JSEDM EB1510L Column Moving-Type CNC EDM Machine with 1500/1000/600mm XYZ Travel
JSEDM's EB1510L Column Moving-Type CNC EDM delivers exceptional precision for large molds with 1500/1000/600mm XYZ travel. Featuring high-rigidity structure, 11000kg workpiece capacity, and advanced servo control system. Ideal for office furniture, industrial cart, and labeling machine mold manufacturing. Get superior machining efficiency with minimal electrode wear.
Column Moving-Type CNC EDM XYZ Travel 1500 / 1000 / 600
CNC-EB1510L
Column Moving-Type CNC Electrical Discharge Machine
The EB1510L boasts several impressive features. Firstly, its XYZ axis travel is extensive, allowing it to handle larger workpieces and providing more substantial machining space. The larger worktable ensures more secure workpiece fixation and higher machining efficiency. Additionally, the EB1510L has excellent load capacity, enabling it to handle heavier workpieces, thereby expanding its range of applications. Its servo control system ensures machining precision and stability, allowing users to achieve high-precision machining in various scenarios. In summary, the EB1510L is a powerful, stable, and reliable EDM machine capable of meeting the demands of various industrial applications.
Machine Introduction
The EB1510L is a highly efficient and versatile EDM machine, an upgraded version of the EB1270L, specifically designed for handling larger workpieces. Its XYZ axis travel is 1500mm (X-axis), 1000mm (Y-axis), and 600mm (Z-axis), with a worktable size of 1580 x 1100mm, offering more spacious machining space. The EB1510L boasts outstanding load capacity, allowing it to handle larger and heavier workpieces, making it ideal for a wide range of industrial applications and a perfect choice for modern manufacturing.
The EB1510L has a wide range of applications, and below are three examples:
- OA Furniture: The backrests, armrests, and base supports of office chairs often require reinforced ribs and textured patterns. These components typically have large mold sizes, necessitating the use of a large EDM machine for machining. The EB1510L is an ideal choice, capable of handling large molds and enabling efficient processing.
- Industrial Carts: The reinforced ribs under the plastic base of industrial carts also need to be machined using an EDM machine. Due to the large mold sizes, the EB1510L is a suitable model that can meet the demands of machining large workpieces, ensuring precision and efficiency.
- Japanese Labeling Machines: The housings, covers, clips, positioning columns, and label tape structures of Japanese labeling machines require precise EDM machining due to their complex shapes. These molds demand high-precision machining, and the EB1510L can provide the necessary machining capability and accuracy to meet the production needs of Japanese labeling machines.
High-Rigidity Structure:

- The machine adopts a high-rigidity moving column structure capable of supporting workpieces up to 5000 kgs, reducing issues related to machine load and thermal deformation, thereby ensuring long-term precision.
- Made from Meehanite cast iron, the machine undergoes stress-relief heat treatment, providing a high-rigidity, symmetrically balanced base design. The worktable is heat-treated and precision-ground, making it wear-resistant and maintaining flatness even under heavy loads.
- The base design utilizes a moving column (bullhead type) structure, ensuring that the flatness of the workpiece on the table is not affected during movement, delivering optimal working precision. The robust base design prevents deformation even when subjected to long-term heavy loads.
Wide Linear Guide Span and Precision Ball Screw:

- The X and Y axes utilize low-friction linear guides, ensuring machine precision and smooth operation during its movement. The wide linear guide and span ensure accurate positioning and feed data during long-term back-and-forth and side-to-side movements, especially during reaming and vector machining, maintaining the machine's precision (backlash value) over time.
- The X-axis linear guide (Ψ 30mm) is mounted on the machine's middle base, ensuring flatness during installation and extending the lifespan of the guide, thereby maintaining machine accuracy.
- The Y-axis linear guide (Ψ 30mm) is installed on the machine's upper base, ensuring flatness during installation and lightness (without bearing weight) to reduce friction and extend the lifespan, thus permanently ensuring machine accuracy.
- The X-axis (Ψ 32mm) and Y-axis (Ψ 32mm) utilize precision-grade ball screws combined with low-friction linear guides to ensure machine accuracy.
Precision Spindle:

- The spindle section features an integrally cast design to ensure stability during large electrode machining. It also utilizes alloy steel guides (Ψ 30mm) combined with roller bearings, minimizing friction and ensuring spindle feed accuracy.
- The spindle tower is equipped with a 400W servo motor, making the spindle operation more lightweight (without counterweights) while ensuring precise displacement during operation and extending the lifespan of the ball screw (Ψ 25mm).
C-axis Features and Applications:

- The C-axis offers high-precision positioning capability, allowing for accurate positioning and rotation of parts during machining. This enables more precise machining and better results when working on parts that require rotational machining.
- The C-axis can perform indexing machining, which involves machining at fixed angles. This is particularly useful for parts requiring periodic or repetitive machining, improving consistency and efficiency.
- For parts with complex thread structures, the C-axis can facilitate thread machining. These thread structures may have unique shapes that require machining at various angles, and the rotational function of the C-axis allows for precise thread machining.
Automatic Tool Changer (ATC) and the Advantages of Automation:

- Allows quick and precise tool changes, reduces tool change time and thereby increasing machining efficiency.
- Ensure that it is precise in every tool change, avoiding errors caused by human factors, which in turn improves machining accuracy.
- Can automatically complete tool changes during the machining process, reducing downtime and increasing machine uptime.
- Minimizes the need for manual intervention, reducing labor requirements while also lowering the risk of errors and accidents caused by human operation.
Controller Performance and Features
● Automatic Indexing: The system allows users to directly select material type and area, input machining depth and starting height, and then automatically search for the optimal conditions to generate the machining program. Users can also edit and save the generated program, which can be reloaded for future use without altering the original database content.
● High-Efficiency Discharge Module: The discharge circuit uses MOSFET transistors and a fast discharge device (POWER SINK) to enhance machining efficiency and reduce electrode wear. The machining circuit employs FPGA IC components for faster monitoring of discharge conditions (up to single discharge waveform monitoring), providing more effective prevention of carbon buildup (ARC). Users can set ARC voltage levels, ARC time, and ARC sensitivity to further improve machining efficiency. Additionally, it offers two-stage gap and two-stage off-time functions to assist users in automatically adjusting machining parameters when ARC occurs, leading to better machining efficiency. These features and designs aim to improve machining efficiency, reduce wear, and provide better operability and stability.
● Servo Control: The servo control system uses DSP digital processing, allowing for faster response times, with loop control occurring every 0.2ms, which is faster than the typical 1ms or more response time of PC-based controllers. This characteristic enhances spindle stability during machining, ensuring smoother machine operation.
Additionally, the CNC EDM machine offers a multi-stage debris removal mode, suitable for deep hole machining and thin sheet processing, providing more flexible machining options. Moreover, the servo protection function is an important feature that prevents electrode damage caused by improper user operation, such as mold crushing. This protection function ensures the safety and longevity of the electrode during the machining process.
These combined features make the CNC EDM machine's servo control more flexible, stable, and safe, capable of meeting various machining demands while ensuring high-quality machining results.
Product Specification
Technical Spec. | |||
---|---|---|---|
Mechanical Structure | Column Moving-Type | Distance Between Platen to Table | 1250mm |
Work Tank Capacity L x W x H (mm) | 2300 x 1700 x 800mm | Optical Scale Display | 1um |
Work Table Size | 1580 x 1100mm | Max. Machining Current | 60A 90A (Optional) |
X Axis Travel (Right-Left) | 1500mm | ||
Y Axis Travel (Front-Back) | 1000mm | Min. Electrode Wear Ratio | 0.12% |
Z Axis Travel | 600mm | Machine Weight | 14500kgs |
Max. Workpiece Weight | 11000kgs | Fluid Tank Capacity | 3500L |
Max. Electrode Weight | 500kgs | Machine Outside Dimensions (W x D x H) | 4600 x 4800 x 3620mm |
- Gallery
- In this interface, you can input various machining programs such as vector machining, orbiting, side placement, and rectangular processing.
- The AI automatic indexing function allows users to directly select the material and area to be machined. After inputting the machining depth and starting height, the system automatically searches for the optimal conditions.
- The one-page multifunctional calibration includes edge finding, inner hole finding, outer circle finding, vertex finding, and circle center finding.
- When the fire sensor detects flames, it sends an alarm signal and pauses the machine to prevent a fire from occurring.
- When the worktable catches fire due to excessive oil temperature, the fire extinguisher is activated to extinguish the fire, providing a second layer of protection beyond the fire sensor.
- The adjustable electrode head allows for quick electrode replacement and adjustments for parallelism and verticality.
- The three-jaw chuck allows dielectric fluid to pass directly through the jaws and flow along the electrode into the mold, enhancing debris removal efficiency.
- The vertical filter cartridge design makes it easy to replace the filter and prevents the filter from breaking during replacement, avoiding spills of oil and metal debris.
How Can a Column Moving-Type EDM Improve Your Large Mold Production Efficiency?
The EB1510L's column moving design eliminates the common issues of table-moving EDMs where precision deteriorates with heavier workpieces. Our high-rigidity structure supports up to 11000kg while maintaining ±0.005mm accuracy, allowing you to machine large molds for office furniture and industrial equipment in a single setup. This design reduces setup time by 40% and extends machine life by preventing thermal deformation, delivering ROI through increased production capacity and reduced maintenance costs.
What truly distinguishes the EB1510L is its advanced control system featuring AI automatic indexing, high-efficiency MOSFET discharge modules, and DSP digital servo control with 0.2ms response time. These technologies collectively minimize electrode wear (as low as 0.12%), enhance machining efficiency, and provide superior surface finishes. The machine's comprehensive safety features, including fire sensors and automatic extinguishers, protect your valuable workpieces and equipment. With specialized functions for vector machining, orbiting, and multi-hole rectangular processing, the EB1510L delivers exceptional versatility for complex machining tasks in office furniture mold production, industrial cart manufacturing, and precision components for Japanese labeling machines.