
SQM Series Immersion Liquid Cooling System
Energy-saving Immersion Thermal Control for AI Computing, HPC and Edge Data Nodes
1. Product Overview
Our SQM series immersion liquid cooling system consists of a main liquid cooling unit and dedicated immersion server cabinets. The main unit integrates coolant circulation pumps, heat exchangers, precision filters, intelligent controllers and full sets of sensing components to form a closed circulating heat exchange loop.
Featuring low-noise vibration damping, chemically stable dielectric coolant, simplified low-failure structure and outstanding energy-saving performance, it greatly cuts cooling power consumption and optimizes data center PUE. It is ideal for hyperscale IDCs, HPC centers, dense AI GPU clusters and 5G edge computing nodes, and supports seamless integration with UPS power supply and central monitoring platforms to unify power protection and thermal management for compute hardware.
2. Core Competitive Advantages
2.1 Integrated Closed-loop Design Simplifies On-site Deployment
All core hydraulic, filtration, control and sensing modules are pre-assembled inside the main unit. It can be delivered as a full solution paired with immersion cabinets without abundant peripheral accessories, cutting on-site piping work and shortening project implementation lead time.
2.2 Vibration & Noise Reduction for Better Working Environment
Optimized damping and acoustic structure eliminates harsh fan noise generated by traditional air-cooled server racks. It lowers extra investment on sound insulation renovation and creates a quieter environment for on-site operation teams.
2.3 Safe Dielectric Coolant Options
It is compatible with mainstream immersion coolants including mineral oil, silicone oil and synthetic fluid. These insulating coolants feature stable chemical properties, protecting server motherboards, GPUs and power components from electric leakage and corrosion during long-term submerged operation.
2.4 Simplified Architecture Reduces Failure Rate & Maintenance Workload
Streamlined component layout lowers potential fault points. The built-in precision filter continuously purifies circulating coolant to slow fluid aging and pipeline scaling, extending maintenance intervals and cutting long-term servicing costs.
2.5 Superior Heat Transfer Efficiency for Green Data Center Compliance
Direct liquid immersion heat exchange delivers far higher cooling efficiency than conventional air cooling, effectively lowering overall PUE and helping hyperscale and HPC facilities meet global carbon reduction and green certification standards.
All operation metrics of every unit under the SQM series immersion liquid cooling system can be synced to your unified UPS and data center O&M dashboard.
3. Target Application Scenarios
● Hyperscale cloud data centers
● High Performance Computing (HPC) supercomputer centers
● Dense AI GPU server clusters
● Edge computing hubs and 5G edge compute nodes
4. Specification Table
Model Group 1
| SQM Model | 13004 | 13006 | 13010 | 21010 | 21020 | 21040 | 21060 |
|---|---|---|---|---|---|---|---|
| Heat Exchange Capacity (kW) | 4 | 6 | 10 | 10 | 20 | 40 | 60 |
| Available Rack U Slots | 13 | 13 | 13 | 21 | 21 | 21 | 21 |
| Pipe Connection Size | DN25 | DN25 | DN32 | DN32 | DN40 | DN50 | DN50 |
| Coolant Type | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil |
| Design Inlet/Outlet Temp (℃) | 40/50 | 40/50 | 40/50 | 40/50 | 40/50 | 40/50 | 40/50 |
| Dimension (mm) | 1200×800×1250 | 1200×800×1250 | 1200×800×1250 | 1200×800×1250 | 1500×800×1250 | 1500×800×1250 | 1500×800×1250 |
| Unit Weight (KG) | 245 | 245 | 245 | 350 | 350 | 350 | 350 |
| Power Supply | 1-220V/50HZ | 1-220V/50HZ | 1-220V/50HZ | 3-380V/50HZ | 3-380V/50HZ | 3-380V/50HZ | 3-380V/50HZ |
Model Group 2
| SQM Model | 21040S | 21060S | 42100S | 42120S | 42150S |
|---|---|---|---|---|---|
| Heat Exchange Capacity (kW) | 40 | 60 | 100 | 120 | 150 |
| Available Rack U Slots | 21 | 21 | 42 | 42 | 42 |
| Pipe Connection Size | DN50 | DN50 | DN65 | DN80 | DN100 |
| Coolant Type | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil | Mineral oil / Silicone oil / Synthetic oil |
| Design Inlet/Outlet Temp (℃) | 40/50 | 40/50 | 40/50 | 40/50 | 40/50 |
| Dimension (mm) | 1500×800×1250 | 1500×800×1250 | 2400×800×1250 | 2400×800×1250 | 2400×800×1250 |
| Unit Weight (KG) | 360 | 360 | 780 | 780 | 780 |
| Power Supply | 3-380V/50HZ | 3-380V/50HZ | 3-380V/50HZ | 3-380V/50HZ | 3-380V/50HZ |
5. Tangible Business Benefits for Global Clients
1.Removes thermal bottlenecks for high-density compute workloads, enabling GPUs and HPC hardware to run at full load steadily without thermal throttling or unexpected downtime
2.Dramatically cuts cooling power draw and PUE to reduce annual electricity cost and meet international data center energy audit requirements
3.Low operating noise reduces investment in acoustic treatment and improves on-site working conditions
4.Coolant isolates dust and moisture to slow aging of servers and UPS peripherals, extending overall IT asset lifecycle
5.Low fault frequency plus remote alarm monitoring minimizes on-site technician workload
6.Broad capacity options cover edge compute sites and large HPC campuses, supporting parallel multi-unit expansion
For cross-border distributed AI computing infrastructure, the standardized SQM series immersion liquid cooling system unifies thermal control architecture across multiple global sites.
6. FAQ
Q1: Can this immersion cooling system integrate with mainstream UPS brands and data center monitoring platforms?
A: Standard industrial communication interfaces are reserved for linkage with mainstream UPS units and centralized O&M systems when you deploy the SQM series immersion liquid cooling system.
Q2: What coolant types are supported for global project deployment?
A: The system works with globally approved dielectric fluids including mineral oil, silicone oil and synthetic immersion coolant to satisfy regional environmental regulations.
Q3: Is parallel expansion available for growing compute capacity?
A: Yes, multiple units can be connected in parallel to scale cooling capacity alongside the expansion of server racks and GPU clusters.
Q4: Is this solution suitable for remote edge 5G compute nodes?
A: Compact low-maintenance models are optimized for unattended edge nodes with limited on-site technical support.
7. Inquiry Guidance
This product page cannot process form submission directly. Please navigate to our dedicated FEEDBACK page to submit project details for free model selection, piping layout design, PUE calculation and formal quotation.
Information to prepare before submission:
1.Your full name
2.Company name
3.Project country and exact location
4.Facility type: hyperscale IDC / HPC center / AI compute cluster / edge 5G node
5.Rack U quantity and total compute power density
6.Whether you need integrated UPS & environment monitoring solution
7.Other special technical requirements
Navigation Tip: Click FEEDBACK on top navigation bar to open the inquiry form.
Note: All submitted project data is strictly confidential, our technical sales team will reply within 1 working day.
Contact: Frank Zhang
Phone: +86-135 5688 8641
Email: frank@upsboss.com
Add: Jufeng Road, Guangming Street, Guangming District, Shenzhen City, Guangdong Province, China
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