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K3593-3 - Lincoln Electric Magnum PRO Water-Cooled Robotic MIG Gun for Fanuc 100iC

Packaging: 1 Per Ea
$10,085.42/EA $8,220.69/1 Per Ea only $8,220.69/EASave 18%

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SKU: K3593-3 Categories: ,

OVERVIEW

High-Performance Robotic Welding for Fanuc Systems

The Lincoln Electric K3593-3 Magnum PRO Water-Cooled Robotic Torch represents the pinnacle of automated welding technology, specifically engineered for seamless integration with the Fanuc 100iC robotic arm. In the demanding world of industrial manufacturing, downtime is the enemy. This torch addresses that challenge head-on with a design that prioritizes longevity, thermal management, and ease of maintenance. Unlike standard air-cooled options that struggle under continuous load, this water-cooled powerhouse is built to run at 100% duty cycle at 525 Amps using 90/10 mixed gas, making it an indispensable asset for high-volume production lines.

Innovative Cooling Technology

Heat is the primary cause of consumable failure in robotic welding. The K3593-3 utilizes a sophisticated combination of conduction and convection cooling concentrated near the end of the torch. This strategic thermal management keeps contact tips, nozzles, and diffusers significantly cooler during operation. The result is a dramatic increase in the lifespan of your expendables, leading to reduced arc-off time for maintenance and lower overall operational costs. Furthermore, the unique design extends cooling to both the inner and outer sheaths of the gun tube, which actively prevents spatter adhesion—a common issue that can degrade weld quality and require frequent cleaning.

Robust Construction and Precision

Accuracy is paramount in robotics. The Magnum PRO torch features a highly rigid construction with reinforced inner and outer sheaths. This rugged build minimizes the risk of damage in the event of a crash, protecting your investment. More importantly, it ensures superior Tool Center Point (TCP) repeatability. When the torch maintains its alignment consistently, your robot requires less reprogramming and touch-up, ensuring that every weld is placed exactly where it needs to be, cycle after cycle.

Simplified Installation and Maintenance

Lincoln Electric has designed the K3593-3 with the technician in mind. The installation process is streamlined using floating fittings that accommodate tolerance variations, ensuring a secure fit without forcing components. Visible hash marks provide a clear visual guide to verify that connections are seated correctly, guaranteeing a leak-free setup for the water-cooling lines. This attention to detail reduces setup time and eliminates common installation errors, allowing your team to focus on production rather than troubleshooting.

Additional Information
Brand:Lincoln Electric
Packaging Description:1 Per Ea
Torch Type:Robotic MIG Torch
Cooling Method:Water-Cooled
Amperage Rating:525 A
Duty Cycle:100% @ 525A
Compatible Robot Arm:Fanuc 100iC
Gas Compatibility:Mixed Gas (90/10)

INCLUDED

  • 1 x Magnum PRO Water-Cooled Robotic Torch Assembly
  • 1 x Installation Guide
  • 1 x Set of Floating Fittings

APPLICATIONS

  • Automated heavy fabrication
  • Automotive chassis and component welding
  • High-volume production manufacturing
  • Structural steel robotic welding
  • General industrial robotic MIG welding

FAQ

The Lincoln Electric K3593-3 is specifically designed for use with the Fanuc Arm 100iC.

This torch is rated for 525 Amps at 100% duty cycle when using 90/10 mixed gas.

Yes, the K3593-3 is a water-cooled robotic torch and requires a compatible water cooling system to operate.

It uses conduction and convection cooling near the torch end to prolong consumable life and prevent spatter adhesion on the gun tubes.

Yes, the gun tubes feature robust inner and outer sheaths designed to minimize damage in the event of a crash.

Installation is facilitated by floating fittings and visible hash marks that ensure a leak-free and secure setup.

It uses Lincoln Electric Magnum PRO consumables, which are designed for high performance and long life.

The unique design cools both the inner and outer sheaths, which helps prevent excessive spatter adhesion.