Free tool

Data Center PUE Calculator

Work out your data center’s power usage effectiveness (PUE), DCiE, annual energy, electricity cost and CO₂, see what a lower PUE would save, and compare your site with published limits and benchmarks.

Average power over a year
Cost, carbon and target

The values filled in are an illustrative example, not data for any real site. Nothing you enter is stored.

Your PUE

1.52

Slightly better than the 1.54 industry average, but above Germany’s 1.5 limit for existing sites from July 2027.

65.8%DCiE (share of energy reaching IT)
13,315Facility energy, MWh a year
4,555Non-IT (overhead) energy, MWh a year
$1,331,520Electricity cost a year
$455,520Of which overhead
5,326Tonnes CO₂ a year

At your target PUE 1.30

  • 1,927 MWh a year less
  • $192,720 a year saved
  • 771 tonnes CO₂ a year avoided

Where the overhead goes (share of total power)

  • Cooling25.0%
  • Power losses6.6%
  • Other2.6%

Results: DC Market Insights model. PUE = total facility power ÷ IT power, over 8,760 hours a year.

How your PUE compares

Published averages, company figures and legal limits. Shorter bars are better (scale 1.0 to 2.0).

  • Your facilityFrom the calculator above1.52
  • Google global fleet, 2025 averageSource: Google1.09
  • Germany: new data centres from July 2026 (EnEfG)Source: White & Case≤ 1.20
  • China: national hub node projects, end-2025 targetSource: gov.cn≤ 1.20
  • China: new and expanded large data centres, end-2025 targetSource: gov.cn≤ 1.25
  • Singapore roadmap: all data centres within 10 years (at 100% IT load)Source: Mayer Brown≤ 1.30
  • Germany: existing data centres from July 2027 (EnEfG)Source: White & Case≤ 1.50
  • Industry average, Uptime Institute 2025 survey (as cited by Google)Source: Google1.54

Germany: a draft amendment published in April 2026 would relax these limits (to 1.3 for new and 1.6/1.4 for existing sites); it had not been adopted when we checked. China: the same plan targets a national average below 1.5 by end-2025; the average was 1.48 at the end of the previous plan (Carbon Brief). Checked 7 Oct 2026.

How PUE is calculated

PUE = total facility energy ÷ IT equipment energy

DCiE = 1 ÷ PUE × 100%

  • PUE is standardised in ISO/IEC 30134-2 (2026 edition).
  • Use a full year of metered energy. Seasonal weather changes cooling load, so a single day or a design value can mislead.
  • A PUE of 1.0 would mean every kWh reaches IT; real sites are always above it.
  • PUE does not measure how efficiently the IT itself works, nor water use or carbon intensity.

Where operators usually look first

  • Airflow: hot or cold aisle containment, blanking panels, sealed cable cut-outs
  • Supply temperature: run as warm as the IT equipment allows
  • Free cooling (economisers) where the climate allows
  • Power chain: UPS efficiency modes, right-sized transformers and UPS
  • Liquid cooling for dense AI and HPC racks
  • Sub-metering, so each part of the overhead can be tracked

Questions

What is PUE?

Power usage effectiveness is the total energy a data center uses divided by the energy that reaches the IT equipment (servers, storage and network). A PUE of 1.5 means that for every 1 kWh used by IT, another 0.5 kWh goes to cooling, power conversion losses, lighting and other facility loads. The metric is standardised in ISO/IEC 30134-2.

What is a good PUE?

The industry average in the Uptime Institute 2025 survey was 1.54 (as cited by Google). Google reports 1.09 for its global fleet in 2025. Germany requires 1.2 or lower for new data centres starting operation from July 2026, and Singapore’s roadmap targets 1.3 or lower for all data centres within ten years.

What is DCiE?

Data center infrastructure efficiency is the inverse of PUE, shown as a percentage: the share of total energy that reaches IT equipment. A PUE of 1.5 equals a DCiE of about 67%.

Which numbers should I enter?

Use average power over a full year in kW, or annual energy divided by 8,760 hours. Measure IT load at the output of the UPS or power distribution units, and include all cooling, power losses (transformers, UPS, distribution) and other building loads. A single moment or a design figure will give a different PUE than a year of metered data.

Is my data stored?

No. The calculation runs in your browser, or on our server only to show the page when JavaScript is off. Nothing you enter is saved.

Want a number you can defend?

Our analysts can benchmark a site or a portfolio and size the savings from cooling and power-chain upgrades.

Ask for an efficiency assessment