Hexagonal Star Plate
Hexagonal Star Plate
Hexagonal Star Plate
Hexagonal Star Plate

Hexagonal Star Plate

  • element:Silicon
  • purity:High Purity
  • shape:Hexagonal
  • specification:Customizable based on customer requirements
  • packaging:Customizable based on customer requirements

Hexagonal star plate is a precision-engineered optical and structural component designed for superior thermal stability, enhanced mechanical durability, and controlled optical properties. Manufactured from high-purity materials, it offers excellent resistance to environmental stress, minimal thermal expansion, and optimized light transmission characteristics. This specialized material is widely used in semiconductor processing, aerospace applications, scientific instrumentation, and advanced optical systems, ensuring reliable performance in high-tech environments.

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Product Overview
The hexagonal star plate is a precision-crafted quartz product that combines high purity, excellent high-temperature resistance, and strong chemical stability. Its hexagonal structure design provides optimal physical and optical properties, making it ideal for semiconductor manufacturing. The hexagonal star plate is commonly used in semiconductor production for wafer support, reactors, and material platforms. It maintains stable performance in high-precision and high-temperature environments, ensuring efficient and accurate semiconductor manufacturing processes.

Key Features

  • High Purity: Made from high-purity silicon material to ensure stability and reliability in precision applications.
  • High-Temperature Resistance: Capable of withstanding extreme temperatures, suitable for semiconductor processing.
  • Chemical Stability: Resistant to corrosion and chemical attack, making it ideal for various chemical reaction environments.
  • Precise Shape Design: The hexagonal structure provides good mechanical strength and stability.
  • High Transparency: Ensures excellent optical performance and light transmission in optical and high-precision applications.

Applications

  • Semiconductor Industry: Used for wafer support, processing, and transportation in semiconductor manufacturing.
  • Optical Equipment: Provides stable support and material holding in high-precision optical instruments.
  • High-Temperature Reaction Equipment: Serves as a material-bearing platform in high-temperature reactors or heating systems.
  • Laboratory Applications: Used for material support and holding in research experiments, particularly in extreme environments.

 

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