Ceramic Core Injection Mold 12-Cavity for Optical Fiber Ferrules with 0.125mm Micro-Hole and 0.1μm Precision
Price:
Negotiable
MOQ:
1 piece
Delivery Time:
15~45 Days
Brand:
Sanxin
Product Description
Ceramic Core Injection Mold for Optical Fiber Communication Systems
This precision ceramic core injection mold is engineered for manufacturing optical fiber connector ferrules, essential components in fiber optic communication systems that enable precise alignment and maximum light coupling between fiber connections.
Advanced Manufacturing Technology
Our ceramic ferrule molds utilize cutting-edge injection molding technology specifically designed for nano-zirconia powder materials, enabling production of components with sub-micron precision and exceptional dimensional stability.
High-Efficiency Production Design
- 1-mold 12-cavity configuration for maximum throughput
- Reduced cycle times: 7 hours vs. 17 hours for 8-cavity molds
- Advanced 6-input 6-output cooling system reduces cooling time to just 5 seconds
- Compatible with both domestic and imported zirconia materials
Technical Specifications
| Parameter | Specification |
|---|---|
| Micro-hole Diameter | 0.125 mm |
| Hole Length | 12-15 mm |
| Accuracy Tolerance | 0.1 μm |
| Insertion Loss | ≤ 0.2 dB |
| Return Loss | ≥ 40 dB |
| Core Pin Accuracy | ±0.001 ~ ±0.0005 |
Material Advantages
Zirconia ceramic offers superior thermal stability, excellent mechanical properties, and thermal expansion characteristics compatible with metallic materials, making it ideal for precision optical components.
Application Image
Industry Applications
Essential for telecommunications infrastructure, data centers, and optical networking equipment where reliable, high-performance fiber optic connections are critical.
Related Videos
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd
Location
No. 8, Middle School Road, Baiguan Town, Lusong District, Zhuzhou, Hunan, China
Contact Person
Anne Zhang