
trum into two or three bands.
To maintain a flat frequency response over the Hi-Fi
audio range the bands covered by each loud-
speaker must overlap slightly. Imbalance between
the loudspeakers produces unacceptable results
8/15
therefore it is important to ensure that each unit
generates the correct amount of acoustic energy
for its segmento of the audio spectrum. In this
respect it is also important to know the energy
distribution of the music spectrum to determine the
cutoff frequencies of the crossover filters (see Fig-
ure 18). As an example a 100W three-way system
with crossover frequencies of 400Hz and 3kHz
would require 50W for the woofer, 35W for the
midrange unit and 15W for the tweeter.
O
= 34W, V
S
=
16V)

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