Used TAKATORI MWS-612DD #9294560 for sale
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TAKATORI MWS-612DD is a crystal growing, sawing and slicing equipment designed to produce high precision optical components. It uses a specialized cutting and grinding process to cut agates at a controlled rate of speed and feed. This system consists of a substrate holder, a sawing chuck, a grinding wheel, and a tilting mechanism for precise slicing. The substrate holder is mounted on a rotary table and can hold substrates up to 150mm in diameter. The sawing chuck is then mounted to the substrate holder and holds a diamond-tipped saw blade spinning at high speeds between 3000 and 6000 RPM. The grinding wheel is then mounted on the tilting mechanism and can be adjusted to the correct angle for precise cutting. To grow a crystal, a substrate is placed on the substrate holder and held in place with vacuum. The diamond saw blade is then fixed at the substrate's center, and the grinding wheel is adjusted to the desired angle. The sawing chuck is then slowly lowered onto the center and crystals can then be grown. This unit is able to cut slices from the substrates without affecting the orientation of the crystals and can be used to produce semiconductor wafers. Once the crystal is grown, the slicing process begins with the grinding wheel and the tilting mechanism aligned in the correct positions. The wafers are then cut from the crystal at a controlled rate and feed. The diamond cutting blade ensures that the cut is done perfectly and with no chatter or burring. The grinding wheel is then lowered for slicing the wafers. This process is done at a controlled speed so that there is no interference from the diamond-tipped saw blade. The machine is also equipped with an automatic cooling mechanism to ensure that the cuts are done precisely. In addition to that, the tool also has a built-in optical sensor to detect the height of the substrate for precise levels of cutting. TAKATORI MWS 612DD is perfect for producing high precision optical components and cutting them with great precision. It is well suited for a variety of applications including semiconductor wafers and quartz crystals. The superior precision and accuracy of this asset make it ideal for applications in the electronics industry.
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