Produces discrete electrode blanks with repeatable dimensional control for standardized cell formats and stable batch output.
Why this machine: Mechanical die-cutting delivers predictable accuracy and uniform pressure distribution at a lower operating cost for standardized, fixed formats.
Ideal User: Manufacturers of industrial/ESS batteries or pilot-to-production lines with stable coating recipes.
When to choose: When dimensions are fixed and production stability is prioritized over design flexibility.
Related Equipment: Single-piece laser notching & cutting machine · Multi-tabs laser notching & slitting machine · Laser electrode grooving machine
These features ensure repeatable discrete electrode blanking with controlled dimensional registration.
This machine is designed for die-cutting of single-piece electrode sheets for pouch and prismatic cells.
Its core functions include:
When This Equipment Becomes the Better Option
— Stable single-format electrode production with minimized changeover costs
Used for fixed-format electrode designs across pouch and prismatic cells where repeatable mechanical forming is required.
Typically selected for mature processes with predictable specifications.
| Incoming material coating way | continually coating, with tab on single-side |
| Capacity: | ≥280ppm |
| Die service life: | ≥10 million times |
| Burr size: | ≤15μm |
| Magazine stacking alignment accuracy: | ±0.5mm |
| Dust removal method: | by contact |
| Dust removal particle size: | ≥5μm |
| Dust removal efficiency: | ≥95% |
| OEE (Overall equipment effectiveness): | ≥98% |
| Machine weight: | around 7T |
| Machine noise level: | ≤75db |
| Machine Dim. (reference) | 7000×1850×2500mm (LxWxH) |
This section describes where the Monolithic Electrode Die-cutting Machine operates within batch-style electrode preparation.
Electrode sheets are die-cut into fixed geometries suitable for pilot production and controlled assembly workflows.

Packaging focuses on die tooling, press alignment, and dimensional reference protection.
This equipment is built upon the patented
“High-Speed Web Handling Mechanism for Single-Sheet Die-Cutting Machines.”
The mechanism stabilizes electrode transport under high-speed intermittent feeding, maintaining consistent tension and positional tracking throughout the cutting cycle.
By ensuring controlled material conveyance rather than relying on post-cut correction, it reduces deformation risk and preserves dimensional repeatability during continuous production.
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