DYNAPATH FB63 CNC LATHE

DYNAPATH FB63 DYNAPATH FB63 CNC LATHE equipment image

Equipment Overview

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OEM
DYNAPATH
Model
FB63
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This CNC lathe features a 63-inch swing and two-axis control, powered by a 37.5 hp motor with a maximum spindle speed of 400 RPM. It includes a tailstock for enhanced workpiece support during turning operations. The system is controlled via the Delta 2000 CNC controller, which delivers precise and flexible machining capabilities. The Delta 2000 series offers robust vector control drives with high torque accuracy and overload tolerance, ensuring stable performance under heavy-duty conditions. The controller supports multiple interpolation commands, friction compensation, and full closed-loop control to optimize cutting precision and vibration suppression. The integrated CNC unit features advanced functions such as tool and coordinate system automatic setup, backlash compensation, and fine pitch error correction. It also enables easy programming and operation through its user-friendly interface and supports data exchange via protocols like DMCNET, promoting seamless servo gain adjustment and drive parameter setup. The system’s built-in features stabilize machining by minimizing resonance and mechanical vibrations to maintain high-speed and high-precision output. Overall, this lathe with Delta 2000 CNC control is suited for demanding turning applications that require reliable, fine control over spindle speed and axis movement while ensuring structural support and operational efficiency through the tailstock and advanced control features.

Technical Attributes

Max Swing
63.00 ''
Control System
DYNAPATH DELTA 2000 SERIES
Max Spindle Speed
400 RPM

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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