NTE941D Operational Amplifier PDIP-14
Info as pdf-file
Integrated Circuit
Operational Amplifiers
14-PIN DIP
See also >>> NTE941 (8-PIN CAN)
See also >>> NTE941M (8-PIN DIP)
To order >>> NTE941SM (8-SOIC)
Description:
The NTE941, NTE941D, NTE941M, & NTE941SM are general purpose operational amplifiers offering many features which make their application nearly foolproof: overload protection on the input and output, no latch-up when the common mode range is exceeded, as well as freedom from oscillators.
Features:
- Available in 4 Different Package Types:
8-Lead Metal Can (NTE941)
14-Lead DIP (NTE941D)
8-Lead Mini-DIP (NTE941M)
SOIC-8 Surface Mount (NTE941SM)
Absolute Maximum Ratings:
Supply Voltage, VS |
|
±18V |
Differential Input Voltage, VID |
|
±30V |
Common-Mode Input Voltage, VICM |
|
±15V |
Power Dissipation (Note 1), PD |
|
500mW |
Output Short-Circuit Duration, tS |
|
Continuous |
Junction Temperature, TJ |
|
+100°C |
Operating Temperature Range, Topr |
|
0° to +70°C |
Storage Temperature Range, Tstg |
|
-65°C to +150°C |
Thermal Resistance, Junction-to-Ambient, RthJA |
|
|
NTE941 |
|
150°C/W |
NTE941D, NTE941M |
|
100°C/W |
NTE941SM |
|
195°C/W |
Thermal Resistance, Junction-to-Case (NTE941 Only), RthJC |
|
80°C/W |
Note 1. | For operation at elevated temperatures, these devices must be derated based on thermal resistance, and TJ Max (TJ = TA + (RthJA PD)). |
Note 2. | For supply voltage less than ±15V, the absolute maximum input voltage is equal to the supply voltage. |
Electrical Characteristics: (TA = 0° to +70°C, VS = ±15V unless otherwise specified)
Parameter |
Symbol |
Test Conditions |
Min |
Typ |
Max |
Units |
Input Offset Voltage |
VIO |
RS = 10k Ohm |
TA = +25°C |
- |
2.0 |
6.0 |
mV |
|
- |
- |
7.5 |
mV |
Input Offset Voltage Adjustment Range |
VIOR |
VS = ±20V, TA = +25°C |
- |
±15 |
- |
V |
Input Offset Current |
IIO |
TA = +25°C |
- |
20 |
200 |
nA |
|
- |
- |
300 |
nA |
Input Bias Current |
IIB |
TA = +25°C |
- |
80 |
500 |
nA |
|
- |
- |
0.8 |
µA |
Input Resistance |
ri |
VS = ±20V, TA = +25°C |
0.3 |
2.0 |
- |
M Ohm |
Common Mode Input Voltage Range |
VICR |
TA = +25°C |
- |
±12 |
±13 |
V |
Large Signal Voltage Gain |
AV |
VO = ±10V, RL >/= 2k Ohm |
TA = +25°C |
20 |
200 |
- |
V / mV |
|
15 |
- |
- |
V / mV |
Output Voltage Swing |
VO |
RL >/= 10k Ohm |
±12 |
±14 |
- |
V |
RL >/= 2k Ohm |
±10 |
±13 |
- |
V |
Output Short-Circuit Current |
IOS |
TA = +25°C |
- |
25 |
- |
mA |
Common Mode Rejection Ratio |
CMRR |
RS = 10k Ohm, VCM = ±12V |
70 |
90 |
- |
dB |
Supply Voltage Rejection Ratio |
PSRR |
RS = 10k Ohm, VS = ±5V to ±20V |
77 |
96 |
- |
dB |
Transient Response Rise Time |
tTLH |
TA = +25°C, Unity Gain |
- |
0.3 |
- |
µs |
Transient Response Overshoot |
os |
- |
5 |
- |
% |
Transient Response Slew Rate |
SR |
- |
0.5 |
- |
V / µs |
Supply Current |
ID |
TA = +25°C |
- |
1.7 |
2.8 |
mA |
Power Consumption |
PC |
TA = +25°C |
- |
50 |
85 |
mW |
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