Eaton Corporation (News - Alert), a diversified power management company, has expanded the power ratings for the Eaton 9395 uninterruptible power system (UPS) to 1100 kVA to meet the growing power protection requirements of data centers and other large system applications.
Launched in March 2007 with a power rating of 275-550 kVA and further extended earlier this year to 825 Kva, the 9395 1100 kVA UPS operates more efficiently and features a scalable architecture. In addition, the new Eaton 9395 System Bypass Module (SBM) makes it possible to parallel 9395 UPSs with non-identical kVA ratings.
Eaton Corporation revealed the latest Eaton 9395 UPS and the new Eaton 9395 System Bypass Module at the AFCOM Data Center World, held in Orlando, Florida. AFCOM is an association for data center professionals.
“Eaton continually looks to meet the industry demand for innovative, larger power systems while maintaining the same power performance, energy savings, reliability, flexibility and small footprint features that have defined Eaton’s mission-critical UPSs for decades,” said Pedro Robredo, three-phase UPS product line manager, Eaton’s Power Quality Division.
Power interruption has been a major cause for several organizations and as there is more dependency on electronics tools, there is a high demand for power management and Eaton’s electrical distribution business has been playing a great role in developing electrical systems for power quality, distribution and control.
Eaton 9395 UPS is one such system that uses its double-conversion design and totally streamlines output power from all input power anomalies. The system delivers 100 percent conditioned output thereby regulating both voltage and frequency, says the company. Eaton’s SBM technology has the capability to parallel up to 32 power modules of the 9395 UPS. This allows great flexibility and the ability to back most of the largest data center power sizes.
“The 9395 transformerless technology allows higher operating efficiencies and smaller footprint which translate into reduced utility costs and space savings. As you move into higher power, the related cost savings are more significant,” added Robredo.
Jai C.S. is a contributing editor for TMCnet. To read more of Jai's articles, please visit his columnist page.Edited by
Michelle Robart