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PINA241B1IDDFR 数据表(PDF) 9 Page - Texas Instruments |
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PINA241B1IDDFR 数据表(HTML) 9 Page - Texas Instruments |
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9 / 27 page ![]() 8.3.1.4 Low VSENSE Operation The INA241x features high performance operation across the entire valid VSENSE range. The zero-drift input architecture of the INA241x provides the low offset voltage and low offset drift needed to measure low VSENSE levels accurately across the wide operating temperature of –40°C to +125°C. Low VSENSE operation is particularly beneficial when using low ohmic shunts for low current measurements, as power losses across the shunt are significantly reduced. 8.3.1.5 Wide Fixed Gain Output The INA241x maximum gain error is 0.05% at room temperature, with a maximum drift of 2.5 ppm/°C over the full temperature range of –40°C to +125°C. The INA241x is available in multiple gain options of 10 V/V, 20 V/V, 50 V/V, 100 V/V, and 200 V/V, which the system designer should select based on their desired signal-to-noise ratio and other system requirements such as the dynamic current range and full-scale output voltage target. 8.3.1.6 Wide Supply Range The INA241x operates with a wide supply range from 2.7 V to 20 V. While the input voltage range of the INA241x is independent of the supply voltage, the output voltage is bound by the supply voltage applied to the device. The output voltage can range from as low as 20 mV to has high as 200 mV below the supply voltage. 8.4 Device Functional Modes 8.4.1 Adjusting the Output With the Reference Pins Figure 8-1 shows a test circuit for reference-divider accuracy. The INA241x output is configurable to allow for unidirectional or bidirectional operation. + ± REF2 REF1 VS GND OUT VS IN+ IN± Figure 8-1. Test Circuit For Reference Divider Accuracy The output voltage is set by applying a voltage or voltages to the reference voltage inputs, REF1 and REF2. The reference inputs are connected to an internal gain network. There is no operational difference between the two reference pins. 8.4.2 Reference Pin Connections for Unidirectional Current Measurements Unidirectional operation allows current measurements through a resistive shunt in one direction. For unidirectional operation, connect the device reference pins together and then to the negative rail (see the Ground Referenced Output section) or the positive rail (see the VS Referenced Output section). The required differential input polarity depends on the output voltage setting. The amplifier output moves away from the referenced rail proportional to the current passing through the external shunt resistor. If the amplifier reference pins are connected to the positive rail, then the input polarity must be negative to move the amplifier output down (towards ground). If the amplifier reference pins are connected at ground, then the input polarity must be positive to move the amplifier output up (towards supply). The following sections describe how to configure the output for unidirectional operation cases. www.ti.com INA241A, INA241B SBOSA30 – MARCH 2022 Copyright © 2022 Texas Instruments Incorporated Submit Document Feedback 9 Product Folder Links: INA241A INA241B |
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