INA281A3IDBVT vs INA281B2IDBVT

Part Number
INA281A3IDBVT
INA281B2IDBVT
Category Linear - Amplifiers - Instrumentation, OP Amps, Buffer Amps Linear - Amplifiers - Instrumentation, OP Amps, Buffer Amps
Manufacturer Texas Instruments Texas Instruments
Description -4 TO 100-V, 1-MHZCURRENT -4 TO 100-V, 1-MHZCURRENT
Package Tube Tube
Series - -
Operating Temperature -40°C ~ 125°C (TA) -40°C ~ 125°C (TA)
Mounting Type Surface Mount Surface Mount
Package / Case SC-74A, SOT-753 SC-74A, SOT-753
Supplier Device Package SOT-23-5 SOT-23-5
Current - Supply 1.5mA 1.5mA
Output Type - -
Number of Circuits 1 1
Voltage - Supply, Single/Dual (±) 2.7V ~ 20V 2.7V ~ 20V
Current - Output / Channel - -
-3db Bandwidth - -
Amplifier Type Current Sense Current Sense
Current - Input Bias 20 µA 20 µA
Voltage - Input Offset 30 µV 55 µV
Slew Rate 2.5V/µs 2.5V/µs
Gain Bandwidth Product 1 MHz 1.3 MHz
  • 1. What is an instrumentation amplifier and what is it mainly used for?

    An instrumentation amplifier is a high-precision amplifier designed to amplify low-level differential signals with high input impedance and high common mode rejection ratio (CMRR), and is commonly used in scenarios such as medical equipment, sensor signal processing, and industrial measurements.

  • 2. How is the noise performance of instrumentation amplifiers optimized?

    Select low-noise amplifiers in your design and use shielding, filters, and precise power management to minimize external noise. High-quality resistors should be used wherever possible and PCB layout should be optimized to reduce noise coupling.

  • 3. What is the effect of the op amp's out-of-range voltage on accuracy?

    An out-of-phase voltage is the difference in voltage at which the output is not zero when the signal at the input is zero. A large out-of-phase voltage reduces the accuracy of a system, especially in high-gain applications, and selecting an op amp with a low out-of-phase voltage can improve accuracy.

  • 4. How can I reduce noise in operational amplifier circuits?

    Noise can be reduced by selecting low-noise operational amplifiers, optimizing circuit layout, reducing power supply ripple, using appropriate decoupling capacitors, and adding filters where necessary.

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