Technical Documents
Specifications
Brand
Qnity LairdProduct Type
Thermal Interface Sheet
Thickness
4mm
Thermal Conductivity
1.2W/mK
Self-Adhesive
Yes
Trade Name
T-flex 300
Hardness
Shore OO 27
Conductive Material
Ceramic Filled Silicone Elastomer
Length
100mm
Standards/Approvals
UL 94 V0
Width
229mm
Colour
Light Green, Mint
Maximum Operating Temperature
160°C
Minimum Operating Temperature
-40°C
Series
T-flex 300
Country of Origin
Czech Republic
Product Details
T-flex™ 300 is a silicone gel combined with a ceramic powder to offer a unique combination of compliancy, thermal resistance and price. At pressures of 50 psi, it deflects over 50% the original thickness. This high rate of compliancy allows the material to totally blanket the component, enhancing thermal transfer. The material has a very low compression set, enabling the pad to be reused many times. Low thermal resistances can be achieved at low pressures.
Stock information temporarily unavailable.
€ 19.69
€ 19.69 Each (Exc. VAT)
1
€ 19.69
€ 19.69 Each (Exc. VAT)
Stock information temporarily unavailable.
1
| Quantity | Unit price |
|---|---|
| 1 - 49 | € 19.69 |
| 50 - 99 | € 17.51 |
| 100 - 249 | € 15.35 |
| 250 - 499 | € 14.48 |
| 500+ | € 14.06 |
Technical Documents
Specifications
Brand
Qnity LairdProduct Type
Thermal Interface Sheet
Thickness
4mm
Thermal Conductivity
1.2W/mK
Self-Adhesive
Yes
Trade Name
T-flex 300
Hardness
Shore OO 27
Conductive Material
Ceramic Filled Silicone Elastomer
Length
100mm
Standards/Approvals
UL 94 V0
Width
229mm
Colour
Light Green, Mint
Maximum Operating Temperature
160°C
Minimum Operating Temperature
-40°C
Series
T-flex 300
Country of Origin
Czech Republic
Product Details
T-flex™ 300 is a silicone gel combined with a ceramic powder to offer a unique combination of compliancy, thermal resistance and price. At pressures of 50 psi, it deflects over 50% the original thickness. This high rate of compliancy allows the material to totally blanket the component, enhancing thermal transfer. The material has a very low compression set, enabling the pad to be reused many times. Low thermal resistances can be achieved at low pressures.