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LM324N Datasheet(PDF) 2 Page - NXP Semiconductors

Part # LM324N
Description  Low power quad op amps
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Manufacturer  PHILIPS [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

LM324N Datasheet(HTML) 2 Page - NXP Semiconductors

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Philips Semiconductors
Product specification
LM124/224/324/324A/
SA534/LM2902
Low power quad op amps
1995 Nov 27
2
ABSOLUTE MAXIMUM RATINGS
SYMBOL
PARAMETER
RATING
UNIT
VCC
Supply voltage
32 or
±16
VDC
VIN
Differential input voltage
32
VDC
VIN
Input voltage
-0.3 to +32
VDC
PD
Maximum power dissipation,
TA=25°C (still-air)1
N package
1420
mW
F package
1190
mW
D package
1040
mW
Output short-circuit to GND one amplifier2
Continuous
VCC<15VDC and TA=25°C
Continuous
IIN
Input current (VIN<-0.3V)3
50
mA
TA
Operating ambient temperature range
LM324/A
0 to +70
°C
LM224
-25 to +85
°C
SA534
-40 to +85
°C
LM2902
-40 to +125
°C
LM124
-55 to +125
°C
TSTG
Storage temperature range
-65 to +150
°C
TSOLD
Lead soldering temperature (10sec max)
300
°C
NOTES:
1. Derate above 25
°C at the following rates:
F package at 9.5mW/
°C
N package at 11.4mW/
°C
D package at 8.3mW/
°C
2. Short-circuits from the output to VCC+ can cause excessive heating and eventual destruction. The maximum output current is approximately
40mA, independent of the magnitude of VCC. At values of supply voltage in excess of +15VDC continuous short-circuits can exceed the
power dissipation ratings and cause eventual destruction.
3. This input current will only exist when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the
input PNP transistors becoming forward biased and thereby acting as input bias clamps. In addition, there is also lateral NPN parasitic
transistor action on the IC chip. This action can cause the output voltages of the op amps to go to the V+ rail (or to ground for a large
overdrive) during the time that the input is driven negative.


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