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Ningbo Miami Advanced Material Technology Co., LTD

Ningbo Miami Advanced Material Technology Co., LTD
about us

semiconductors

Ningbo Miami Advanced Material Technology Co., LTD Smicera Semiconductor(Ningbo Miami Advanced Material Technology Co., LTD) is a high-tech enterprise focusing on the production and sales of high-end advanced materials, the materials and technology include graphite, silicon carbide, ceramics, CVD SiC/TaC coating surface treatment and so on. The products are widely used in photovoltaic, semiconductor, new energy, metallurgy,etc.. Over the years, passed ISO 9001:2015 international quality management system,we have gathered a group of experienced and innovative industry talents and R & D teams, and have rich practical experience in product design and engineering applications. With R & D capabilities from key materials to end application products, the core and key technologies of independent intellectual property rights have achieved a number of scientific and technological innovations. By virtue of stable product quality, the best cost-effective design scheme and high-quality after-sales service, we have won the recognition and trust from our customers.
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How to Perform a SIC Code Lookup for Coating Processes

Learn how to perform a sic lookup coating for processes like painting or hot dipping. Discover tools, tips, and methods to ensure accurate SIC code classification.

Powder Coating and SiC Coating Comparison for Industrial Applications

Compare powder coating and SiC powder coating for industrial use. Discover their durability, cost, and applications to choose the best solution for your needs.

How does TaC CVD Coating improve manufacturing yield?

TaC CVD Coating enhances manufacturing yield by using the cvd coating process to improve tool durability, reduce defects, and ensure precision in production.

What makes TaC CVD Coating superior to traditional materials?

TaC CVD Coating offers superior durability, thermal stability up to 2300°C, and chemical resistance, outperforming traditional materials in extreme conditions.

How TaC Coating Boosts Wafer Susceptor Efficiency

TaC coating enhances wafer susceptor efficiency by improving heat distribution, durability, and chemical resistance, ensuring superior semiconductor performance.

How Is SiC Coating Used in Semiconductor Fabrication

SiC coating enhances semiconductor fabrication by improving thermal management, durability, and contamination control, ensuring efficiency and reliability.

The Importance of Silicon Carbide Coating in Engineering Solutions

Silicon carbide coating enhances durability, thermal stability, and efficiency in engineering, making it vital for aerospace, automotive, and industrial applications.

Silicon Carbide Coating: A Key Material in Industry

Silicon carbide coating offers unmatched hardness, thermal stability, and wear resistance, making it essential for aerospace, electronics, and renewable energy.

Emerging Trends in SiC Coated Susceptors for 2025

Discover 2025 trends in SiC coated susceptors, focusing on thermal performance, durability, and eco-friendly innovations for advanced semiconductor manufacturing.

Pros and Cons of PG Coated Graphite in Industrial Use

PG coated graphite offers durability, thermal conductivity, and chemical resistance but faces challenges like high cost, limited availability, and fragility.

Top 5 SiC Coated Graphite Products Compared

Compare the top 5 SiC coated graphite products, highlighting their features, benefits, and applications in industries like semiconductors, aerospace, and more.

What are SiC Coated Graphite Components

SiC coated graphite components combine graphite's strength with SiC's durability, offering thermal stability, corrosion resistance, and reliability in industries.

Silicon Carbide Coating: Properties and Industrial Uses

Silicon carbide coating offers exceptional hardness, thermal stability, and corrosion resistance, making it vital for aerospace, automotive, and energy industries.

Silicon Carbide Properties: How to Choose Wisely

Understand silicon carbide properties to select the best material for engineering projects. Learn how its hardness, thermal, and electrical traits fit your needs.

Silicon Carbide Coating Explained: Uses and Advantages

Silicon Carbide Coating enhances durability, heat resistance, and corrosion protection, making it ideal for aerospace, automotive, and industrial applications.

The Role of Silicon Carbide Coating in Modern Technology

Silicon carbide coating enhances durability, heat resistance, and efficiency in industries like electronics, aerospace, and renewable energy systems.

An Overview of Silicon Carbide Coating and Its Benefits

Silicon carbide coating offers durability, heat resistance, and corrosion protection, enhancing performance and lifespan in demanding industrial applications.

The Role of Silicon Carbide Coating in Modern Technology

Silicon carbide coating enhances durability, heat resistance, and efficiency in industries like electronics, aerospace, and renewable energy systems.

SIC Coating

SIC Coating enhances durability, resists wear and corrosion, and performs under extreme temperatures, making it ideal for aerospace, automotive, and electronics.

What Are the Everyday Uses of Silicon Carbide Coated Susceptors

Silicon carbide coated susceptors enhance semiconductor manufacturing, solar panels, EV batteries, and more with durability, thermal efficiency, and sustainability.

Emerging Market Trends for SiC Coated Susceptors in 2025 and Beyond

Discover how SiC-coated susceptors are driving innovation in semiconductors, renewable energy, and EVs, with market growth projected to surge beyond 2025.

How To Choose The Right Silicone Conformal Coating For PCB Protection In 2025

Choose the best silicone conformal coating for PCB protection in 2025. Learn how TaC coatings enhance durability, flexibility, and resistance to extreme conditions.

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