GERMAN EMS PROVIDER EXPANDS WITH NEW PLANT IN

New German Hybrid Energy System

New German Hybrid Energy System

European energy giant Vattenfall has started construction on a new hybrid renewable energy project in southwest Germany that combines wind and solar power at a single site. The project, called Hommerdingen-Biesdorf, will pair four wind turbines with more than 12,000 solar panels. Landshut, Germany – Over three years of research, the consortium of the EU project HyFlow has successfully developed a highly efficient, sustainable, and cost-effective hybrid energy storage system (HESS) that can meet high energy and power demands. Bayreuth, Berlin, Dortmund, Stuttgart: An important joint project for the energy transition is becoming a reality. The four German transmission system operators, 50Hertz, Amprion, TenneT and TransnetBW, are launching an innovation partnership with industrial partners Siemens Energy, GE Vernova and.

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New ODN Passive Components

New ODN Passive Components

Passive ODN architectures, which eliminate active power-dependent components between central offices and end-user premises, have grown from 62% of global new ODN deployments in 2025 to 78% in 2026, per Fiber Broadband Association (FBA) data. An Intelligent ODN fuses electronic labels/QR codes, high-dynamic-range smart OTDR, and a unified management platform (GIS + topology + data governance). The result: faster mean-time-to-repair (MTTR), higher first-time fix, and traceable changes—without relying on customer-side TF reflectors. The Passive Optical Network (PON) is the indispensable foundation for delivering ubiquitous, multi-gigabit broadband connectivity, a necessity for modern economies and residential life. 9807 (XGS-PON), and IEC 60794 cable standards, the ODN forms the physical optical path responsible. An Optical Distribution Network (ODN) is the passive fiber infrastructure that connects the Optical Line Terminal (OLT) in the central office to the Optical Network Unit (ONU/ONT) at the subscriber side.

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New High-Speed ​​Optical Connector for Broadcast Transmission

New High-Speed ​​Optical Connector for Broadcast Transmission

The V series achieves a high-speed optical fiber connection in electronic devices by using an electric connector. Active Optical Connector, the BF4MC Series, Solves the Problems of Electrical Connection. In cases where the application will demand a high level of reliability, such as automotive, please contact a company. High-Speed Optical Transmission at A 20 Mbps to 8 Gbps Transmission Rate! Panasonic, a worldwide leader in Connector Products, is pleased to introduce the V Series LC Connector Type Active Optical Connectors. Designing and manufacturing fibre and IP signal transport for broadcast, AV and telecom. Trusted by broadcasters, system integrators and venues worldwide for over 30 years.

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New Cable Trays in Egypt

New Cable Trays in Egypt

In this article, we will explore some of the top cable tray manufacturers in Egypt, including Metaltech, NTT Al-Tawakol, Metal Egypt, EEE, and Masar. EGYTRAY, a proud member of El-Sewedy Industries Group, is a leading Egyptian manufacturer of precision-engineered Cable Management Systems serving industrial, commercial, and infrastructure sectors across the MENA region. We deliver durable, customized solutions tailored to the needs of the electrical and industrial sectors, ensuring reliability and efficiency in every. These companies provide a range of cable management solutions, from standard cable trays to custom-made systems tailored to specific needs.

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New optoelectronic fusion technology for edge computing

New optoelectronic fusion technology for edge computing

We have proposed the Fourier domain diffraction neural network, constructed the reconfigurable diffraction computing processor (DPU), developed the all-analog optoelectronic fusion computing chip ACCEL, and the large-scale general-purpose intelligent optoelectronic computing . We present GENIO, a novel platform that integrates edge computing within existing Passive Optical Network (PON) infrastructures. Integrating microelectronics and optoelectronics can harness the mature processes and functions of microelectronics, with the ultra-wideband and low-power benefits of optoelectronics.

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