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LT1881CS8#TR

LT1881CS8#TR

LT1881CS8#TR

Analog Devices, Inc.

2 Channels 40mA per Channel 150pA 106 dB Instrumentational OP Amps SOIC

SOT-23

LT1881CS8#TR Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Package / Case SOIC
Number of Pins 8
Max Operating Temperature70°C
Min Operating Temperature 0°C
Number of Elements 2
Number of Channels 2
Number of Circuits 2
Max Supply Voltage40V
Min Supply Voltage2.4V
Operating Supply Current 850μA
Slew Rate0.35 V/μs
Common Mode Rejection Ratio 106 dB
Current - Input Bias 150pA
Output Current per Channel 40mA
Input Offset Voltage (Vos) 50μV
Gain Bandwidth Product1MHz
Voltage Gain 124.08dB
Power Supply Rejection Ratio (PSRR) 106dB
Max Dual Supply Voltage18V
Min Dual Supply Voltage 1.35V
Nominal Gain Bandwidth Product 1MHz
RoHS StatusNon-RoHS Compliant
Lead Free Contains Lead
In-Stock:3926 items

LT1881CS8#TR Product Details

LT1881CS8#TR Overview


There is a SOIC case in which the instrumentation amplifier is packaged. 8 pins are included on the operational amplifiers. As far as the input offset voltage is concerned, linear amplifier rates at 50μV. It is possible to operate this buffer amplifier from a supply current of 850μA . 124.08dB should be the voltage gain. A linear amplifier like this has 2 circuits on it. Op amp ic has 2 channels. In order for this buffer op amp to function, it should have a temperature of at least 0°C degrees Celsius. At temperatures greater than 70°C, Instrumentation amplifier should not be used. There are 2 elements in total in this linear amplifier. The electrical part is capable of being powered by a voltage of under 40V, which means that it can be used with any voltage supply. As a rule of thumb, the supply voltage of the op amp should not be lower than 2.4V. As a general rule, you should conduct this electronic component under dual supply voltages of 18V volts.

LT1881CS8#TR Features


124.08dB voltage gain


LT1881CS8#TR Applications


There are a lot of Analog Devices, Inc.
LT1881CS8#TR Instrumentational OP Amps applications.


  • Subtraction operation circuits
  • single/dual op amp sum and difference circuits
  • Integrator circuits
  • Differentiator circuits
  • Logarithmic operation circuits
  • Exponential operation circuits
  • Multiplication circuits
  • Division circuits
  • Precision measurement
  • Power control

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