TOSHIBA LCS-40200A CNC LATHE

Equipment Overview
Share Link- OEM
- TOSHIBA
- Model
- LCS-40200A
- Year of Manufacture
- -
- Category
- CNC LATHES
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A+Technical Description
This high-capacity CNC lathe is engineered for heavy-duty turning applications, delivering robust performance with a 650 HP main drive motor and a maximum spindle speed of 40 RPM, ideal for large, high-mass workpieces requiring substantial torque. The machine accommodates exceptionally large parts, with a maximum turning diameter of 157.48 inches and a swing of 196.85 inches, enabling the machining of oversized cylindrical components without interference. The machining length extends up to 787.40 inches, supporting the production of long shafts and similar parts. Equipped with a tailstock, the lathe ensures stable support for extended workpieces during precision turning operations, minimizing deflection and enhancing accuracy. The CNC control system utilizes the Fanuc 18i TB platform, providing advanced programming capabilities, intuitive operation, and reliable automation for complex machining cycles. This control system ensures high repeatability, tight tolerances, and seamless integration with modern manufacturing workflows. The lathe’s design emphasizes rigidity and stability, critical for maintaining precision when working with large, heavy materials. Suitable for industries such as energy, aerospace, and heavy machinery, this CNC lathe combines high power, large work envelope, and advanced control technology to deliver efficient, accurate, and consistent results for demanding turning applications.
Technical Attributes
- Distance Between Centers
- 787.40 ''
- Max Spindle Speed
- 40 RPM
- Max Swing
- 196.85 ''
- Control System
- FANUC 18I TB
- X-Axis Travel
- 787.40 ''
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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