As people's demand for data transmission rates grows, lightwave transmission systems become more and more advanced, and device designers and manufacturers must maximize the performance of their products to meet the growing demand. Optical communication engineers often use bit error rate and eye diagram to measure the performance of optical communication devices. However, the bit error rate or eye diagram is usually used to measure system performance, and it is difficult to use the bit error rate to measure the performance of each device that makes up the system. Therefore, high-speed lightwave device analyzers are applied to the analysis of lightwave devices to characterize device performance. In addition, high test accuracy, high linear dynamic range adjustable laser sources, optical power meters and optical polarization control analysis are also required. A series of advanced optical communication test instruments such as the instrument can achieve rapid construction, improve the convenience of system integration, and reduce the total test cost.
Total of 1 lessons50 minutes and 5 seconds
With the expansion of data centers and the commercialization of 5G technology, 100G/400G is receiving more and more attention as the main technology of network infrastructure. This live broadcast will take you to understand the latest progress of 400GE related standards and how to deal with the testing challenges that 100G, 400G and even 1Tb rates will bring to you. We will discuss with you separately including long-distance and short-distance communication technologies coherent optical The test problems faced by communications and PAM-4 will also be introduced. Keysight's latest optical communication test products in 2019 and the most complete 100G/400G test solutions will also be introduced.
Total of 3 lessons55 minutes and 44 seconds