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INA819 数据表(PDF) 21 Page - Texas Instruments

部件名 INA819
功能描述  INA630 Precision, 126dB CMRR, Indirect Current Feedback Instrumentation Amplifier
PDF  32 Pages
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制造商  TI2 [Texas Instruments]
网页  https://www.ti.com
标志 TI2 - Texas Instruments

INA819 数据表(HTML) 21 Page - Texas Instruments

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8.2 Typical Applications
8.2.1 Current Shunt Monitoring in Battery Testing Systems
Figure 8-3 shows a current shunt monitoring design for the INA630. This exemplary circuit is designed to monitor
charging and discharging currents through a battery cell of ±100A. The INA630 is configured in a gain of 125V/V
and optimized to enable accuracy of 0.05% over a temperature range of 40°C. The output is a bipolar-ended
voltage of ±2.5V to feed into a bipolar ADC.
INA630
ADC
10 V
BATTERY
CELL
VS+
VS
VREF
OUT
10 V
R2
R1
GND
2.5 V
2.5 V
Charge
Current
ISENSE
5 V
FB
Figure 8-3. Battery Testing Current Shunt Monitor Circuit
8.2.1.1 Design Requirements
For this application, the design requirements are as follows:
• Charging and discharging current for single-cell battery of up to ±100A
• Sense resistor RSENSE of 200μΩ, equal to VSENSE of ±20mV
• Maximum common-mode voltage of VBAT at 4.2V
• Bipolar output voltage of ±2.5V
8.2.1.2 Detailed Design Procedure
This chapter details the procedure to lay out the gain resistor network, containing R1 and R2. Additional
guidance is provided to verify that the given input voltage lies within the allowed operating range.
The selection of the current shunt resistor is an important step for an accurate battery test system. A large shunt
resistor increases power dissipation which degrades the drift performance. A small resistor on the other side
requires a high-performance front end. For this design, the given charging current ICHARGE is ±100A, so RSENSE
is selected to be 200μΩ for best trade-off.
In charging mode, Equation 3 show the sense voltage to the input of the INA630:
VSENSE = ICHARGE × RSENSE = ±20mV
(3)
The full-scale range for the selected ADC is at 5V. The reference pin is grounded. Equation 4 shows the gain:
G = VOUT / VSENSE = 125V/V
(4)
• G represents the gain of the instrumentation amplifier.
• VSENSE represents the differential voltage at the INA630 inputs which is within the maximum allowed
differential input voltage of ±125mV.
www.ti.com
INA630
SBOSAI8A – MARCH 2025 – REVISED JULY 2025
Copyright © 2025 Texas Instruments Incorporated
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Product Folder Links: INA630



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