Pre-owned FANUC M-410iB/160 End-of-Production Stacking Robot, Optimize Throughput For High-Volume Bag & Carton Manufacturing Facilities

Pre-owned FANUC M-410iB/160 End-of-Production Stacking Robot, Optimize Throughput For High-Volume Bag & Carton Manufacturing Facilities

$50,000.00
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Pre-owned FANUC M-410iB/160 End-of-Production Stacking Robot, Optimize Throughput For High-Volume Bag & Carton Manufacturing Facilities

Pre-owned FANUC M-410iB/160 End-of-Production Stacking Robot, Optimize Throughput For High-Volume Bag & Carton Manufacturing Facilities

$50,000.00

Extra Information:

Brand:
FANUC Robotics
Model: M-410iB/160
Product Type: 4 Axis Heavy-Duty Articulated Robot
Base Dimension: 720mm×720mm
Base Height: 845mm
Reach: 3130mm
Payload: 160kg
Mounting: Floor-mount
Protection: Std: IP54
Controller: R-30iA

This pre-owned FANUC M-410iB/160 is purpose-built for high-volume continuous stacking scenarios where factories face growing order volumes yet hesitate over excessive investment in brand-new automation hardware. Plenty of food, building-material and chemical processing plants generate large batches of sacks and cartons every shift, putting tremendous pressure on manual palletizing stations that suffer from inconsistent speed, high staff turnover and frequent workplace fatigue-related risks. Adopting robust 4-axis parallel link mechanical architecture, it focuses entirely on vertical stacking workflows typical for end-of-line logistics. With 160 kg payload and 3130 mm maximum reach, it covers full standard pallet dimension and accommodates multiple incoming conveyor lanes within one single robotic cell. Reinforced joint transmission components are validated for years of non-stop multi-shift operation, resisting vibration and cyclic impact brought by repeated box-and-bag picking and placing. Paired with R-30iA controller, it offers mature palletizing software toolkit, simple teaching workflow and seamless connection with peripheral safety devices. For factories chasing higher output while keeping capital expenditure under reasonable boundaries, this unit delivers reliable stacking performance without over-specifying unnecessary motion functions.