3M8000 series liquid-cooled load bank cabinet with coolant hose connections3M8000 Series / Liquid-Cooled Load

3M8000 Series / Liquid-Cooled Load

3M8000 Series Liquid-Cooled Load Bank

An innovative liquid cooling solution delivering ultra-high power density, ultra-low surface temperature rise, ultra-low temperature drift, and low-noise operation

Designed for high-density testing where conventional airflow is constrained. The 3M8000 series supports multiple liquid and phase-change cooling architectures for precise, dependable test conditions across data center, energy and power applications.

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01 / Core Specifications

Technical Parameters

Core specifications for 3M8000 Series Liquid-Cooled Load Bank
ParameterValue
Power range1–2000kW
Voltage rangeAC 220 / 380 / 400 / 690 / 1140 / 440 / 480V, 50 / 60 / 400Hz; DC 48 / 110 / 750V
Control modesManual Panel / Local Automatic / Remote Portable Box / Remote Host Computer
Resistance temperature drift≤1%
Cooling methodLiquid Cooling / Water Cooling / Solid-Liquid Phase Change / Gas-Liquid Phase Change

02 / Product Formats

Liquid-Cooled Sub-products

3M8000

Liquid-Cooled Rack-mount Load

Compact liquid-cooled chassis for high-density, on-site testing in data center environments.

Power
10–40kW
Chassis
3U–6U
Weight
20–45KG
Cooling media
Water / ethylene glycol / propylene glycol
Electrical interface
16 / 32 / 63A industrial socket
Communication
RS485 / CAN
3M8000

Liquid-Cooled Cabinet Load

High-capacity cabinet platform with integrated instrumentation for controlled liquid-load testing.

Power
144–300kW
Chassis
48U–54U
Weight
600–750KG
Display
Voltage / current / power / pressure / flow rate / temperature
Electrical interface
63A industrial socket

03 / Why Liquid Cooling

Why Liquid Cooling

A controlled thermal path enables higher density, cleaner data and a quieter test environment where every measurement matters.

Higher Power Density

Place more test capacity in a smaller footprint with liquid heat transfer engineered for dense equipment rooms and constrained installation sites.

More Precise Test Data

Tighter thermal control keeps resistance temperature drift at ≤1%, supporting repeatable and more reliable test results across long duty cycles.

Low-Noise Operation

Reduced reliance on high-volume air movement makes the system well suited to data centers and precision testing environments.

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