Power continuity
Ride-through during outages and transfer to standby generation.
Uninterruptible power
Online uninterruptible power for server rooms, Data Centers, telecommunications and industrial processes. We select the architecture for load, autonomy, redundancy and expansion plans.

Technology for critical infrastructure
A UPS maintains critical loads during utility failure and conditions the power supplied to sensitive equipment. The correct system must be sized from actual active and apparent power, load characteristics and growth reserve.
Battery autonomy, bypass arrangement, generator cooperation, monitoring and maintenance access are part of the architecture, not accessories selected afterwards.
Ride-through during outages and transfer to standby generation.
Stable supply for sensitive IT and critical equipment.
Load, batteries, operating states and alarms available for supervision.
Parallel and modular arrangements can increase system availability.
Solution families
The final configuration is confirmed after reviewing capacity, installation conditions, required availability and future expansion.

Rack UPS, single- and three-phase
Online systems for standard IT racks, from individual cabinets to larger server-room loads.

Tower UPS
Floor-standing online systems for technical rooms, automation and centralized critical loads.

Rack-modular UPS
Scalable modular protection for server rooms and Data Centers with compact high-density power modules.

Tower-modular UPS
Free-standing modular architecture for high power, staged expansion and high availability.
Applications
Equipment selection should reflect the consequences of downtime, site conditions, service strategy and the expected development of the IT load.
Describe your project →Protection for servers, storage, networks and management systems.
Power continuity for distributed network nodes.
Stable supply for controls and process communication.
Backup for surveillance, access and alarm infrastructure.

Selection criteria
Active and apparent power, power factor, inrush current and load type.
Required runtime until shutdown, generator start or utility recovery.
N, N+1 or parallel architecture, bypass and maintenance strategy.
Input supply, space, ventilation, battery location and future expansion.
Technical documentation
The catalog presents available product families, configurations and technical data. Final selection should be confirmed for the specific project and installation conditions.
Frequently asked questions
Sizing must use measured or reliably calculated load, power factor, transient demand and planned reserve.
From the protected load, required autonomy, battery technology, environmental conditions and ageing reserve.
When capacity growth, module-level redundancy or easier maintenance is important.
Yes, but input characteristics, generator sizing and control settings must be coordinated.
Yes. Communication and integration options depend on the selected model and accessories.
Request a consultation
Send the available project data. We will identify the information required to prepare an appropriate configuration.