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10-VSSOP
Integrated Circuits (ICs)

INA237AQDGSRQ1

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Texas Instruments

AEC-Q100, 85-V, 16-BIT, I²C OUTPUT CURRENT/VOLTAGE/CHARGE MONITOR

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10-VSSOP
Integrated Circuits (ICs)

INA237AQDGSRQ1

Active
Texas Instruments

AEC-Q100, 85-V, 16-BIT, I²C OUTPUT CURRENT/VOLTAGE/CHARGE MONITOR

Technical Specifications

Parameters and characteristics for this part

SpecificationINA237AQDGSRQ1
GradeAutomotive
Mounting TypeSurface Mount
Operating Temperature [Max]125 °C
Operating Temperature [Min]-40 °C
Package / Case10-MSOP, 10-TFSOP
Package / Case [x]3 mm
Package / Case [x]0.118 in
QualificationAEC-Q100
Supplier Device Package10-VSSOP

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyCut Tape (CT) 1$ 3.93
10$ 2.59
25$ 2.24
100$ 1.84
250$ 1.65
500$ 1.54
1000$ 1.44
Digi-Reel® 1$ 3.93
10$ 2.59
25$ 2.24
100$ 1.84
250$ 1.65
500$ 1.54
1000$ 1.44
Tape & Reel (TR) 2500$ 1.34
5000$ 1.27
7500$ 1.25
Texas InstrumentsLARGE T&R 1$ 2.13
100$ 1.76
250$ 1.26
1000$ 0.95

Description

General part information

INA237-Q1 Series

The INA237-Q1 is an ultra-precise digital power monitor with a 16-bit delta-sigma ADC specifically designed for current-sensing applications. The device can measure a full-scale differential input of ±163.84 mV or ±40.96 mV across a resistive shunt sense element with common-mode voltage support from –0.3 V to +85 V.

The INA237-Q1 reports current, bus voltage, temperature, and power, all while performing the needed calculations in the background. The integrated temperature sensor is ±1°C accurate for die temperature measurement and is useful in monitoring the system ambient temperature.

The low offset and gain drift design of the INA237-Q1 allows the device to be used in precise systems that do not undergo multi-temperature calibration during manufacturing. Further, the very low offset voltage and noise allow for use in A to kA sensing applications and provide a wide dynamic range without significant power dissipation losses on the sensing shunt element. The low input bias current of the device permits the use of larger current-sense resistors, thus providing accurate current measurements in the micro-amp range.