Pre-owned FANUC M-410iC/315 Mid-Heavy Palletizing Robot, Deliver Sufficient Payload Margin For Heavy-Bag Plus Large-Size Custom Gripper Combinations

Pre-owned FANUC M-410iC/315 Mid-Heavy Palletizing Robot, Deliver Sufficient Payload Margin For Heavy-Bag Plus Large-Size Custom Gripper Combinations

$50,000.00
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Pre-owned FANUC M-410iC/315 Mid-Heavy Palletizing Robot, Deliver Sufficient Payload Margin For Heavy-Bag Plus Large-Size Custom Gripper Combinations

Pre-owned FANUC M-410iC/315 Mid-Heavy Palletizing Robot, Deliver Sufficient Payload Margin For Heavy-Bag Plus Large-Size Custom Gripper Combinations

$50,000.00

Extra Information:

Brand:
FANUC Robotics
Model: M-410iC/315
Product Type: 4 Axis Articulated Industrial Robot
Base Dimension: 750mm×750mm
Base Height: 840mm
Reach: 3143mm
Payload: 315kg
Mounting: Floor-mount
Protection: Std: IP54
Controller: R-30iB
Controller: R-30iB Plus

This pre-owned FANUC M-410iC/315 addresses a very common real-world engineering consideration: total combined weight of heavy-filled sacks plus large-dimension custom-fabricated grippers. Many system integrators encounter project risk when selecting robots only by workpiece weight, ignoring substantial gripper self-weight, which leaves almost no safety payload margin for long-term continuous shifts. Offering 315 kg rated payload and 3143 mm maximum reach, this iC-generation unit delivers ample combined-weight tolerance for workpiece plus tooling. Compared against older iB counterparts, kinematic tuning is refined to reduce motion jerk, hollow-wrist structure eases cable management and extends service life of rotating wiring harness. Major mechanical components receive proper reinforcement for frequent heavy-load cyclic operation. Running under R-30iB / R-30iB Plus control hardware, it benefits from improved motion algorithms, richer offline simulation capability and better compatibility with modern plant I-O architectures. For heavy-bag, bulk-package end-of-line projects, it eliminates payload-margin risk caused by heavy custom grippers in automation-cell design.