Funding
Funding not disclosed
Founders
Product
Problem
The manufacturing of new energy batteries, particularly solid-state batteries and dry electrodes, faces challenges in achieving high precision, material compatibility, and efficient production processes, hindering the scalability and performance of these advanced battery technologies. Traditional methods often struggle with solid-solid interface compatibility, solvent selection conflicts, and the unique requirements of materials like lithium metal and nano-silicon.
Solution
Tope provides comprehensive intelligent manufacturing solutions for new energy battery production, specializing in solid-state batteries and dry electrodes. Their core offering includes customized production line design, equipment integration, and process optimization, addressing key challenges in material handling, interface compatibility, and production efficiency. By combining high-precision 3D printing, dry electrode manufacturing techniques, and AI-driven automation, Tope enables the transition from laboratory research to scalable, high-volume manufacturing of advanced battery technologies. Their solutions encompass the entire production cycle, from material preparation and electrode fabrication to cell assembly and testing, ensuring optimal performance and manufacturability.
Target Audience
Tope's primary customers are new energy companies, battery manufacturers, and research institutions focused on developing and scaling up the production of solid-state batteries and dry electrodes.
Features
- High-precision 3D printing technology for continuous, multi-layer electrode manufacturing, enhancing solid-solid interface compatibility.
- Dry electrode manufacturing equipment with proprietary fiberization technology for improved material dispersion and mechanical properties.
- Integrated solutions for solid-state battery production, including dry and wet process combinations, addressing solvent selection conflicts.
- Specialized equipment for lithium metal and nano-silicon electrode fabrication, overcoming material handling and processing challenges.
- Battery densification technology to improve the interface contact between electrodes and electrolytes.
- Hot-pressing formation technology to maintain material interface contact during testing.
- Automated material feeding and film composite equipment with multi-stage differential speed rollers for uniform film thickness and density.
- All-solid-state battery rapid intelligent manufacturing pilot line, integrating 3D printing and automation for efficient prototyping.
- Dry method small test line for dry electrode manufacturing process development.