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NTE975 Operational Amplifier PDIP-8

Bestell-Nr.:    NTE975


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NTE975 Operational Amplifier PDIP-8

Info as pdf-file

Integrated Circuit Operational Amplifier
8-PIN DIP

To order >>> NTE975SM

Description:

The NTE975 and NTE975SM are general purpose operational amplifiers built on a single chip. The resulting close match and tight thermal coupling gives low offsets and temperature drift as well as fast recovery from thermal transients.

The unity-gain compensation specified makes the circuit stable for all feedback configurations, even with capacitive loads. However, it is possible to optimize compensation for the best high frequency performance at any gain. As a comparator, the output can be clamped at any desired level to make it compatible with logic circuits.

Features:

  • Available in 8-Lead Mini DIP (NTE975) and Surface Mount, SIOC-8 (NTE975SM)
  • Frequency Compensation with a Single 30pF Capacitor
  • Operation From ±5V to ±20V
  • Low Current Drain: 1.8mA @ ±20V
  • Continuous Short-Circuit Protection
  • Operation as a Comparator with Differential Inputs as High as ±30V
  • No Latch-Up when Common Mode Range is Exceeded
Absolute Maximum Ratings:
Supply Voltage, VS     ±22V
Power Dissipation (Note 1), PD     500mW
Input Differential Voltage Range, VID     ±30V
Input Voltage (Note 2), VIN     ±15V
Output Short Circuit Duration (Note 3), tS     Indefinite
Operating Temperature Range, TA     0°C to +70°C
Storage Temperature Range, Tstg     -65°C to +150°C
Lead Temperature (During Soldering, 10sec), TL     +300°C

Note 1.For operating at elevated temperatures the devices must be derated based on a maximum junction to case thermal resistance of +45°C/W, or +150°C/W junction to ambient.
Note 2.For supply voltages less than ±15V, the absolute maximum input voltage is equal to the supply voltage.
Note 3.Continuous short circuit is allowed for ambient temperatures to +70°C.

Electrical Characteristics: (0° </= TA </= +70°C, ±5V </= VS </= ±15V unless otherwise specified)

Parameter Symbol Test Conditions Min Typ Max Units
Input Offset Voltage VIO TA = +25°C, RS </= 10k Ohm - 1.0 5.0 mV
RS </= 10k Ohm - - 9.0 mV
Input Offset Current IIO TA = +25°C - 40 200 nA
  - - 300 nA
Input Bias Current IIB TA = +25°C - 120 500 nA
  - - 0.8 µA
Input Resistance rI TA = +25°C 300 800 - kOhm
Supply Current ID TA = +25°C, VS = ±15V - 1.8 2.8 mA
TA = +125°C, VS = ±15V - 1.20 2.25 mA
Large Signal Voltage Gain Av TA = +25°C, VS = ±15V, VOUT = ±10V, RL = ±2k Ohm 50 160 - V/mV
VS = ±15V, VOUT = ±10V, RL = ±2k Ohm 25 - - V/mV
Average Temperature Coefficient
            of Input Offset Voltage
TCVIO RS </= 50 Ohm - 3.0 - µV/°C
RS </= 10k Ohm - 6.0 - µV/°C
Output Voltage Swing VO VS = ±15V, RL = 10 Ohm ±12 ±14 - V
VS = ±15V, RL = 2k Ohm ±10 ±13 - V
Input Voltage Range VICR VS = ±15V ±12 - - V
Common-Mode Rejection Ratio CMRR RS </= 10k Ohm 70 90 - dB
Power Supply Rejection Ratio PSRR RS </= 10k Ohm 77 90 - dB

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 go to +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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