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FYID Feiyide Releases Technical Reference Guide for C Series Orbital Welding Heads and FXT20 System Evaluation

Rebecca PY 9 hours ago
FYID Feiyide has published a technical product note to assist fabrication teams in evaluating its C-series enclosed orbital welding heads paired with the FXT20 power source. The reference helps technical teams separate equipment specification data from project-specific welding procedure qualification, material confirmation, and safety assessments.

MALAYSIA, 14 SEPTEMBER 2026 – Industrial equipment manufacturer FYID-Feiyide has issued a comprehensive technical product note designed for engineering and fabrication teams evaluating automated orbital welding equipment. The guidance focuses on the integration of the company’s C-series enclosed orbital welding heads with the FXT20 digital power source, helping project planners separate baseline equipment specifications from project-specific qualification requirements.

The technical documentation covers six distinct head families: C5, C10, C40, C80, C120, and C170. Together, these closed-chamber units accommodate tube outside diameters ranging from 6.35 mm to 168 mm (approx. 0.25 inches to 6.61 inches), with each individual head maintaining specific diameter and wall-thickness operating limits. Based on catalog listings, the base configuration of the FXT20 closed-head orbital welding system is priced starting from USD 7,675, which converts to approximately RM 33,616 per unit depending on final component selections and local import rates.

Designed primarily for autogenous single-pass circumferential joining of thin-wall metal tubing, the system operates without filler wire. The companion FXT20 power source features 200 programmable memory groups and an integrated micro-printer that logs core operational parameters, including welding current, rotation speed, process duration, and automated timestamps for audit traceability.

The selection guide emphasizes a structured evaluation framework that starts with tube outside diameter, wall thickness, material selection, and head family matching. It explicitly highlights that listed equipment specifications do not serve as a universal welding procedure specification (WPS) or a replacement for formal engineering evaluation. Final operational parameters, quality acceptance criteria, and non-destructive testing requirements remain entirely dependent on joint geometry, base material heat numbers, applicable industrial codes, and job-site conditions.

Fabrication engineering teams and technical editors seeking to evaluate the full C-series equipment family can access the complete technical reference directly on their official product portal.

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