Product Specifications
Product Introduction
The connector interface dimensions comply with GJB599B (MIL-DTL-38999 Series III), while the optical performance complies with the ARINC 801 standard.
Designed for aerospace, avionics, defense, marine, and industrial applications, this connector provides a reliable solution for multi-channel fiber optic communication systems.
The connector utilizes standard 1.25 mm ceramic ferrules, ensuring precise optical alignment and excellent mating accuracy.
Its modular ceramic ferrule insert is fully removable and replaceable, simplifying installation, maintenance, and field servicing.
The connector is compatible with the M81969/14-03 contact insertion and extraction tool, allowing quick and easy assembly and maintenance.
Key Features
- GJB599B (MIL-DTL-38999 Series III) compliant interface
- Optical performance compliant with ARINC 801
- Standard 1.25 mm ceramic ferrules
- High-precision optical alignment
- Modular, removable, and replaceable ceramic ferrule insert
- Easy installation and maintenance
- Compatible with M81969/14-03 insertion/extraction tool
- Designed for harsh aerospace and military environments
Mechanical Characteristics
| Parameter | Specification |
|---|---|
| Mechanical Life | ≥ 500 mating cycles |
| Shock Resistance | Peak acceleration: 2940 m/s², duration: 3 ms, velocity change: 5.61 m/s |
| Vibration | 10–2000 Hz, Power Spectral Density: 0.4 G²/Hz, RMS acceleration: 23.1 G |
| Tensile Strength | ≥ 68 N (2 mm fiber optic jumper cable) |
Optical Characteristics
| Parameter | Specification |
|---|---|
| Insertion Loss | ≤ 0.6 dB |
| Return Loss @ 850 nm | ≥ 20 dB |
| Return Loss @ 1310 nm | ≥ 40 dB |
Environmental Characteristics
| Parameter | Specification |
|---|---|
| Operating Temperature | −55°C to +125°C* |
| Salt Spray Resistance | Category K: 500 h |
| Salt Spray Resistance | Class F: 48 h |
| Salt Spray Resistance | Class W: 500 h |
| Acidic Atmosphere Resistance | MW Category: 192 h |
*Operating temperature depends on the selected fiber optic cable.






