
Configuring in small spaces
How to fit high-power, multi-rail requirements into nontraditional small-spaced footprints. Learn to break down rails into smaller, paralleled increments.
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The best methods for distributing high currents while minimizing resistive and inductive losses.
Strategies to deal with multiple outputs and power levels in nontraditional board spaces.
Hosted by David Berry, Senior Principal Applications Engineer at Vicor Corporation, this series helps engineers solve complex, high-performance power distribution challenges. Across five sessions, you will learn to navigate the architectural transition from 12V to high-efficiency 48V systems and optimize bus regulation. The series provides practical design strategies to mitigate severe distribution losses, master transient responses, and fit high-power rails into non-traditional board spaces. Ultimately, these videos deliver the exact methodologies needed to maximize power density without expanding your board footprint.
Senior Principal Applications Engineer
David Berry has a Bachelor of Science in Electrical Engineering from Union College in Schenectady, NY. He was a former magnetics designer specializing in impedance matching transformers, and now works for Vicor Corporation as a Sr. Principal Applications Engineer. He has been working in component power design for the Aerospace and Defense market for over 29 years.
Configuring in small spaces
How to fit high-power, multi-rail requirements into nontraditional small-spaced footprints. Learn to break down rails into smaller, paralleled increments.
Meeting transient needs
Mitigate I²R losses and trace inductance by shifting from lateral layout paths to vertical power placement using advanced multi-phase modules and current multipliers.
Powering high current loads
Explore solutions for delivering thousands of amps to demanding loads. Evaluate traditional constraints like connector pin scaling and cable sizing.
Regulating 48 volts
Learn to deploy non-isolated buck-boost regulators for wide-swing 36V – 60V inputs and implement efficient power regulation using an isolated converter.



