SPECIFICATIONS
Acceleration: 10000mm/s²
Connector Type: WIFI
Extruder Temperature: ≤350℃
Filament: PA-CF/GF PET-CF/GF HtPA-CF/GF ABS-GF25 PA-GF25 S-Mulit S-HtPA PVA
File Format: STL OBJ 3MF Gcode
Firmware: klipper
Hot Bed material: PEI
Max build volume: 100% 600*600*600mm
Max flow: 40mm³/s
Max print speed: 500mm/s
Model: MD-600D
Plate Type: Flatbed
Rated Power: 1400W(Hot bed power 1200W)
Supporting Material: PLA,ABS,PETG,PETG-CF,PC,PA12-CF,PET-CF,TPU,Nylon,like metal
application: PROTOTYPING
automatic grade: Automatic
brand name: Mingda 3D
color & page: Two colors
condition: New
dimension(l*w*h): 1300*965*1255mm
features: Multi-axis,Heated Bed,dual extruder,Resume Printing,Filament Detection,auto leveling
filament diameter: 1.75MM
place of origin: Guangdong, China
production capacity: 1000pcs/month
usage: 3d printer for industry
voltage: 110-220V
warranty: 1 Year
weight: 400
Printing | ||||
Model Name | MD-600D | |||
Build Volume | 600x600x600mm | |||
Machine Dimensions | 1300*965*1255mm | |||
Print Technology | FDM | |||
Number of Nozzle | Auto-rising Dual Extruders 350℃ | |||
Layer Resolution | 0.05 mm-0.3mm | |||
Filament Diameter | 1.75 mm | |||
Filament Compatibility | Common Filament: PLA,ABS,TPU,PETG Engineering Filament: PA-CF/GF,PET-CF/GF,HtPA-CF/GF,ABS-GF20,PA-GF25/CF25 Support Filament: S-Mulit,S-HtPA,PVA,etc. | |||
Nozzle Diameter | 0.4mm ( 0.6, 0.8, 1.0mm) | |||
Temperature | ||||
Max. Nozzle Temp. | 350℃ | |||
Max. Bed Temp. | 110℃ | |||
Speed | ||||
Best Printing Speed | 200-300mm/s | 150-200mm/s | ||
Max Printing Speed | 500mm/s | 200mm/s+ | ||
Max Flow | 40mm³/s | |||
Levelling | Auto Leveling and Babystep | |||
Eletrical | ||||
Power Requirements | 110V/240AC 50/60Hz | |||
Max. Power | 1400W(Hot Bed Power:1200W) | |||
Screen | 7.0 inch HDMI Touch Screen | |||
Connectivity | USB,Wifi | |||
Software | ||||
Support Software | Mingda-Cura,Prusa Slicer,etc. | |||
Firmware | klipper | |||
● Learn faster and iterate designs in hours and days, not weeks and months
● Avoid expensive, outsourced, and traditional slow production
● Slash lead times with on-demand production and avoid outsourcing logistics
● Reduce production and material costs of optimized tooling
● Speed up design iteration, product testing, and production
● Minimize outsourcing, external logistics, and supply chain dependence
● Produce on-demand to reduce inventory and warehousing
● Reduce lead times and get to market fast to stay ahead of the competition