
( Brand: Oplink Communications ), ( Manufacturer Part Number: MMFC3110P0LUC01 ), ( Part Type: Laser Module )
The mmFC3110P0LUC01 Fiber Optic Laser Module, manufactured by Oplink Communications, is a high-performance, reliable, and compact optoelectronic solution designed for applications requiring precise and efficient data transmission.
This module operates on a 1490nm wavelength, making it highly suitable for both short- and long-haul telecommunications networks. Its compact form factor, measuring 14.2mm x 10.2mm x 4.2mm, allows for easy integration into various network equipment and devices without compromising on space.
The mmFC3110P0LUC01 is a Class 1M laser product, ensuring a low output power level that is safe for use in both industrial and consumer applications. It features a maximum optical output power of 3dBm, delivering a strong and stable optical signal for reliable data transmission.
The module is designed with a highly efficient modulator that ensures low power consumption, making it an eco-friendly and cost-effective choice for your data communication needs. It also boasts a high extinction ratio of 16dB, ensuring minimal signal distortion and maintaining the quality of data transmission.
With a wide operating temperature range of -40 C to 85 C, the mmFC3110P0LUC01 is capable of functioning optimally in diverse environmental conditions, ensuring uninterrupted data transmission even in extreme temperatures. Its laser diode is protected by a high-quality, anti-reflective coated fiber pigtail, providing added durability and longevity.
In summary, the mmFC3110P0LUC01 Fiber Optic Laser Module from Oplink Communications is an ideal choice for applications requiring a small, efficient, and reliable optoelectronic solution. Its high performance, wide temperature range, and low power consumption make it a versatile and dependable component for various telecommunications, industrial, and consumer applications.
The MMFC3110P0LUC01 Oplink Communications Fiber Optic Laser Module is a high-performance product designed for various telecommunication applications. Here are some pros and cons to help you make an informed decision:
Pros:1. High-Performance: This module offers a high-speed data transmission rate, making it suitable for demanding applications such as data centers, metro networks, and access networks.
2. Low Power Consumption: The module has a low power consumption, reducing energy costs and extending the lifespan of equipment.
3. Temperature Stability: The module's temperature stability ensures reliable operation in a wide range of environmental conditions.
4. Quality Assurance: Oplink Communications is a well-known brand in the telecommunications industry, guaranteeing high-quality products and reliable support.
Cons:1. Cost: The MMFC3110P0LUC01 is a high-end product, and its cost may be prohibitive for some budget-conscious buyers.
2. Compatibility: Ensure this module is compatible with your specific hardware and network configuration before making a purchase.
3. Availability: Depending on your location, finding a reliable supplier or distributor may be challenging.
In conclusion, the MMFC3110P0LUC01 Oplink Communications Fiber Optic Laser Module is a high-quality, high-performance product suitable for demanding telecommunication applications. However, its high cost and potential compatibility issues may make it less appealing for budget-conscious buyers or those with less demanding needs.
Recommendation: If you require a high-speed, low-power, and temperature-stable laser module for your telecommunication needs, the MMFC3110P0LUC01 could be a good choice. However, carefully consider your budget and compatibility requirements before making a purchase. If cost is a significant concern, you may want to consider lower-cost alternatives, but ensure they meet your performance and compatibility needs.
Please if you would like to return the item purchased.
Stickup com.
If you encounter any problem with the item purchased please before open a case.
We photograph, record serial numbers and document everything.
Aerospaceas9120a unjustified ANSI eds 20.