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Durable SiC-Coated Barrel Susceptor

Durable SiC-Coated Barrel Susceptor

With its excellent density and thermal conductivity, the Semicorex Durable SiC-Coated Barrel Susceptor is the ideal choice for use in epitaxial processes and other semiconductor manufacturing applications. Its high-purity SiC coating provides superior protection and heat distribution properties, making it the go-to choice for reliable and consistent results.

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Product Description

If you need a high-quality graphite susceptor with superior heat and corrosion resistance, look no further than the Semicorex Durable SiC-Coated Barrel Susceptor. Its silicon carbide coating provides exceptional thermal conductivity and heat distribution, ensuring reliable and consistent performance in even the most demanding high-temperature environments.
Our Durable SiC-Coated Barrel Susceptor is designed to achieve the best laminar gas flow pattern, ensuring evenness of thermal profile. This helps to prevent any contamination or impurities diffusion, ensuring high-quality epitaxial growth on the wafer chip.
Contact us today to learn more about our Durable SiC-Coated Barrel Susceptor.


Parameters of Durable SiC-Coated Barrel Susceptor

Main Specifications of CVD-SIC Coating

SiC-CVD Properties

Crystal Structure

FCC β phase

Density

g/cm ³

3.21

Hardness

Vickers hardness

2500

Grain Size

μm

2~10

Chemical Purity

%

99.99995

Heat Capacity

J·kg-1 ·K-1

640

Sublimation Temperature

2700

Felexural Strength

MPa (RT 4-point)

415

Young’ s Modulus

Gpa (4pt bend, 1300℃)

430

Thermal Expansion (C.T.E)

10-6K-1

4.5

Thermal conductivity

(W/mK)

300


Features of Durable SiC-Coated Barrel Susceptor

- Both the graphite substrate and silicon carbide layer have good density and can play a good protective role in high temperature and corrosive working environments.

- Silicon carbide coated susceptor used for single crystal growth has a very high surface flatness.

- Reduce the difference in thermal expansion coefficient between the graphite substrate and silicon carbide layer, effectively improve the bonding strength to prevent cracking and delamination.

- Both the graphite substrate and silicon carbide layer have a high thermal conductivity, and excellent heat distribution properties.

- High melting point, high temperature oxidation resistance, corrosion resistance.




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