KTK LG-16A UPRIGHT DRILL PRESS

KTK LG-16A KTK LG-16A UPRIGHT DRILL PRESS equipment image

Equipment Overview

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OEM
KTK
Model
LG-16A
Year of Manufacture
-
Category
UPRIGHT DRILL PRESSES

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Technical Description

The KTK LG-16A Upright Drill Press is a robust manual feed drilling machine designed for precision and versatility in metalworking applications. It features a maximum drilling capacity of 16mm (0.63 inches) in mild steel, powered by a 1 HP (0.94 horsepower) motor. The drill press operates at nine adjustable speed levels ranging from 240 to 2,840 RPM, allowing users to optimize drilling performance for various materials and bit sizes. The spindle utilizes an MT2 taper and offers a 100mm (3.94 inches) travel, providing adequate depth control for most drilling tasks. Structural components include an 80mm (3.15 inches) diameter column and a 360mm (14.17 inches) diameter round table, supporting workpieces effectively. The distance from spindle to table stands at 450mm (17.72 inches), and the total height reaches 1,070mm (42.13 inches), suitable for a compact workshop footprint. The throat depth—the distance from the column center to the spindle—is 180mm (7.09 inches), facilitating access to larger workpieces. The drill press base measures 300 x 500mm (11.81 x 19.69 inches) and the machine weighs approximately 90kg (198.41 lbs), providing substantial stability during operation. This model includes a 1-year warranty, reflecting its reliability and quality construction. Designed for heavy-duty and sensitive drilling tasks, the KTK LG-16A combines adjustable speed, range, and sturdy build, making it suitable for industrial and professional use.

Technical Attributes

Spindle Taper
MT2
Spindle Power
0.94 HP
Max Drilling Diameter
0.63 ''
Max Spindle Speed
2840 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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