Used SILICONE TECHNOLOGY 15-5 #9363460 for sale

SILICONE TECHNOLOGY 15-5
ID: 9363460
Wire saw.
SILICONE TECHNOLOGY 15-5 is a crystal growing, sawing and slicing equipment designed for large scale production of high-quality crystalline materials for optical and electronic applications. It is a two-stage process that begins with the preparation of a liquid silicon solution which is then sealed in a vacuum chamber for the growth of the crystals. The chambers are fitted with heating elements and a dc power source which are used to form a low-pressure, highly uniform environment in which the crystals grow. The solution is heated to a temperature of 15°C, and the heated solution is stirred by a rotating boat. As the solution reaches a predetermined temperature and molten silicon droplets are formed by the stirring process, the crystal nucleation process begins. The nucleation process is the formation of small clusters of crystals, which form the basis for further growth. When the crystal nucleation stage is complete, the temperature in the system is lowered to 5°C and the molten silicon droplets solidify into intricate crystals. The next step in the process is to use a laser cutting unit to separate the crystals into the desired shape. The laser is used to cut the crystals into thin slices or wafers of a predetermined thickness. These slices are then mounted on a carrier for the polishing process, which ensures a high-quality surface finish. Finally, an optical inspection machine ensures that each crystal has been cut accurately and is free of any defects. Once the inspections are complete, the finished material is ready to be used in a variety of electronic or optical applications. Overall, 15-5 offers a reliable, high-quality process for producing a wide range of crystalline materials for use in advanced technologies. The tool ensures an accurate, repeatable production process and eliminates inconsistencies in the crystal size and shape caused by manual operations. Additionally, the use of the laser cutting technology saves time and reduces labor costs, while the automated inspection asset ensures a defect-free product. The two-stage crystal growing process also helps to reduce defects and maximize the yield of crystals with excellent optical and electronic performance.
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