Custom Czochralski Crystal Growth
Description
Lattice Materials has exceptional capabilities in custom Czochralski (Cz) crystal growth in both silicon and germanium. Housed in our Bozeman, MT facility, our staff of talented crystal growth technicians can grow to demanding specifications. Whether it’s a hard to find size, a unique orientation or if you need custom electrical resistivity or optical transmission, we’re equipped to grow material for your project.
Custom silicon and germanium crystal growth is one of the most unique and important services that Lattice Materials provides. We can control things very few others can, including:
Electrical Resistivity
Infrared Optical Transmission
Monocrystalline Orientation
Relief of Internal Stresses through Annealing
Lattice Materials can grow over 14″ polycrystalline silicon and over 12.5″ monocrystalline silicon. We also commonly source larger diameter germanium and silicon ingots, over 18.5″. Work with us to solve your most challenging material requirements.
Custom Czochralski Crystal Growth
Specifications |
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Type Of Service: | Engineering design, Industrial design, Manufacturing design |
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
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Ships from:
United States
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Frequently Asked Questions
Czochralski crystal growth is a method used to grow custom silicon and germanium crystals with specific properties and specifications.
Czochralski crystal growth can be used to grow both silicon and germanium crystals.
Lattice Materials has exceptional capabilities in custom Czochralski crystal growth, including the ability to control electrical resistivity, infrared optical transmission, monocrystalline orientation, and relief of internal stresses through annealing.
Lattice Materials can grow over 14" polycrystalline silicon and over 12.5" monocrystalline silicon. They can also source larger diameter germanium and silicon ingots, over 18.5".
Lattice Materials can work with customers to solve their most challenging material requirements by growing custom silicon and germanium crystals with specific properties and specifications.