INA4180A4IPWR


YeeHing #: Y001-INA4180A4IPWR
Inventory: 7000

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Description

INA4180A4IPWR Texas Instruments - Yeehing Electronics

26V, quad channel, 350kHz current sense amplifier

Pricing (USD)

Quantity Unit Price
1 — 99 0.721
100 — 249 0.555
250 — 999 0.409
1,000 + 0.23

The above prices are for reference only.

Specifications

Manufacturer Texas Instruments
Product Category Current Sense Amplifiers
RoHS Y
Series INA4180
Number of Channels 4 Channel
GBP - Gain Bandwidth Product -
Vcm - Common Mode Voltage - 0.2 V to 26 V
CMRR - Common Mode Rejection Ratio 84 dB
Ib - Input Bias Current 80 uA
Vos - Input Offset Voltage 100 uV
Supply Voltage - Max 5.5 V
Supply Voltage - Min 2.7 V
Operating Supply Current 690 uA
Minimum Operating Temperature - 40 C
Maximum Operating Temperature + 125 C
Mounting Style SMD/SMT
Package / Case TSSOP-14
Packaging Reel
Amplifier Type Current Sense Amplifiers
Features Low-side Capable, Quad channel
Input Type Common Mode
Product Current Sense Amplifiers
Brand Texas Instruments
Shutdown Shutdown
3 dB Bandwidth 105 kHz
Development Kit INA4180-4181EVM
en - Input Voltage Noise Density 40 nV/sqrt Hz
Gain Error +/- 0.1 %
Gain V/V 200 V/V
Ios - Input Offset Current +/- 0.05 uA
Moisture Sensitive Yes
Output Current per Channel 8 mA
Product Type Current Sense Amplifiers
SR - Slew Rate 2 V/us
Factory Pack Quantity 2000
Subcategory Amplifier ICs
Unit Weight 0.004183 oz

For more information, please refer to datasheet

Documents

INA4180A4IPWR Datasheet

More Information

The INA180, INA2180, and INA4180 (INAx180) current sense amplifiers are designed for cost-optimized applications. These devices are part of a family of current-sense amplifiers (also called current-shunt monitors) that sense voltage drops across current-sense resistors at common-mode voltages from –0.2 V to +26 V, independent of the supply voltage. The INAx180 integrate a matched resistor gain network in four, fixed-gain device options: 20 V/V, 50 V/V, 100 V/V, or 200 V/V. This matched gain resistor network minimizes gain error and reduces the temperature drift.

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