1.2MW 210-Slot Integrated Antminer Hydro Mining Container (40HQ)
This hydro mining container is an all-in-one solution with an integrated closed cooling tower, supporting up to 210 Antminer S19/S21/S23 series hydro miners for stable Bitcoin mining.
$64,000.00
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210-Slot One-Stop Fully Integrated "Plug-and-Play" Container Solution
CONTAINER CAPACITY
210 UNITS
Housed at full load
1200 KW
Continuous electrical load
Custom
Standard
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 Integrated Antminer Hydro Mining Container 40FT HQ features a built-in, high-efficiency closed-loop cooling tower, integrating power distribution and water cooling circulation control within a single, unified frame for turnkey Bitcoin mining deployment.
This all-in-one liquid cooling system offers a streamlined plug-and-play experience, requiring only level placement, main power hookup, and a quick water top-off to begin operating a high-density crypto mining farm.
Its factory-calibrated and sealed cooling loop is designed to ensure maximum water-loop integrity and consistent thermal performance under load, making it a highly reliable, low-maintenance, and rapid-deployment mining infrastructure solution for megawatt-scale BTC mining sites.
Core Advantages
01. Integrated All-in-One System
Integrates the rack, CDU, power cabinet, control unit, and closed-loop cooling tower into a single container for rapid on-site setup, minimizing deployment time and civil costs.
02. In-House Precision & Fittings
Manufactured in our own factory with strict quality control, utilizing genuine, factory-original connectors and aviation plugs alongside premium hoses to ensure maximum pressure resistance and durability.
03. Advanced CDU & Leak Detection
The integrated CDU houses high-volume pumps, plate heat exchangers, expansion tanks, and built-in leak detection sensors, delivering high-performance circulation with instant safety monitoring.
04. Individual Power Switches
Every miner slot is equipped with an independent power switch and breaker, allowing for safe, hot-swappable maintenance on single units without disrupting the overall mining container’s operation.
05. Intelligent Management System
Monitors flow rates, pressure, temperatures, and PUE in real-time, enabling automated malfunction alerts, precise system self-regulation, and convenient remote control via mobile or PC applications.
06.Built-In Closed-Loop Tower
The built-in closed-loop cooling tower supports dry-wet hybrid operation, switching from wet evaporative cooling to prevent summer downclocking to waterless dry cooling for winter freezing protection.
Full Specifications
External dimensions
L:12192mm、W:2438mm、H:2896mm
Internal dimensions
L:12000mm、W:2230mm、H:2660mm
Weight
10500KG
|
Model |
AP-HC40-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 |
-- |
|
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 |
-- |
Residual Current Circuit Breaker |
630 A |
|
Contactor |
9 A |
Intermediate relay |
24 V |
|
CUL certified frequency converter |
380 V |
210-Slot 40FT Antminer Integrated 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
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 40FT Antminer Hydro Container
|
1.2 MW |
|
210 Slots |
|
1,2192× 2,438 × 2,896 mm |
|
Turnkey Commercial Mining |
210-Slot 20FT Antminer Hydro Container
|
1.2 MW |
|
210 Slots |
|
6,058 × 2,438 × 2,986 mm |
|
Flexible Space & Modular Layouts |
240-Slot Antminer Hydro Container
|
1.4 MW |
|
240 Slots |
|
6,058 × 2,438 × 2,986 mm |
|
Mid-to-Large Mining Farms |
308-Slot Antminer Hydro Container
|
1.7 MW |
|
308 Slots |
|
1,2192 × 2,438 × 2,896 mm |
|
Industrial-Scale Operations |
Real Results from Real Miners
View All >>
4 x 1.2MW Hydro Project
Sustaining peak hashrates using built-in closed-loop towers.
+32%
Cooling Efficiency
-25%
Cooling Power Draw
$1.5M
Annual Savings
View All >>
10 x 1.2MW Hydro Project
Eliminating external tower installation with integrated closed-loops.
+100%
Water-Loop Integrity
-40%
On-site Civil Costs
99.9%
Thermal Reliability
View All >>
“
"Having the closed-loop cooling tower pre-installed saved us massive civil engineering and pipe-welding costs. We dropped the container, hooked up water and power, and were immediately mining without any plumbing hassles."
— VP of Operations, Texas Mining Facility
"Deploying in remote areas of Chile made on-site engineering very difficult. This integrated closed-loop container eliminated any need for external tower installation, letting us start mining with zero plumbing hassles."
— Infrastructure Lead, Santiago Mining Site, Chile
1.2+ GW
Cumulative delivered cooling capacity
50+
Countries and regions covered
210-Slot Integrated Antminer Hydro Cooling Container FAQs
The cooling tower, CDU, mining racks, power distribution, and control system are integrated into one container and factory-tested before shipment.
This reduces external piping, on-site welding, cooling-tower installation, and commissioning work, making megawatt-scale Hydro mining deployment more standardized and easier to manage.
Most of the cooling circulation, electrical distribution, controls, and heat-rejection equipment are already assembled and configured before delivery.
Once the site foundation, main power, water supply, and network are ready, the amount of field construction is significantly reduced compared with a system that requires a separate cooling tower and extensive external piping.
The miner cooling loop remains isolated from the external air and spray-water circuit.
This helps prevent dust, minerals, and other external contaminants from entering the miner-side coolant loop, reducing scaling and corrosion risks and helping maintain consistent heat-transfer performance over long-term operation.
The system combines redundant circulation design with real-time monitoring of temperature, flow, pressure, and coolant leakage.
Moisture-sensing ropes and automated alarms help operators detect abnormal conditions quickly, while system protection functions can respond before a localized cooling problem develops into a larger container-level issue.
The integrated tower can use different heat-rejection modes according to ambient conditions.
During hot weather, wet evaporative cooling provides additional heat-rejection capacity to help maintain stable miner operation. In cooler conditions, the system can rely more on dry cooling, reducing water consumption and improving cold-weather operation.
Not at the same rate under all operating conditions.
The miner-side coolant remains in a closed circulation loop. Water consumption mainly comes from the evaporative cooling section when wet mode is required. During cooler periods, greater use of dry operation can reduce make-up water demand.
The most important factors are local maximum and minimum temperatures, water availability and quality, site electrical capacity, foundation conditions, and sufficient clearance around the cooling-tower air intake and discharge areas.
Because the cooling tower is already integrated into the container, these site conditions are more important than designing a separate external cooling system after delivery.
It is particularly suitable when reducing on-site engineering work, shortening deployment time, and keeping the cooling system standardized are major priorities.
For remote sites, projects with limited local installation capability, or operators deploying multiple identical mining units, the factory-integrated architecture can simplify replication and reduce the amount of cooling infrastructure that must be built separately at each deployment.
