Aeroflex 10000SF


Aeroflex® 10000SF is a high-performance, compliant silicone free thermal interface material. By coupling extremely high thermal conductivity (10.0W/m·K) with exceptional wetting characteristics, Aeroflex® 10000SF provides low thermal resistance between heat source component and heat dissipation part or housing. This makes it well-suited for applications where silicone based pads are traditionally used as well as those applications which are silicone sensitive, especially in the optical industry.
Aeroflex® 10000SF is naturally tacky on both sides requiring no additional adhesive coating. The natural tack allows for the pad to be hold in place during assembly.
Product Description Typical Property Data

FEATURES & BENEFITS 

  • Thermal conductivity 10.0 W/m·K
  • Available in thicknesses from 0.020(0.50mm) to 0.400(10.0mm)
  • Silicone free and RoHS Compliant.
  • Naturally tacky & re-workable
  • UL. 94 V-0
 

TYPICAL APPLICATIONS 

  • Automated Electronic Control Units (ECU's)
  • Power Supplies & Semiconductors
  • Memory & Power Modules
  • Microprocessors / Graphics Processors
  • Flat Panel Displays & Consumer Electronics

 

CONFIGURATIONS AVAILABLE
230×230 mm,sheet form and die-cut parts could be required.
0.50 through 10.0 mm thick material available in 0.25mm increments
Natural tack on one or both side option

SELECTION GUIDE

PERFORMCE CURVE

FC@PROPERTIES FC@UNIT FC@TEST METHOD 10000SF
Appearance - Visual

Grey

Thickness mm ASTM D374 0.50~10.0
Thermal 
Conductivity
W/m·K Hot Disk 10.00
ASTM D5470 10.00
Thermal Resistance
(@1mm,20psi)
°C·in²/W ASTM D5470 0.24
°C·cm²/W 1.55
Hardness Shore OO ASTM D2240 49
Flame Rating - U.L 94 V-0
Dielectric Strength(@1MM) kV ASTM D149 >8.0
Volume Resistivity  Ω·cm ASTM D257 ≥1.0×1013
Density g/cm³ ASTM D792 3.55
Tensile Strength psi ASTM D412 30
Elongation % ASTM D412 40
Compression 
Deflection (%) at  
given pressure
10psi ASTM D575 13
50psi 35
100psi 52
Dielectric Constant @1MHz ASTM D150 6
Service Temp. °C Aerobon -40~120
RoHS Compliant - Aerobon YES