ENERGY / 01

Continuity when power cannot fail.

We design backup architectures that protect critical loads from outages, variations and grid events by integrating UPS, batteries, bypass, redundancy, monitoring and operations.

UTILITY
USDUPSCONTINUITY
CRITICAL LOAD
BATTERY BANK
MONITORING● ONLINE
CONTINUITY AS ARCHITECTURE
We do not select a UPS from a catalog. We design continuity around the load, required runtime, operational risk and the way the facility must recover from a failure.
POWER BACKUP SYSTEM

More than a UPS.

Continuity depends on how power, batteries, redundancy, distribution, monitoring and maintenance work together.

01

UPS

Single- and three-phase topologies for IT, telecom, control, security, industrial and mission-critical loads.

Online double conversionLine-interactive where appropriateSingle- and three-phaseScalability and parallel operation
02

Runtime & Batteries

Battery-bank sizing based on actual power, runtime, temperature, aging and maintenance strategy.

VRLALithium where appropriateExternal battery banksBattery monitoring
03

Redundancy & Bypass

N, N+1 or redundant architectures, maintenance bypass and transfer schemes to preserve continuity during faults or service.

N / N+1Static bypassMaintenance bypassTransfer and distribution
04

Monitoring

Visibility into status, load, runtime, batteries, alarms and events so backup becomes part of operations.

SNMP / networkAlarms and eventsBMS/NOC integrationHistory and trends
05

Maintenance

Testing, inspection, batteries, cleaning, firmware and preventive maintenance so the architecture is available when it is truly needed.

PreventiveCorrectiveRuntime testingPlanned replacement
06

Electrical Integration

Protection, switchboards, conductors, distribution, grounding and coordination with generation or transfer so the UPS works as part of the complete system.

ProtectionCritical distributionGroundingGeneration and transfer
DESIGN BEFORE PRODUCT

The right question is not “which UPS should I buy?”

First we need to understand what must remain operating, how much it consumes, how long it must be sustained, the quality of incoming power and what happens when utility power returns.

  1. 01Which loads are truly critical?
  2. 02What is actual power and expected growth?
  3. 03How much runtime does operations require?
  4. 04Is there a generator and how long does transfer take?
  5. 05Is N+1 or maintenance tolerance required?
  6. 06How will the system be monitored?
USD METHOD

We design backup from the load backward.

01Load inventory
02Measurement and profile
03Criticality and runtime
04Architecture and selectivity
05Integration and implementation
06Testing, monitoring and maintenance
CRITICAL APPLICATIONS

Where continuity changes the outcome.

01Data centers and IT rooms
02Telecommunications and networks
03Industrial automation and control
04CCTV, access and critical systems
05Government infrastructure
06Oil & Gas operations
TECHNOLOGY / PRODUCTS

Technology selected around the project.

We can integrate different UPS manufacturers and families according to capacity, topology, runtime, availability, support and facility requirements. Brands that can form part of a solution include CyberPower, APC by Schneider Electric and Eaton.

CyberPowerAPC by Schneider ElectricEaton
DEEP DIVE / UPS
ENERGY / POWER BACKUP / UPS

Explore the UPS layer.

Explore topologies, sizing criteria, brands, equipment families and published products to build the right backup architecture for each project.

Explore UPS ↗
CONNECTED CONTENT

A solution connected to the rest of the organism.

Projects, industries, knowledge, technologies and documents appear here as they are connected in the CMS.

NEXT LEVEL / POWER CONTINUITY

Let’s assess what must stay powered.

We can start with your current load, drawings, bills, equipment inventory or a technical visit. From there we define capacity, runtime, architecture and redundancy level.