TDA2824 ST Microelectronics, TDA2824 Datasheet

no-image

TDA2824

Manufacturer Part Number
TDA2824
Description
DUAL POWER AMPLIFIER
Manufacturer
ST Microelectronics
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TDA2824
Manufacturer:
ST
Quantity:
6 262
Part Number:
TDA2824
Manufacturer:
ST
0
Part Number:
TDA2824
Manufacturer:
ST
Quantity:
20 000
January 1995
.
.
.
.
.
DESCRIPTION
The TDA2824 is a monolithic integrated circuit in
12+2+2 powerdip, intended for use as dual audio
power amplifier in portable radios and TV sets.
TYPICAL APPLICATION CIRCUIT (Stereo)
SUPPLY VOLTAGE DOWN TO 3 V
HIGH SVR
LOW CROSSOVER DISTORTION
LOW QUIESCENT CURRENT
BRIDGE OR STEREO CONFIGURATION
R2
DUAL POWER AMPLIFIER
ORDERING NUMBER : TDA2824
Powerd ip (12+2+2)
TDA2824
1/10

Related parts for TDA2824

TDA2824 Summary of contents

Page 1

... HIGH SVR . LOW CROSSOVER DISTORTION . LOW QUIESCENT CURRENT BRIDGE OR STEREO CONFIGURATION DESCRIPTION The TDA2824 is a monolithic integrated circuit in 12+2+2 powerdip, intended for use as dual audio power amplifier in portable radios and TV sets. TYPICAL APPLICATION CIRCUIT (Stereo) R2 January 1995 TDA2824 DUAL POWER AMPLIFIER Powerd ip (12+2+2) ...

Page 2

... TDA2824 PIN CONNECTION SCHEMATIC DIAGRAM ABSOLUTE MAXIMUM RATINGS Symbol V Supply Voltage S I Output Peak Current O P Total Power Dissipation at T tot Storage and Junction Temperature stg j 2/10 Parameter = 50 C amb = 70 C amb Value Unit 16 V 1 -40 to 150 C ...

Page 3

... 10 1KHz 4. 0. 1KHz R = 10K B = 22Hz to 22KHz S Curve 100Hz TDA2824 Value C/W 20 C/W Min. Typ . Max 2 100 nA 1.3 1.7 W 0.45 0.65 W 0. 100 K 2 ...

Page 4

... TDA2824 Figure 1 : Test Circuit (stereo). R2 Figure 2: P.C. Board and Component Layout of the Circuit of Figure 1. (1:1 scale) 4/10 ...

Page 5

... Figure 3 : Test Circuit (bridge). Figure 4: P.C. Board and Component Layout of the Circuit of Figure 3. (1:1 scale) TDA2824 5/10 ...

Page 6

... TDA2824 Figure 3 : Output Power vs. Supply Voltage (Stereo). Figure 5 : Distortion vs. Output Power (Bridge). Figure 7 : Supply Voltage Rejection vs. Frequency (Stereo) 6/10 Figure 4 : Output Power vs. Supply Voltage (Bridge). Figure 6 : Distortion vs. Output Power (Bridge). Figure 8 : Quiescent Current vs. Supply Voltage. ...

Page 7

... Figure 9 : Quiescent Current vs. Supply Voltage. Figure 11 : Total Power Dissipation vs. Output Power (Bridge). Figure 10 : Total Power Dissipation vs. Output Power (Stereo). Figure 12 : Total Power Dissipation vs. Output Power (Bridge). TDA2824 7/10 ...

Page 8

... TDA2824 MOUNTING INSTRUCTION The R of the TDA2824 can be reduced by sol- th j-amb dering the GND pins to a suitable copperarea of the printed circuit board (Figure 13 external heatsink (Figure 14). The diagram of Figure 15 shows the maximum dis- sipable power P and the R tot th j-amb the side” ...

Page 9

... POWERDIP 12+2+2 PACKAGE MECHANICAL DATA DIM. MIN. a1 0. TYP. MAX. MIN. 0.020 1.40 0.033 0.50 0.50 0.015 20.0 8.80 2.54 17.78 7.10 5.10 3.30 1.27 TDA2824 inch TYP. MAX. 0.055 0.020 0.020 0.787 0.346 0.100 0.700 0.280 0.201 0.130 0.050 9/10 ...

Page 10

... TDA2824 Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics 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 SGS-THOMSON Microelectronics. Specifications mentioned in this publication are subject to change without notice ...

Related keywords