High-speed networks using hollow-core optical fibers

High-speed networks using hollow-core optical fibers

Hollow Core Fiber (HCF) replaces the traditional solid glass core of optical fiber with an air-filled channel. This allows light to travel faster and reduces network latency by up to 30–35% per kilometer. Hollow-core optical fibers (HCFs) have unique properties like low latency, negligible optical nonlinearity, wide low-loss spectrum, up to 2100 nm, the ability to carry high power, and potentially lower loss then solid-core single-mode fibers (SMFs). 5 microseconds per kilometer, offering a 30 to 50 percent speed increase. This technology, known as hollow core fiber, promises to transform network performance, particularly in critical environments such as data centers and financial infrastructures. Held in San Francisco, California, this year's OFC attracted 16,700 attendees from 83 countries. [pdf]

Review of Network Security Equipment and Technologies

Review of Network Security Equipment and Technologies

Compare network security solutions including firewalls, WAFs, zero trust network access, and ZTNA platforms. Independent shortlists and product reviews from Expert Insights. This literature review critically examines recent advancements in key areas such as network security, artificial intelligence (AI), edge computing, dece tralized systems, and their synergy with quantum algorithms and. Network security involves tools, techniques, and policies to protect digital assets from unauthorized access and cyber threats. It combines hardware, software, and expert resources to ensure network integrity and prevent breaches. We reviewed the leading network firewall platforms on threat inspection depth, throughput under real traffic conditions, and how manageable policy configuration is for teams of different sizes. [pdf]

Can a ring network be protected by relays

Can a ring network be protected by relays

In the ring distribution network, differential relays, which rely on communication between the protection relays, are used for the underground cable protection. To guarantee cable protection when communication is failed, an auxiliary protection by using directional overcurrent. This article introduces a new approach for validating directional overcurrent protection schemes in ring-topology electrical distribution systems with distributed energy resources (DERs). It is not generally possible to operate a system as a closed ring using overcurrent standard grading methods while achieving discrimination and maintaining reasonable. The ring main switch enables the underground cable system to be isolated in sections, and the interconnection of adjacent feeders. [pdf]

Ready to Optimize Your Cable Infrastructure?

Request a free quote for fiber optic cable trays, grid runways, U-steel troughs, aluminum bridges, or complete overhead trunking systems. EU‑owned German factory – reliable, compliant, and cost‑effective solutions for Africa.