Custom Thermoelectric
TS-MFK6 Thermal Sheet 152 x 152mm
TS-MFK6 Thermal Sheet 152 x 152mm
Regular price
$28.25 USD
Regular price
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$28.25 USD
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TS-MFK6 Thermal Sheet
- Part Number: TS-MFK6
- Electrically insulating version with Kapton substrate
- Micro-Faze K6 Thermal Interface Material (TIM).
- Temperature range: -45 to 200°C (-49 to 392°F)
- Non silicone based
- Thermal resistance 0.40 °C in2/W @70 psi.
- 6.0 x 6.0 inch sheet
- Just 0.006" (0.152mm) thick before compression.
- Just cut to size with scissors or an X-acto knife.
TS-MFK6 Thermal Sheet
MICRO-FAZE® K is a revolutionary dry-to-touch thermal interface pad formulated with non-silicone thermal grease. It was developed to offer the lowest thermal resistance in a thermal interface without the mess of grease. MICRO-FAZE K is a polyimide 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.
- Easy to use: Just cut to size with scissors or a knife.
- Will not electrically conduct as the polyimide (Kapton) substrate is electrically insulating.
- Consists of a 2 mil Kapton (polyimide) substrate coated on both sides with a specially formulated thermal compound (non-silicone, non-wax based) that is naturally tacky but dry to the touch.
- MICRO-FAZE K6 retains all the unique advantages of higher thermal performance thermal greases but in the form of a thermal sheet.
- Unlike phase change materials, MICRO-FAZE K6 requires minimum force to achieve total interface contact and heat transfer starts at 25ºC.
- MICRO-FAZE K6 allows for total “wetting action” to fill all microscopic surface voids without changing phase.
- Offers maximum heat transfer capability and electrical isolation for power components.
- Excellent replacement for phase change materials and silicone pads.
- MICRO-FAZE K6 is a “drop-in-place” product for easy handling in a manufacturing environment.
- Thixotropic nature prevents run out.
