3D Potter 3D PotterBot 10 Super vs Lithoz CeraFab Multi 2M30
Technical comparison · 3D printing with clay & ceramics
3D PotterBot 10 Super leads on the available specs (starting with work area); CeraFab Multi 2M30 makes sense only for non-technical reasons (availability, support, ecosystem), or if the missing data matters in your case.
| Parameter |
3D PotterBot 10 Super
3D Potter
F2 · Intermediate
|
CeraFab Multi 2M30
Lithoz
F2 · Intermediate
|
|---|---|---|
| Identity | ||
| Use tier | F2 — Intermediate | F2 — Intermediate |
| Price | ||
| Price (€) | ~7950–8050 € | — |
| Universal specs | ||
| Dimensions (W×D×H) (cm) | 66 × 86 × 102 cm | 85 × 180 × 178 cm |
| Weight (kg) | 23 kg | — |
| Work area (mm) | 415 × 405 mm | 76 × 43 mm |
| Z-axis height (mm) | 500 mm | 170 mm |
| Voltage (V) | 220 V | — |
| Maximum speed | 200 mm/s | — |
| Declared precision | — | 35 um |
| Ecosystem | ||
| Cloud dependency | No | No |
| Software notes | The machine integrates a proprietary web interface accessible via WiFi or Ethernet, eliminating the need for locally installed software. The firmware manages real-time control of extrusion parameters directly from the browser, supporting common workflows based on G-code files generated by standard slicers optimized for ceramic deposition profiles. | The system uses proprietary Lithoz software to control polymerization parameters and manage the multi-material process, essential for layer synchronization. The interface is designed for integration with industrial workflows and does not support consumer slicer ecosystems like Cura or PrusaSlicer, requiring specific training on the manufacturer's production protocols. |
The differences that matter
- Work area: 3D PotterBot 10 Super 415×405 mm vs CeraFab Multi 2M30 76×43 mm — 3D PotterBot 10 Super wins (+5043%)
Which one to choose
MakerSpecs is an independent atlas. We don't sell products: this comparison links to both sheets, where you'll find complete data and official links.