Prevention of damage caused by shock and vibration!!
You can safely store and transport extremely thin wafers and other fragile wafers.
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basic information
■Dedicated transport case for 4-inch wafers It can safely store and transport fragile wafers, such as ultra-thin wafers. The W-4CC-40 uses a highly transparent resin (body and lid) with excellent visibility. The W-4BB-40 uses a low outgassing conductive resin (body and lid). The low outgassing cushion is non-silicone and does not contaminate the wafers. Wafers are held with minimal contact area at a few points within 2mm of the outer circumference. ■Prevention of damage from impact and vibration!! The elasticity and shape of the cushion absorb shocks and protect and hold the wafers. The cushion's slight stickiness allows for stable holding without rattling, yet it can be easily removed. ■Easy to handle!! The structure allows for easy setting and removal of wafers using tweezers or similar tools. The lid can be easily opened and closed, making it simple to handle the wafers. Wafers can be set without regard to their front or back. The lid can be removed, allowing the entire body to be set into devices such as microscopes. They can be stacked, effectively utilizing workspace.
Price information
The price varies depending on the quantity, so please feel free to contact us.
Price range
P1
Delivery Time
※The delivery date may vary depending on the quantity, so please feel free to contact us.
Applications/Examples of results
You can safely store and transport extremely thin wafers and other fragile wafers.
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Company information
Our company fully utilizes its unique plastic processing technology, metal processing technology, and wood processing technology to supply medical cabinets and carts to hospitals nationwide, establishing the number one domestic market share. We have significantly contributed to the labor-saving of logistics within hospitals. Additionally, we have successfully achieved large-scale molding (600mm x 400mm) of MX resin, one of the super engineering plastics, which boasts excellent heat resistance (up to 200°C) and chemical resistance, surpassing the strength of polycarbonate, marking the first success in Japan. The products created through our unique super engineering plastic injection molding technology contribute not only to the medical field but also to many advanced sectors such as semiconductors, aerospace, and railway vehicles. Our technology for molding functional resins with diverse features such as conductivity, heat resistance, chemical resistance, antistatic properties, adhesion, and low outgassing, along with our proprietary technology that combines plastics with silicone, resins, and metals (such as stainless steel and aluminum), is utilized in a wide range of fields including medical and electronics.