Pre-owned FANUC M-410iB/700 Ultra-Heavy Palletizing Robot, Address Extreme Weight Handling Challenges In Raw-Material Bulk Processing Plants

Pre-owned FANUC M-410iB/700 Ultra-Heavy Palletizing Robot, Address Extreme Weight Handling Challenges In Raw-Material Bulk Processing Plants

$50,000.00
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Pre-owned FANUC M-410iB/700 Ultra-Heavy Palletizing Robot, Address Extreme Weight Handling Challenges In Raw-Material Bulk Processing Plants

Pre-owned FANUC M-410iB/700 Ultra-Heavy Palletizing Robot, Address Extreme Weight Handling Challenges In Raw-Material Bulk Processing Plants

$50,000.00

Extra Information:

Brand:
FANUC Robotics
Model: M-410iB/700
Product Type: 4 Axis Heavy-Duty Articulated Robot
Base Dimension: 850mm×850mm
Base Height: 880mm
Reach: 3143mm
Payload: 700kg
Mounting: Floor-mount
Protection: Std: IP54
Controller: R-30iA

This pre-owned FANUC M-410iB/700 represents the upper payload boundary within the M-410iB family, built for raw-material bulk-processing plants that need to move extraordinarily heavy workpieces which fall outside the capability scope of ordinary palletizing equipment. Mines, cement-related factories and heavy-material processing workshops often handle huge bundled goods and overweight pallet-mounted unit-loads; automation choices are very limited in this high-weight segment. With maximum payload up to 700 kg and 3143 mm working reach, every major structural casting, gearbox and joint drive is over-dimensioned for absorbing huge shock load from repeated heavy-object pick-and-place cycles. Strictly four-axis kinematic design keeps end effector vertical, focusing purely on palletizing, depalletizing and heavy-weight intra-plant transfer tasks. Because of its massive load grade, the robot demands solid foundation installation and proper heavy-duty gripper matching. Running on R-30iA controller, it supports slow-speed heavy-load motion profile tuning to suppress vibration. For projects that cannot split heavy loads into multiple smaller stations, this model delivers one-robot-solution feasibility for extreme-weight material automation.