OTHERAnycubic
The Anycubic Kobra 3 Max combines a build volume of 420 x 420 x 500 mm with intelligent automation for fast, precise results in prototyping, small-batch production, and functional model making. Optimized mechanics, AI-powered monitoring, and sophisticated filament management reduce waste and boost productivity. The Kobra 3 Max’s build volume is equivalent to more than two carry-on suitcases and enables ultra-large parts to be printed in a single piece. The object-jumping function efficiently positions multiple parts, reduces filament waste, and improves throughput and cost structure in series production. Large individual parts or parallel print jobs on a single plate: The spacious print bed provides flexibility for 3D printing of prototypes, fixtures, and final components. Optimized paths shorten travel distances, minimize empty runs, and stabilize cycle times. LeviQ 3.0 automatically calibrates the build plate and compensates for Z-axis tolerances to ensure perfect first layers. Dual Y-axis motors prevent layer misalignment, while semi-automatic belt tensioning and one-click resonance compensation effectively reduce vibrations. Dynamic flow compensation stabilizes material deposition. The precise drive and fine-tuned mechanics ensure reproducible quality—even with large-area first layers. For users, this means fewer failed prints, consistent surfaces, and predictable processes in everyday 3D printing. With speeds of up to 600 mm/s, the Kobra 3 Max significantly reduces turnaround times. The large-area heated bed reaches the target temperature in approximately 125 seconds. The filament management system offers automatic refilling, anti-tangling, and intelligent multi-spool drying for consistent material properties. The combination of high print speed, a thermally homogeneous bed, and active filament handling ensures repeatable results with PLA, PETG, and comparable filaments. The optimized position of the filament cutter shortens changeover times and reduces material waste. The hotend is designed for quick maintenance and allows for fast nozzle changes. The nozzle sleeve made of aerospace-grade ceramic composite increases service life. The dual-spring design stabilizes the feed, while AI spaghetti detection stops faulty jobs early. Precise temperature control up to 300 °C opens up possibilities for high-performance materials. Automatic error detection reduces rework and protects both the system and the parts—a plus for reliable, continuous manufacturing processes in FDM 3D printing. Anycubic Slicer Next (based on Orca) offers LAN mode and multi-bed management. The Anycubic app enables remote control, real-time monitoring, and time-lapse. Makeronline provides models, supports one-click slicing, and allows direct print initiation.
MaschinentypThe printing technology — FDM uses filament, SLA/DLP use resin, SLS uses powder
OTHER
BauraumMaximum printable size (Width x Depth x Height). Larger = bigger single-piece prints
400 × 400 × 500 mm
DruckgeschwindigkeitMaximum print speed in mm/s. Real-world speeds are usually 30-70% of max
bis zu 250 mm/s
DüsentemperaturMax nozzle temp determines which materials you can print — 300°C+ needed for Nylon/PC
bis zu 260 °C
HeizbetttemperaturMax heated bed temp — 100°C+ needed for ABS/ASA to prevent warping
bis zu 100 °C
SchichtauflösungMinimum layer height. Smaller = finer detail but slower prints
ab 0.1 mm
DüsendurchmesserStandard is 0.4mm. Smaller for detail, larger for speed
0.4 mm
FilamentdurchmesserMust match your filament — 1.75mm is standard, some use 2.85mm
1.75 mm
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