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26-V bi-directional 350-kHz current-sense amplifier 6-SOT-23 -40 to 125
Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.
INA181A1IDBVT by Texas Instruments is an Operational Amplifier.
Operational Amplifiers are under the broader part category of Amplifier Circuits.
Amplifier circuits use external power to increase the amplitude of an input signal. They can be used to perform linear amplifications or logarithmic functions. Read more about Amplifier Circuits on our Amplifier Circuits part category page.
Part # | Distributor | Description | Stock | Price | Buy | |
---|---|---|---|---|---|---|
DISTI #
296-46634-1-ND
|
DigiKey | IC CURR SENSE 1 CIRCUIT SOT23-6 Min Qty: 1 Lead time: 12 Weeks Container: Cut Tape (CT), Digi-Reel®, Tape & Reel (TR) |
5687 In Stock |
|
$0.4174 / $0.9300 | Buy Now |
DISTI #
595-INA181A1IDBVT
|
Mouser Electronics | Current Sense Amplifiers 26-V bi-directional 350-kHz current-sens A 595-INA181A1IDBVR RoHS: Compliant | 5833 |
|
$0.4020 / $0.9300 | Buy Now |
DISTI #
INA181A1IDBVT
|
TME | IC: instrumentation amplifier, 350kHz, Ch: 1, SOT23-6, 20V/V, 100uV Min Qty: 1 | 817 |
|
$0.5800 / $0.8920 | Buy Now |
DISTI #
INA181A1IDBVT
|
Chip One Stop | Semiconductors RoHS: Compliant pbFree: Yes Min Qty: 1 Lead time: 0 Weeks, 1 Days Container: Cut Tape | 1029 |
|
$0.3150 / $0.8550 | Buy Now |
|
LCSC | -200mV26V 350kHz Single channel SOT-23-6 Current Sense Amplifiers ROHS | 591 |
|
$0.1935 / $0.3915 | Buy Now |
|
Vyrian | Amplifiers | 55337 |
|
RFQ | |
|
Win Source Electronics | IC CURR SENSE 1 CIRCUIT SOT23-6 / Current Sense Amplifier 1 Circuit Rail-to-Rail SOT-23-6 | 57530 |
|
$0.1500 / $0.1937 | Buy Now |
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INA181A1IDBVT
Texas Instruments
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Datasheet
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INA181A1IDBVT
Texas Instruments
26-V bi-directional 350-kHz current-sense amplifier 6-SOT-23 -40 to 125
|
Pbfree Code | Yes | |
Rohs Code | Yes | |
Part Life Cycle Code | Active | |
Ihs Manufacturer | TEXAS INSTRUMENTS INC | |
Package Description | SOT-23, 6 PIN | |
Reach Compliance Code | compliant | |
ECCN Code | EAR99 | |
HTS Code | 8542.33.00.01 | |
Date Of Intro | 2017-08-23 | |
Samacsys Manufacturer | Texas Instruments | |
Amplifier Type | OPERATIONAL AMPLIFIER | |
Architecture | VOLTAGE-FEEDBACK | |
Common Mode Voltage-Max | 26 V | |
Common-mode Reject Ratio-Min | 84 dB | |
Common-mode Reject Ratio-Nom | 100 dB | |
Frequency Compensation | YES | |
Input Offset Voltage-Max | 150 µV | |
JESD-30 Code | R-PDSO-G6 | |
JESD-609 Code | e3 | |
Length | 2.9 mm | |
Low-Bias | NO | |
Low-Offset | NO | |
Micropower | YES | |
Moisture Sensitivity Level | 1 | |
Number of Functions | 1 | |
Number of Terminals | 6 | |
Operating Temperature-Max | 125 °C | |
Operating Temperature-Min | -40 °C | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | LSSOP | |
Package Equivalence Code | SOP6,.11,37 | |
Package Shape | RECTANGULAR | |
Package Style | SMALL OUTLINE, LOW PROFILE, SHRINK PITCH | |
Packing Method | TR, 7 INCH | |
Peak Reflow Temperature (Cel) | 260 | |
Power | NO | |
Programmable Power | NO | |
Seated Height-Max | 1.45 mm | |
Slew Rate-Nom | 2 V/us | |
Supply Current-Max | 0.3 mA | |
Supply Voltage Limit-Max | 6 V | |
Supply Voltage-Nom (Vsup) | 5 V | |
Surface Mount | YES | |
Temperature Grade | AUTOMOTIVE | |
Terminal Finish | Matte Tin (Sn) | |
Terminal Form | GULL WING | |
Terminal Pitch | 0.95 mm | |
Terminal Position | DUAL | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Unity Gain BW-Nom | 350 | |
Voltage Gain-Nom | 20 | |
Wideband | NO | |
Width | 1.6 mm |
The maximum voltage that can be applied to the input pins is ±40V, but it's recommended to keep it within ±20V for optimal performance.
The gain of the amplifier is fixed at 5V/V. You can calculate the output voltage by multiplying the input voltage by the gain.
The bandwidth of the INA181A1IDBVT is 1.5MHz, which means it can amplify signals up to 1.5MHz without significant attenuation.
No, the INA181A1IDBVT is not designed for high-current applications. The maximum output current is 10mA, and it's intended for low-power, high-precision applications.
To reduce noise and interference, use proper PCB layout techniques, such as separating analog and digital grounds, using shielding, and adding bypass capacitors to the power supply.