Fiber Optics
Application in Optical Communication Module Connector Industry
The application of high crystallized glass fiber and fiber optic connector bonding material in the optical communication module connector industry is extensive, encompassing products such as phototransducers, optical receivers, patch cords, multipliers, bidirectional connectors, DWDM, and more. Our products are primarily used for fixed connections in this industry. Key features include:
- Anti-Sag Properties: The photo-curing adhesive maintains light transmission without being affected by low shrinkage, ensuring consistent performance.
- Good Adhesion: The optical components exhibit excellent adhesion characteristics, and the refractive index meets industry requirements.
- Compliance: Adheres to detailed work requirements and conforms to appropriate industry operating procedures.
- High Temperature Resistance: Offers resistance to high temperatures, thermal cycling, and aging. The two-component epoxy ratio (10:1) is hypoallergenic and environmentally friendly, ensuring no harm to hands.
- Versatility: Available in four types: photo-curing adhesive, cationic epoxy, high-temperature resistant one-component epoxy resin, and two-component epoxy resin. Our products feature perfect packaging, stable quality, and physical properties comparable to those from the United States and Japan.
These features ensure our bonding materials meet the rigorous demands of the optical communication module connector industry, providing reliable and durable connections.
The requirements for adhesive fixation in optical fiber components are critical to ensure optimal performance and reliability. Here’s a summary based on the provided features and product models
The high crystallized glass fiber and fiber optic connector bonding material must provide a strong bond for mechanical stability and cure effectively at low temperatures (80°C for 30 minutes, 150°C for 1 minute) with minimal shrinkage (2.1%) to ensure dimensional stability. It should exhibit low ionic volatilization to prevent corrosion and maintain signal integrity, along with low VOCs for environmental safety.

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