Data Center Power Disaggregation-Electronics Headlines
To increase compute density and efficiently handle racks consuming 140kW or more, hyperscalers are now advocating for a move to ±400V DC power distribution for next
To increase compute density and efficiently handle racks consuming 140kW or more, hyperscalers are now advocating for a move to ±400V DC power distribution for next
By adopting new energy efficient power feed architecture 400VDC we can solve the many problems with AC distribution and also in -48VDC distribution and reduce the TCO.
This architecture delivers a roughly 3% boost in end-to-end efficiency and frees up the entire rack for compute hardware. Looking
Traditional rack solutions integrate the power and server infrastructure in a single rack, but with Mt. Diablo we are moving all the
In this exclusive Q&A, Vicor contends that ±400-V DC power distribution to AI racks in data centers is inevitable.
Free server power calculator to estimate server rack energy use, monthly cost, and cooling load using watts, utilization, hours, PUE, and electricity
Enter the Open Compute Project (OCP) Diablo 400 specification, co-authored by Microsoft, Meta, and Google, which defines
At the 2025 OCP EMEA Summit today, we discussed the power delivery transformation from 48 volts direct current (VDC) to the
The real issue arises inside the server racks themselves, where the power electronics are competing over limited space with processors, memory,
By leveraging our in-house knowledge of DC power, inverters, batteries, generators, thermal management, UPS, alternative and other energy sources, we pay attention to the entire
PDF version includes complete article with source references. Suitable for printing and offline reading.