Optimizing DC-DC converter stability: AC and transient analysis in simulations of source impedance effects
Learn how to optimize DC-DC converter stability through AC analysis in the frequency-domain and transient analysis in the time-domain
Power delivery networks (PDNs) are making a decisive shift from 12V to 48V architectures to take advantage of higher efficiency. This presents power system design challenges for legacy 12V systems. Listen to the podcast.
Podcast with Maury Wood, VP Strategic Marketing at Vicor
Maury discusses how power delivery networks (PDNs) are making a decisive shift from 12V to 48V architectures to take advantage of higher efficiency, but that seizing this opportunity presents many power system design challenges for legacy systems that have been optimized around 12V architectures for decades. Vicor has addressed this challenge by launching the DCM3717 and DCM3735 DC-DC power modules to enable power system designers to deploy high-performance 48V power delivery networks for legacy 12V loads and achieve significant size, weight and efficiency benefits.
Optimizing DC-DC converter stability: AC and transient analysis in simulations of source impedance effects
Learn how to optimize DC-DC converter stability through AC analysis in the frequency-domain and transient analysis in the time-domain
Accelerating the transition to 48V power systems
The six things to consider when transitioning to 48 volt power systems
DC-DC power modules help to bridge the 48V to 12V transition
Power delivery networks (PDNs) are making a decisive shift from 12V to 48V architectures
How are automotive electronics evolving?
Power delivery networks in automotive are being taxed more than ever today. Learn how Vicor is helping design more efficient power systems



