
( Brand: Jds Uniphase ), ( Manufacturer Part Number: 11-8000-120 ), ( Part Type: Module )
The JDS Uniphase 11-8000-120 Fiber Optic Transmitter Emitter Module is a high-powered, versatile, and precision-engineered device designed for seamless data transmission in various demanding applications. This module emits a robust 500mW of optical power, ensuring reliable and efficient data transmission over long distances.
Crafted by the renowned JDS Uniphase, a global leader in optical communications and photonics technology, this transmitter module offers unparalleled quality and performance. Its compact design, measuring approximately 1.57 x 1.18 x 0.28 inches (3.99 x 3.00 x 0.71 cm), makes it an ideal choice for space-constrained environments.
With a wavelength of 1310nm, this module is designed to transmit data over standard single-mode fiber optic cables. The module's high-quality components and advanced manufacturing processes contribute to its exceptional reliability and longevity, ensuring stability in even the most challenging conditions.
The 11-8000-120 Transmitter Emitter Module is suitable for various industrial, telecommunications, and research applications that require high-power, long-distance data transmission. Its compatibility with a wide range of fiber optic cables and connectors allows for easy integration into existing systems or new installations.
In conclusion, the JDS Uniphase 11-8000-120 Fiber Optic Transmitter Emitter Module is a reliable, high-performance solution for applications requiring robust data transmission over long distances. Its compact design, high power output, and compatibility with standard fiber optic cables make it an excellent choice for a wide range of industries and applications.
1. High Power Output: This transmitter offers a power output of 500 mW, suitable for long-distance fiber optic communication.
2. Reliability: JDS Uniphase is a well-known and reputable manufacturer in the field of optical communications, ensuring quality and reliability.
3. Wide Compatibility: This module is designed to be compatible with various fiber optic systems, making it a versatile choice.
4. High Modulation Bandwidth: A high modulation bandwidth allows for efficient data transmission, making it suitable for high-speed applications.
Cons:1. Cost: As a high-power transmitter, it may have a higher price point compared to lower power alternatives.
2. Complexity: Due to its high power output and performance capabilities, the module might require advanced knowledge to install and maintain.
3. Potential Overheating: High power transmitters like this one can generate heat, and proper cooling mechanisms may be necessary to prevent overheating.
Conclusion:The 11-8000-120 JDS Uniphase Fiber Optic Transmitter Emitter Module (500 mW) is a high-performance, reliable choice for long-distance, high-speed fiber optic communication. However, its cost and potential complexity make it more suitable for professionals or those with advanced knowledge in the field. For casual users or those with lower budgets, it might be more practical to consider lower power alternatives.
Recommendation:If you require a high-performance fiber optic transmitter for professional or specialized applications, the 11-8000-120 JDS Uniphase Fiber Optic Transmitter Emitter Module (500 mW) could be a worthwhile investment. Ensure you have the necessary knowledge or resources for installation, maintenance, and cooling if needed. If budget or technical expertise is a concern, consider looking into lower power alternatives that better suit your needs.
Item condition: used - may exhibit signs of shelf wear.
Jds Uniphase fiber optic transmitter emitter module mw for sale is a transmitter, made by.
S - located at: eb2-c-3 shipping weight is. Elector Marvin is a 9-5 Mon-Fri business.
Listed for Michael.
Problems are questions that were not asked before the offer closed.
This module is in its original packaging, and has only very slight wear almost looks brand new, however we lack the necessary equipment to test it.
Its often to late solve them if you wait.