优化 DC-DC 转换器稳定性:源阻抗效应的 AC 与瞬态仿真分析
探讨如何通过频域 AC 小信号分析和时域瞬态分析来优化 DC‑DC 转换器的稳定性
We recently had a customer that had a variety of unique power system challenges that needed to be overcome. One of these challenges required configuring one of our many DC-DC DCM modules to provide a specific input and output voltage range. System requirements were:
Using our Power Component Design Methodology we developed a solution using a mix of standard power components, plus specifically configured DCM DC-DC converter modules. Two DCM4623 converters were selected from our component library and configured to operate from a unique 210V nominal input voltage but with different output voltages.
Eight of the first DCMs were configured in parallel to create a high power 3.2kW, isolated and regulated 22V output. This array fed the large bulk capacitor of 200mF. The second DCM was configured to create a 53V output, which was then fed into a pair of Bus Converter Modules (BCMs) to create an efficient, regulated 300W, 3.3V output.
The inherent benefits of the power components used in the design meant that the system had high power density, allowing it to be very small size and lightweight. As with all systems using the Power Component Design Methodology, the system was straightforward to implement, and the short-lead time, cost-effective configured DCM capability offered by Vicor avoided the delays and NRE typically associated with application-specific converters.
Additionally, the DCMs’ constant switching frequency simplified the filtering required to avoid interference affecting associated sensitive equipment.
By using the Power Component Design Methodology, the customer was able to create a highly flexible, efficient solution that met their performance and time to market objectives.
Related content
Product overview: DCM DC-DC converter modules
Product overview: BCM bus converter modules
优化 DC-DC 转换器稳定性:源阻抗效应的 AC 与瞬态仿真分析
探讨如何通过频域 AC 小信号分析和时域瞬态分析来优化 DC‑DC 转换器的稳定性
48V 迁移之路上的 12 项技术挑战
为帮助您为迁移到 48V 做好更充分的准备,以下梳理了 12 项需要重点关注的挑战
革新高压移动供电的电气化之路
ReVolt 为电影片场注入活力!了解他们如何使用 Vicor 高密度电源模块取代柴油,实现清洁的移动供能
电源架构为何制约新太空 AI 任务
卫星 AI 的发展速度已经超越了传统电源系统。现代计算需要超低电压、大电流的供电能力,而传统电源架构直到现在都无法满足这一需求



