SIC Paddle

product details

Name:

SiC Paddle

Function and Application:

The silicon carbide (SiC) paddle is a high-temperature-resistant tool made from silicon carbide. Used in conjunction with SiC boats and SiC tubes (the paddle pushes the SiC boat into the SiC tube for reactions), it leverages its high melting point, chemical inertness, and excellent thermal stability to prevent the diffusion of impurities from the substrate, improving wafer yield and extending component service life. Typical application environments include high temperatures, as well as oxidizing and corrosive atmospheres.

Performance Requirements:

High-temperature resistance and corrosion resistance.

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  • +86-572-3032373

    +86-572-3033016

More About Products

SiC Paddles are high-performance tools engineered for safe handling of SiC boats and wafers during high-temperature semiconductor and advanced material processing. Made from high-purity silicon carbide, these paddles provide excellent thermal resistance, chemical inertness, and mechanical strength, ensuring reliable performance in oxidizing and corrosive furnace environments.

Their precision design allows secure manipulation of substrates and boats without contamination or damage, while resisting thermal shock and maintaining dimensional stability under extreme temperatures. SiC Paddles enhance process consistency, protect wafer integrity, and extend component service life in demanding high-temperature applications.

Durability and Strength of Silicon Carbide Paddles

In industrial and laboratory applications, tools must withstand high temperatures, chemical exposure, and mechanical stress. Silicon Carbide (SiC) paddles are an ideal solution due to their exceptional durability and mechanical strength.

SiC paddles can endure extreme thermal cycles without cracking or deforming, making them perfect for high-temperature chemical processes, semiconductor manufacturing, and laboratory experiments. Their wear resistance ensures long-term usability, reducing the need for frequent replacements and lowering maintenance costs.

Additionally, the material’s chemical inertness protects sensitive processes from contamination, ensuring consistent results in precision operations. The combination of strength, durability, and chemical resistance makes SiC paddles a reliable choice for demanding industrial and research applications.

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