KTK H-2500 UPRIGHT DRILL PRESS

Equipment Overview
Share Link- OEM
- KTK
- Model
- H-2500
- Year of Manufacture
- -
- Category
- UPRIGHT DRILL PRESSES
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A+Technical Description
The KTK H-2500 Upright Drill Press is a heavy-duty machine engineered for precision drilling in mild steel with a maximum capacity of 0.98 inches (25 mm). It is powered by a robust 2.01 HP motor, delivering spindle speeds up to 1,910 RPM, with optional adjustable speed ranges between 500–1180 RPM and 1380–1910 RPM. The spindle taper is MT3, allowing compatibility with a variety of tooling, and offers a spindle travel of 5.12 inches (130 mm) for deeper hole drilling. The drill press features a four-speed transmission, providing flexibility for different drilling operations. The machine is constructed with a solid 4.02-inch diameter column, ensuring stability and rigidity during heavy use. Its large worktable measures 23.62 by 15.75 inches, with a maximum adjustable distance from spindle to table ranging from 3.94 to 24.8 inches, extendable up to 36.61 inches, accommodating large workpieces. Hydraulic power is integrated, rated at 20 kg/sq.cm, facilitating smooth and controlled feed. The overall height of the unit is 82.68 inches with a substantial weight of 1322.78 lbs, reflecting its durable industrial build. This drill press is ideally suited for demanding metalworking applications, combining power, precision, and versatility through its hydraulic feed and multiple speed settings to efficiently handle various machining tasks in professional workshops or manufacturing environments.
Technical Attributes
- Table Size (LxW)
- 23.62 x 15.75
- Spindle Power
- 2.01 HP
- Max Spindle Speed
- 1910 RPM
- Stroke Length
- 5.1 ''
- Max Drilling Diameter
- 0.98 ''
- Spindle Taper
- MT3
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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