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Universal

Universal Thermal Pad 15W 120 x 120 x 2.0 mm

SKU CH-VZV4-E2YF5

Thermal pad measuring 120 by 120 by 2.0 millimetres with 15 W/mK conductivity

  • Product TypeOther Accessories
  • 15 W/mK conductivity for efficient heat transfer
  • 120 x 120 mm sheet covers large components
  • 0 mm thickness bridges uneven surfaces
  • Non-conductive material prevents short circuits
  • Soft gel composition conforms without pressure

Universal Thermal Pad 15W

The Universal Thermal Pad 15W measures 120 by 120 millimetres with a 2.0 millimetre thickness. It is a thermal interface material designed to transfer heat between components and heatsinks in printers, scanners and similar peripherals. The pad carries a 15 watt per metre-kelvin conductivity rating.

Suited for maintenance on compatible printers

This pad suits technicians who need a 120 by 120 millimetre sheet with 2.0 millimetre thickness for specific printer or scanner models. It does not suit builds requiring different dimensions, alternative thicknesses or higher thermal conductivity values. Buyers needing adhesive backing or pre-cut shapes for other devices should look elsewhere.

Behaviour under sustained load

The 15 watt per metre-kelvin rating indicates steady-state heat transfer across the full 120 by 120 millimetre area during continuous operation. Thermal resistance remains stable while the pad is compressed between mating surfaces over long periods. Performance depends on correct installation pressure and surface flatness.

Highlights

  • 15 W/mK conductivity for efficient heat transfer
  • 120 x 120 mm sheet covers large components
  • 0 mm thickness bridges uneven surfaces
  • Non-conductive material prevents short circuits
  • Soft gel composition conforms without pressure

Specifications

Product TypeOther Accessories

Questions about this item

What component needs a 120 x 120 mm surface so the 2.0 mm thick pad makes full contact?

The pad covers a 120 by 120 millimetre area at 2.0 millimetres thick, so the heatsink or component face must be at least that large for complete coverage.

Will the 15 W/m·K rating still help if the original pad was thinner?

A 15 W/m·K pad conducts heat far better than standard pads; if the gap matches the 2.0 millimetre thickness it will improve transfer, but a different gap size needs a different thickness.

How can I confirm the 15 W/m·K pad is seated correctly after installation?

After mounting, check that the pad is evenly compressed across the full 120 by 120 millimetre area with no visible gaps, then monitor component temperatures under load for a drop.

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