BAILEIGH DP-1250VS-HS UPRIGHT DRILL PRESS

BAILEIGH DP-1250VS-HS BAILEIGH DP-1250VS-HS UPRIGHT DRILL PRESS equipment image

Equipment Overview

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OEM
BAILEIGH
Model
DP-1250VS-HS
Year of Manufacture
-
Category
UPRIGHT DRILL PRESSES

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Technical Description

The Baileigh DP-1250VS-HS Upright Drill Press features a powerful 2.0 HP motor running on 220V single-phase power, delivering variable speeds from 100 to 4,000 RPM, ideal for high-speed drilling applications including thermal friction drilling. It has a 20.8-inch swing and a drilling capacity of 1.25 inches in mild steel, supported by a #4 Morse taper spindle with 5.9 inches of quill travel and a 2.95-inch quill diameter. The drill press is built around a robust 4.52-inch diameter column and a sizable table equipped with 0.625-inch T-slots for secure workpiece mounting. The spindle nose is positioned 36.41 inches from the table and 48.22 inches from the base, allowing accommodation of tall workpieces. It also includes an auto-reversing tapping feature capable of handling 0.75-inch taps in mild steel. The machine is inverter-driven to precisely regulate spindle speed and power output, enhancing versatility across different materials and operations. The base measures 27 by 19 inches, while overall machine dimensions are 40 by 25 by 83 inches, with a shipping weight of 865 lbs. A 1/8 HP coolant pump motor supports cooling during heavy-duty use, adding to reliability and extended tooling life. This drill press is engineered for precision, power, and adaptability in industrial and metalworking environments requiring high spindle speeds and consistent performance.

Technical Attributes

Max Spindle Speed
4000 RPM
Spindle Taper
#4 Morse Taper (MT4)
Stroke Length
5.9 ''
Spindle Power
2 HP
Max Drilling Diameter
1.25 ''

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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