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INA302A2IPWR bảng dữ liệu(PDF) 30 Page - Texas Instruments |
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INA302A2IPWR bảng dữ liệu(HTML) 30 Page - Texas Instruments |
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30 / 42 page ![]() Time (5 ms/div) Positive Limit Negative Limit 0 V 30 INA302, INA303 SBOS775C – SEPTEMBER 2016 – REVISED MARCH 2019 www.ti.com Product Folder Links: INA302 INA303 Submit Documentation Feedback Copyright © 2016–2019, Texas Instruments Incorporated Typical Application (continued) 8.2.1 Design Requirements To allow for bidirectional monitoring, the INA303 requires a voltage applied to the REF pin. A voltage that is half of the supply voltage is usually preferred to allow for maximum output swing in both the positive and negative current direction. To reduce the errors in the reference voltage, drive the REF pin with a low-impedance source (such as an op amp or external reference). A low-value resistor divider can be used at the expense of quiescent current and accuracy. For this design, a single alert output is preferred, so both ALERT1 and ALERT2 are connected together and use a single pullup resistor. 8.2.2 Detailed Design Procedure To achieve bidirectional monitoring, drive the reference pin halfway between the supply with a resistor divider buffered by an op amp, as shown in Table 5. To reduce the current draw from the supply, use 100-kΩ resistors to create the divide-by-two voltage divider. The TLV313-Q1 is selected to buffer the voltage divider because this device can operate from a single-supply rail with low IQ and offset voltage. To minimize the response time of the ALERT2 output, a 100-kΩ pullup resistor was added from the DELAY pin to the VS pin. Select values for RSENSE, RLIMIT2, and RLIMIT1 based on the desired current-sense levels and trip thresholds using the information in the Resistor-Controlled Current Limit and Selecting a Current-Sensing Resistor (RSENSE) sections. For this example, the values of RLIMIT1 and RLIMIT2 were selected so that the positive and negative overcurrent thresholds are the same. Table 5 shows the alert output of the INA303 application circuit with the capability to detect both positive and negative overcurrent conditions. Table 5. Bidirectional Overcurrent Output Status OVERCURRENT PROTECTION (OCP) STATUS OUTPUT Positive overcurrent detection (OCP+) 0 Negative overcurrent detection (OCP–) 0 Normal operation (no OCP) 1 8.2.3 Application Curve Figure 53 shows the INA303 device being used in a bidirectional configuration to detect both negative and positive overcurrent events. Figure 53. Bidirectional Application Curve |
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