XZ-T2204 Extended Ultra-Thin Spring Semi-Automatic Winding Machine
| Equipment model | XZ-T2204 |
| Rated Voltage | 220VAC 50HZ |
| Rated Power | 2400W |
| Dimensions | L300*W90*H160cm |
| Applicable metal wire diameter | 0.1-0.4mm |
| Applicable core rod diameter | 0.1-1.0mm |
| Winding stroke | 50-2000mm |
| Reserved length of wire head | 15-100mm |
| Equipment characteristics | Semi automatic operation,dual wire winding |
| CNC adjustable parameters such as number and length of coils | |
| Paired with high-definition microscopic detection instruments | |
| Spindle motor | servo motor |
| Pneumatic components | Zhejiang Xingchen |
| Electrical components | Chint/Omron |
| PLC | Taiwan Yonghong |
| Human-machine touch screen | 7-inch true color touchscreen |
| Ball screw | Taiwan TBI |
| Linear guide rail | Taiwan Shangyin |
This equipment is specifically designed for producing extremely fine (capillary) springs, which spiral wrap extremely fine metal wires around extremely fine core shafts. It is widely used in the medical spring industry, including endoscope springs, medical guide wire springs, probe springs, biopsy forceps springs, etc.
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In-House Research & Equipment Development
Our equipment design and development are carried out internally, focusing on resistance wire forming, winding stability, and mechanical structure optimization. R&D work is closely connected to real manufacturing conditions, allowing continuous adjustment based on practical production requirements.

Certificates & Technical Documentation
Relevant certifications and technical documents are provided to support equipment compliance and export requirements. These materials reflect manufacturing standards, safety considerations, and documented production processes applied to our equipment.

Equipment Packing & International Delivery
Machines are packed according to equipment structure and transport conditions to reduce handling risks during shipment. International delivery experience supports coordination with different logistics methods and destination requirements.





