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LT1636CDD

LT1636CDD

LT1636CDD

Analog Devices, Inc.

1 Channels 30mA per Channel 4nA 84 dB Instrumentational OP Amps DFN

SOT-23

LT1636CDD Datasheet PDF

non-compliant

Technical Specifications

Parameter NameValue
TypeParameter
Mount Surface Mount
Package / Case DFN
Number of Pins 8
Max Operating Temperature70°C
Min Operating Temperature 0°C
Number of Elements 1
Number of Channels 1
Number of Circuits 1
Max Supply Voltage44V
Min Supply Voltage2.7V
Operating Supply Current 50μA
Slew Rate0.075 V/μs
Common Mode Rejection Ratio 84 dB
Current - Input Bias 4nA
Output Current per Channel 30mA
Input Offset Voltage (Vos) 125μV
Gain Bandwidth Product200 kHz
Voltage Gain 126.02dB
Power Supply Rejection Ratio (PSRR) 90dB
Max Dual Supply Voltage22V
Min Dual Supply Voltage 1.35V
RoHS StatusRoHS Compliant
Lead Free Contains Lead
In-Stock:4042 items

LT1636CDD Product Details

LT1636CDD Overview


Packaged in a DFN case, the buffer op amp is ready to use. A total of 8 pins are present on the instrumentation amplifier. There is an input offset voltage of 125μV for this buffer op amp. As long as the supply current of the chip does not exceed 50μA, this op amp ic can operate. 126.02dB should remain the voltage gain. During the manufacturing process, this buffer amplifier is divided into 1 circuits. As far as the device is concerned, buffer amplifier has 1 channels. For the buffer op amp to operate properly, it must be above the temperature of 0°C degrees Celsius. No temperature greater than 70°C should be used. The linear amplifier consists of 1 different elements in total. In terms of the supply voltage, this electrical part is capable of operating at low voltage levels of under 44V. A high supply voltage of more than 2.7V is recommended for the instrumentation amplifier's supply voltage. As a rule of thumb, you should conduct this electronic part under a dual voltage supply of 22V volts.

LT1636CDD Features


126.02dB voltage gain


LT1636CDD Applications


There are a lot of Analog Devices, Inc.
LT1636CDD Instrumentational OP Amps applications.


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

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