This is the second part of a two-part set of videos illustrating the steps of the first run at designing a DC-DC buck converter. This part investigate the losses and computes the efficiency. Below are additional links to review.
"Basic Calculation of a Buck Converter's Power Stage," by Brigitte Hauke, Application Report SLVA477B, Dec 2011, revised Aug 2015
http://www.ti.com/lit/an/slva477b/slva477b.pdf
"High Current Density Surface-Mount (TMBS®) Trench MOS Barrier Schottky Rectifier," V30K45 data sheet, Vishay,
https://www.vishay.com/docs/87416/v30k45.pdf
"N-channel 30V MOSFET," SiSHA14DN data sheet, Vishay,
https://www.vishay.com/docs/75708/sisha14dn.pdf
"Bourn SMD Power Inductors,"
https://www.bourns.com/products/magnetic-products/power-inductors-smd-high-current-shielded
"TDK Commercial Grade MLCC Chip Capacitor Catalog,"
https://product.tdk.com/info/en/catalog/datasheets/mlcc_commercial_general_en.pdf
"Power Topologies Handbook," by Markus Zehendner and Matthias Ulmann, Texas Instruments
https://www.ti.com/seclit/ug/slyu036/slyu036.pdf
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Power Electronics - Buck Converter Design Example Part 2 | NatokHD