Factorized Power Architecture and VI Chips
As electronic systems continue to trend toward lower voltages with higher currents and as the speed of contemporary loads continues to increase, the power systems designer is challenged to provide small, cost effective and efficient solutions that offer the requisite performance.
Traditional power architectures cannot, in the long run, provide the required performance. Vicor's new Factorized Power Architectureâ„¢ (FPA), and its new families of integrated power components, called VI Chips, provides a revolutionary new and optimal power conversion solution that addresses the challenge in every respect.
Download this whitepaper to learn more.
Read More
By submitting this form you agree to Vicor Corporation contacting you with marketing-related emails or by telephone. You may unsubscribe at any time. Vicor Corporation web sites and communications are subject to their Privacy Notice.
By requesting this resource you agree to our terms of use. All data is protected by our Privacy Notice. If you have any further questions please email dataprotection@techpublishhub.com
Related Categories: Capacitors, Components, Power, Processors, Switches


More resources from Vicor Corporation

The Sine Amplitude Converter Topology Provides Superior Efficiency and Power Density in Intermediate Bus Architecture Applications
The Sine Amplitude Converter topology is the dynamic, high- performance engine at the heart of Vicor's new VI Brick Bus Converter products.
T...

Reduce Load Capacitance in Noise-Sensitive, High-Transient Applications, through Implementation of Active Filtering
The following white paper uses a typical off-the-shelf isolated DC-DC converter to demonstrate how an active filter will not only provide superior ...

High-voltage DC distribution is key to increased system efficiency and renewable-energy opportunities
A transition to 400 VDC in power distribution and conversion will help meet greenhouse gas, efficiency, and renewable-energy goals.
The press...