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AMC0106M05 Datasheet(PDF) 23 Page - Texas Instruments |
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AMC0106M05 Datasheet(HTML) 23 Page - Texas Instruments |
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23 / 35 page ![]() The high-side power supply (AVDD) is generated from a bootstrap circuit (R4, D1, C2). The low-side supply is shared with circuitry in the signal domain. Use the optional 49.9Ω resistor on the DOUT pin for line-termination to improve signal integrity on the receiving end. The galvanic isolation barrier and high common-mode transient immunity (CMTI) of the AMC0106M05 provide reliable and accurate operation even in high-noise environments. 7.2.1 Design Requirements Table 7-1 lists the parameters for this typical application. Table 7-1. Design Requirements PARAMETER VALUE System voltage, power-stage 48V Bootstrap supply voltage (VBS) 6V Maximum ripple voltage on AVDD supply (VRIPPLE) 200mV PWM frequency 16kHz PWM duty cycle range 5% to 95% Linear current sensing range ±25A 7.2.2 Detailed Design Procedure In Figure 7-1, the high-side power supply (AVDD) is generated from a bootstrap circuit (R4, D1, C2). The high-side ground reference (AGND) is derived from the end of the shunt resistor connected to the negative input of the AMC0106M05 (INN). For a four-terminal shunt, connect the device inputs to the inner leads of the shunt and connect AGND to the outer leads. To minimize offset and improve accuracy, route the ground connection as a separate trace. Connect AGND directly to the shunt resistor rather than shorting AGND to INN at the input to the device. See the Layout section for more details. 7.2.2.1 Shunt Resistor Sizing The shunt resistor (RSHUNT) value is determined by the device linear input voltage range (±50mV) and the desired linear current sensing range of ±25 A. RSHUNT is calculated as 50mV / 25A = 2mΩ. The peak power dissipated in the shunt resistor is RSHUNT × IPEAK 2 = 2mΩ × (25A)2 = 1.25W. For a linear response, operate the shunt resistor at no more than 2/3 of the rated power. Therefore, a shunt resistor with a nominal power rating of approximately 1.8W is selected. Select a lower shunt resistor value if transient overcurrents are expected in the system that exceed the linear input voltage range of the AMC0106M05. However, if reduced linearity and lower resolution is acceptable for the overcurrent range, allow the voltage drop across the shunt to exceed the linear input voltage range up to the clipping voltage of the AMC0106M05. In any case, make sure the voltage drop caused by the maximum overcurrent does not exceed the input voltage that causes a clipping output. That is, make sure |VSHUNT| ≤ |VClipping|. www.ti.com AMC0106M05 SBASAS7A – AUGUST 2024 – REVISED JUNE 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 23 Product Folder Links: AMC0106M05 |
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