
( Brand: Jdsu ), ( Manufacturer Part Number: CWDM1E )
The JDSU CWDM1E VIAVI OTDR 8140 is a high-performance optical time-domain reflectometer designed for testing and maintaining fiber-optic networks. This specific model is capable of delivering up to 75 kilometers of CWDM (Coarse Wavelength Division Multiplexing) coverage, making it an excellent choice for long-haul fiber-optic applications.
The JDSU CWDM1E VIAVI OTDR 8140 features a compact and lightweight design, making it easy to transport and use in various field conditions. It is equipped with a high-resolution touchscreen display, allowing users to easily navigate through the device's menus and view test results in real-time. The device also supports data logging and report generation, enabling users to create detailed reports of their test results for further analysis and documentation.
One of the standout features of the JDSU CWDM1E VIAVI OTDR 8140 is its advanced FFT (Fast Fourier Transform) analysis capabilities. This feature allows users to accurately measure and analyze the spectrum of the optical signal, helping to identify and diagnose potential faults or issues in the fiber-optic network. The device also supports OTDR, OTDR-LT, and OTDR-AD modes, providing users with a range of testing options to suit their specific needs.
The JDSU CWDM1E VIAVI OTDR 8140 is also equipped with a variety of advanced diagnostic tools, such as Fault Detection, Power Budget, and Dispersion Analysis. These tools help to ensure the optimal performance of the fiber-optic network and can help identify potential issues before they become major problems. The device also supports auto-polarization mode dispersion (APMD) measurement, which is particularly useful for testing high-capacity networks.
In summary, the JDSU CWDM1E VIAVI OTDR 8140 is a powerful and versatile optical time-domain reflectometer that is ideally suited for long-haul fiber-optic applications. Its advanced FFT analysis capabilities, along with its range of diagnostic tools and support for various testing modes, make it an excellent choice for network technicians and engineers looking for a reliable and high-performance OTDR.
Pros of buying JDSU CWDM1E VIAVI OTDR 8140 75km Fiber:1. High-performance: The JDSU CWDM1E VIAVI OTDR 8140 supports up to 16 wavelengths, making it suitable for complex network architectures. It also offers a high measurement accuracy and data rate.
2. Long-distance capability: The 75km fiber support makes it suitable for long-haul network applications, reducing the need for frequent maintenance and replacement.
3. Advanced features: The device comes with advanced features such as automated test and measurement, FiberLink, and SmartView, making it easy to use and manage.
4. Durable and reliable: The JDSU CWDM1E VIAVI OTDR 8140 is built for durability and reliability, with a rugged design that can withstand harsh environmental conditions.
Cons of buying JDSU CWDM1E VIAVI OTDR 8140 75km Fiber:1. High cost: The device is expensive, making it unsuitable for budget-conscious buyers.
2. Complexity: The device's advanced features may be overwhelming for beginners, requiring a learning curve to fully utilize its capabilities.
3. Limited compatibility: The device may not be compatible with all fiber types and network architectures, requiring careful consideration before purchase.
Conclusion:The JDSU CWDM1E VIAVI OTDR 8140 75km Fiber is a high-performance, long-distance OTDR device that offers advanced features and durability. However, its high cost and complexity may be a deterrent for some buyers. If you have a complex network architecture and require long-distance capabilities, this device may be a worthwhile investment. However, if you are looking for a more budget-friendly option with simpler features, you may want to consider other options.
Recommendation:If you require a high-performance, long-distance OTDR device with advanced features and durability, the JDSU CWDM1E VIAVI OTDR 8140 75km Fiber is a recommended option. However, if you are looking for a more budget-friendly option with simpler features, you may want to consider other OTDR devices available in the market.
Tested with T-Beard 6000A v2. 1551, 1571, 1591, 1611nm wave length s. Tested with SMF-28 and Dispersion shifted fiber in the middle.