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AMC0136 bảng dữ liệu(PDF) 21 Page - Texas Instruments |
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AMC0136 bảng dữ liệu(HTML) 21 Page - Texas Instruments |
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21 / 34 page ![]() 7.4 Power Supply Recommendations In a typical application, the high-side power supply (AVDD) for the AMC0136 is generated from the low-side supply (DVDD) by an isolated DC/DC converter. A low-cost option is based on the push-pull driver SN6501 and a transformer that supports the desired isolation voltage ratings. The AMC0136 does not require any specific power-up sequencing. The high-side power supply (AVDD) is decoupled with a low-ESR, 100nF capacitor (C1) parallel to a low-ESR, 1μF capacitor (C2). The low-side power supply (DVDD) is equally decoupled with a low-ESR, 100nF capacitor (C3) parallel to a low-ESR, 1μF capacitor (C4). Place all four capacitors (C1, C2, C3, and C4) as close to the device as possible. Figure 7-4 shows a decoupling diagram for the AMC0136. R3 49.9 from MCU to MCU RSNS AVDD DVDD AVDD AGND IN SNSN DVDD CLKIN DOUT DGND R1 VAC C2 1µF C1 100nF C4 1µF C3 100nF C5 100pF Figure 7-4. Decoupling of the AMC0136 Capacitors provide adequate effective capacitance under the applicable DC bias conditions experienced in the application. Multilayer ceramic capacitors (MLCC) typically exhibit only a fraction of the nominal capacitance under real-world conditions. Consider this factor when selecting these capacitors. This issue is especially acute in low-profile capacitors, in which the dielectric field strength is higher than in taller components. Reputable capacitor manufacturers provide capacitance versus DC bias curves that greatly simplify component selection. 7.5 Layout 7.5.1 Layout Guidelines The Layout Example section provides a layout recommendation showing the critical placement of the decoupling and filter capacitors. Decoupling and filter capacitors are placed as close as possible to the AMC0136 input pins. 7.5.2 Layout Example Top Metal Inner or Bottom Layer Metal Via C2 C1 CLKIN (from MCU) to MCU DOUT IN VAC DVDD AGND DGND AVDD Clearance area, keep free of any conductive materials R3 C3 C4 Figure 7-5. Recommended Layout of the AMC0136 www.ti.com AMC0136 SBASAZ0A – AUGUST 2024 – REVISED DECEMBER 2024 Copyright © 2024 Texas Instruments Incorporated Submit Document Feedback 21 Product Folder Links: AMC0136 |
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