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/Products/Switching Regulators/DC_DC StepDown Convertor/RT6216E?sc_lang=en
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/Products/Switching Regulators/DC_DC StepDown Convertor/RT6216F?sc_lang=en
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Nobody likes component failures, but they sometimes do happen. Finding the root cause can be tricky, especially if it concerns a sporadic failure that cannot be repeated. At Richtek, we have analysed many failure cases. We found that most power ICs are damaged because of Electrical Over Stress (EOS) on the IC input supply pins. ...
About Richtek ▶ Product Newsletters ▶ Newsletter Issue 16
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The application note describes the measurement methods and proper stability testing of ACOT buck converters
Design Support ▶ Technical Documentation ▶ ACOT® Stability Testing
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This report describes three DC/DC buck converter topologies: Current Mode, Current Mode-Constant On Time and Richtek Advanced Constant On time topologies
Design Support ▶ Technical Documentation ▶ Comparing Buck Converter Topologies
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This application note will help you to distinguish the different Buck converter types, and highlights the key parameters which need to be considered for choosing the optimal part for your application.
Design Support ▶ Technical Documentation ▶ Buck Converter Selection Criteria
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In this application note, detailed analysis and derivation about dc offset will be presented and discussed.
Design Support ▶ Technical Documentation ▶ The Calculation of Output DC Offset for ACOT® Control Buck Converter with Feed-forward Compensator
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GND FB EN BOOT VIN NC 5 34 6 8 2 7 C OUT RT6216E EN VIN BOOT MODE SW V OUT GND V IN R3 L C
https://www.richtek.com/assets/product_file/RT6216E/DS6216E-03.pdf
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