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Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 1
Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 2
Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 3
Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 1
Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 2
Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 3

Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor

YBS-HT270 Perfluoropolyether (PFPE) is a polymer chain composed of carbon, oxygen, and fluorine. Jialede PFPE fluids have a wider operating range than other fluorinated fluids, even at temperatures up to 300°C.

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    Performance characteristics

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 4 Excellent high-temperature stability, non-flammable.

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 5 Chemically inert, with excellent compatibility with most plastics, rubbers, and metals.

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 6 Good heat conduction medium.

    未标题-5 拷贝2 (14)

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 8 Superior dielectric properties - high dielectric strength, ultra-low dielectric constant & dielectric loss.

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 9 Non-toxic and environmentally friendly - will not damage the ozone layer.

    Performance characteristics

    Properties Units  
    Boiling point 270
    Pour point -66
    Density g/cm 3 1.85
    Kinematic viscosity cSt 14.00
    Vapor pressure torr <10-2
    Specific heat cal/g·°C 0.23
    Heat of vaporization at boiling point cal/g 15
    Refractive index - 1.283
    Coefficient of thermal expansion cm³ / cm³ · °C 0.0011
    Surface tension dyne/cm 20
    Thermal conductivity W/m·K 0.065
    Dielectric strength kV (2.54 mm gap) 40
    Dielectric constant - 1.94
    Volume resistivity Ohm·cm 6·10 15
    Average molecular weight amu 1550
    Dissipation factor (1 kHz) - 2.10 -4
    Solubility of water ppm (wt) 14
    Solubility of air cm³ gas / 100 cm³ liquid 26

    Application and Packaging Specifications

    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 10
    Semiconductor
    Our in-house designers and engineers have produced countless great designs for customers from different industries
    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 11
    Chemical Industry
    Our in-house designers and engineers have produced countless great designs for customers from different industries
    Pharmaceuticals
    Vapor phase heating
    Circulating chiller
    Nuclear energy
    Transformer and Supercomputer Cooling

    Note:

    * This product is available in a 1kg tin can . For information on safe disposal of the product , please refer to the product MSDS.

    * This is an atmospheric volatile product. After use, please seal the can immediately and store in a cool, dark place . Keep away from heat sources.

    *Contact with oxidants, strong acids, and alkaline substances is strictly prohibited.

    Semiconductors 拷贝
    Semiconductors
    vapor phase soldering 拷贝
    vapor phase soldering
    high-performance computing 拷贝
    high-performance computing
    Chemical Industry 拷贝
    Chemical Industry
    Circulating chiller 拷贝
    Circulating chiller
    nuclear energy 拷贝
    nuclear energy
    Pharmaceuticals 拷贝
    Pharmaceuticals
    Equivalent to Galden® HT 270 PFPE Heat Transfer Fluids for Semiconductor 19
    Operating Precautions
    Use only in clean, dry, closed systems; avoid contamination with water, oils, or other fluids.
    Do not exceed recommended operating temperatures; avoid local overheating (>290 °C) and dry heating.
    Ensure adequate ventilation during high-temperature or vapor-phase operation.
    Maintain continuous circulation to prevent stagnant zones and thermal decomposition.
    Use compatible materials and appropriate PPE (gloves, goggles, protective clothing).
    Collect spills with inert absorbent; do not discharge to drains.
    Store sealed in a cool, dry place.
    2 拷贝
    How To Use
    Allow 10–20% headspace for thermal expansion.
    Start at low temperature and increase gradually to operating conditions.
    Use in single-phase circulation or vapor-phase systems with proper condensation control.
    Maintain stable, closed-loop operation for optimal performance.
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