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LM224 View Datasheet(PDF) - Philips Electronics

Part Name
Description
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LM224
Philips
Philips Electronics Philips
LM224 Datasheet PDF : 12 Pages
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Philips Semiconductors
Low power quad op amps
Product data
LM124/224/324/324A/
SA534/LM2902
DC ELECTRICAL CHARACTERISTICS
VCC = 5 V; Tamb = 25 °C, unless otherwise specified.
SYMBOL
PARAMETER
TEST CONDITIONS
VOS
VOS/T
IBIAS
IBIAS/T
IOS
IOS/T
VCM
CMRR
VOUT
VOH
VOL
ICC
AVOL
PSRR
IOUT
ISC
GBW
SR
VNOISE
VDIFF
Offset voltage1
Temperature drift
Input current2
Temperature drift
Offset current
Temperature drift
Common-mode voltage
range3
Common-mode rejection
ratio
Output voltage swing
Output voltage high
Output voltage low
Supply current
Large-signal voltage gain
Amplifier-to-amplifier
coupling5
Power supply rejection ratio
Output current source
Output current sink
Short-circuit current4
Unity gain bandwidth
Slew rate
Input noise voltage
Differential input voltage3
RS = 0
RS = 0 , over temp.
RS = 0 , over temp.
IIN(+) or IIN(–)
IIN(+) or IIN(–), over temp.
Over temp.
IIN(+)–IIN(–)
IIN(+)–IIN(–), over temp.
Over temp.
VCC 30 V
VCC 30 V; over temp.
VCC = 30 V
RL = 2 k, VCC = 30 V,
over temp.
RL 10 k, VCC = 30 V,
over temp.
RL 10 k; over temp.
RL = , VCC = 30 V; over temp.
RL = ; over temp.
VCC = 15 V (for large VO swing);
RL 2 k
VCC = 15 V (for large VO swing);
RL 2k ; over temp.
f = 1 kHz to 20 kHz,
input referred
RS 0
VIN+ = +1 V, VIN– = 0 V,
VCC = 15 V
VIN+ = +1 V, VIN– = 0 V,
VCC = 15 V, over temp.
VIN– = +1 V, VIN+ = 0 V,
VCC = 15 V
VIN– = +1 V, VIN+ = 0 V,
VCC = 15 V, over temp.
VIN– = +1 V, VIN+ = 0 V,
VO = 200 mV
f = 1 kHz
LM124/LM224
Min Typ
Max
±2
±5
±7
7
45
150
40
300
50
±3
±30
±100
10
0
VCC–1.5
0
VCC–2
70
85
26
27
28
5
20
1.5
3
0.7
1.2
50 100
25
–120
65 100
20
40
10
20
10
20
5
8
12
50
10
40
60
1
0.3
40
VCC
LM324/SA534/LM2902
Min Typ
Max
±2
±7
±9
7
45
250
40
500
50
±5
±50
±150
10
0
VCC–1.5
0
VCC–2
65
70
UNIT
mV
µV/°C
nA
pA/°C
nA
pA/°C
V
dB
26
V
27
28
V
5
20
mV
1.5
3
mA
0.7
1.2
25 100
15
V/mV
–120
dB
65 100
dB
20
40
10
20
mA
10
20
5
8
12
50
10
40
1
0.3
40
µA
60
mA
MHz
V/µs
nV/Hz
VCC
V
2003 Sep 19
4
 

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