Built for Viksit Bharat 2047

India generates about a fifth of the world’s data and holds roughly three per cent of its data centre capacity. Every facility we design is one correction to that ratio — measured, not asserted.

3% of global capacity

India’s share, against about 20% of the world’s data generated here.

1.4PUE or better

Our design target on new builds, measured annualised to the IS/ISO/IEC 30134 series.

4metrics, not one

PUE, CUE, WUE and CER reported together, because a good number in one can be bought with a bad one in another.

0data leaves site

DCIM, analytics and AI run inside your perimeter, under the DPDP Act, 2023.

Container data centres, deployed where the load is

A prefabricated, factory-tested data centre module that arrives on site with power, cooling, fire protection and monitoring already integrated. It suits edge sites, phased capacity and projects where a conventional build would take too long.

Cutaway of a container data centre A shipping-container-sized module divided into a power zone with UPS and batteries, a row of four IT racks, and a cooling unit. Cold air is supplied along the floor to the racks and hot air returns along the ceiling to the cooling unit. Fire detection DCIM sensors Precision cooling UPS + batteries POWER IT RACKS · 4 x SHOWN COOLING
Illustrative cutaway. Cold air is supplied along the floor, hot air returns overhead, and every zone reports to DCIM.

Faster to live

Civil work on site runs in parallel with fabrication and testing in the factory, so the facility reaches commissioning sooner than a traditional fit-out.

Scales in steps

Start with the capacity you need today and add modules as load grows, instead of building and cooling space you will not use for years.

Integrated plant

UPS, distribution, precision cooling, containment, fire detection and access control are designed as one system and tested together before dispatch.

Observable from day one

Every module ships with sensors and DCIM telemetry, so power, temperature and airflow are visible from the first workload, on-site or remote.

Try the change on the twin first

Our DCIM keeps a live digital twin of the facility, from rack layout to the power chain and airflow. Test an addition, a move or a failure on the model and see the effect before anyone touches the floor.

  • Rack, power and cooling layout in one model, kept in sync with live telemetry
  • Simulate additions, moves and equipment failures before you commit
  • Find stranded capacity and thermal hotspots early
  • Runs inside your perimeter with the rest of the DCIM
Digital twin of a data hall running a what-if simulation A top-down heat map of two rows of racks with two cooling units. A hotspot glows around one rack. A side panel shows the simulated effect of adding a new 8 kilowatt rack: power headroom is fine, cooling capacity is tight, and inlet temperature at one rack becomes a hotspot. DATA HALL A Live Simulate ROW AROW B NEW ! B-04 hotspot CRAC 1 CRAC 2 CoolHotIllustrative WHAT-IF Add 1 rack, 8 kWRow B, slot 5 Power headroom OK Cooling capacity Tight Inlet, B-04 Hotspot SuggestionRow A, slot 2 fits
Illustrative what-if run on a digital twin. Values are examples, not measurements.
Sovereign AI running inside your perimeter Telemetry, camera feeds and tickets flow into an open-weight model that runs inside a dashed perimeter on your own servers. Answers, predictions and actions flow out. A connection to a third-party AI API outside the perimeter is blocked. Third-party AI API YOUR PERIMETER · ON-PREM / EDGE Telemetry power, cooling, IoT Camera feeds video analytics Tickets, runbooks helpdesk history OPEN-WEIGHT MODEL runs on your GPUs Answers plain-language Predictions failure, capacity Actions tickets, alerts No prompts, telemetry or video leave the site
Illustrative architecture. The model, its inputs and its outputs all stay inside your perimeter.

AI that reads your operations without leaving your site

Open-weight models deployed on your own servers or at the edge, so telemetry, camera feeds and tickets are never sent to a third-party API.

  • Runs on your servers or at the edge, and can run fully air-gapped
  • Open-weight models you can inspect, tune and replace
  • Grounded in your own telemetry, runbooks and ticket history
  • Keeps personal and operational data on site, which supports DPDP Act, 2023 obligations

Three layers, one system

Connectivity on its own produces data. What changes an operation is the loop from sensing to understanding to acting, and each layer of that loop has to be engineered.

AI

Models that read patterns in telemetry, predict where a component is heading and give an operator a decision instead of another alarm.

IoT

Sensors, gateways and edge nodes that let the physical plant report itself: temperature, humidity, current, airflow, door state, water.

Data centre

The compute, power, cooling and connectivity underneath it all, designed to a tier target and commissioned to prove it.

How an engagement runs

Most clients come to us at one of three points. You can enter at any of them and stop at any of them.

Design

Master planning for a new facility, or a gap analysis of the one you already run. We size for the load you will have, not the load you have today.

  • Capacity and load modelling
  • Electrical and mechanical design
  • Network and security architecture
  • Cooling and power strategy
  • Tier-aligned resilience planning
  • DCIM and monitoring architecture

Build

Fit-out and commissioning of the active and passive layers, tested to the design intent before a single production workload lands.

  • UPS, DG, PDU and distribution
  • Precision cooling and containment
  • Racks, cabling and structured network
  • Fire detection and suppression
  • Access control and physical security
  • Integrated systems testing

Operate

Round-the-clock monitoring, preventive maintenance and the people to run it, measured against an SLA you can audit.

  • 24×7 remote monitoring
  • Preventive and predictive maintenance
  • Incident and change management
  • AMC for active and passive plant
  • Helpdesk and field support
  • Monthly efficiency reporting

Products, engineered in India

Four systems that run inside your own perimeter. Each is available on its own or as an integrated stack.

DCIM

Real-time power, cooling and space telemetry across every rack, with a 5D digital twin you can simulate against before you move a single cable.

Product details

VMS and Video Analytics

Centralised recording, playback and live view for every camera on site, with analytics that flag the events worth a human looking at.

Product details

Helpdesk

One queue for incidents, service requests and preventive maintenance, with SLA clocks that hold both your team and your vendors to the contract.

Product details

Sovereign AI

Open-weight models deployed inside your perimeter, so sensitive operational data is never sent to a third-party API.

Product details

Do the sizing before the sales call

Thirteen calculators for the numbers that decide a project: PUE, UPS and generator sizing, battery autonomy, cooling load, rack count, video storage, energy cost and carbon. They run in your browser and nothing is sent anywhere.

PUE and efficiency

Check where a facility sits against its own overhead, and what a point of improvement is worth per year.

Sizing

UPS, generator, battery autonomy, cooling tonnage and rack count from the load you expect to carry.

Organisations we work with

Deployments across enterprise, public sector and critical infrastructure.

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Common questions

What does anomny actually do?

We take a data centre from a blank site or an existing room through design, construction and commissioning, then operate it under an SLA. Alongside that we build the software that makes the facility observable: DCIM, video analytics, helpdesk and self-hosted AI.

Do you work on existing data centres or only new builds?

Both. A large share of our work is gap analysis on live facilities, where we audit power, cooling, capacity and monitoring, then stage the remediation so the site keeps running throughout.

Is the software hosted by you or by us?

By you. Every anomny product is designed to run inside your own perimeter, on your servers or at the edge. That matters for operational telemetry, camera feeds and anything subject to data residency rules.

What does a typical engagement look like?

Most start with a two to four week assessment covering load, thermal behaviour, single points of failure and monitoring coverage. You get a findings report and a costed roadmap, and you are free to take it elsewhere.

Which regions do you cover?

We deliver across India, with products designed and manufactured here. Remote monitoring and managed services run 24x7; field response is scheduled against the SLA agreed for each site.

What we design against

The frameworks that shape an Indian facility today, and the ones arriving next.

  • IS/ISO/IEC 30134 — PUE, CUE, WUE, CER
  • BIS — cloud and data centre standards, 2026
  • BEE — notified building codes
  • DPDP Act, 2023 — personal data handling
  • State DC policies — incentives and obligations
  • Uptime tier intent — commissioned to prove it

Detail, sources and our position on each: Viksit Bharat 2047.

Tell us what you are building

Send a brief, a floor plan or a single-line diagram. We reply with an approach, a rough capacity envelope and an honest view of what it takes to run.