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LT1635CN8

LT1635CN8

LT1635CN8

Analog Devices, Inc.

1 Channels 40mA per Channel 2nA 92 dB Instrumentational OP Amps DIP

SOT-23

LT1635CN8 Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Package / Case DIP
Number of Pins 8
Max Operating Temperature70°C
Min Operating Temperature 0°C
Number of Elements 1
Number of Channels 1
Number of Circuits 2
Max Supply Voltage14V
Min Supply Voltage1.1V
Operating Supply Current 135μA
Slew Rate0.045 V/μs
Common Mode Rejection Ratio 92 dB
Current - Input Bias 2nA
Output Current per Channel 40mA
Input Offset Voltage (Vos) 1.3mV
Gain Bandwidth Product175 kHz
Voltage Gain 113.06dB
Power Supply Rejection Ratio (PSRR) 93dB
Max Dual Supply Voltage5V
Min Dual Supply Voltage 600mV
Nominal Gain Bandwidth Product 175 kHz
RoHS StatusNon-RoHS Compliant
Lead Free Contains Lead
In-Stock:3184 items

LT1635CN8 Product Details

LT1635CN8 Overview


In order to protect the op amps, a DIP case is used. It has 8 pins that make up the linear amplifier. In terms of input offset voltage, operational amplifier rates 1.3mV. In order for this instrumentation amplifier to operate, the supply current needs to be between 135μA and 10 . Maintain 113.06dB as the voltage gain. In total, there are 2 circuits on this buffer amplifier. Buffer op amp is equipped with 1 channels on the device. It is recommended that the temperature of this op amp ic should not fall below 0°C degrees Fahrenheit at any time. Linear amplifier shouldn't be used above 70°C degrees. As a whole, there are 1 elements that make up this buffer amplifier. When it comes to the voltage from which this electrical part will operate, it can operate at a maximum of less than 14V. It is recommended that you keep the instrumentation amplifier's supply voltage higher than 1.1V when using it. It is recommended that you conduct this electronic part using the dual supply voltage of 5V.

LT1635CN8 Features


113.06dB voltage gain


LT1635CN8 Applications


There are a lot of Analog Devices, Inc.
LT1635CN8 Instrumentational OP Amps applications.


  • Differentiator circuits
  • Logarithmic operation circuits
  • Exponential operation circuits
  • Multiplication circuits
  • Division circuits
  • Precision measurement
  • Power control
  • Information processing
  • Weak signal detection
  • Signal amplification

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