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How High-Voltage Substation Installation Benefits from Pre-terminated Cables

Onshore high-voltage substations – often called switchyards, switching stations, or grid stations – are the critical hubs that keep electricity flowing to power our world, from renewable energy projects to data centers driving AI and cloud computing. Installing or upgrading these vital facilities requires precision, speed, and reliability. Our pre-terminated

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Experience Reynard’s High Voltage Solutions Up Close at Wind Europe 2025

Mark your calendars. Reynard High Voltage Solutions is thrilled to announce our participation in the Wind Europe exhibition in Copenhagen from April 8-10, 2025. We will be located at stand C4-B30, eager to showcase innovative solutions that empower the future of renewable energy. This is your chance to see how

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Why Data Centres Are Going High-Voltage. And Why It Matters

Datacentres are the digital heart of our world. But behind every cloud server, streaming service, and AI model lies a simple truth: none works without power. As global demand for data grows, so does the power requirement of the facilities that store and process it. That’s why high-voltage (HV) infrastructure

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How Offshore Wind is Powering the Future of Grid Stability

The role of offshore wind farms is evolving beyond just generating renewable energy. Maintaining a stable electricity grid has become a critical challenge with increasing reliance on wind power. A recent development by RWE highlights how offshore wind can contribute to grid stabilisation, marking a significant step in the energy

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Our Proprietary App: Reynard Toolbox Suite

Reynard Toolbox Suite: Powering Wind Energy Projects with Precision In the fast-evolving world of wind energy, precision, safety, and efficiency are crucial. That’s why I created the Reynard Toolbox Suite—a proprietary platform designed specifically to meet the demands of the renewable energy sector. This isn’t just project management; it’s my

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Why the Offshore Wind Industry is Transitioning from 66 kV to 132 kV

The offshore wind industry is transitioning from 66 kV to 132 kV for several key reasons, driven by the need to improve efficiency, reduce costs, and support the growth of larger and more distant offshore wind farms. Here are the main factors behind this shift Increased Power Capacity Offshore wind

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