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ZMSH specializes in the production of sapphire lift pins, with a focus on the R&D, manufacturing, and sales of sapphire crystal materials. Sapphire lift pins are renowned for their exceptional strength, high hardness, corrosion resistance, and superior optical properties, making them ideal for high-end equipment manufacturing and precision machining applications. Additionally, ZMSH offers customized processing services, capable of designing and producing sapphire lift pins in various specifications to meet diverse industrial requirements.
Chemical composition | Monocrystalline Al2O3 |
Hardness | 9Mohs |
Optic nature | Uniaxial |
Refractive index | 1.762-1.770 |
Birefringence | 0.008-0.010 |
Dispersion | Low, 0.018 |
Lustre | Vitreous |
Pleochroism | Moderate to Strong |
Diameter | 0.4mm-30mm |
Diameter tolerance | 0.004mm-0.05mm |
length | 2mm-150mm |
length tolerance | 0.03mm-0.25mm |
Surface quality | 40/20 |
Surface roundness | RZ0.05 |
Custom shape | both ends flat, one end redius, both end redius, |
Sapphire lift pins are critical components in semiconductor and LED manufacturing equipment, primarily used for wafer transfer and positioning.
1. Wafer Support & Vertical Movement
In thin-film deposition (e.g., MOCVD), etching, or lithography
processes, robotic arms actuate sapphire lift pins to elevate from
the chamber floor, precisely supporting wafers (e.g., 2/4/6-inch
substrates) while maintaining level positioning to facilitate
loading and unloading operations.
2. Stable Performance in High-Temperature Environments
Sapphire (single-crystal Al₂O₃) boasts an ultra-high melting point
of 2050°C, enabling prolonged operation above 1000°C (e.g., GaN
epitaxial growth) without the risk of thermal deformation or wafer
contamination typical of metal pins.
3. Chemical Inertness for Process Integrity
With exceptional resistance to acids, alkalis, and plasma
environments, sapphire prevents impurity release during etching or
CVD processes, ensuring manufacturing purity (particularly critical
for wide-bandgap semiconductors like SiC/GaN).
Key Advantages
1. Ultra-Low Contamination: Compared to metal (e.g., molybdenum) or ceramic (e.g., AlN) alternatives, sapphire generates minimal particulate shedding, meeting Class 10 cleanroom standards.
2. Exceptional Hardness (Mohs 9): Surface scratch resistance extends service life beyond 100,000 cycles—5-8 times longer than quartz pins.
3. Matched Thermal Expansion Coefficient: Close alignment with SiC/GaN wafers (~7.5×10⁻⁶/°C) minimizes thermal stress-induced warping or cracking.
1. LED Epitaxial Wafer Production: Supports sapphire substrates during GaN epitaxial growth in MOCVD reactors.
2. Power Semiconductor Fabrication: Enables high-temperature ion implantation or annealing processes for SiC wafers.
3. Advanced Packaging: Ensures micron-level precision positioning for ultra-thin wafers (thickness <100μm) in wafer-level packaging (WLP).
ZMSH specializes in high-quality sapphire rods, engineered for superior strength, thermal stability, and corrosion resistance. Whether you need standard dimensions or custom-designed solutions, we offer precision machining to meet exact specifications.
1.Q: What are sapphire lift pins used for?
A: Sapphire lift pins are primarily used in semiconductor and LED
manufacturing for precise wafer handling due to their high
hardness, thermal stability, and chemical resistance.
2.Q: Why choose sapphire lift pins over metal or ceramic
alternatives?
A: Sapphire lift pins outperform metal and ceramic options with
superior wear resistance, minimal particle generation, and longer
lifespan in high-temperature or corrosive environments.
Tag: #Sapphire Lift Pins, #Shape and size customized, #Sapphire
Rods, #Precision Manufacturing, #Industrial Applications, #Wafer
Handling