593iCAN provides high-precision 3D printers engineered for the controlled deposition of semissolid materials like hydrogels and ceramic pastes. Their systems offer robust hardware and integrated software for accurate bioprinting and advanced material fabrication in research settings.
Funding
Funding not disclosed
Founders
Product
Problem
The precise deposition of semissolid materials, such as gels, hydrogels, and ceramic pastes, presents significant challenges in research and development. Achieving consistent accuracy and stability during the printing process is critical for applications in fields like tissue engineering and biofabrication.
Solution
593iCAN offers advanced 3D printing solutions specifically engineered for semissolid materials. Their robust printer hardware, featuring high-quality linear guides and sliders, ensures exceptional precision and stability for complex material deposition. The integrated extrusion head, powered by high-torque motors, facilitates controlled dispensing of pseudoplastic materials including bioprinting inks and ceramic pastes. This hardware is complemented by the proprietary BIOSCAFFOLDS software, which enhances operational flexibility, though it is also compatible with various open-source slicing applications. These integrated systems are designed to meet the demanding requirements of advanced material science research.
Target Audience
The primary customers are researchers and developers in fields such as tissue engineering, biofabrication, and advanced materials science who require precise 3D printing capabilities for semissolid substances.
Features
- High-precision 3D printers designed for semissolid and pseudoplastic materials (gels, hydrogels, ceramic pastes, bioprinting inks).
- Robust hardware construction utilizing linear guides and sliders for enhanced stability and accuracy.
- Extrusion head equipped with 10 ml syringes and 5 kgf.cm torque motors for controlled material deposition.
- Integrated BIOSCAFFOLDS software for operational flexibility, with compatibility for open-source slicing software.
- Capable of handling a diverse range of materials, enabling applications in tissue engineering, biofabrication, and smart material printing.