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INA271AIDR Datasheet(PDF) 13 Page - Texas Instruments

Part # INA271AIDR
Description  INA27x Voltage Output, Unidirectional Measurement Current-Shunt Monitor
PDF  28 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

INA271AIDR Datasheet(HTML) 13 Page - Texas Instruments

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V
RTI(Referred-To-Input)=
OS
V
OUT1
G
- 100mV
G=
V
V
-
OUT1
OUT2
100mV
20mV
-
13
INA270, INA271
www.ti.com
SBOS381E – FEBRUARY 2007 – REVISED JANUARY 2018
Product Folder Links: INA270 INA271
Submit Documentation Feedback
Copyright © 2007–2018, Texas Instruments Incorporated
Device Functional Modes (continued)
8.4.2 Accuracy Variations as a Result of VSENSE and Common-Mode Voltage
The accuracy of the INA270 and INA271 current shunt monitors is a function of two main variables: VSENSE
(VIN+ – VIN–) and common-mode voltage (VCM) relative to the supply voltage, VS. VCM is expressed as (VIN+ +
VIN–) / 2; however, in practice, VCM is used as the voltage at VIN+ because the voltage drop across VSENSE is
usually small.
This section addresses the accuracy of these specific operating regions:
Normal Case 1: VSENSE ≥ 20 mV, VCM ≥ VS
Normal Case 2: VSENSE ≥ 20 mV, VCM < VS
Low VSENSE Case 1:
VSENSE < 20 mV, –16 V ≤ VCM < 0
Low VSENSE Case 2:
VSENSE < 20 mV, 0 V ≤ VCM ≤ VS
Low VSENSE Case 3:
VSENSE < 20 mV, VS < VCM ≤ 80 V
8.4.2.1 Normal Case 1: VSENSE ≥ 20 mV, VCM ≥ VS
This region of operation provides the highest accuracy. Here, the input offset voltage is characterized and
measured using a two-step method. First, the gain is determined by Equation 1.
where
•
VOUT1 = Output voltage with VSENSE = 100 mV and
•
VOUT2 = Output voltage with VSENSE = 20 mV.
(1)
Then the offset voltage is measured at VSENSE = 100 mV and referred to the input (RTI) of the current shunt
monitor, as shown in Equation 2.
(2)
In the Typical Characteristics, the Output Error vs Common-Mode Voltage curve (Figure 6) shows the highest
accuracy for the this region of operation. In this plot, VS = 12 V; for VCM ≥ 12 V, the output error is at its
minimum. This case is also used to create the VSENSE ≥ 20 mV output specifications in the Electrical
Characteristics table.
8.4.2.2 Normal Case 2: VSENSE ≥ 20 mV, VCM < VS
This region of operation has slightly less accuracy than Normal Case 1 as a result of the common-mode
operating area in which the device functions, as illustrated in the Output Error vs Common-Mode Voltage curve
(Figure 6). As noted, for this graph VS = 12 V; for VCM < 12 V, the output error increases when VCM becomes less
than 12 V, with a typical maximum error of 0.005% at the most negative VCM = –16 V.
8.4.2.3 Low VSENSE Case 1: VSENSE < 20 mV, –16 V ≤ VCM < 0; and Low VSENSE Case 3: VSENSE < 20 mV,
VS < VCM ≤ 80 V
Although the INA270 family of devices are not designed for accurate operation in either of these regions, some
applications are exposed to these conditions. For example, when monitoring power supplies that are switched on
and off while VS is still applied to the INA270 or INA271, knowing what the behavior of the devices is in these
regions is important.



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