SENYAT FD630 WIRE EDM MACHINE

Equipment Overview
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- SENYAT
- Model
- FD630
- Year of Manufacture
- -
- Category
- WIRE EDM MACHINES
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A+Technical Description
The SENYAT FD630 Wire EDM Machine is a precision CNC wire cutting system designed for high-accuracy machining of complex geometries in tooling, die-making, and component manufacturing. This machine features comprehensive X, Y, and Z-axis travel capabilities of 24.8, 31.5, and 19.7 inches respectively, providing substantial workspace for processing larger workpieces. The FD630 incorporates advanced CNC control technology with dual control options—HF (High Frequency) for single-pass operations and Autocut for multi-pass processing—enabling superior surface finish optimization. With automatic wire threading capability, the machine streamlines setup time and reduces operator intervention, enhancing productivity in production environments. The non-submerged configuration allows for efficient debris removal and maintains consistent cutting conditions through flood cooling. Weighing 6,834 pounds, the FD630 provides robust structural stability essential for maintaining positioning accuracy during extended machining cycles. Compatible with molybdenum wire diameters ranging from 0.10–0.30mm, this machine delivers cutting accuracy up to ±0.005mm with surface roughness capabilities of Ra ≤ 1.0µm in multi-cut mode. The servo-driven axis system ensures smooth, precise movements with minimal thermal distortion, while the automatic wire tensioning and lubrication systems maintain consistent cutting performance throughout production runs. The FD630 represents a versatile solution for precision manufacturing operations requiring reliable repeatability and excellent part quality across diverse industrial applications.
Technical Attributes
- X-Axis Travel
- 24.8 ''
- Z-Axis Travel
- 19.70 ''
- Y-Axis Travel
- 31.5 ''
- Control System
- CNC (HF, AUTOCUT)
Data Accuracy and Verification
Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.
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