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AMC3301 датащи(PDF) 13 Page - Texas Instruments |
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AMC3301 датащи(HTML) 13 Page - Texas Instruments |
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13 / 23 page ![]() 13 AMC3301 www.ti.com SBAS917 – AUGUST 2019 Product Folder Links: AMC3301 Submit Documentation Feedback Copyright © 2019, Texas Instruments Incorporated Feature Description (continued) 7.3.3 Isolated DC/DC Converter The AMC3301 offers a fully integrated isolated DC/DC converter stage that includes following components that are shown in the Functional Block Diagram section: • A low-dropout regulator (LDO) on the primary side to stabilize the supply voltage VDD that drives the primary side of the converter • Primary full-bridge inverter and drivers • Laminate-based, air-core transformer for high immunity to magnetic fields • Secondary full-bridge rectifier • Secondary LDO to stabilize the output voltage of the DC/DC converter for high analog performance of the signal path The DC/DC converter utilizes spread-spectrum clock generation technique to reduce the spectral density of the electromagnetic radiation. The resonator frequency is synchronous to the operation of the ΔΣ modulator to minimize the interference and support the high analog performance of the device. The architecture of the DC/DC converter is optimized to drive the high-side circuitry of the AMC3301 (fully- differential gain stage, modulator etc.) and to offer additional current for optional auxiliary circuit (i.e. active fllter or pre-amplifier) called IH as specified in the Electrical Characteristics table. 7.3.4 Fail-Safe Output The AMC3301 offers a fail-safe output that simplifies diagnostics on system level. The fail-safe output is active in two cases: • When the integrated DC/DC converter doesn't deliver the required supply voltage on the secondary side of the device, or • When the common-mode input voltage, that is VCM = (INP + INN) / 2, exceeds the minimum common-mode over-voltage detection level VCMov. Figure 7 and Figure 8 show the fail-safe output of the AMC3301 that is a negative differential output voltage value that does not occur under normal device operation. As a reference value for the fail-safe detection on a system level, use the VFAILSAFE voltage as specified in the Electrical Characteristics. Figure 7. Typical Negative Clipping Output of the AMC3301 Figure 8. Typical Failsafe Output of the AMC3301 7.4 Device Functional Modes The AMC3301 is operational when the power supply VDD is applied, as specified in Recommended Operating Conditions table. |
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