AOS Thermal Compounds  
 
Micro-faze® - Dry Film Interface
Micro-faze®
Description How to Apply Suggested Applications Configurations

Product Description

MICRO-FAZE® is a new, revolutionary thermal interface film formulated with non-silicone thermal grease. It was developed by AOS to offer the lowest thermal resistance in a thermal interface without the mess of grease.

MICRO-FAZE A is a die-cut aluminum foil substrate coated on both sides with specially formulated thermal grease that is naturally tacky but dry to the touch. MICRO-FAZE A is non-wax-based and offers unique heat transfer properties.

NEW Micro-faze C10 is our latest breakthrough in our quest for the ultimate cooling, dry-to-the-touch thermal pad.  Utilizing a customized copper substrate formulation, this new addition to our Micro-faze product line is perfectly designed for larger gap applications. 
 
Call today for more information and to receive a sample!

MICRO-FAZE K
is a die-cut polymide insulating substrate coated on both sides with specially formulated thermal grease (non-silicone, non-wax-based) that is naturally tacky but dry to the touch. It offers unique heat transfer and high insulating capabilities, and has a high cut-through resistance.

Technical Data Sheets: Micro-faze® A (PDF)
Micro-faze® C (PDF)
Micro-faze® K (PDF)
Micro-faze® A Micro-faze® A shown in common sizes

Features & Benefits

• Retains all the unique advantages of thermal grease but in the form of a thermal interface film.

Requires minimum force to achieve total interface contact.

• Allows for total "wetting action" to fill all microscopic surface voids without changing phase.

• A positive coefficient of thermal expansion (CTE) increases the wetting action for total interface contact.

• Heat transfer takes place at any temperature (unlike phase change materials), making MICRO-FAZE an excellent choice for cold plate applications.

Offers maximum heat transfer capability for power components.

• Excellent replacement for phase change materials and silicone pads.

• Is a "drop-in-place" product that is easy to use and handle in a manufacturing environment.

Naturally tacky - no adhesive, fiberglass or other non-conductive material is used that may penalize thermal resistance.

• Microscopically changes to fill all microscopic voids on part surfaces.

Thixotropic nature prevents run out.