Achieving ultra-fine machining of φ0.015mm! For contact probe components, medical device parts, and industrial equipment parts!
With a CNC precision automatic lathe that enables the fine integrated processing of round objects with a diameter of 4mm or less, we can perform various shapes of cutting processing, including "turning," "punching," and "composite." Additionally, we offer high-precision cutting processing through the integration of fine measurement technology, the construction of optimal programs, and systematization for both small-batch and mass production, allowing for rapid processing of required quantities. 【Features】 ■ Capable of ultra-fine cutting processing with an outer diameter of φ0.05mm and above. Mass production is also supported. ■ Known for the beauty and stability of the turned surfaces. ■ Our unique processing technology reduces burrs. ■ Capable of processing ultra-fine holes starting from a hole diameter of φ0.09mm, with a clean inner surface. ■ Stable dimensional accuracy is maintained through our unique process management. ■ Support is provided even after product delivery through the submission of various documents, analysis, and evaluation. *For more details, please request materials or view the PDF data available for download.
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【Pd alloy processing】 ○ The finish of the cutting edge is sharp. ○ There is little warping in small diameter processed products. ○ Capable of hole processing. ○ Two types of materials are available. 【Materials】 ○ BeCu: C1730 HV350up ○ SK: SK4FS HV650±50 ○ Pd alloy: 1) HV370±20, 2) HV450up ○ Pipe material: C5191 ○ PB: C5441 ○ BS: C3604 ○ SUS: SUS303, SUS304 【Surface treatment】 ○ Heat treatment and plating are available. → AuCo plating → Rh plating → PdCo plating → Lubricating gold plating → Other multilayer plating ● For more details, please contact us or download the catalog.
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We contribute to the growth of companies with world-class micro-manufacturing technology. Since our founding in 1934, we have accumulated micro-machining technology learned from manufacturing parts for spring-driven watches, responding to high precision demands. Today, we have developed the capability to process materials as thin as 1/50th to 1/100th of what was possible at that time. We will continue to challenge ourselves to create even thinner and more precise products in the future.