Aeroflex Pro T10


The electrically insulating and thermally conductive material is designed to solve overheating problems for today's power component assemblies. Most products are film-based and designed to resist cutting-through in screw mounting applications. Our products provide a more consistent breakdown voltage over other insulation constructions.
The soft conformal coating on the film provides an excellent mating surface for low pressure clip mounting. Our insulator products are available with a diverse range of thermal performance to suit any application. These materials can be die-cut into any standard or customized shape.

Product Description Typical Property Data

FEATURES & BENEFITS 

  • Substrate made from fiberglass with good conductivity, insulation and high breakdown voltage.
  • Resistant to tears and cutting-through.
  • Low thermal resistance.
  • Smooth surface and high conformability.
  • Customized die-cutting shapes, supplied in die-cutting rolls.
  • Single side PSA available for easy assembly.
  • RoHS compliant, UL-94 V0 rating.
  •  

TYPICAL APPLICATIONS 

  • Power supply equipment     
  • LED lighting        
  • Automated electronics    
  • Speaker amplifier                

SELECTION GUIDE

PERFORMCE CURVE

FC@PROPERTIES FC@UNIT FC@TEST METHOD Pro T4 Pro T4R Pro T9 Pro T9R Pro T10 Pro T20
Physical Properties
Appearance - Visual Grey Pink Brownish red Pink Yellow White
Composition - - Ceramic Filled Silicone + Fiberglass Ceramic Filled Silicone
 +Insulating Film
Ceramic Filled Silicone 
+ Fiberglass
Thickness mm ASTM D374 0.23 0.18 0.23 0.19 0.15 0.25
Hardness Shore A ASTM D2240 70 70 89 90
Temperature Range °C - -40~+180 -40~+180 -60~+180
Tensile Strength Kpsi ASTM D412 3.2 3.2 7.2 7.8 5 5
Elongation % ASTM D412 40 45 40 45 35 5
Electrical Properties
Breakdown Voltage VAC ASTM D149 >4000 >6000 >7000 >4000
Volume Resistivity Ω·cm ASTM D257 9.6X1012 9.6X1012 1.0X1012 1.1X1012
Flammability Rating - UL-94 HB Bare wood V-0, With adhesive HB V-0
Thermal Properties
Thermal Conductivity W/m·K ASTM D5470 1.2 1.3 1.6 1.5 1.6 3.5