2015 AMADA EMLK 3610 NT
- ID:12818
- Brand:AMADA
- Model: EMLK 3610 NT
- Year:2015
- Category:Laser
- Location:USA
Machine Overview
This 2015 AMADA EMLK 3610 NT is a precision machine tool designed to meet your metal fabrication needs. Powered by a CNC AMNC-PC control system running on Windows OS, it combines adept punching and laser cutting capabilities. This unit offers a substantial 33-ton capacity, making it suitable for a variety of tasks.
The turret configuration includes 58 stations, providing versatility for different punching operations. With motion axes covering X, Y, TL, Z, B, T, and C, this machine offers a broad range of functionality in the processing of materials. The extensive work areas allow operations up to 100 inches by 60 inches for laser and 120 inches by 60 inches for punching.
This machine can handle materials with maximum thicknesses of .25 inches whether it's mild steel, stainless steel, or aluminum and supports a maximum work weight of up to 330 pounds. Rapid traversing capabilities allow for speeds up to 3,937 IPM on the X-axis, 3,149 IPM on the Y-axis, and a combined 5,051 IPM simultaneously, ensuring reduced cycle times and quicker job completion.
Cutting speeds reach up to 780 IPM for both X and Y axes. Its hit rate is clocked at 1,800 hits per minute, providing fast and effective punching. The machine's repeatability stands at 0.00027, while positioning accuracy maintains a metric value of 0.0012 over 39.37 inches. As for punching accuracy, a 0.004-inch precision level is consistently achieved.
The laser component is driven by the AF-4000E with a robust 4,000 Watt power output, catering to rigorous cutting demands. Despite its powerful functions, the machine retains a significant footprint with a total weight of 66,139 lbs.
This used machine is designed to enhance productivity, whether in a small workshop or a larger industrial setting. Its capabilities are suitable for various applications, providing ample room for diverse project requirements, from basic cutting and shaping to more complex tasks involving multiple job setups.
Machine Comps






