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INA231AIYFDR датащи(PDF) 30 Page - Texas Instruments |
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INA231AIYFDR датащи(HTML) 30 Page - Texas Instruments |
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30 / 44 page ![]() ´ Power Register Current Register I C 2 Interface Voltage Register GND BUS ADC V I A0 ALERT A1 SDA SCL C 0.1 F BYPASS m 10A Load Alert Register V (Supply Voltage) S +12-V Supply IN- IN+ R 2 m SHUNT W 30 INA231 SBOS644B – FEBRUARY 2013 – REVISED AUGUST 2017 www.ti.com Product Folder Links: INA231 Submit Documentation Feedback Copyright © 2013–2017, Texas Instruments Incorporated 9.2 Typical Applications Figure 29. Monitoring a 10-A Load 9.2.1 Design Requirements The INA231 measures the voltage developed across a current-sensing resistor (RSHUNT) when current passes through the resistor. The device also measures the bus supply voltage, and calculates power when calibrated. The INA231 comes with alert capability, where the alert pin can be programmed to respond to a user-defined event, or to a conversion-ready notification. This design illustrates the ability of the alert pin to respond to a set threshold. In this case, a 10 A are pulled through a 2-mΩ shunt resistor, generating a 20-mV shunt voltage drop that is measured by the INA231. The bus supply is 12 V, and the BUS pin is tied to the IN– pin, so that the power loss through the shunt resistor, however small, is not added to the power calculation performed by the INA231. This configuration provides an accurate measurement the power dissipated by the load. 9.2.2 Detailed Design Procedure The ALERT pin can be configured to respond to one of the five alert functions described in the ALERT Pin section. The ALERT pin must to be pulled up to the VS pin voltage using a pull-up resistor. The Configuration register is set based on the required conversion time and averaging. The Mask/Enable register is set to identify the required alert function and the Alert Limit register is set to the limit value used for comparison. 9.2.3 Application Curves Figure 30 shows the ALERT pin response to a shunt overvoltage of 50 mV for a conversion time (tCT) of 140 μs. and averaging set to 1. Figure 31 shows the response for the same limit, but with the conversion time reduced to 1.1 ms. |
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