KTK NC-6150 UPRIGHT DRILL PRESS

KTK NC-6150 KTK NC-6150 UPRIGHT DRILL PRESS equipment image

Equipment Overview

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OEM
KTK
Model
NC-6150
Year of Manufacture
-
Category
UPRIGHT DRILL PRESSES

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Technical Description

The KTK NC-6150 is a precision upright drill press engineered for industrial drilling applications in ferrous and non-ferrous materials. Featuring a robust 2 HP spindle motor operating at 2,500 RPM, this machine delivers consistent performance for drilling operations in mild steel and S45C carbon steel up to 0.63 inches in diameter. The machine's servo-ball screw driven spindle, guided by precision linear bearings, ensures accurate depth control and improved drilling efficiency while minimizing operator fatigue. The spindle accommodates a 5.12-inch travel distance, allowing for versatile peck-feed drilling, reaming, and boring applications. The distance from spindle base ranges from 3.94 to 23.62 inches, providing substantial flexibility for workpiece positioning and accommodating various part geometries. Standing approximately 70.87 inches in height, the NC-6150 features a box column and linear guide structure design that enhances rigidity and accuracy during operation. The machine is equipped with a full digital servo NC system featuring large-scale programmable logic devices, enabling easy operation and precise drilling parameter programming. This combination of advanced automation, mechanical precision, and robust construction makes the KTK NC-6150 suitable for production drilling, prototype development, and tool and die applications requiring reliable repeatability and dimensional accuracy.

Technical Attributes

Stroke Length
5.1 ''
Spindle Power
2.01 HP
Max Drilling Diameter
0.63 ''
Max Spindle Speed
2500 RPM

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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