The concept of development is a versatile micro-machining machine capable of processing from heavy cutting to mirror finishing with a single unit.
Introducing our ultra-high precision high-speed micro-machining machine, 'Vision'. The development concept is a versatile micro-machining machine capable of processing from heavy cutting to mirror finishing with a single unit. It minimizes "cross processing" and completes rough machining, intermediate finishing, and finishing processes all in one machine. This is a new type of mother machine with a large stroke, expanding the processing area and applications for high-precision machining. It realizes a diverse world of micro-machining. 【Features】 ■ All-axis horizontally opposed mounted linear motor drive ■ Z-axis balance cylinder ■ Special ultra-precision rolling guide surfaces ■ Four-in-one + ONE ■ High rigidity basic structure *For more details, please refer to the PDF document or feel free to contact us.
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【Other Features】 ■ Suppression of spindle posture changes ■ Oil circulation forced cooling type double-layer jacket and forced heat dissipation measures ■ High-performance spindle with ceramic ball bearings ■ Heavy cutting processing ■ Mirror surface processing ■ True round cutting *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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Rokuroku Smart Technology is a machine tool manufacturer founded in 1903. In 1996, as the demand for further miniaturization and high performance was expected to rise, particularly in the electronic device industry, our company, which had primarily been manufacturing general-purpose machines, named high-precision and high-quality processing for small workpieces "microprocessing" and began the development, manufacturing, and sales of processing machines specifically designed for this purpose, called "microprocessing machines." Microprocessing machines are composed of high-precision positioning with high followability, high-speed spindles with dynamic runout accuracy, and machine structures with minimal thermal displacement and high recoverability. To fully realize their performance and achieve stable high-precision and high-quality processing, we proposed a "four-in-one" concept that emphasizes not only the pursuit of the machine itself but also the provision of optimally developed dedicated tools and CAM software, as well as the importance of creating the optimal environment (temperature and humidity), offering it as a total solution. We focus on achieving "visualization" of the machine's condition through sensors installed at key points of the machine, and we have realized a processing style called "four-in-one + ONE," which allows the machine's latent capabilities to be unleashed through operator intervention.