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LM224D/DT View Datasheet(PDF) - STMicroelectronics

Part Name
Description
View to exact match
LM224D/DT
ST-Microelectronics
STMicroelectronics ST-Microelectronics
LM224D/DT Datasheet PDF : 0 Pages
LM124-LM224-LM324
Electrical Characteristics
Table 2. VCC+ = +5V, VCC-= Ground, Vo = 1.4V, Tamb = +25°C (unless otherwise specified)
Symbol
Parameter
Min. Typ. Max. Unit
VOL
SR
GBP
THD
en
DVio
Low Level Output Voltage (RL = 10k)
Tamb = +25°C
Tmin Tamb Tmax
Slew Rate
VCC = 15V, Vi = 0.5 to 3V, RL = 2k, CL = 100pF, unity
Gain
Gain Bandwidth Product
VCC = 30V, f =100kHz,Vin = 10mV, RL = 2k, CL = 100pF
Total Harmonic Distortion
f = 1kHz, Av = 20dB, RL = 2kΩ, Vo = 2Vpp, CL = 100pF,
VCC = 30V
Equivalent Input Noise Voltage
f = 1kHz, Rs = 100Ω, VCC = 30V
Input Offset Voltage Drift
DIIio Input Offset Current Drift
Vo1/Vo2
Channel Separation - note (4)
1kHz f 20kHZ
5
20
mV
20
0.4
V/µs
1.3
MHz
0.015
%
---n---V-----
40
Hz
7
30
µV/
°C
10
200
pA/
°C
120
dB
1. Vo = 1.4V, Rs = 0, 5V < VCC+ < 30V, 0 < Vic < VCC+ - 1.5V
2. The direction of the input current is out of the IC. This current is essentially constant, independent of the state
of the output so no loading change exists on the input lines.
3. The input common-mode voltage of either input signal voltage should not be allowed to go negative by more
than 0.3V. The upper end of the common-mode voltage range is VCC+ - 1.5V, but either or both inputs can go
to +32V without damage.
4. Due to the proximity of external components insure that coupling is not originating via stray capacitance
between these external parts. This typically can be detected as this type of capacitance increases at higher
frequencies.
Table 3. Vcc+ = +15V, Vcc- = 0V, Tamb = 25°C (unless otherwise specified)
Symbol
Conditions
Value
Unit
Vio
Avd
Icc
Vicm
VOH
VOL
Ios
GBP
SR
RL = 2k
No load, per amplifier
RL = 2k(VCC+=15V)
RL = 10k
Vo = +2V, VCC = +15V
RL = 2kΩ, CL = 100pF
RL = 2kΩ, CL = 100pF
0
100
350
-15 to +13.5
+13.5
5
+40
1.3
0.4
mV
V/mV
µA
V
V
mV
mA
MHz
V/µs
5/16
 

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