INA240A3PW

595-INA240A3PW
INA240A3PW

Mfr.:

Description:
Current Sense Amplifiers -4 to 80V bidirecti onal ultra-precise A DISC-BY-MFG-01/26

Lifecycle:
End of Life:
Scheduled for obsolescence and will be discontinued by the manufacturer.
ECAD Model:
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In Stock: 11.240

Stock:
11.240 Can Dispatch Immediately
Quantities greater than 11240 will be subject to minimum order requirements.
Minimum: 1   Multiples: 1
Unit Price:
-,-- €
Ext. Price:
-,-- €
Est. Tariff:

Pricing (EUR)

Qty. Unit Price
Ext. Price
4,13 € 4,13 €
3,13 € 31,30 €
2,89 € 72,25 €
2,61 € 261,00 €
2,18 € 654,00 €

Alternative Packaging

Mfr. Part No.:
Packaging:
Reel, Cut Tape, MouseReel
Availability:
In Stock
Price:
2,78 €
Min:
1

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Current Sense Amplifiers
RoHS:  
INA240
1 Channel
100 kHz
- 4 V to 80 V
132 dB
90 uA
5 uV
5.5 V
2.7 V
2.4 mA
0.05 %
- 40 C
+ 125 C
SMD/SMT
TSSOP-8
Tube
3 dB Bandwidth: 400 kHz
Accuracy: 0.02 %
Amplifier Type: Current Sense Amplifier
Brand: Texas Instruments
en - Input Voltage Noise Density: 40 nV/sqrt Hz
Gain V/V: 100 V/V
Moisture Sensitive: Yes
Output Type: Voltage
Product: Current Sense Amplifiers
Product Type: Current Sense Amplifiers
Shutdown: No Shutdown
SR - Slew Rate: 2 V/us
Factory Pack Quantity: 150
Subcategory: Amplifier ICs
Unit Weight: 191 mg
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Attributes selected: 0

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TARIC:
8542399000
CNHTS:
8542339000
CAHTS:
8542330000
USHTS:
8542330001
MXHTS:
8542330299
ECCN:
EAR99

INA240 Zero-Drift Current Sense Amplifiers

Texas Instruments INA240 Zero-Drift Current Sense Amplifiers are a voltage-output, current-sense amplifier with enhanced PWM rejection. These amplifiers can sense drops across shunt resistors over a wide common-mode voltage range from –4V to 80V, independent of the supply voltage. The negative common-mode voltage allows the device to operate below ground, accommodating the flyback period of typical solenoid applications. Enhanced PWM rejection provides high levels of suppression for large common-mode transients (ΔV/Δt) in systems that use pulse width modulation (PWM) signals. This feature allows for accurate current measurements without large transients and associated recovery ripple on the output voltage.
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