
Power delivery networks for New Space
Space is an unforgiving environment demanding flawless reliability. Vicor radiation-tolerant power modules are proven to withstand the rigors of New Space
Presented by Siyu Chai, Product Manager Global AI/Computing Market, Vicor
Leveraging a Factorized Power Architecture (FPA) and current multiplication, Vicor provides solutions for lateral power delivery, vertical power delivery and a new solution, lateral-vertical power delivery. Siyu addressed the problem of impedances and their effects on PDN losses in relation to the processor core voltages. Advances in power module packaging, next generation current multiplication and current density was also be addressed. These technologies enable wafer scale and clustered computing AI systems with current requirements in the tens of thousands of amps and will unleash xPU performance. The presentation deck is available to download.
Originally presented at OCP China Day 2022 on August 22, 2022
Power delivery networks for New Space
Space is an unforgiving environment demanding flawless reliability. Vicor radiation-tolerant power modules are proven to withstand the rigors of New Space
DC-DC converters for NewSpace applications
Smaller satellites harvest less energy using a modular approach to minimize I2R distribution losses, maximize efficiency and improve transient response
For New Space satellites, radiation tolerance means new design hurdle
Vicor power modules are power dense, reliable and scalable. Furthermore, there are multiple benefits of soft switching in radiation-tolerant power systems
60th Annual AOC International Symposium & Convention
The premier EW and Radar technology event of the year