JSEDM EB707N: Moving Table-Type ZNC EDM Machine with 500/400/200mm XYZ Travel for Precision Mold Manufacturing
JSEDM's EB707N Moving Table-Type ZNC EDM delivers superior precision with 500/400/200mm XYZ travel for mold manufacturing. Features include high-rigidity T-shaped structure, automatic indexing, and specialized applications for shoe molds, keyboard texturing, and flask bottle components. Ideal for precision machining with minimal electrode wear.
Moving Table-Type ZNC EDM XYZ Travel 500 / 400 / 200
ZNC-EB707N
Moving Table-Type ZNC Electrical Discharge Machine
The EB707N is a ZNC EDM machine bigger than the EB606N. It uses the same high-quality components as the EB606N, ensuring stable machining performance and long-term reliability. This machine features spacious X, Y, and Z-axis travel and a large worktable size, making it suitable for machining a variety of mold and workpiece sizes. The EB707N is equipped with precision-grade screws and an advanced control system, enabling it to meet high-precision machining requirements and ensure machining quality. It provides customers with high-efficiency, high-quality machining solutions, making it an ideal choice, especially in the field of plastic mold machining.
Machine Introduction
The EB707N featuring the same high-quality components as the EB606N but offering a larger machining space and a wider range of applications. The machine has a travel range of X: 500mm, Y: 400mm, Z: 200mm, with an auxiliary travel of 300mm, and a worktable size of 800mm x 450mm. The XYZ axes of the EB707N are equipped with precision-grade screws and a 0.5μm optical scale, ensuring stability and accuracy during movement.
Suitable for machining molds and workpieces of various sizes. Below are the three relevant industries.
- Shoe Molds: The EB707N is widely used in the shoe mold manufacturing industry, particularly for processing the soles of well-known sports shoe brands. Many shoe sole manufacturers use the EB707N to produce molds for shoe soles. Depending on the requirements of different sole designs, customers create electrodes in the corresponding shapes and then use electrical discharge machining (EDM) technology to precisely process various styles of shoe molds.
- Keyboards: Another application of the EB707N is in the manufacturing of computer keyboards. Some major brand keyboards feature flat keys without curvature. In this case, EDM technology is used to create the texture on the keys, increasing friction between the fingers and the keyboard, thereby enhancing comfort during use.
- Push-Button Lid of Flask Bottle: Push-Button pop-up lid of flask bottle is another application area for the EB707N. The grooves and shapes of the stopper and latch in this type of lid require EDM processing. Although the pop-up lid is relatively small, users can arrange the molds in a matrix, allowing multiple lids to be produced in a single plastic injection molding process, thereby improving production efficiency and product consistency.
High-Rigidity Structure:

- The machine body structure utilizes CAE (Computer-Aided Engineering) to simulate structural analysis of each axis during actual operation. Therefore, we have adopted a high-rigidity T-shaped body structure to reduce load and thermal deformation issues, ensuring long-term precision of the machine.
- Made from Meehanite cast iron and stress-relieved through heat treatment, the structure features a high-rigidity, symmetrically balanced design, which helps reduce load and thermal deformation.
XY-Axis Travel Structure:

- The X and Y axis guideways are composed of a combination of V-shaped and flat structures, ensuring that the perpendicularity and parallelism remain unchanged over time. This structural design ensures that the EDM machine maintains excellent machining precision even during extended operation, with no changes in perpendicularity or parallelism, providing a stable foundation for machining tasks.
- The sliding contact surfaces of the X and Y axes are equipped with low-friction, wear-resistant plates (TURICE-B). These wear-resistant plates ensure precision and smooth operation under heavy loads. With a low coefficient of friction, they reduce frictional resistance while maintaining stable operation under heavy loads, ensuring machining accuracy and operational flexibility of the EDM machine. This design not only enhances operational comfort but also ensures machining precision and stability.
Z-Axis Structure and Precision Control:

- The Z-axis is equipped with a linear guide and high-precision ball screw, a structural design that ensures the stability and accuracy of Z-axis movement. The linear guide provides a smooth motion path, while the high-precision screw guarantees precise movement of the Z-axis, thereby ensuring the accuracy and stability of the machine while manufacturing. This structure, combined with a PWM servo system (equivalent to CNC grade), delivers maximum operational efficiency. The PWM (Pulse Width Modulation) servo system can precisely control the speed and position of the motor, providing more accurate motion control, which allows the EDM machine to achieve high efficiency during the machining process.
- The Z-axis also features an additional electric auxiliary stroke. This ensures that the Z-axis can perform precise vertical movements through the linear guide and high-precision screw and furthermore extend the Z-axis movement range and flexibility further through the electric auxiliary stroke. This electric auxiliary stroke can provide additional movement support when needed, helping the EDM machine adapt to different machining requirements, thus enhancing the versatility and flexibility of the machining process.
Controller Performance and Features
● Automatic Indexing: The system 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 and generates the machining program. Users can also edit and save this machining program, which can be reloaded for use in future operations without altering the original database content.
● High-Efficiency Discharge Module: The discharge circuit uses MOSFET transistors and is equipped with a fast discharge device (POWER SINK) to improve machining efficiency and reduce electrode wear. The machining circuit employs FPGA IC components, enabling faster monitoring of the discharge state (capable of single discharge waveform monitoring), which is more effective in preventing carbon buildup (ARC). It also provides users with the ability to set ARC voltage levels, ARC time, and ARC sensitivity to improve machining efficiency more effectively.
Additionally, it offers two-stage gap (GAP) and two-stage pause (OFF TIME) functions to assist users by automatically adjusting machining parameters to the two-stage function when any ARC condition occurs during machining, thus achieving better machining efficiency.
These design features and functions are all aimed at enhancing machining efficiency, reducing wear, and providing better operability and stability.
● Servo Control: The servo control system uses DSP digital processing, providing faster response times, with feedback loop control up to every 0.2 ms, which is faster than the typical response time of over 1 ms for general PC-based controllers. This characteristic enhances the stability of the spindle during machining, ensuring smoother machine operation.
The ZNC EDM machine also offers a multi-stage debris removal mode, which is useful for deep hole machining and thin plate machining, providing more flexible machining options. Furthermore, the servo protection function is a crucial feature that prevents electrode damage due to improper user operation, ensuring the safety and longevity of the electrode during the machining process.
These features make the ZNC EDM machine's servo control more flexible, stable, and safe, capable of handling various machining demands while ensuring high-quality machining results.
● Multiple Machining Parameters: The system can store up to 50 files, each containing 200 sets of machining parameter tables for saving machining conditions.
Product Specification
Technical Spec. | |||
---|---|---|---|
Mechanical Structure | Moving Table | Distance Between Platen to Table | 740mm |
Work Tank Capacity L x W x H (mm) | 1170 x 700 x 430mm | Optical Scale Display | 5um |
Work Table Size | 800 x 450mm | Max. Machining Current | 60A 90A (Optional) |
X Axis Travel (Right-Left) | 500mm | ||
Y Axis Travel (Front-Back) | 400mm | Min. Electrode Wear Ratio | 0.15% |
Z Axis Travel | 200mm | Machine Weight | 2000kgs |
Auxiliary Axis Travel | 300mm | Fluid Tank Capacity | 550L |
Max. Workpiece Weight | 1500kgs | Machine Outside Dimensions (W x D x H) | 2800 x 1600 x 2250mm |
Max. Electrode Weight | 150kgs |
- Gallery
- Machining conditions and depth input are displayed on a single screen, allowing users to grasp the information immediately.
- 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 the EB707N ZNC EDM Improve Production Efficiency for Shoe Mold Manufacturers?
The EB707N's expansive 500/400/200mm travel range and 1500kg workpiece capacity enable efficient batch processing of shoe sole molds. Its T-shaped structure maintains perpendicularity and parallelism during extended operations, while the automatic indexing system optimizes machining parameters based on material type. Our customers report up to 30% increased productivity when creating complex textures and contours for sports shoe brands, with minimal electrode wear of just 0.15%. Request a demonstration to see how the EB707N can transform your shoe mold manufacturing process.
Distinguished by its advanced control system featuring AI automatic indexing and high-efficiency MOSFET discharge module, the EB707N achieves remarkable electrode wear ratios as low as 0.15%. The machine excels in specialized applications including shoe sole mold manufacturing for leading sports brands, texture creation for computer keyboards, and precision processing of push-button flask bottle lids. Comprehensive safety features, including fire sensors and automatic extinguishers, combine with user-friendly interfaces and multifunctional calibration options to deliver a complete machining solution that balances precision, efficiency, and operational simplicity for demanding manufacturing environments.