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AMC1336DWVR Datasheet(PDF) 21 Page - Texas Instruments |
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AMC1336DWVR Datasheet(HTML) 21 Page - Texas Instruments |
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21 / 31 page ![]() 21 AMC1336 www.ti.com SBAS951 – AUGUST 2019 Product Folder Links: AMC1336 Submit Documentation Feedback Copyright © 2019, Texas Instruments Incorporated Typical Applications (continued) 8.2.1.1 Design Requirements Table 1 lists the parameters for this typical application. Table 1. Design Requirements PARAMETER VALUE Supply voltage 3.3 V Voltage drop across the sensing resistor RDC1 for a linear response 1 V (maximum) Voltage drop across the sensing resistors RACx for a linear response ±1 V (maximum) Current through the sensing resistors RACx ±100 µV (maximum) 8.2.1.2 Detailed Design Procedure Use Ohm's Law to calculate the minimum total resistance of the resistive dividers to limit the cross current to the desired values: • For the voltage sensing on the DC bus: RDC1 + RDC2 + RDC3 = VBUS / IDC • For the voltage sensing on the output phases U, V, and W: RAC1 + RAC2 + RAC3 = VPHASE (max) / IAC Consider the following two restrictions to choose the proper value of the resistors RDC3 and RAC3: • The voltage drop caused by the nominal voltage range of the system must not exceed the recommended input voltage range of the AMC1336: VxC3 ≤ VFSR • The voltage drop caused by the maximum allowed system overvoltage must not exceed the input voltage that causes a clipping output: VxC3 ≤ VClipping Use similar approach for calculation of the shunt resistor values RSHUNT and see the AMC1306M25 data sheet for further details. Table 2 lists examples of nominal E96-series (1% accuracy) resistor values for systems using 600 V and 800 V on the DC bus. Table 2. Resistor Value Examples for DC Bus Sensing PARAMETER 600-V DC BUS 800-V DC BUS Resistive divider resistor RDC1 3.01 MΩ 4.22 MΩ Resistive divider resistor RDC2 3.01 MΩ 4.22 MΩ Sense resistor RDC3 10 kΩ 10.5 kΩ Resulting current through resistive divider IDC 99.5 µA 94.7 µA Resulting voltage drop on sense resistor VRDC3 0.995 V 0.994 V Table 3 lists examples of nominal E96-series (1% accuracy) resistor values for systems using 230 V and 690 V on the input or output phases. Table 3. Resistor Value Examples for Phase Voltage Sensing PARAMETER ±400-VAC PHASE ±690-VAC PHASE Resistive divider resistor RAC1 2.0 MΩ 3.48 MΩ Resistive divider resistor RAC2 2.0 MΩ 3.48 MΩ Sense resistor RAC3 10.0 kΩ 10.0 kΩ Resulting current through resistive divider IAC 99.8 µA 99.0 µA Resulting voltage drop on sense resistor VRAC3 ±0.998 V ±0.990 V |
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