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3D Printing Product List

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Moldless Casting vs. Metal 3D Printing [Digital Sintering Version]

Moldless lost-wax casting "Digital Cast" and metal 3D printing "Digital Sinter," what is the optimal solution for your needs?

★Comparison of the Differences and Advantages between Moldless Casting "Digital Cast" and Metal 3D Printing "Digital Sinter"! In recent years, manufacturing technology for metal parts has evolved dramatically. Moldless casting methods and metal 3D printing are particularly attracting attention in our technology category. 【Advantages of Metal 3D Printing: Digital Sinter】 ■ Overwhelming Speed Digital Sinter has a lead time of about one week (with the shortest record being two days), making it very advantageous for prototypes and small-scale production that require urgent responses. ■ Strong in Producing Complex Shapes and Small Parts The maximum size it can accommodate is 80mm on each side, but it excels in manufacturing small and complex-shaped parts. It is ideal for small components in medical devices and electronic devices, as well as for developing very small quantities of parts. ■ Specific Steel Type Compatibility The materials that can be used are limited to SINTER T (SUS316L) and SINTER D (pure copper, SUS316L, SUS630). This allows for the rapid provision of difficult-shaped items. *This is a guideline for the maximum size and steel types based on our metal 3D printing service. 【What is the Best Metal Forming for Your Needs?】 We provide the optimal manufacturing method for your project, along with VE proposals, based on the purpose of part procurement (QCD) and specification conditions.

  • Machine elements
  • Other electronic parts
  • gear

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World's smallest level! Ultra-fine 3D printing

Minimum shape dimension 0.2μm Innovate your business with ultra-fine 3D printing services!!

This is a contract service specializing in prototyping micro lenses, diffractive optical elements, microneedles, MEMS, etc., using the world's highest precision 3D photolithography technology. The ultra-fine 3D printing service is a fabrication service utilizing the Nanoscribe system, a 3D photolithography device developed through collaborative research between Castem and Kyoto University of Advanced Science. By employing two-photon polymerization 3D printing technology and IP resin with sub-micron resolution, this system can produce shapes and precision that are impossible with conventional methods. The ultra-fine 3D printing service is actually utilized in research and industrial fields such as: ■ Mechatronics ■ Biotechnology ■ MEMS ■ Microelectronics ■ Optics ■ Medical ■ Materials Engineering

  • lens
  • Microscope
  • Microarrays and DNA chips

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Moldless Casting vs. Metal 3D Printing [Digital Cast Version]

Moldless casting "Digital Cast" and metal 3D printing "Digital Sinter," what is the optimal solution for your needs?

★Comparison of the Differences and Advantages between Moldless Casting "Digital Cast" and Metal 3D Printing "Digital Sinter"! In recent years, manufacturing technologies for metal parts have evolved dramatically. Moldless casting methods and metal 3D printing are particularly attracting attention in our technology category. 【Advantages of Moldless Casting: Digital Cast】 ■Short Lead Time The lead time is only 2 weeks (with the shortest turnaround time being just 5 days). This helps shorten development periods and construction times. ■Wide Range of Metal Materials Available Digital Cast allows for the selection of over 70 types of materials (casting materials). It can accommodate a wide range of needs, including iron, stainless steel, aluminum, copper (including pure copper), special alloys (such as duralumin A7075 and Inconel), heat-resistant steel, tool steel, and high-speed steel. This provides designers with more flexible options. ■Manufacturing Capable from Small to Medium to Large Parts It can accommodate sizes up to 500 mm square. It is ideal for manufacturing small to medium and large parts. ■Rational Prototype Verification with an Eye on Mass Production Casting During mass production repeats, products are formed using the lost-wax precision casting method (our core technology), and it is a rational verification method to prototype and verify similar cast products before manufacturing, especially in terms of evaluating mechanical properties (such as strength confirmation).

  • gear
  • joint
  • nozzle

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