Bitcoin mining is not only a computing process—it is also one of the most efficient sources of usable heat. By combining hydro-cooling and heat-recovery technologies, we transform Bitcoin miners into high-performance electric boilers that deliver clean, stable, low-carbon heat for residential, commercial, industrial, and district-heating projects.
This blog outlines how we design, engineer, and deploy complete Bitcoin Heating systems—from customized engineering to full project integration.
1. Customized Heating Solutions for Every Project
Each customer has unique heating requirements, local climate conditions, and building layouts. To ensure high performance and >95% thermal efficiency, we provide fully customized heating system designs. Our engineering team delivers a complete end-to-end solution, ensuring that heat is captured efficiently and delivered exactly where it is needed.
To assess your project and design the optimal solution, we require the following information:
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Project Location
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Electrical Infrastructure Setup
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Site Plan
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Other Requirements

2. System Components
A. Racks / Containers

Racks
H Series – Home Heating
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Designed for residential heating + mining. Compact, low-noise, and easy to install
M / N Series – Commercial Heating
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M Series: All-in-one rack integrating CDU + miners
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N Series: Flexible modular system (200–2400 kW), high density, low noise, automated operation
Containers
X / E Series – Industrial Heating
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X Series: Plug-and-play hydro-cooling containers (1–3.6 MW), highly integrated, supports clustered deployment
Skids
E Series – Industrial Heating
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ES Series: Modular skids for fast transportation and quick assembly for large industrial projects
B. Smart Control System (CDU)
We customize the Smart Control System to fit the heating system.

C. Pipe System
We provide all necessary pipes, fully customized to the project layout, using threaded and flange connections for fast, weld-free installation.

D. Dry Cooler (Optional)
A dry cooler can be added if needed, but in most heating projects the radiator system already functions as the miners’ primary cooling system.

3.Deployment Models We Support
A. Integration with Existing Heating Systems
For locations that already have a boiler, heat pump, or district-heating network:
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The hydro-cooled mining system is installed upstream of the existing heat source.
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It can operate as a pre-heater when higher outlet temperatures are required.
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Or it can function as a stand-alone electric boiler during normal operation.
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This increases system redundancy and reduces operational costs.
What we provide:
Our engineers review system layouts, schematics, and operating data to design a complete integration plan. All equipment is manufactured based on customized engineering design
B. New “0 to 1” Heating Projects
For sites without existing heating infrastructure:
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The hydro-cooling mining system operates directly as the primary electric boiler.
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We design the entire hydronic system, including pumps, piping, heat exchangers, and controls.
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Full engineering ensures the system matches your heat-load requirements and operational goals.

Heating System Diagram
4. Main Features of Our Bitcoin Heating System
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>95% Thermal Efficiency — Nearly all electrical energy becomes usable heat.

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Up to 80°C Outlet Temperature — Suitable for residential, commercial, industrial, and district-heating applications.

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Redundant System Design — Continuous operation even if pumps or miners fail.

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High Reliability & Scalability — More stable and easier to expand than gas or electric boilers.
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Powerful Heating Capacity — A 100 kW system can heat ~1,000 m² of insulated space.

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Dual Benefits — Provides heating while generating Bitcoin, turning heating costs into a revenue stream.

5. Application Scenarios
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House Heating

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Commercial Heating

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District Heating

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Greenhouse Heating

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FIsh Farm Heating

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Thermal Desalination

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Agricultural Drying

6. Cases
a. Finland-2.4MW

b. Norway-3.6MW

c. Switzerland Greenhouse-600kW

d. Calgary Greenhouse-100kW

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