A 1.2MW 20ft hydro cooling container supporting up to 210 Antminer hydro miners, featuring advanced water-cooling for stable, high-performance mining.
210-Slot Split-Type Flexible Modular Hydro Cooling Solution
CONTAINER CAPACITY
ASIC MINERS
210 UNITS
Housed at full load
TOTAL POWER
1200 KW
Continuous electrical load
FORM FACTOR
Custom
Standard
COOLING
Hydro
Thermal management
POWER INPUT
380V–415V AC 50/60Hz
AVAILABILITY
Typical lead time 45 days • DDP Sea Shipping Available
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Product Description
The 1.2MW 210-Slot Split-Type Antminer Hydro Mining Container 20FT HQ is a premier liquid cooling solution engineered for high-density Bitcoin mining in crypto mining farms.
Featuring an integrated power distribution system and water circulation control in a compact frame, its split design separates external water cooling units from the chassis to minimize physical footprint.
This modular architecture is ideal for irregular mining farm layouts and allows customizable heat dissipation using dry coolers or cooling towers. Crucially, it excels in long-term scalability, enabling operators to easily upgrade or expand liquid cooling components as BTC mining capacity grows without modifying the core ASIC miner container.
Core Advantages
01. Integrated All-in-One System
Integrates the rack, CDU, power cabinet, and control unit into one container for rapid, plug-and-play deployment.
02. Redundant Dual-Loop Cooling
Features dual loops, dual CDUs, and multi-channel power to ensure continuous, reliable cooling during partial power outages.
03. Individual Power Switches
Equips each miner with an individual switch, enabling safe maintenance on single units without interrupting operations.
04. Leak Detection System
Uses moisture-sensing ropes to instantly detect coolant leaks and trigger alarms, preventing damage and ensuring safety.
05. Premium Engineering Details
Features supplier-certified aviation plugs, reinforced grid panels, and durable 304 stainless steel manifolds with ball valves.
06. Intelligent Management System
Monitors flow rate, pressure, and temperature via multi-sensor arrays, enabling real-time remote control and mobile/PC alerts.
Full Specifications
External dimensions
L:6058mm、W:2438mm、H:2896mm
Internal dimensions
L:5860mm、W:2348mm、H:2720mm
Weight
4980KG
|
Model |
AP-HC20-A210 |
Installed capacity |
210 seat |
|
Installed powerload |
1155 KW |
Power of the light-duty vertical multistage pump |
30 kW |
|
Power of the fluid replenishing pump |
0.2 KW |
Total power of the dry cooling tower fan |
49.8 KW |
|
Total power of the closed cooling tower fan |
16.5 KW |
Total power of the closed cooling tower spray pump |
4 KW |
|
System pipeline pressure |
0.2-0.4 MPA |
Operating temperature range of the system |
22-42 ℃ |
|
Coolant circulation demand of a single machine |
≥0.5 m³/h |
Total demand for circulating coolant within the system |
≥2.2 m³ |
|
Molded Case Circuit Breaker |
125 A |
Residual Current Circuit Breaker |
630 A |
|
Contactor |
9 A |
Intermediate relay |
24 V |
|
CUL certified frequency converter |
380 V |
210-Slot 20FT Antminer Hydro Cooling Container Product Brochure
Complete product specifications, installation guide, and operational instructions.
Certification Standards
Our products meet leading international standards for safety, reliability, and performance.
China Classification Society
Marine & offshore compliance
UL Listed
Safety tested & certified
CSA Certified
North American compliance
CE Marking
European conformity
Recommended Power Setup
Match your container deployment with the appropriate transformer capacity.
For 1 × Container
1500 kVA Three-Phase Pad-Mounted Transformer
For 2 × Containers
3000 kVA Three-Phase Pad-Mounted Transformer
Need help sizing your transformer?
Our engineers will recommend the right transformer based on your site conditions and power requirements.
Complete Cooling Solutions
We design and manufacture a complete range of hydro cooling solutions for every scale, from hydro cooling cabinets and containers to CDUs and dry coolers.
|
❄️ Cooling Capacity |
|
⚙️ Miner Slots |
|
📏 Dimensions (L × W × H) |
|
🏢 Application |
Compare
210-Slot 20FT Antminer Hydro Container
|
1.2 MW |
|
210 Slots |
|
6058 × 2438 × 2896 mm |
|
Flexible Space & Modular Layouts |
210-Slot 40FT Antminer Hydro Container
|
1.2 MW |
|
210 Slots |
|
12192× 2438 × 2896 mm |
|
Turnkey Commercial Mining |
308-Slot Antminer Hydro Container
|
1.7 MW |
|
308 Slots |
|
12192 × 2438 × 2896 mm |
|
Industrial-Scale Operations |
420-Slot Antminer Hydro Container
|
2.4 MW |
|
420 Slots |
|
12192 × 2438 × 2896 mm |
|
Mega-Scale Mining Facilities |
Real Results from Real Miners
View All >>
Abu Dhabi, United Arab Emirates
12 x 1.2MW Hydro Project
Achieving water-free sustainable mining in dry desert climates.
+28%
Efficiency Gain
-23%
Energy Cost
1.2M USD
Energy Cost
Calgary, Canada
8 x 1.2MW Hydro Project
Sustaining consistent thermal performance during freezing winter seasons.
+100%
On-Time Startup
-25%
Setup Time
99.8%
System Reliability
“
"Abu Dhabi’s strict water regulations prohibited wet cooling towers. This modular split container allowed us to deploy dry coolers easily, ensuring compliant, highly efficient operations in the desert."
— VP of Infrastructure, Abu Dhabi Green Mining
"Operating in the freezing winters of Calgary was our biggest concern, but this split system handled the cold climate smoothly. It kept our chip temperatures highly balanced and stable throughout the season."
— O&M Director, Calgary Mining Site, Canada
Global Deployment
1.2+ GW
Cumulative delivered cooling capacity
Serving Mining Sites
50+
Countries and regions covered
210-Slot Antminer Hydro Cooling Container FAQs
Can this 20FT container support up to 210 Antminer Hydro miners?
Yes. The container provides 210 dedicated miner positions and is designed as a 1.2MW-class Hydro mining system for compatible Antminer Hydro miners.
The final full-load configuration is matched to the exact miner model and operating power before deployment, ensuring the total electrical and cooling load remains within the system design capacity.
Why choose a split-type 20FT container instead of a fully integrated cooling container?
The split design keeps the mining racks, power distribution, CDU, and controls inside the compact 20FT container while placing the final heat-rejection equipment outside.
This reduces the main container footprint and gives operators more freedom to position dry coolers or cooling towers according to the actual site layout. It also makes future cooling upgrades easier without rebuilding the miner container.
What should be prepared on site before the container arrives?
The main requirements are sufficient 380–415V three-phase electrical capacity, a suitable foundation for the container and external cooling equipment, clear routing for cooling pipes and electrical connections, and network access for system monitoring.
Planning these items before delivery helps reduce on-site construction work and speeds up commissioning.
What happens if one cooling loop or pump has a problem?
The system uses dual cooling loops, dual CDUs, and multi-channel power architecture to provide cooling redundancy.
This design reduces the risk that a single cooling-side failure will stop the entire 210-miner deployment and improves serviceability for continuous mining operations.
Can one miner be serviced without shutting down the entire container?
Yes. Each miner position has an individual power switch, allowing a single miner to be powered down for inspection, replacement, or maintenance without stopping the other operating miners.
This is especially important in a 210-miner container because routine miner maintenance does not need to become container-wide downtime.
How does the system detect and respond to coolant leaks?
Moisture-sensing ropes are installed to detect coolant leakage and trigger an alarm when abnormal moisture is detected.
The intelligent control system also monitors coolant flow, pressure, and temperature, allowing operators to identify cooling abnormalities remotely before they develop into larger system problems.
Does a 1.2MW mining container mean the site only needs 1.2MW of electrical capacity?
No. Site electrical planning should include the miner load plus the cooling and auxiliary equipment.
The container uses circulation pumps, controls, and external heat-rejection equipment. Auxiliary power requirements also differ between dry-cooler and cooling-tower configurations, so the complete site electrical capacity should be calculated before deployment.
Can the cooling system be upgraded if the mining farm expands later?
Yes. This is one of the main advantages of the split-type architecture.
The external heat-rejection system is separated from the core mining container, so cooling capacity can be expanded, replaced, or reorganized as the mining farm grows without replacing the complete miner container. This makes the system suitable for phased MW-scale expansion.
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