RS PRO Thermal Interface Pad, 0.127mm Thick, 2.5W/m·K, 101 x 72.5mm

Nº de Estoque RS: 909-2067Marca: RS PRO
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Especificações

Brand

RS Pro

Dimensions

101 x 72.5mm

Thickness

0.127mm

Length

101mm

Width

72.5mm

Thermal Conductivity

2.5W/m·K

Self-Adhesive

No

Minimum Operating Temperature

-45°C

Maximum Operating Temperature

+125°C

Colour

Grey

Operating Temperature Range

-45 → +125 °C

PRICED TO CLEAR

Yes

País de Origem

United Kingdom

Detalhes do produto

RS PRO Phase Change Interface Material

RS PRO phase change materials are ideal for thermal management applications. Available in this range are phase change interface materials in sheets, resistor pads and as a dispensable paste.

Phase change materials work because they change their state with changes in temperature between the heat source and the heatsink. During this process, the material stores thermal energy which is then released as the material cools. This means that the material can absorb thermal energy as the heat is generated which helps to keep the desired component cool. This improves contact between the surfaces, completely fillling air gaps and increasing heat transfer.

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P.O.A.

RS PRO Thermal Interface Pad, 0.127mm Thick, 2.5W/m·K, 101 x 72.5mm

P.O.A.

RS PRO Thermal Interface Pad, 0.127mm Thick, 2.5W/m·K, 101 x 72.5mm
Informações de estoque temporariamente indisponíveis.

Documentos Técnicos

Especificações

Brand

RS Pro

Dimensions

101 x 72.5mm

Thickness

0.127mm

Length

101mm

Width

72.5mm

Thermal Conductivity

2.5W/m·K

Self-Adhesive

No

Minimum Operating Temperature

-45°C

Maximum Operating Temperature

+125°C

Colour

Grey

Operating Temperature Range

-45 → +125 °C

PRICED TO CLEAR

Yes

País de Origem

United Kingdom

Detalhes do produto

RS PRO Phase Change Interface Material

RS PRO phase change materials are ideal for thermal management applications. Available in this range are phase change interface materials in sheets, resistor pads and as a dispensable paste.

Phase change materials work because they change their state with changes in temperature between the heat source and the heatsink. During this process, the material stores thermal energy which is then released as the material cools. This means that the material can absorb thermal energy as the heat is generated which helps to keep the desired component cool. This improves contact between the surfaces, completely fillling air gaps and increasing heat transfer.