Shenzhen Hard Precision Ceramic Co., Ltd.

Alumina Ceramic Arm for Robotic Wafer Handling

  1. Maison
  2. /
  3. Classification des matériaux
  4. /
  5. Céramiques à base d’alumine
  6. /Alumina Ceramic Arm for Robotic Wafer Handling

Alumina Ceramic Arm for Robotic Wafer Handling

Caractéristiques de conception

Excellent Heat Resistance

Alumina ceramics can operate stably at temperatures up to 1650°C, which is crucial for the high-temperature environments common in semiconductor manufacturing.

High Wear Resistance and Chemical Stability

This material offers exceptional resistance to mechanical wear and chemical corrosion, ensuring long-term durability and stability.

Non-Conductivity

The non-conductive nature of alumina ensures that no static interference occurs when handling sensitive electronic components, which is essential for preventing damage to delicate circuits.

Optimized Geometric Design

Featuring multiple mounting holes and two elongated handles, the design allows for easy attachment to other mechanical equipment while maintaining high precision in operations.

Surface Treatment

A smooth surface finish reduces friction, enhancing accuracy and reliability during handling processes.

Domaines d’application

Alumina ceramic arms have widespread applications in semiconductor manufacturing, primarily including the following areas:

Silicon Wafer Handling

Accurately transporting and positioning silicon wafers under extreme conditions, ensuring efficiency and precision in the manufacturing process.

Handling Sensitive Electronic Components

Operating without generating static electricity, protecting the integrity and functionality of electronic components.

Operation in High-Temperature and Corrosive Environments

Stability in chemical gas and high-temperature environments makes it extremely useful in specialized processes such as etching and cleaning.

Demande en ligne
Produits connexes
Introduction des matériaux céramiques au nitrure de bore
Introduction aux matériaux céramiques en carbure de silicium
Introduction aux matériaux céramiques en nitrure de silicium
Introduction aux matériaux céramiques Macor
Bague d’étanchéité polie en céramique de zircone stabilisée au magnésium
Impulseur en céramique d’alumine super résistant à l’usure