The Lagun Engineering Solutions UTC 1340 Horizontal Machining Center is a compact, high-performance CNC lathe designed for job shops, toolrooms, and small production environments. Featuring a single main spindle with a maximum turning length of 40.000 inches and a maximum swing of 13.380 inches, the UTC 1340 is ideal for small bar and chuck work, particularly with non-ferrous materials such as brass and aluminum. The main spindle delivers up to 5.0 HP and can reach speeds of 3,000 RPM, ensuring efficient and precise turning operations. The machine is equipped with two-axis control (X and Z), with X-axis travel of 9.050 inches and Z-axis travel of 35.430 inches, providing ample working range for a variety of part sizes. Both axes offer a maximum feed rate and rapid traverse of 295 inches per minute, enabling fast and accurate positioning. The UTC 1340 supports one simultaneous cutting tool, making it suitable for straightforward turning tasks. The machine includes a robust coolant system, dead centers, spindle center sleeve, comprehensive tool kit, and comprehensive safety guards. It features NFPA 79-compliant electrics, NEMA 12 enclosures, and UL-approved components for reliable and safe operation. Handwheels allow manual jogging of the X and Z axes, and the machine can be equipped with optional quick-change tool posts or automatic turrets. Engineered for versatility and ease of use, the UTC 1340 is a dependable solution for shops seeking precision, flexibility, and value in a compact CNC turning center.
LAGUN ENGINEERING SOLUTIONS UTC 1340 HORIZONTAL MACHINING CENTER Technical Specifications | Aucto
Technical Attributes
X-Axis Travel
9.05 ''
Z-Axis Travel
35.43 ''
Spindle Power
5.00 HP
# of Axes
2.00
Max Spindle Speed
3,000.00
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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