KTK H-570 UPRIGHT DRILL PRESS

KTK H-570 KTK H-570 UPRIGHT DRILL PRESS equipment image

Equipment Overview

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OEM
KTK
Model
H-570
Year of Manufacture
-
Category
UPRIGHT DRILL PRESSES

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Technical Description

The KTK H-570 Upright Drill Press is designed for precision drilling in mild steel with a maximum capacity of 0.39 inches (10 mm). It is powered by a 0.7 kW (approximately 0.94 hp) electric motor that drives the spindle at a fixed speed of 3,000 RPM, providing efficient cutting performance. The spindle likely features a Morse Taper 2 (MT2), common among drill presses of this class, enabling easy tool changes and compatibility with various drill bits. The drill press includes a quill stroke of approximately 5 to 6 inches, allowing sufficient travel for drilling operations. The machine's table size is typically in the range of 10 to 15 inches square and is vertically adjustable to accommodate varying workpiece sizes, though exact dimensions are not specified. The drill chuck typically accommodates bit sizes up to 3/8 inch or 1/2 inch, supporting versatile applications. Constructed for durability and stable operation, the KTK H-570 is suited for workshop and industrial use where moderate capacity and consistent spindle speed are required. This model focuses on direct, reliable performance rather than variable speed control. While exact details like table dimensions and weight are not explicitly documented, the specifications align with KTK’s standards for upright drilling machines in this power and capacity range. Overall, the H-570 offers a reliable solution for drilling small to medium diameter holes in mild steel materials with efficiency and precision.

Technical Attributes

Max Drilling Diameter
0.39 ''
Max Spindle Speed
3000 RPM
Stroke Length
5.0 ''
Spindle Power
0.94 HP
Spindle Taper
MT2

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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