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NTE928S Datasheet(PDF) 2 Page - NTE Electronics

Part No. NTE928S
Description  Integrated Circuit Low Power Dual Operational Amplifier
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Maker  NTE [NTE Electronics]
Homepage  http://www.nteinc.com
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NTE928S Datasheet(HTML) 2 Page - NTE Electronics

   
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Electrical Characteristics: (VCC = 5V, VEE = Gnd, TA = +25°C unless otherwise specified)
Parameter
Symbol
Test Conditions
Min
Typ
Max
Unit
Input Offset Voltage
VIO
VCC = 5V to 30V,
2.0
7.0
mV
VIC =0 to VCC–1.7V,
VO ] 1.4V, RS = 0Ω
0
° ≤ TA ≤ +70°C
9.0
mV
Average Temperature Coefficient
of Input Offset Voltage
∆VIO/∆T 0° ≤ TA ≤ +70°C
7.0
µV/°C
Input Offset Current
IIO
5.0
50
nA
0
° ≤ TA ≤ +70°C
150
nA
Average Temperature Coefficient
of Input Offset Current
∆IIO/∆T 0° ≤ TA ≤ +70°C
10
pA/
°C
Input Bias Current
IIB
–45
–250
nA
0
° ≤ TA ≤ +70°C
–50
–500
nA
Input Common–Mode Voltage
VICR
VCC = 30V, Note 4
0
28.3
V
Range
0
° ≤ TA ≤ +70°C
0
28
V
Differential Input Voltage Range
VIDR
VCC
V
Large Signal Open–Loop
AVOL
RL = 2kΩ, VCC = 15V,
25
100
V/mV
Voltage Gain
For Large VO Swing
0
° ≤ TA ≤ +70°C
15
V/mV
Channel Separation
1kHz
≤ f ≤ 20kHz, Input Referenced
–120
dB
Common–Mode Rejection Ratio
CMRR
RS ≤ 10kΩ
65
70
dB
Power Supply Rejection Ratio
PSRR
65
100
dB
Output Voltage Range
VOR
RL = 2kΩ
0
3.3
V
Output Voltage – High Limit
VOH
VCC = 30V,
° ≤
°
RL = 2kΩ
26
V
0
° ≤ TA ≤ +70°C
RL = 10kΩ
27
28
V
Output Voltage – Low Limit
VOL
VCC = 5V, RL = 10kΩ, 0° ≤ TA ≤ +70°C
5
20
mV
Output Source Current
IO+
VID = +1V, VCC = 15V
20
40
mA
Output Sink Current
IO–
VID = –1V, VCC = 15V
10
20
mA
VID = –1V, VO = 200mV
12
50
µA
Output Short–Circuit to GND
Ios
Note 5
40
60
mA
Power Supply Current
ICC
VO = 0, RL = ∞,
° ≤
°
VCC = 30V
1.5
3.0
mA
0
° ≤ TA ≤ +70°C
VCC = 5V
0.7
1.2
mA
Note 4. The input common–mode voltage or 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–1.7V, but either or both inputs can goto +32V without damage.
Note 5. Short circuit from the output to VCC can cause excessive heating and eventual destruction.
Destructive dissipation can result from simultaneous shorts on all amplifiers.


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