PCM 45F | Phase Change Pad

Harmonization Code : 8547.90.00.00 | Insulating fittings for electrical machines, appliances or equipment, being fittings wholly of insulating material apart from any minor components of metal (for example, threaded sockets) incorporated during moulding solely for purposes of assembly, other than insulators of heading 8546; electrical conduit tubing and joints therefor, of base metal

PCM 45F | Phase Change PadPCM 45F | Phase Change Pad

Main features

  • 0.09 - 0.12 Thermal Impedance
  • 2.0 - 2.5 Thermal Conductivity
  • Pad form

Product Description

PCM45F is Honeywell's thermally conductive phase change pad. It is designed to minimize thermal resistance at interfaces and maintain extremely stable performance through reliability testing required for long product life applications. In addition to that it has excellent electrical properties and very high volume resistivity.
 
PCM45F has a Thermal conductivity of 2.0 - 2.5 (W/m·K) depending on the bondline thickness and is based on a robust polymer PCM structure that exhibits excellent wetting properties during typical operating temperature ranges, resulting in very low surface contact resistance. The proprietary material provides superior reliability and maintains low thermal impedance (0.09-0.12) , making it desirable for high-performance integrated circuit devices.

Technical Specifications

General Properties
Specific GravitySpecific Gravity
2.2
Thickness rangeThickness range
0.20 - 1.00 mm
Thermal Properties
Thermal ConductivityThermal Conductivity
2.0 - 2.5 W/m.K
Thermal ImpedanceThermal Impedance
0.09 - 0.12 °C·cm²/W
Electrical Properties
Volume ResistivityVolume Resistivity
820000000000000 Ohms⋅cm

Additional Information

When choosing a printable paste it is important to understand the process parameters and limitations.

That's why we ask, when you contact us, to include  the following information:

  1. What is your print thickness?
  2. How long is your printing time and working window?
  3. What is your drying step after printing?
    • Temperature (Room temperature or something else?)
    • Time 
  4. Do you have any viscosity limitations in the printing process?

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