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
標準的なIBA(中間バスアーキテクチャ)の電源システムソリューションです。VicorのDC-DCコンバータラインナップは、小型、軽量、低コストの電源システム設計に欠かせない、すべての性能と機能を揃えています。
9 – 420V
出力電圧:3.3, 5, 12, 13.8, 15, 24, 28, 36, 48V
出力電力:
2322 ChiP: 最大 120W
3623 ChiP: 最大 320W
4623 ChiP: 最大 600W
3414 VIA: 最大 320W
3714 VIA: 最大 600W
5614 VIA: 最大 1300W
最大96%
When high performance mattered, Delta Motorsport chose DCMs to power hybrid electric race cars.
Vicor Factorized Power Architecture is essential to propagating protective coral reefs as well as achieving breakthrough wireless broadband speeds.
10 – 400VDC
出力電圧:2 – 95VDC
出力電力:
VI-200: 50 –200W
VI-J00: 25 – 100W
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
複数のコンバータを使用した ワイド入力 DC-DC 電源ソリューション
通用解决方案通常可让情况简单化。但在选择超宽 DC-DC 电源时,这种方法无法获得最佳结果
Innovating power delivery networks
Vicor is innovating with power delivery networks. Improving end-system performance requires innovative power technologies
Build small, lighter power systems by eliminating bulk capacitance
Vicor's Factorized Power Architecture™ (FPA) delivers significant reductions in both size and weight




