“Silicon Nitride” in Semiconductors

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What is silicon nitride (SiN)?

Silicon-nitride, an inorganic material with the formula Si3N4, is a substance. It is a ceramic structural material with high wear resistance, inherent lubricity and high hardness. It is a atomic crystal and resists oxidation in high temperatures. It is also resistant to the effects of both cold and heat. It will not break if heated in the air to over 1000degC and then quickly cooled, followed by a rapid heating. The excellent characteristics of silicon-nitride ceramic are the reason why it is used so often to manufacture mechanical parts such as bearings. turbine blades. mechanical seal rings. permanent molds. Silicon nitride Ceramics are resistant to heat and are difficult to transfer. They can therefore be used to create the heating surfaces for engine components.

The future trend in the market will be silicon nitride-ceramic substrates

Semiconductors develop towards high-power and high-frequency semiconductors. Semiconductor products are used widely in many fields, including wind energy generation, solar photovoltaic electricity generation, electric cars, LED lighting, etc. Ceramic substrates, as electronic components, play an important role in LED lighting’s heat dissipation.

Semiconductor packing materials are substrates with good electrical insulation that contain electronic components and interconnections. The substrate should possess the following characteristics: high insulation and resistance against electrical breakdown.


Substrates that are commonly used include ceramic, glass ceramic, diamond, resin, silicon, metal, or metal composites. Ceramics, for example, have been a favorite because of their high thermal conductivity (higher than metal or composite materials), good insulation properties, and stable chemical properties.


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