Sectors

Data centers and critical operations

Where there is zero tolerance for error, the energy structure must be just as precise.

Critical sector context

Context critical to the sector

In these operations, continuity, precision, and infrastructure are fundamental requirements. Every energy decision has direct consequences for service availability.

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1
Non-negotiable availability

Data centers operate under SLAs that require five-nines availability. Downtime is not an option.

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2
Voltage quality and stability

Critical equipment requires a high-quality power supply with minimal fluctuations. The energy must be stable and clean.

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3
Planned scalability

Demand grows with every new rack. Power infrastructure must anticipate that growth without fragility.

Sector priorities

What this type of operation is looking for

Four priorities defining the energy agenda in mining and metallurgy.

Availability
Ensure uninterrupted supply under any market or grid infrastructure conditions.
24/7 continuity
Uninterrupted operation 365 days a year. Maintenance and transitions must occur without affecting the critical load.
Operational risk
Minimize exposure to price fluctuations, regulatory changes, and external supply infrastructure failures.
Growth capacity without fragility
Scale energy infrastructure as installed capacity grows without compromising system stability.
Capability integration

Greater precision, greater backup

Helps structure energy decisions for critical environments with a precise reading of load profiles, redundancies, tariff structures, and exposure to the electricity market. Based on real data, it allows for the design of specific solutions—avoiding generic approaches that increase risk—with specialized technical support, 24/7 monitoring, regulatory management, and continuous optimization to sustain operations.

Related solutions for this sector

Related solutions

Infrastructure and custom solutions

Engineering, procurement, and construction (EPC) for on-site substations and electrical grids. We prepare your plant to scale without interrupting current operations. Full compliance with Grid Code 2.0.

Energy management and support

Continuous energy management with 24/7 monitoring, demand profile optimization, executive reporting, and technical management with regulatory bodies. Permanent on-site operational presence.

Smart metering and operational visibility

Advanced metering and telemetry system for the entire network of sites: a single dashboard with real-time data, alerts, and consolidated executive reports.

Electricity supply is the cornerstone of Mexico's development.
Office Manager
Alfredo Ontiveros
Applied capability

Technical expertise in real-world contexts

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Our capability isn't proven in presentations; it is validated by executed projects, active permits, and ongoing operations. We leverage current regulatory frameworks, operational insight into every context, and technical expertise accumulated in the most demanding sectors of the Mexican market.

+40MW
In operation
+115MW
Contracted
+20
Load centers in operation
7
Exempt power plants under representation
+320
Contracted load centers
Frequently asked questions

Clarity amidst complexity

We answer the most common questions decision-makers face when evaluating a change in energy strategy.
What sets this sector apart from others?
Zero tolerance for downtime and the need for a more precise structure. In a data center or critical operation, power isn't just a utility: it is a condition for business continuity. Here, the conversation starts with availability, backup, and precision, not just cost.
How do you manage the transition to the new framework without disrupting operations?
The transition should not be approached as an abrupt change, but rather as an orderly process that prioritizes continuity, visibility, and control. First, the technical and operational context is reviewed, then a viable roadmap is defined, and only then are the necessary steps coordinated to move forward without losing sight of risks, timelines, and dependencies. The logic is to structure the transition with enough sound judgment to protect operations.
How do you know if your current energy infrastructure can support growth without compromising continuity?
It is not determined solely by installed capacity, but by how the infrastructure responds to expected growth, operational criticality, and the site's actual backup margin. The key is to review whether the current structure can support expansion without introducing fragility, bottlenecks, or loss of continuity. Rather than assuming it is enough, it is better to evaluate when it remains sufficient and when it begins to limit operations.
How do you scale energy infrastructure as computing capacity grows?
Scaling is based on the relationship between future demand, operational criticality, installed capacity, and the site's actual growth margin. The right approach is to anticipate how the load will change, what current limitations exist, and what adjustments will be necessary to avoid shifting risk to the core of your operations.
What should you review before increasing critical load or adding new capacity?
You should review available capacity, actual redundancy, load behavior, points of vulnerability, and the level of support for the new scenario. A proper assessment starts not just with technical growth, but with the site's ability to sustain it with stability.