TAKAMAZ XL-100 CNC LATHE

TAKAMAZ XL-100 TAKAMAZ XL-100 CNC LATHE equipment image

Equipment Overview

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OEM
TAKAMAZ
Model
XL-100
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This 2-axis CNC lathe is engineered for precision and efficiency in turning operations, featuring a robust 6-inch chuck size that securely holds a wide range of workpieces for versatile machining applications. Powered by a 10 horsepower motor, the machine delivers high torque and consistent performance, supporting demanding cutting tasks with ease. The spindle achieves a maximum speed of 4,500 RPM, enabling rapid material removal and fine surface finishes on various metals and alloys. Equipped with a CNC control system, the lathe offers programmable operations for automated, repeatable accuracy, supporting ISO-standard G-code programming for seamless integration into modern manufacturing workflows. The X and Z axes are driven by precision ball screws and servo motors, ensuring accurate positioning and smooth motion control for tight tolerances and high repeatability. The machine’s rigid construction and compact footprint make it ideal for both prototyping and high-volume production environments. With rapid traverse rates and advanced diagnostics, it minimizes cycle times and maximizes uptime. The CNC interface provides intuitive operation, manual data input, and communication capabilities for efficient job setup and monitoring. Designed for simple to moderately complex geometries, this 2-axis CNC lathe is a reliable solution for shops requiring dependable, high-performance turning capabilities in a compact and user-friendly package.

Technical Attributes

Max Spindle Speed
4500 RPM
X-Axis Travel
12.00 ''
Control System
FANUC 0I-TD
Spindle Power
10.00 HP

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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