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INA190 Datasheet(PDF) 24 Page - Texas Instruments

Part # INA190
Description  INA190 Bidirectional, Low-Power, Zero-Drift, Wide Dynamic Range, Precision Current-Sense Amplifier With Enable
PDF  48 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

INA190 Datasheet(HTML) 24 Page - Texas Instruments

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VOUT
VS
1.7 V to 5.5 V
IN±
IN+
VS
OUT
RPROTECT
+
±
Bus Voltage
up to 40 V
RSENS E
Loa d
Capacitive ly
Couple d
Amplifier
ENABL E
INA190
REF
GND
< 1 k:
< 1 k:
Transorb
CBYPASS
0.1 µF
VOUT
VS
1.7 V to 5.5 V
IN±
IN+
VS
OUT
RPROTECT
+
±
Bus Voltage
up to 40 V
RSENS E
Loa d
Capacitive ly
Couple d
Amplifier
ENABL E
INA190
REF
GND
< 1 k:
< 1 k:
CBYPASS
0.1 µF
24
INA190
SBOS863D – MARCH 2018 – REVISED NOVEMBER 2019
www.ti.com
Product Folder Links: INA190
Submit Documentation Feedback
Copyright © 2018–2019, Texas Instruments Incorporated
Application Information (continued)
8.1.4 Common-Mode Voltage Transients
With a small amount of additional circuitry, the INA190 can be used in circuits subject to transients that exceed
the absolute maximum voltage ratings. The most simple way to protect the inputs from negative transients is to
add resistors in series to the IN– and IN+ pins. Use resistors that are 1 kΩ or less, and limit the current in the
ESD structures to less than 5 mA. For example, using 1-kΩ resistors in series with the INA190 allows voltages
as low as –5 V, while limiting the ESD current to less than 5 mA. If protection from high-voltage or more-
negative, common-voltage transients is needed, use the circuits shown in Figure 42 and Figure 43. When
implementing these circuits, use only Zener diodes or Zener-type transient absorbers (sometimes referred to as
transzorbs); any other type of transient absorber has an unacceptable time delay. Start by adding a pair of
resistors as a working impedance for the Zener diode, as shown in Figure 42. Keep these resistors as small as
possible; most often, use around 100
Ω. Larger values can be used with an effect on gain that is discussed in the
Signal Conditioning section. This circuit limits only short-term transients; therefore, many applications are
satisfied with a 100-
Ω resistor along with conventional Zener diodes of the lowest acceptable power rating. This
combination uses the least amount of board space. These diodes can be found in packages as small as SOT-
523 or SOD-523.
Figure 42. Transient Protection Using Dual Zener Diodes
In the event that low-power Zener diodes do not have sufficient transient absorption capability, a higher-power
transzorb must be used. The most package-efficient solution involves using a single transzorb and back-to-back
diodes between the device inputs, as shown in Figure 43. The most space-efficient solutions are dual, series-
connected diodes in a single SOT-523 or SOD-523 package. In either of the examples shown in Figure 42 and
Figure 43, the total board area required by the INA190 with all protective components is less than that of an SO-
8 package, and only slightly greater than that of an VSSOP-8 package.
Figure 43. Transient Protection Using a Single Transzorb and Input Clamps
For more information, see the Current Shunt Monitor With Transient Robustness reference design.



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