FRANK PHOENIX CW-30 WIRE EDM MACHINE

Equipment Overview
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- FRANK PHOENIX
- Model
- CW-30
- Year of Manufacture
- -
- Category
- WIRE EDM MACHINES
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A+Technical Description
The FRANK PHOENIX CW-30 Wire EDM Machine is a precision CNC-controlled electrical discharge machining system designed for high-accuracy cutting of conductive materials. Featuring a robust construction and advanced CNC technology, the CW-30 delivers reliable performance for intricate part production in industries such as aerospace, automotive, and tooling. The machine offers a travel range of 15.75 inches (400 mm) on the X-axis, 11.81 inches (300 mm) on the Y-axis, and 9.84 inches (250 mm) on the Z-axis, enabling versatile machining of medium-sized workpieces. Its submerged wire-cutting method ensures stable and consistent results, minimizing thermal distortion and enhancing surface finish quality. The CNC control system provides precise axis movement, automated operation, and easy programming for complex geometries, improving productivity and repeatability. The CW-30 is equipped to handle a variety of conductive materials, making it suitable for producing dies, punches, molds, and precision components. With a focus on accuracy and efficiency, the machine maintains tight tolerances and delivers excellent surface finishes, supporting demanding manufacturing applications. Its user-friendly interface and automated features streamline setup and operation, reducing cycle times and operator intervention. The FRANK PHOENIX CW-30 Wire EDM Machine combines durability, precision, and advanced CNC control to meet the needs of modern high-tech manufacturing environments.
Technical Attributes
- Control System
- CNC
- Y-Axis Travel
- 11.8 ''
- Z-Axis Travel
- 9.84 ''
- X-Axis Travel
- 15.8 ''
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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