We will solve the challenges of precision parts processing!
In the optical precision industry, high-precision component processing is required. Particularly for parts that demand fine or complex shapes, such as lenses and precision molds, processing accuracy significantly affects product performance. Even for shapes and materials that are difficult to handle with conventional processing methods, our electrical processing/discharge machining technology can achieve high precision. If the material is conductive, we can accommodate complex shapes. 【Application Scenarios】 - Optical lens molds - Precision parts - Parts requiring fine processing 【Benefits of Implementation】 - Achieves high-precision processing - Accommodates complex shapes - Supports a variety of materials
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【Features】 - Capable of handling complex shapes as long as the material is conductive - Achieves high processing precision - Supports cutting, grinding, and electrical processing (EDM) 【Our Strengths】 Our unique point is the breadth of our technology and knowledge in metal processing and parts manufacturing, ranging from aluminum to carbide, and from general components to ultra-precision molds. We are also skilled in reverse engineering, converting old physical items without drawings or documents into drawings and documentation to ensure stable supply of production materials for users.
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From aluminum to super hard materials, from general parts to ultra-precision molds, from round to square, our industry spans from automotive to electronic components. The breadth of our technology and knowledge in metal processing and parts manufacturing is our unique point. We can also procure overseas, including our subsidiary in Vietnam, depending on material volume and cost. We engage in direct transactions with overseas partners as well. We excel in reverse engineering, turning existing physical items—especially those that are outdated and lack drawings or documentation—into detailed drawings and materials to ensure stable supply for our users' production needs.











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