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LT1464CN8

LT1464CN8

LT1464CN8

Analog Devices, Inc.

2 Channels 500 fA 74 dB Instrumentational OP Amps DIP

SOT-23

LT1464CN8 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 2
Number of Channels 2
Number of Circuits 2
Max Supply Voltage40V
Min Supply Voltage10V
Operating Supply Current 145μA
Slew Rate0.9 V/μs
Common Mode Rejection Ratio 74 dB
Current - Input Bias 500 fA
Input Offset Voltage (Vos) 400μV
Gain Bandwidth Product1MHz
Voltage Gain 107.96dB
Power Supply Rejection Ratio (PSRR) 78dB
Max Dual Supply Voltage20V
Min Dual Supply Voltage 5V
Nominal Gain Bandwidth Product 1MHz
RoHS StatusRoHS Compliant
Lead Free Contains Lead
In-Stock:2034 items

LT1464CN8 Product Details

LT1464CN8 Overview


Packaging for the buffer amplifier is in the form of a DIP case. An 8-pin op amp ic is included in the package. With regards to the offset voltage of the input, buffer amplifier is rated at 400μV. Using a supply current of 145μA , this buffer op amp will be able to operate. 107.96dB should be the voltage gain. The buffer amp consists of 2 circuits in total. 2 channels are available on the instrumentation amplifier. This op amp needs to be operated at a temperature of not less than 0°C degrees Celsius in order to function properly. You should not use op amp above 70°C . There is an operating supply voltage rating of 2 for this operational amplifier, which is rated at the manufacturer. Regarding the voltage of the supply, this electrical part can work from a voltage as low as 40V, and this is an excellent feature. In order to ensure that the instrumentation amplifier's supply voltage remains above 10V, it is recommended to keep it higher. This electronic part should be conducted with a dual supply voltage of 20V volts for this part.

LT1464CN8 Features


107.96dB voltage gain


LT1464CN8 Applications


There are a lot of Analog Devices, Inc.
LT1464CN8 Instrumentational OP Amps applications.


  • 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
  • Information processing

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