LM324AM National Semiconductor, LM324AM Datasheet - Page 5

OP AMP, QUAD LOW POWER, SMD, SOIC14

LM324AM

Manufacturer Part Number
LM324AM
Description
OP AMP, QUAD LOW POWER, SMD, SOIC14
Manufacturer
National Semiconductor
Datasheet

Specifications of LM324AM

Op Amp Type
Low Power
No. Of Amplifiers
4
Bandwidth
1MHz
Slew Rate
0.5V/µs
Supply Voltage Range
± 1.5V To ± 16V
Amplifier Case Style
SOIC
No. Of Pins
14
Operating Temperature Range
0°C To
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Supply Current
Large Signal
Voltage Gain
Common-Mode
Rejection Ratio
Power Supply
Rejection Ratio
Amplifier-to-Amplifier
Coupling (Note 11)
Output
Current
Short Circuit to Ground
Input Offset Voltage
V
Input Offset Current
I
Input Bias Current
Input Common-Mode
Voltage Range (Note
10)
Large Signal
Voltage Gain
Output
Voltage
Swing
Output
Current
OS
Electrical Characteristics
V
OS
Note 4: For operating at high temperatures, the LM324/LM324A/LM2902 must be derated based on a +125˚C maximum junction temperature and a thermal
resistance of 88˚C/W which applies for the device soldered in a printed circuit board, operating in a still air ambient. The LM224/LM224A and LM124/LM124A can
be derated based on a +150˚C maximum junction temperature. The dissipation is the total of all four amplifiers — use external resistors, where possible, to allow the
amplifier to saturate of to reduce the power which is dissipated in the integrated circuit.
Note 5: Short circuits from the output to V
current is approximately 40 mA independent of the magnitude of V
dissipation ratings and cause eventual destruction. Destructive dissipation can result from simultaneous shorts on all amplifiers.
Note 6: 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 diode clamps. In addition to this diode action, there is also lateral NPN parasitic transistor action
+
Drift
Drift
= +5.0V, (Note 7), unless otherwise stated
Parameter
Source
Sink
V
V
Source
Sink
OH
OL
Over Full Temperature Range
R
V
V
V
(V
DC, V
T
V
(LM2902, V
T
f = 1 kHz to 20 kHz, T
(Input Referred)
V
V
V
V
V
V
(Note 5) V
(Note 8)
R
I
R
I
V
(LM2902, V
V
R
V
(LM2902, V
V
V
IN(+)
IN(+)
A
A
+
+
+
+
IN
+
IN
+
IN
+
+
+
+
+
O
L
S
S
L
O
= 30V (LM2902 V
= 5V
= 15V, R
= 25˚C
= 5V to 30V
= 25˚C
+
= 15V, V
= 15V, V
= 15V, V
= +30V
= +15V (V
= 30V
= 5V, R
=
≥ 2 kΩ
= 0Ω
= 0Ω
= 2V
= 1V to 11V), T
= 1V, V
= 1V, V
= 1V, V
− I
or I
CM
+
On All Op Amps
IN(−)
IN(−)
can cause excessive heating and eventual destruction. When considering short circuits to ground, the maximum output
= 0V to V
+
L
+
+
+
, V
L
O
O
O
= 15V, T
IN
IN
IN
= 10 kΩ
Conditions
≥ 2kΩ,
= 5V to 26V),
= 26V)
= 26V)
O
= 2V, T
= 2V, T
= 200 mV, T
+
+
CM
Swing = 1V to 11V)
= 0V,
= 0V,
= 0V,
= 0V
(Continued)
+
A
− 1.5V,
A
+
= 25˚C
A
A
A
= 26V)
= 25˚C
= 25˚C
= 25˚C
R
R
V
V
V
V
V
V
= 25˚C
IN
IN
+
IN
IN
+
L
L
+
A
+
+
= 2 kΩ
= 10 kΩ
= 15V
= 15V
. At values of supply voltage in excess of +15V, continuous short-circuits can exceed the power
= 25˚C
= +1V,
= 0V,
= +1V,
= 0V,
5
Min
50
70
65
20
10
12
25
26
27
10
0
5
LM124/LM224
−120
Typ
100
100
1.5
0.7
85
40
20
50
40
10
40
28
20
7
5
8
V
Max Min
100
300
1.2
+
60
20
3
7
−2
25
65
65
20
10
12
15
26
27
10
0
5
LM324
−120
Typ
100
100
1.5
0.7
85
40
20
50
40
10
40
28
20
7
5
8
V
Max Min
150
500
1.2
+
60
20
3
9
−2
25
50
50
20
10
12
15
22
23
10
0
5
LM2902
−120
Typ
100
100
1.5
0.7
70
40
20
50
40
45
10
40
24
20
7
5
8
www.national.com
V
Max
200
500
100
1.2
+
60
10
3
−2
Units
µV/˚C
pA/˚C
V/mV
V/mV
mA
mA
mA
mV
mV
mA
dB
dB
dB
µA
nA
nA
V
V

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