Solve your problems with beam processing! "Handbook of Precision Microfabrication Technology"
We manufacture special specifications that cannot be obtained from commercially available standard products, such as micro foreign matter samples, pinholes for leak tests, and ultra-fine meshes. *Case study collection available.
This case study collection is a precision machining technology handbook that addresses issues related to microfabrication, featuring examples such as "ultra-fine mesh processing" and "glass material microstructure processing." Our company accepts special specifications that cannot be obtained from commercially available standard products, including micro foreign matter samples, pinholes for leak testing, and ultra-fine meshes. For beam processing contract services, trust Toray Precision Co., Ltd. for total support from prototype consideration to finishing processing. 【Featured Cases (Excerpt)】 ■ Ultra-fine mesh processing ■ Pinhole and slit processing for leak testing ■ Groove processing for ultra-fine leak testing ■ Transparent conductive film processing ■ Glass material microstructure processing *For more details, please refer to the PDF document or feel free to contact us.
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◆ Ultra-fine mesh processing - We perform ultra-fine mesh processing on metal materials (no mask required) ◆ Pinhole and slit processing for leak testing - For leak evaluation related to vacuum equipment and inspection devices - Impact assessment of pinholes in food and medical applications, as well as orifices for fluid measurement ◆ Groove processing for ultra-fine leak testing - Artificially reproducing defects for scratch and crack inspection - Compatible with brittle materials at arbitrary widths and depths ◆ Transparent conductive film processing - For prototype applications of resistive film touch panels and capacitive touch panels - Maskless removal processing and patterning of transparent conductive films - Patterning processing of metal coatings (deposited films) ◆ Fine structure processing of glass materials - Ideal for small quantity and diverse prototype production with maskless processing ◆ Biological filters - Ultra-fine mesh processing for cell and bacteria separation applications - Fine hole processing with a small pore diameter of φ0.5μm - Capable of processing irregular shapes and slits ◆ Micro foreign matter samples - Custom-shaped and sized calibration micro foreign matter samples for contamination inspection in pharmaceuticals and food - Providing high precision, high quality, and convenience in samples *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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Precision micro-machining technology is increasingly recognized as a common foundational technology that supports modern advanced industries. Since its establishment in 1955, Toray Precision Co., Ltd. has manufactured spinnerets, which are key technologies for synthetic fiber production, and has contributed to the development of the synthetic fiber industry by providing them to fiber manufacturers worldwide, including Japan and Europe and the United States. Meanwhile, the experience and technology gained during this time in precision micro-machining have been widely applied to other industrial sectors. Precision machined components are incorporated into critical parts of aircraft, industrial robots, measurement and control equipment, etc. Additionally, the specially developed and designed fluid nozzles have demonstrated their functionality as important components in various industrial machines. The ultra-precision micro-machining technology, boasting sub-micron precision, is also utilized in the optical communication field, which is essential for realizing a highly information-oriented society. We have also commercialized various optical devices, including optical components such as ferrules and adapters. As a pioneer in ultra-precision micro-machining technology, we will continue to contribute to society by delivering high-precision, high-quality products.