Thermal Grease - MH&W Thermal Products

ERATHERM® Thermal Greases are ceramicfilled single component silicones with a high thermal conductivity.

The thermal grease KP 99 is a high-quality thermal grease. The homogeneous thixotropic grease shows a very good fluidity thanks to its low viscosity characteristics, which leads to a good surface adaptation. The silicone free thermal compound KP 12 & KP14 consists of synthetic, thermal polymers and is suitable for a fast and effective heat dissipation. The paste is particularly suitable for silicone sensitive application. If any separation of the filler materials becomes evident, the KP´s must be mixed thoroughly before use according to the corresponding processing instructions.

Download: Keratherm Thermal Grease KP 97  &  KP 98  &  KP 99 Datasheet
Download: Keratherm Thermal Grease KP 12 and KP 14silicone-free Datasheet
Click to Get a Quote for Keratherm Thermal Grease!
Click to Get a Quote for Keratherm Thermal Grease KP 12 & KP 14 silicone free!

Applications

  • notebooks
  • desktop CPU’s
  • IGBT units

Storage

  • non-specific conditions required
  • normal climatic environment
  • 12 month storage

Packing Unit

  • Syringes (3, 5 ml)
  • Cartridges (75, 310, 360 ml)
  • Cans with 1 kg
  • Property Symbol Unit KP 97 KP 98 KP 99 KP 12
    silicone free
    KP 14
    silicone free
    Color white gray anthracite silver
    Consistency soft/paste soft/paste soft/paste soft/paste soft/paste
    Thermal Properties*
    DeltaT °C ≤ 1.6 ≤ 1.4 ≤ 1.2 ≤ 1.2 ≤ 1.2
    Electrical Properties*
    Electrical Conductivity
    (according to DIN 51412-1)
    pS/m 0 0 0 53 0
    Mechanical Properties
    Measured Thickness (±10%) mm 0.025 0.025 0.025 0.025 0.025
    Density ρ g/cm³ 2.1 2.2 1.9 1.4 2.2
    Viscosity*** Pas 70 – 110 110 – 150 90 – 140 30 – 60 150 – 180
    Total Mass Loss TML Ma.-% <1.3 <1.5 <0.80 <0.1 <0.25
    Application Temperature °C -60 to +200 -60 to +150 -60 to +150

    * Measured @ thickness 0.025 mm
    *** Shear rate 4.6s-1 / 25°C

    Mix paste before use to avoid particular separation effects.