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INA281 Datasheet(PDF) 17 Page - Texas Instruments |
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INA281 Datasheet(HTML) 17 Page - Texas Instruments |
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17 / 28 page ![]() 0 10 20 30 40 0 2 4 6 Time (50 ms/div) VCM VOUT 17 INA281 www.ti.com SBOSA29 – JUNE 2020 Product Folder Links: INA281 Submit Documentation Feedback Copyright © 2020, Texas Instruments Incorporated 8.2.2 Detailed Design Procedure The INA281 is designed to measure current in a typical solenoid application. The INA281 measures current across the 50-mΩ shunt that is placed at the output of the half-bridge. The INA281 measures the differential voltage across the shunt resistor, and the signal is internally amplified with a gain of 50 V/V. The output of the INA281 is connected to the analog-to-digital converter (ADC) of an MCU to digitize the current measurements. Solenoid loads are highly inductive and are often prone to failure. Solenoids are often used for position control, precise fluid control, and fluid regulation. Measuring real-time current on the solenoid continuously can indicate premature failure of the solenoid which can lead to a faulty control loop in the system. Measuring high-side current also indicates if there are any ground faults on the solenoid or the FETs that can be damaged in an application. The INA281, with high bandwidth and slew rate, can be used to detect fast overcurrent conditions to prevent the solenoid damage from short-to-ground faults. 8.2.2.1 Overload Recovery With Negative VSENSE The INA281 is a unidirectional current-sense amplifier that is meant to operate with a positive differential input voltage (VSENSE). If negative VSENSE is applied, the device is placed in an overload condition and requires time to recover once VSENSE returns positive. The required overload recovery time increases with more negative VSENSE. 8.2.3 Application Curve Figure 31 shows the output response of a solenoid. Figure 31. Solenoid Control Current Response 9 Power Supply Recommendations The INA281 power supply can be 5 V, whereas the input common-mode voltage can vary between –4 V to 110 V. The output voltage range of the OUT pin, however, is limited by the voltage on the power-supply pin. |
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