JYOTI TS 120 CNC LATHE

JYOTI TS 120 JYOTI TS 120 CNC LATHE equipment image

Equipment Overview

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OEM
JYOTI
Model
TS 120
Year of Manufacture
-
Category
CNC LATHES

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Technical Description

This 2-axis CNC lathe is engineered for high-precision turning operations, featuring a robust 6.69-inch (170 mm) chuck size to securely hold a wide range of workpieces. The machine delivers a maximum spindle speed of 4,500 RPM, enabling rapid material removal and efficient machining of both ferrous and non-ferrous materials. With a powerful 10.05 hp (7.5 kW) spindle motor, it ensures consistent performance even under heavy cutting loads. The CNC control system provides accurate and repeatable machining, supporting ISO-coded programming and manual input via keyboard, with integrated communication interfaces for seamless data transfer. The lathe’s X and Z axes are driven by precision servo motors and high-quality ball screws, ensuring smooth motion, excellent positioning accuracy, and fast traverse rates for increased productivity. Designed for durability and stability, the machine weighs 9,920 lbs (4,500 kg), minimizing vibration and enhancing overall rigidity during operation. Its compact footprint and heavy-duty construction make it suitable for both high-volume production and precision job shop environments. The lathe is equipped with advanced safety features, self-diagnostic functions, and power-off protection for reliable, uninterrupted operation. Ideal for manufacturing simple to moderately complex turned parts, this 2-axis CNC lathe combines power, precision, and versatility for a broad range of industrial applications.

Technical Attributes

Max Spindle Speed
4500 RPM
Control System
DUAL CHANNEL CNC CONTROLLER
X-Axis Travel
3.00 ''
Z-Axis Travel
5.7 ''

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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