Category: Fiber

Webinar: AI, 5G and IoT: Smart buildings in 2020 and beyond

5G is billed as the connectivity fabric that will support a new era of consumer and enterprise experiences. But, in the context of smart buildings, 5G is part of a larger equation that also encompasses artificial intelligence and the internet of things. The combination of the three–5G, AI and IoT–will allow for real-time data collection and analysis that will make buildings more efficient and more user-friendly. Building owners with a robust technology strategy will be able to leverage these rapidly developing solution sets to reduce net operating expense while leveraging the technologies to drive up lease rates by providing new services.  

How to Splice Rollable Ribbon in the Data Center

Adapting to new advancements in fiber optics – like rollable ribbon – does not have to be complicated. In this blog, Mike Cooper explains how deploying rollable ribbon can be an effective method of saving space. In data centers where fiber optic cables are starting to fill pathways, deploying rollable ribbon can be an effective method of saving space. It is also flexible, like a distribution cable, making it more durable and less susceptible to breaks. Moreover, rollable ribbon splices just like matrix – 12 fibers at a time.

50 Gbps Automotive Optical Ethernet demo

With the increase in Advanced Driver-Assistance Systems (ADAS), and the industry looking at autonomous vehicles on the horizon, the intelligent car needs growing bitrates to flow through its nervous system. The protocol of choice to implement the communication infrastructure in the car is Ethernet, and the 802.3 Working Group of the IEEE standardization organization is already paving the way to have multi-gigabit per second optical Ethernet in vehicles. A dedicated Study Group is already working on the future IEEE 802.3cz standard.

400Gbps data transmission achieved over DCI in a 75 GHz DWDM channel

NeoPhotonics achieved two milestones using its interoperable pluggable 400ZR coherent modules and its specially designed athermal arrayed waveguide grating (AWG) multiplexers (MUX) and de-multiplexers (DMUX). First, data rate per channel increases from today’s non-interoperable 100Gbps direct-detect transceivers to 400Gbps interoperable coherent 400ZR modules.Second, the current DWDM infrastructure can be increased from 32 channels of 100 GHz-spaced DWDM signals to 64 channels of 75 GHz-spaced DWDM signals.

Simplifying Data Center Network Design with Universal POLARITY Fiber Cassettes

Polarity means that a fiber optic link’s transmit signal at one end of the cable must match the corresponding receiver at the other end. While this concept might seem simple, it becomes more complex with multifiber cables and MPO connectors. Leviton’s new Universal Polarity Fiber Cassettes that help data center managers simplify things even further. The Base12 cassettes allow for the same interchangeable cassette on both ends of a Method B trunk in a fiber channel, reducing the complexity of a fiber network, ensuring consistent polarity, and streamlining network deployment.

New undersea web cable to connect major Asian information hubs

The Asia Direct Cable Consortium has chosen NEC to build its new high-performance submarine cable. The finished cable will feature multiple pairs of high capacity optical fibers designed to carry more than 140 Tbps of traffic to allow for high capacity transmission of data across the East and Southeast Asian regions. As a result of ADC’s high capacity, the new submarine cable will be able to support bandwidth-intensive applications driven by technological advancements in 5G, the cloud, IoT and AI.

WEBINAR: The rise of Edge Data Centers and 400G optics – what will change?

Join this free webinar to learn about the technological drivers for 400G optics and Edge Data Centers, what consequences these new technologies have on optical cabling, what Edge Data Centers are, and how potential connectivity solutions could look like. The webinar will also  address the emerging 400G optical market and the challenges faced on the connectivity end.

Splicing Efficiency Improvements in Ultra-High Density Fiber Optic Cable

This White Paper investigates and documents each aspect of the cable joining and the ribbon fiber splicing process of ultra-high density fiber optic cable and identifies improvements in cable preparation, closure preparation, ribbon fiber preparation, and the mass fusion splicing processes achieved since a previous study was published as a technical paper at the 64th IWCS in 2015.1 By taking a systems approach to the overall splicing process, it has been possible to improve efficiencies in the cable joining and splicing process to realize additional system cost savings with this technology.