ERLO SVR.25/HDB UPRIGHT DRILL PRESS

Equipment Overview
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- ERLO
- Model
- SVR.25/HDB
- Year of Manufacture
- -
- Category
- UPRIGHT DRILL PRESSES
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A+Technical Description
The ERLO SVR.25/HDB upright drill press is a high-performance industrial machine engineered for precision drilling and tapping in demanding workshop environments. Designed with electronic variable speed transmission, it offers a wide speed range of 120–4000 RPM, allowing optimal control for a variety of materials and operations. The drill press features a manual feed system with a front wheel for fine, sensitive adjustments, ensuring accuracy and repeatability. With a maximum drilling capacity of 0.984 inches (25 mm) in mild steel and a tapping capacity of M14 (approx. 0.551 inches), it is suitable for a broad range of industrial applications. The main motor delivers 3/4 HP (approx. 0.75 HP), providing reliable power for continuous operation. The spindle travel is 4.72 inches (120 mm), supporting deep drilling tasks. Standard safety features include a drill guard with stop microswitch, while optional accessories such as a digital speed display, worklight, rotating/tilting intermediate table, and coolant system enhance versatility and operator convenience. The machine is built with a robust cast-iron structure for stability and durability, and its compact footprint makes it ideal for space-constrained workshops. The Morse taper is MT2, compatible with a wide range of tooling. The ERLO SVR.25/HDB upright drill press combines advanced electronic controls, manual precision, and industrial-grade construction to deliver efficient, accurate, and safe drilling and tapping performance.
Technical Attributes
- Spindle Taper
- MT2
- Max Drilling Diameter
- 0.98 ''
- Stroke Length
- 4.7 ''
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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