ODAKE CT766 Thermal conductive gel

ODAKE CT766 Thermal Gel is a specially formulated, silicone-based thermally conductive gel. We engineered it with advanced composite fillers to deliver superior thermal conductivity and electrical insulation.

Key Features

This high-performance thermal gel offers low oil permeability and outstanding resistance to high and low temperatures. Furthermore, it provides excellent durability against moisture, ozone, and weathering. Therefore, it is ideal for maintaining reliable thermal management in demanding environments.

Typical Applications

ODAKE CT766 Thermal Gel Series is commonly used as a thermal interface material (TIM). It efficiently transfers heat between power components—such as power transistors, thyristor rectifiers, and heating stacks—and heat dissipation devices like heat sinks, thermally conductive plates, and housings.

Features

ODAKE CT766 Thermal Gel delivers outstanding performance across multiple dimensions:

  • Excellent thermal conductivity – ensures efficient heat transfer from power components to heat sinks

  • Electrical insulation – provides reliable dielectric strength for sensitive electronic assemblies

  • Non-toxic and environmentally friendly – safe for use and compliant with environmental standards

  • High and low temperature resistance – maintains stable performance across a wide operating range

  • Water, ozone, weather, and corrosion resistance – offers long‑term durability in harsh environments

Packing

300ML/piece

Storage and shelf live

Please store in a cool and dry place, shelf life is 9 months.

Usage and precautions

Surface Preparation – first, clean the surface of the target component thoroughly to remove dust and oil.

Application – squeeze out the thermal conductive gel with a glue gun and apply it evenly onto the component surface. When applying, minimize the gap between surfaces to ensure optimal heat dissipation. Avoid using excessive glue, as this may increase costs and affect the product’s appearance.

Final Check – after completing the operation, ensure that the thermal conductive gel makes close and uniform contact with the component surface.

Safety – always operate in a well‑ventilated environment.

ODAKE CT766 Thermally Conductive Gel Series is a versatile thermal management solution. We designed it for application between heat‑generating components and heat dissipation devices across various electronic systems.

Typical Applications

  • Smartphone CPUs and Memory Chips – ensures efficient heat transfer for peak performance

  • Power Modules – provides reliable thermal management for high‑power conversion

  • Integrated Chips and Electronic Controllers – maintains stable operating temperatures for sensitive ICs

  • Power Supply Modules – offers consistent thermal interface for power regulation systems

  • Automotive Electronics and Controllers – delivers durable thermal performance in vehicle systems

  • Telecommunication Equipment – supports heat dissipation in base stations and network devices

  • Computers and Related Accessories – improves thermal transfer for PCs, servers, and peripherals

Product ModelCT766ACT766B
ColorPink
AppearancePaste
Density (g/cm3)2.65~2.852.72-2.92
Curing time min 60℃240
Curing time min 100℃50-70
Temperature range ℃-60~200
Hardness (Shore A)67~7768~78
Tensile strength (Mpa) ≥0.25
Volume resistivity (Ω.cm) ≥1.0×1013
Breakdown voltage (MV/m) ≥12
Dielectric strength (kV/mm)13
Flame retardant standardUL94V-0
Compatibility with PC materialIncompatible
Thermal conductivity (Thermal conductivity w/m.k)23

Disclaimer

We have prepared the technical data in this document based on actual measurements and routine tests conducted in our laboratory. These values are representative and intended as a general reference.

Please be aware that we cannot guarantee results obtained under conditions or methods that we have not specifically approved.

Since every application environment is unique, we recommend that you verify the product’s performance under your own production conditions.

Therefore, Hexu Xinwang cannot be held liable for any loss or damage—including lost profits—that may arise from the use of this information or product in individual cases. If you have any questions or need technical support, please contact us at any time.

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