LM224NG ON Semiconductor, LM224NG Datasheet - Page 8

IC OPAMP QUAD LOW POWER 14DIP

LM224NG

Manufacturer Part Number
LM224NG
Description
IC OPAMP QUAD LOW POWER 14DIP
Manufacturer
ON Semiconductor
Datasheets

Specifications of LM224NG

Amplifier Type
General Purpose
Number Of Circuits
4
Slew Rate
0.6 V/µs
Gain Bandwidth Product
1MHz
Current - Input Bias
90nA
Voltage - Input Offset
2000µV
Current - Supply
1.4mA
Current - Output / Channel
40mA
Voltage - Supply, Single/dual (±)
3 V ~ 32 V, ±1.5 V ~ 16 V
Operating Temperature
-25°C ~ 85°C
Mounting Type
Through Hole
Package / Case
14-DIP (0.300", 7.62mm)
Number Of Channels
4
Common Mode Rejection Ratio (min)
70 dB
Input Voltage Range (max)
Positive Rail - 1.7 V
Input Voltage Range (min)
Negative Rail
Input Offset Voltage
5 mV
Input Bias Current (max)
150 nA
Output Current (typ)
40 mA
Operating Supply Voltage
32 V
Supply Current
1.2 mA
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 25 C
Dual Supply Voltage
+/- 3 V, +/- 5 V, +/- 9 V
Maximum Dual Supply Voltage
+/- 16 V
Minimum Dual Supply Voltage
+/- 1.5 V
Mounting Style
Through Hole
Shutdown
No
Supply Voltage (max)
32 V
Supply Voltage (min)
3 V
Technology
Bipolar
Voltage Gain Db
100 dB
Bandwidth
1 MHz
Channel Separation
-120
Common Mode Rejection Ratio
85
Current, Input Bias
-300 nA
Current, Input Offset
100 nA
Current, Output
40 mA
Current, Supply
3 mA
Number Of Amplifiers
Quad
Package Type
PDIP-14
Temperature, Operating, Range
-25 to +85 °C
Voltage, Gain
25 V/mV
Voltage, Input
-0.3 to 32 VDC
Voltage, Offset
7 mV
Voltage, Output, High
3.5 V
Voltage, Output, Low
5 mV
Voltage, Supply
3 to 32 VDC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
LM224NGOS

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM224NG
Manufacturer:
ON Semiconductor
Quantity:
65
Figure 13. High Impedance Differential Amplifier
e
e
V
1
2
in
MC1403
V
R1
CC
C1
-
+
LM324
-
LM324
+
1/4
1/4
Figure 11. Voltage Reference
a R1
b R1
e
o
= C (1 + a + b) (e
R2
R2
2.5 V
V
ref
C R
C R
1
1
R2
-
+
LM324
V
1/4
O
R1
LM324
-
+
2
1/4
= 2.5 V
- e
V
R
C
CC
1
R
)
+
-
LM324
1 +
1/4
R
R1
R2
R1
V
R
O
Bandpass
Figure 15. Bi−Quad Filter
Output
http://onsemi.com
Vref
e
o
-
+
LM324
1/4
C
8
V
ref
R
V
V
V
ref
-
+
LM324
in
ref
1/4
=
R3
Where: T
Where:
V
1
2
ref
100 k
V
R1
CC
Figure 14. Comparator with Hysteresis
V
V
inH
inL
T
Figure 12. Wien Bridge Oscillator
H =
BP
N
=
V
=
10 k
ref
= Passband Notch Gain
= Center Frequency Gain
R1 + R2
R1 + R2
R1 + R2
+
-
LM324
R
-
+
R1
1/4
R1
LM324
100 k
R1
R2
1/4
C1
5.0 k
(V
(V
(V
OL
OH
OH
-
+
C
LM324
50 k
1/4
- V
- V
- V
For: f
For:
For:
For:
R
ref
V
ref
OL
V
Notch Output
O
) + V
CC
) + V
)
f
R1 = QR
R2 =
R3 = T
C1 = 10C
Q = 10
T
T
o
V
C
V
o
BP
N
V
OH
= 2 p RC
OL
ref
ref
= 1.0 kHz
O
= 1
= 1
T
R1
N R2
BP
1
For: f
f
o
=
V
R = 160 kW
C = 0.001 mF
R1 = 1.6 MW
R2 = 1.6 MW
R3 = 1.6 MW
O
2 p RC
V
R = 16 kW
C = 0.01 mF
V
o
Hysteresis
ref
inL
1
= 1.0 kHz
V
=
ref
1
2
V
inH
V
CC

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