Masstech Global Co., Ltd.

LiPOLY — Thermal Management Materials in Thailand

Thermal Pads, Thermal Putty, Graphite, Thermal Tape, Insulation and Thermal/EMI Materials

www.lipoly.com

Product Category

Thermal pads are solid insulating materials with high-efficiency heat dissipation performance. They work by filling the microscopic air gaps formed by surface roughness between heat-generating components and heat sinks, significantly reducing contact thermal resistance. LiPOLY offers thermal pads in a variety of specifications — samples are available upon request
Thermal insulation materials capable of withstanding ultra-high temperatures up to 1300°C, composed of nanoporous silica aerogel and porous silicon dioxide lightweight composite materials. Their non-conductive thermal properties can be used to prevent thermal runaway. Widely applied in aerospace, aviation, electric vehicle batteries, energy storage and other fields requiring lightweight solutions and isolation of high-temperature diffusion
Thermal liquid gap fillers are high-flow, thermally conductive materials designed to fill gaps between electronic components and heat sinks. Compared to traditional thermal pads, these liquids can fully cover irregular surfaces, ensuring superior heat transfer performance. They are suitable for applications with high thermal demands, such as electric vehicle battery modules, servers, and LED lighting systems

สินค้า

AS27 Thermal Break / Insulation Sheet

0.012W/m·K

BS89-s Ultra Soft Thermal Pad

Ultra Soft Thermal Pad 5.0W/m·K

Graphite Composite Series

TR332CU 1500W/m·K

H-PUTTY Thermal Putty

Thermal Putty 3.5W/m·K No Vertical Flow

N800C Non-Silicone Thermal Pad 17 W/m·K

Non-Silicone Thermal Pad 17 W/m·K

NT94 Thermal Conductive RF Absorber Pad

Thermal Conductive RF Absorber Pad 4.0W/m·K

PR27 / PR27S High-Insulating Thermal Conductive Film

1.8W/m·K

T-TOP 99-s Ultra Thermal Pad 24 W/m·K

Ultra Thermal Pad 24 W/m·K

T-WORK9000 Thermal Pad 20 W/m·K

Thermal Pad 20 W/m·K

Thermal Conductive Tape Series

AT920-s 3.5W/m·K
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