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TL082AIYDTSTN/a5200avaiJFET inputs, low input bias current
TL082BCDTSTN/a5200avaiJFET inputs, low input bias current
TL082BIYDTSTN/a5200avaiJFET inputs, low input bias current
TL082IYDTSTN/a5200avaiJFET inputs, low input bias current


TL082AIYDT ,JFET inputs, low input bias currentAbsolute maximum ratings and operating conditions Table 1.
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TL082AIYDT-TL082BCDT-TL082BIYDT-TL082IYDT
JFET inputs, low input bias current
June 2008 Rev 10 1/17
TL082
TL082A TL082B

General purpose JFET dual operational amplifiers
Features
Wide common-mode (up to VCC+ ) and
differential voltage range Low input bias and offset current Output short-circuit protection High input impedance JFET input stage Internal frequency compensation Latch up free operation High slew rate: 16 V/µs (typical)
Description

The TL082, TL082A and TL082B are high speed
JFET input dual operational amplifiers
incorporating well matched, high voltage JFET
and bipolar transistors in a monolithic integrated
circuit.
The devices feature high slew rates, low input
bias and offset current, and low offset voltage
temperature coefficient.

Schematic diagram TL082 TL082A TL082B
2/17
1 Schematic diagram
Figure 1. Schematic diagram
TL082 TL082A TL082B Absolute maximum ratings and operating conditions
3/17 Absolute maximum ratings and operating conditions


Table 1. Absolute maximum ratings
All voltage values, except differential voltage, are with respect to the zero reference level (ground) of the
supply voltages where the zero reference level is the midpoint between VCC+ and VCC-. The magnitude of the input voltage must never exceed the magnitude of the supply voltage or 15 volts,
whichever is less. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. Short-circuits can cause excessive heating. Destructive dissipation can result from simultaneous short-
circuit on all amplifiers. The output may be shorted to ground or to either supply. Temperature and/or supply voltages must be
limited to ensure that the dissipation rating is not exceeded Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for all couples of pin combinations with other pins floating. Machine model: a 200 pF cap is charged to the specified voltage, then discharged directly between two pins of the device with no external series resistor (internal resistor < 5 Ω), done for all couples of pin combinations with other pins floating. Charged device model: all pins plus package are charged together to the specified voltage and then discharged directly to the ground.
Table 2. Operating conditions
Electrical characteristics TL082 TL082A TL082B
4/17
3 Electrical characteristics

Table 3. VCC = ±15V, Tamb = +25°C (unless otherwise specified)
TL082 TL082A TL082B Electrical characteristics
5/17 The input bias currents are junction leakage currents which approximately double for every 10° C increase in the junction
temperature.
Table 3. VCC = ±15V, Tamb = +25°C (unless otherwise specified) (continued)
Electrical characteristics TL082 TL082A TL082B
6/17



Figure 2. Maximum peak-to-peak output
voltage versus frequency
Figure 3. Maximum peak-to-peak output
voltage versus frequency
Figure 4. Maximum peak-to-peak output
voltage versus load resistance
Figure 5. Maximum peak-to-peak output
voltage versus frequency
Figure 6. Maximum peak-to-peak output
voltage versus free air temperature
Figure 7. Maximum peak-to-peak output
voltage versus supply voltage
TL082 TL082A TL082B Electrical characteristics
7/17



Figure 8. Input bias current versus free air
temperature
Figure 9. Large signal differential voltage
amplification and phase shift
versus frequency
Figure 10. Supply current per amplifier versus
free air temperature
Figure 11. Large signal differential voltage
amplification versus free air temp.
Figure 12. Total power dissipation versus free
air temperature
Figure 13.
Electrical characteristics TL082 TL082A TL082B
8/17



Figure 14. Common mode rejection ratio
versus free air temperature
Figure 15. Output voltage versus elapsed time
Figure 16. Voltage follower large signal pulse
response
Figure 17. Equivalent input noise voltage
versus frequency
Figure 18. Total harmonic distortion versus
frequency
TL082 TL082A TL082B Parameter measurement information
9/17
4 Parameter measurement information
Figure 19. Voltage follower
Figure 20. Gain-of-10 inverting amplifier
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