J&M DP5116 UPRIGHT DRILL PRESS

Equipment Overview
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- J&M
- Model
- DP5116
- Year of Manufacture
- -
- Category
- UPRIGHT DRILL PRESSES
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A+Technical Description
The J&M DP5116 is a heavy-duty upright drill press engineered for precision drilling applications in wood, plastic, aluminum, and steel. Powered by a robust 550W motor, this bench-mounted machine delivers consistent performance across a versatile speed range of 220-2,840 rpm at 50Hz or 260-3,410 rpm at 60Hz, with 16 selectable speed steps for optimal control. The press features a 16mm chuck capacity with MT2 spindle taper and an 85mm spindle stroke, enabling precise depth control and repeatability. Its 324mm swing radius accommodates workpieces up to 12.76 inches from the spindle centerline, making it suitable for medium-sized drilling tasks. The sturdy construction includes a Ø72mm column supporting a 1,580mm total height frame, with a cast iron work table measuring Ø290mm in diameter that provides stable workpiece support. The machine offers a maximum distance of 770mm between the spindle tip and table, allowing for varied workpiece thicknesses. With a compact 460x280mm base footprint and 52kg weight, the DP5116 delivers industrial-grade functionality in a space-efficient platform. Advanced features include a geared drive system for lower operational noise, adjustable gibs on the table for precision, a positive spindle lock mechanism, and a heavy-duty tapered roller bearing spindle for durability. This configuration makes the DP5116 an ideal choice for small to medium-sized production shops and educational facilities requiring reliable, precise drilling capabilities.
Technical Attributes
- Stroke Length
- 3.4 ''
- Max Spindle Speed
- 2840 RPM
- Spindle Taper
- MT2
- Max Drilling Diameter
- 0.63 ''
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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