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INA191 датащи(PDF) 15 Page - Texas Instruments

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номер детали INA191
подробное описание детали  INAx191 40-V, Bidirectional, Ultra-Precise Current Sense Amplifier With picoamp IB and ENABLE in WCSP Package
PDF  41 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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INA191 датащи(HTML) 15 Page - Texas Instruments

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7.3 Feature Description
7.3.1 Precision Current Measurement
The INAx191 provides accurate current measurements over a wide dynamic range. The high accuracy of the
device is attributable to the low gain error and offset specifications. The offset voltage of the INAx191 is less than
12 µV. In this case, the low offset improves the accuracy at light loads when VIN+ approaches VIN–.
Another advantage of low offset is the ability to use a lower-value shunt resistor that reduces the power loss in
the current-sense circuit, and improves the power efficiency of the end application.
The maximum gain error of the INAx191 is specified to be within 0.25% for most gain options. As the sensed
voltage becomes much larger than the offset voltage, the gain error becomes the dominant source of error in the
current-sense measurement. When the device monitors currents near the full-scale output range, the total
measurement error approaches the value of the gain error.
7.3.2 Low Input Bias Current
The INAx191 is different from many current-sense amplifiers because this device offers very low input bias
current. The low input bias current of the INAx191 has three primary benefits.
The first benefit is the reduction of the current consumed by the device in both the enabled and disabled states.
Classical current-sense amplifier topologies typically consume tens of microamps of current at the inputs. For
these amplifiers, the input current is the result of the resistor network that sets the gain and additional current to
bias the input amplifier. To reduce the bias current to near zero, the INAx191 uses a capacitively coupled
amplifier on the input stage, followed by a difference amplifier on the output stage.
The second benefit of low bias current is the ability to use input filters to reject high-frequency noise before the
signal is amplified. In a traditional current-sense amplifier, the addition of input filters comes at the cost of
reduced accuracy. However, as a result of the low bias currents, input filters have little effect on the
measurement accuracy of the INAx191.
The third benefit of low bias current is the ability to use a larger current-sense resistor. This ability allows the
device to accurately monitor currents as low as 1 µA.
7.3.3 Low Quiescent Current With Output Enable
The device features low quiescent current (IQ), while still providing sufficient small-signal bandwidth to be usable
in most applications. The quiescent current of the INAx191 is only 43 µA (typical) per channel, while providing a
small-signal bandwidth of 35 kHz in a gain of 100. The low IQ and good bandwidth allow the device to be used in
many portable electronic systems without excessive drain on the battery. Because many applications only need
to periodically monitor current, the INAx191 features an enable pin for each output that turns off the device until
needed. When in the disabled state, the INAx191 typically draws 10 nA of total supply current per channel.
7.3.4 Bidirectional Current Monitoring (INA2191 Only)
The INA2191 can sense current flow through a sense resistor in both directions. The bidirectional current-
sensing capability is achieved by applying a voltage at the REF pin to offset the desired output voltage. A
positive differential voltage sensed at the inputs results in an output voltage that is greater than the applied
reference voltage. Likewise, a negative differential voltage at the inputs results in output voltage that is less than
the applied reference voltage. The output voltage of the current-sense amplifier is shown in Equation 1. Equation
variables such as VOUT are valid for either VOUT1 or VOUT2 depending on which channel used.
OUT
LOAD
SENSE
REF
V
I
R
GAIN
V
u
u
(1)
where
• ILOAD is the load current to be monitored.
• RSENSE is the current-sense resistor.
• GAIN is the gain option of the selected device.
• VREF is the voltage applied to the REF pin.
www.ti.com
INA191, INA2191
SLYS020B – FEBRUARY 2019 – REVISED FEBRUARY 2021
Copyright © 2021 Texas Instruments Incorporated
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Product Folder Links: INA191 INA2191



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