Hon San Technology CO.,LTD.
Hon San Technology CO.,LTD.
  • HOME
  • ABOUT US
  • PRODUCTS
  • LANGUAGE
    • Traditional Chinese
  • More
    • HOME
    • ABOUT US
    • PRODUCTS
    • LANGUAGE
      • Traditional Chinese
  • HOME
  • ABOUT US
  • PRODUCTS
  • LANGUAGE
    • Traditional Chinese

MODEL NO. HS07MWCP/ Liquid cold pate

HS07MWCP liquid cold plate

Description:

The HS07MWCP is designed for thermal insulation of temperatures up to 200°C, ensuring equipment safety in environments suitable for human contact. Featuring precise surface thermal resistance design, it measures 380mm x 176mm x 20mm and operates with a safe liquid flow rate of 10L/min. Its thermal resistance is approximately 0.00126℃/W, and it offers a heat dissipation area of 66880mm², making it highly effective. 

Technical Specifications:

  • Dimensions: 380mm x 176mm x 20mm
  • Weight: 3.6kg
  • Material: High thermal conductivity aluminum alloy for excellent heat dissipation
  • Safe liquid flow rate: 10L/min or below
  • Maximum liquid flow rate: 12L/min for enhanced cooling
  • Maximum liquid pressure: 0.6kg/cm² to ensure operational safety

Cooling Performance:

  • Thermal resistance (reference): Approximately 0.00126℃/W at 20°C cooling liquid temperature with a standard flow rate of 10L/min
  • Cooling effect for a 2000W heat source: Heat conduction surface temperature is approximately 24.7°C

Design Features:

  • Flat design: Ideal for clamping mechanisms, simplifying installation and maintenance
  • Cooling liquid inlet/outlet connectors: Compatible with 1/2″ hoses for convenient setup
  • Heat dissipation area: Offers a substantial surface area of 66880mm² for effective cooling

Structure:

Flat plate design with four-point positioning: Ensures high thermal conductivity and efficiency

HS07MWCP LIQUID COLD PLATE-Hon San Technology CO., LTD.

HS07MWCP Flowrate vs. Thermal Resistance

    Copyright © 2024 Hon San Technology  CO.,LTD. 

    This website uses cookies.

    We use cookies to analyze website traffic and optimize your experience on the website. By accepting our use of cookies, your data will be combined with other users' data. 

    RefuseAccept