Bitcoin Mining Container - product main image
CCC
CCC
CSA
CSA
CSC
CSC
UL
UL

Bitcoin Mining Container

OEM/ODM compute container for mining-farm owners, hosting operators and equipment brands — prefabricated enclosure, power distribution, air/water-cooling interfaces, network cabling and monitoring in one factory-built, rapidly deployable unit.

Crypto Computing FacilityHigh-Density Compute Equipment Enclosure

Key Metrics

20-53ft
Standard Size
<478 typ.units
Miner Capacity
<1.6MW
Total Power

Product Features

Feature icon

Rapid Deployment

Factory-prefabricated (95%+ complete), plug-and-play on-site.

Feature icon

Rapid Deployment

Factory-prefabricated (95%+ complete), plug-and-play on-site.

Product Details

The product is built on a transportable prefabricated cabin, and the interior can be organised around miner racks, airflow paths, distribution equipment, network equipment and maintenance access. Exact dimensions, floor loading, miner count and environmental class are governed by the project technical documentation.

Cabin structure and equipment layout

Incoming supply, distribution, branch protection, cable routing and operational monitoring interfaces are configured to the miner model and the site supply conditions. Voltage, current, power, component brands, certification and protection ratings are governed by the confirmed technical documentation.

A mining cabin has to weigh equipment heat load, intake and exhaust direction, site climate, noise boundary and maintenance conditions together. Air, water or hybrid cooling is decided against the project boundary, and efficiency, temperature and energy figures follow the reviewed project documentation.

Delivery Scope Options

Scope 1

Bare-Shell Supply (Interfaces Reserved)

The complete container shell, distribution system and cooling system are supplied, with flooring and safety rails, basic temperature and humidity monitoring, CSC plate and transport packing. Miners and miner racks are not included — suited to customers who already hold their mining hardware or prefer to buy it themselves.

Scope Includes:
Complete container shell structure with doors, windows and lighting
Distribution board and main circuit breaker
Cooling fans and ducting, or a water-cooled pipework system
Flooring, safety rails and other safety fittings
Basic temperature and humidity monitoring
CSC plate and transport packing
Scope 1

Bare-Shell Supply (Interfaces Reserved)

The complete container shell, distribution system and cooling system are supplied, with flooring and safety rails, basic temperature and humidity monitoring, CSC plate and transport packing. Miners and miner racks are not included — suited to customers who already hold their mining hardware or prefer to buy it themselves.

Scope Includes:
Complete container shell structure with doors, windows and lighting
Distribution board and main circuit breaker
Cooling fans and ducting, or a water-cooled pipework system
Flooring, safety rails and other safety fittings
Basic temperature and humidity monitoring
CSC plate and transport packing

Specification Comparison

Detailed technical specification comparison to help you choose the most suitable model configuration

Dimensions
6058×2438×2896
mm
Miner capacity (typical, per layout)
154-176
units
Design Power
700
kW
Roof Panel
2.0mm Corrugated Panel
Wall Panel
1.6mm Corrugated Panel
Floor Material
28mm Plywood
Switch Brand
Eaton/Schneider/Noark
Insulation
None (Optional)
Environment
C3/C4/C5
Compatible Miners
S19/S21/M30/M50/M60 Series
Weight (Empty)
~5
tons
CSC Certified
✓ Yes

Product FAQs

The enclosure is built for outdoor sites across temperate, coastal and industrial environments, with the corrosion protection system selected to ISO 12944 class C3, C4 or C5 by site conditions. Ventilation, filtration and the thermal scheme are configured to the ambient temperature and dust load of the site. The operating envelope for a specific project is confirmed in its technical documentation.

Interior layout and interfaces are designed around miner dimensions, power draw, cooling method and service clearance. Figures for miner count, per-unit power, total capacity and cooling capacity are governed by the project technical confirmation documents or the reviewed specification table rather than by a catalogue number.

Air cooling suits ordinary ambient conditions, simpler maintenance and a lower initial outlay; water cooling suits high power density, tighter noise limits and higher ambient temperatures. The choice follows the miner model, per-unit power, ambient temperature and site conditions, and the cooling capacity that results is governed by the project technical confirmation documents or the reviewed specification table.

Lead time depends on the delivery tier and the degree of customisation — a bare shell with reserved interfaces is quicker, a finished cabin carrying more subsystem integration takes longer. The actual lead time, production slot and shipping window are set by the order confirmation, drawing approval and technical agreement; ETENZ does not publish a fixed commitment.

The containerised cabin ships by standard container sea or road freight and is set down by crane or skid depending on the destination. Transport envelope, lifting points, foundation and site conditions are confirmed per project. Responsibility for civil works, external cabling and grid connection is divided in the technical agreement.

Each size corresponds to a different design power. The cabin reserves low-voltage distribution, PDU, earthing and incoming/outgoing interfaces, coordinated against the equipment list and the single-line diagram. Exact voltage, current and capacity figures are governed by the project electrical confirmation documents or the reviewed specification table.

Electrical safety (earthing, protection, distribution), environmental and fire interfaces (temperature and humidity, smoke and fire detection with alarm) and security (access control, CCTV) can be integrated or reserved. Structural design for wind and seismic loading follows the codes and site data for the project location. Supply, certification and acceptance responsibility for the fire system is confirmed within the project scope; the ETENZ scope is enclosure manufacturing and interface integration.

The racking is modular, with tier height and spacing adjustable to different miner dimensions, and the distribution system is laid out so circuit capacity can be reworked. Whether a specific new model fits is checked against its dimensions, power draw and cooling method versus the cabin as built, using the equipment list rather than an assumption.

Routine upkeep is the work a site team does itself: clearing dust from the fans, checking electrical connections and keeping the vents clear. The wear parts are mainly fans, breakers and light fittings. ETENZ supplies the installation manual, equipment list and interface documentation with the cabin so the site can plan its own maintenance and spares; what it costs depends on the operating regime and local labour, and is settled in the project rather than quoted on this page.

Yes — the product is designed for overseas markets, and the container cabin is CSC certified for international shipping and carries its safety approval plate. Voltage adaptation, label and document language, and the paperwork set for the destination are configured to the project and the destination market. Export control, customs clearance and certification responsibility follow the contract and the regulations of the destination country.

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