Defense power systems design presents some of the most demanding requirements for electrical performance and environmental conditions, and many of these requirements are enforced by exacting standards. Size and weight can also be major constraints, while high reliability is critical, despite the harsh operating conditions.
Defense power systems often have challenging voltage range requirements, need suppression of large transients and require mitigation of EMI. This webinar explains how to overcome the multitude of challenges facing power system designers, drawing on Vicor’s 30 years of experience, supporting thousands of defense system designs.
This webinar covers:
MIL Standards to be met with DC-DC systems
Typical applications and test results to meet current and future needs
Reducing noise with filters and layout
Using power components optimized for defense applications
Vamshi Domudala has a Master’s Degree Electrical and Computer engineering from the University of Massachusetts Lowell and has several years of experience as System Application engineer at Vicor.
About Vicor Power
Vicor Corporation designs, manufactures and markets innovative, high performance modular power components, from bricks to semiconductor-centric solutions, to enable customers to efficiently convert and manage power from the wall plug to the point-of-load. Complementing an extensive portfolio of patented innovations in power conversion and power distribution with significant application development expertise, Vicor offers comprehensive product lines addressing a broad range of power conversion and management requirements across all power distribution architectures, including CPA, DPA, IBA, FPA and CBA. Vicor focuses on solutions for performance-critical applications in the following markets: enterprise and high performance computing, telecommunications and network infrastructure, industrial equipment and automation, vehicles and transportation and aerospace and defense electronics.
To learn more, please visit: http://www.vicorpower.com .
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