• MIG and MMA
• Rugged, ergonomic design
• Welding engineer mode
• Consistent and efficient MIG spot welding performance
• Quick factory reset; auto sleep mode
• LED inside wire feeder cabinet; handy accessory storage slot
• ABAP: Active Balancing Air Passage
• Fan on demand
• Voltage Reduction Device (VRD)
• Key power electronic component protection
• Overcurrent and overheat protection
• Essential features for straightforward set up
• Advanced inverter technology
• Digital display
• Digital encoders for precise parameter adjustment
• 2T/4T trigger control
• Variable inductance control
• Gas check and wire inching buttons
• IP23S ingress protection rating

Lateral Plate
Detachable for easy servicing, reinforced for enhancing the structures impact strength.
Front Grill
A sloped front grill offers a perfect balance between heat dissipation and ingress protection (IP23S).
Overall Look
Rugged, robust and industrial.
Control Panel
Slanted 45° angle for enhanced visibility and viewing comfort.
Streamlined Handle
Elevates overall aesthetics of the power source and provides a comfortable, firm and glove-friendly grip.



Handy metal feed roll storage device inside the wire feed cabinet



The overheat warning light indicates that the machine has entered overheat protection and stops the welding output, the machine will re-activate once the unit has cooled down.

The overcurrent warning light indicates that the machine has entered over-current protection and stops the output. The machine can be reset by turning off and then back on.
Welding
Engineer
Mode
LED Lighting
Wire Feeder
Feed Rolls
Storage
On Demand
Fan
Energy Saving
Environment
Friendly
Input
Power Source

Provides access to adjust in-depth parameters, allowing greater freedom in parameter customisation.

In MMA (Stick) mode VRD reduces the open-circuit voltage of the inverter.
When the welding machine is on, but not being used (like when you’ve just finished an electrode and need to grab a new one), the VRD kicks in and lowers the voltage to
a safer level (usually around 13V).

Internal airflow is optimally diverged by a segregation structure.
The divergence of airflow can dissipate heat generated by power electronics in a more balanced manner.
The power source's overall reliability is improved with the internal structure design.




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