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Innovative cold plate liquid cooling technology provides a comprehensive liquid cooling solution

CDU Cold Plate Manifold Quick Disconnect

In-Rack CDU​

N+1 redundant pump design for enhanced system reliability.

High efficiency and energy saving with year-round free cooling.

Touchscreen display for intuitive operation.

Fully variable-speed pumps with automatic flow distribution and adjustment.

PUE < 1.15, supporting energy-optimized operations.

4U rack-mountable design for flexible deployment within server racks.

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In-Rack CDU​

In-Row CDU​

N+1 redundant pump design for enhanced system reliability.

High efficiency and energy saving with year-round free cooling.

Touchscreen display for intuitive operation.

Fully variable-speed pumps with automatic flow distribution and adjustment.

PUE < 1.15, supporting energy-optimized operations.

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In-Row CDU​

Aluminum Cold Plate

Coolant: Deionized water

Heat Source: Copper block with heat source area of 38mm × 38mm

Thermal interface material: Thermal grease with thermal conductivity of 6 W/m·K

Ambient temperature: 25°C

Flow rate: 3 LPM (Liters per Minute)

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Aluminum Cold Plate

Copper Cold Plate

Coolant: Deionized water

Heat Source: Copper block with heat source area of 38mm × 38mm

Thermal interface material: Thermal grease with thermal conductivity of 6 W/m·K

Ambient temperature: 25°C

Flow rate: 3 LPM (Liters per Minute)

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Copper Cold Plate

Manifold

Excellent corrosion resistance and high mechanical strength.

Cleanliness level can reach below 150µm.

Available in single-row and double-row tubing configurations to suit different user requirements.

Dual-tube position accuracy within ± 0.3 mm.

Aesthetic appearance achieved through laser welding.

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Manifold

BMQC

Meet OCP performance standards.

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Blind-Mate connection

No leakage during connection and disconnection

Floating range ± 5mm/ ± 2.7°

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BMQC

UQDB

Meet OCP performance standards

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Blind-Mate connection

No leakage during connection and disconnection

Floating range ± 1mm

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UQDB

UQD

Meet OCP performance standards

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Quick-mate connection

No leakage during connection and disconnection

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UQD

UQD-BUTTON

Meet OCP performance standards

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Quick-mate connection

No leakage during connection and disconnection

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UQD-BUTTON

LQD

Meet OCP performance standards

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Quick mate

No leakage during connection and disconnection

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LQD

LQC

Meet OCP performance standards

Main body material: Standard SUS304, customizable

Sealing material: Standard EPDM, customizable

Connection mode: Threaded connection

No leakage during connection and disconnection

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LQC

About Aimeixin

AMX Data Technology (Guangzhou) Co., Ltd. Specializes in the R&D, Sales, Manufacturing, and Supply Chain Management of data center liquid-cooling systems. Our business covers Quick Disconnects for liquid cooling, Cold Plate heat transfer enhancement technology, Immersion cooling heat transfer enhancement technology, and a variety of other liquid-cooling related technologies and products, providing integrated liquid-cooling system solutions and services for data centers.

Driven by innovation, we are committed to ensuring efficient heat dissipation in data centers, supporting the industry’s drive toward green and energy-saving development.

R&D R&D
Manufacture Manufacture
Supply chain Supply chain
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About Aimeixin

Application Field

Data Centers

Data Centers


Artificial Intelligence

Artificial Intelligence


Supercomputing

Supercomputing


New Energy

New Energy


Blockchain

Blockchain


Data Centers Artificial Intelligence Supercomputing New Energy Blockchain

Service Network