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INA210BIRSWR

TIINA210BIRSWR

Texas Instruments
Current Sense Amplifier 1 Circuit Single-Ended 10-UQFN (1.8x1.4)
NRND6,092 in stock

Overview

The INA210BIRSWR is a high-accuracy, voltage-output current-shunt monitor designed for low-side or high-side current sensing. It utilizes a zero-drift architecture to provide high precision even with small shunt resistors, supporting a wide common-mode voltage range from -0.3V to 26V.

Why Choose This Part

The zero-drift architecture enables a maximum offset voltage that allows for very low full-scale shunt drops, reducing power dissipation in the sense resistor. It features a low supply current of 65uA typical, making it ideal for power-sensitive battery-operated designs.

Applications

Battery Management Systems
Accurately monitors charge and discharge currents in mobile devices and notebooks to optimize battery life and safety.
Power Supply Monitoring
Provides real-time current measurement for over-current protection and power consumption tracking in telecom equipment.
Precision Motor Control
Senses phase currents or DC bus currents in low-power motor drive applications to ensure efficient operation.

Key Specifications

Slew Rate 0.4V/us
Output Type Single-Ended
Mounting Type Surface Mount
Amplifier Type Current Sense
Package / Case 10-UFQFN
Current - Supply 65uA
Number of Circuits 1
Current - Input Bias 28 uA
Operating Temperature -40degC ~ 125degC
Gain Bandwidth Product 14 kHz
Voltage - Input Offset 0.55 uV
Supplier Device Package 10-UQFN (1.8x1.4)
Voltage - Supply Span (Max) 26 V
Voltage - Supply Span (Min) 2.7 V

Getting Started

To evaluate this part, use the INA210-215EVM evaluation module from Texas Instruments. Ensure the shunt resistor is placed close to the IN+ and IN- pins with Kelvin connections to maintain 1 percent measurement accuracy.

INA210B Family

Comparing specs that differ across variants. The current part is highlighted.

Part Number Package Stock
INA210BIRSWR (this part) UFQFN-10 6,092
INA210BIDCKR TSSOP-6 4,101
INA210BIDCKT TSSOP-6 1,726

Also Consider

MAX44284FAWT+T Analog Devices - Provides even lower power consumption at approximately 21uA for extreme ultra-low-power requirements.
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