Item functions as originally intended, shows signs of normal wear.
Technical Description
The C.R. Onsrud Inc. F216G 5-Axis Wide Pro Series Vertical Machining Center is engineered for high-precision, large-part machining with a robust 216" x 61" table and a rigid, all-steel bridge and vertical column construction. Designed for maximum rigidity and accuracy, the machine features a top-rail design with a one-piece steel vertical column and large Z-axis ram, minimizing deflection and enhancing leverage over the bridge. The vertical spindle utilizes an HSK 63F taper, delivering 15 HP at 24,000 RPM for aggressive material removal and fine surface finishes. A 12-position aggregate-ready dynamic automatic rotary tool changer ensures rapid tool changes and supports a wide range of tooling options. The machine offers 5-axis capability, with X, Y, and Z travels of 238", 77", and 29" (optional 41"), respectively, and achieves a maximum feed rate of 2,000 ipm and rapid traverse speeds of 2,800 ipm on all axes. The design incorporates dual support, direct drive, and independent channel systems for enhanced accuracy and rigidity, while the intelligent layout provides easy access to all sides of the machine. The F216G is equipped with a high-flow universal vacuum table system featuring three independently controlled vacuum zones, optimizing part holding for various materials. The OSAI 10/510 CNC controller with integrated touch screen PC ensures advanced programming and control, making the F216G ideal for demanding applications in aerospace, marine, and automotive industries.
Technical Attributes
Spindle Taper
CAT 40
Table Size (LxW)
216 x 61
X-Axis Travel
238.00 ''
Y-Axis Travel
77.00 ''
Max Spindle Speed
24,000.00
Spindle Power
15.00 HP
Z-Axis Travel
29.00 ''
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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