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The 147565-1 from Yaskawa functions as a robotics wire feeder with capabilities tailored for welding applications. Designed to accommodate wire diameters ranging from 0.6 mm to 1.2 mm, it supports a wide feed speed from 50 to 740 inches per minute.
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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Robotics Wire Feeder |
| Product Line | Accessories |
| Part Number | 147565-1 |
| Weight | 15.44 lbs (7.00 kg) |
| Wire Diameters | 0.6–1.2 mm |
| Feed Speed | 50–740 IPM |
| Input Voltage | 115 VAC, 60 Hz |
| Current Draw | 5 A |
| Motor Type | Brushless DC servo |
| Drive Rolls | Dual V‑groove/knurled |
| Welding Modes | GMAW (MIG/MAG) |
| Control Signal | Motoman OT#4095 interface |
| Housing Material | Stainless steel |
| Spool Gun Mount | SpoolRunnerâ„¢ 100 |
| Stick-out Adjustment | Up to 13 mm |
The Yaskawa 147565-1 robotics wire feeder is engineered specifically for use in automation and welding. It is capable of handling wire with diameters between 0.6 mm and 1.2 mm. The unit allows for flexible feed speeds, ranging from 50 IPM to 740 IPM, accommodating various welding requirements. Powering the feeder requires an input voltage of 115 VAC at a frequency of 60 Hz, while it draws a current of 5 A for optimal performance.
At its core, the feeder is driven by a brushless DC servo motor, providing enhanced reliability and efficiency. The wire feeding utilizes dual V-groove/knurled drive rolls that ensure consistent wire delivery. It is compatible with GMAW (MIG/MAG) welding processes, making it suitable for a range of welding applications. Furthermore, the feeder uses the Motoman OT#4095 interface for signaling and control.
Constructed from stainless steel, the housing of this wire feeder contributes to its robust nature and longevity in demanding environments. Also featured is a SpoolRunnerâ„¢ 100 mount, simplifying the integration of spool guns. Stick-out adjustments can reach up to 13 mm, allowing for flexibility in setup. This wire feeder is an essential component for automated welding processes, streamlining operations while maintaining high levels of performance.