Huawei #DigitalPower integrates digital and power electronics technology, to enable renewable energy as the main power of the world. Learn more about Digital Power here: https://bit.ly/4g6NXLe Visit the LEAP 2025 site: https://bit.ly/3Pw3Joi #HuaweiLEAP25
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Global semiconductor company STMicroelectronics has signed a 15-year power purchase agreement (PPA) for renewable electricity to help reduce emissions at its semiconductor facilities in France. #gasworld #industrialgas
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Nexperia's cascode GaN FETs are integral to the advancement of power systems in Industry 4.0 and renewable energy sectors. Their high electron mobility allows for devices with low on-resistance and high switching frequency, essential for modern applications. Want to know more? Discover the full range and specs here 👉 https://bit.ly/4hg76MG #Nexperia #GaN #PowerSystems #PowerSupplies #FETs
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The photovoltaic effect is an important discovery for sustainable energy production because it allows for the direct conversion of sunlight into electricity, a clean and renewable energy source. Lets see what it does. The photovoltaic effect is the process by which sunlight is converted into electricity within solar cells. When photons from sunlight strike a semiconductor material, such as silicon, they excite electrons, allowing them to break free from their atomic bonds and create electron-hole pairs. This movement of charge carriers is facilitated by an internal electric field formed at the junction of p-type and n-type semiconductors, generating a flow of electric current that can be harnessed for power. #Solar #SolarEnergy #SolarPower #SolarPanels #RenewableEnergy #CleanEnergy #GreenEnergy #Sustainability #EcoFriendly #ClimateChange
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🌍 On International Energy Day, we're bringing awareness to the essential role semiconductors play in the clean energy transition: • Improved Energy Efficiency: Semiconductors enable advanced power management in devices, reducing energy consumption across sectors. • Smart Grids: These technologies support the development of intelligent grids, balancing supply and demand for more efficient energy use. • Renewable Energy Integration: Semiconductors are key in optimising solar, wind, and other renewable energy systems, ensuring reliable power conversion and storage. • Sustainable Innovation: As Europe moves toward energy independence, semiconductors will help drive down carbon emissions and foster sustainable energy solutions. At Chips JU, we’re advancing these technologies to shape a greener, energy-efficient future. ⚡️ #InternationalEnergyDay #Semiconductors #Sustainability #ChipsJU
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Who’s Building the Most #Solar Energy? (by Visual Capitalist) In 2023, #solarenergy accounted for three-quarters of #renewable capacity additions worldwide. Most of this growth occurred in #Asia, the #EU, and the #USA, continuing a trend observed over the past decade. In this graphic, Visual Capitalist illustrate the rise in installed solar #photovoltaic (#PV) capacity in #China, the EU, and the U.S. between 2010 and 2022, measured in gigawatts (GW). Bruegel compiled the data.. Thanks again to Bruno Venditti and Visual Capitalist for the full article with more background and insights via the link below 💡🙏👇 https://lnkd.in/eBJtyJAe #semiconductorindustry #semiconductors #semiconductor #chip #chips #geopolitics #subsidies #technology #innovation #renewableenergy #it
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🌟 We’re highlighting how Medius supports different industries with practical solutions. Today, we focus on Telco and Electricity generation, sharing real use cases that show how our tools help improve processes and efficiency. Visit our comment section to learn more about how Medius makes a difference in these sectors. #Medius #Telco #Energy #Electricity #UseCases #ML
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Addressing Grid Challenges with Huawei Smart Energy Storage As the integration of renewable energy and power electronics grows, so do the challenges for power grid stability. At Huawei Digital Power, we are driving innovation with solutions like our Smart String Grid-Forming Energy Storage System (ESS), ensuring both grid reliability and safety for large-scale ESS. Safety is at the core of everything we do. Our ESS is built to operate reliably for 10 to 20+ years under complex conditions, thanks to Huawei’s expertise in power electronics and digital technologies. By addressing lithium battery inconsistencies and minimizing risks like thermal runaway, we deliver peace of mind for the energy storage lifecycle. From #Cell_to_Grid, our intelligent Battery Management System (BMS) integrates multi-dimensional diagnostics, elevating active safety capabilities and ensuring long-term, stable performance. It’s the smart, reliable solution the industry needs to meet the demands of a renewable-powered future. #Huawei #DigitalPower #smart #PV #ESS
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🌏 According to data from the IEA, by 2026, the total electricity consumption of data centers would equal the annual electricity consumption of Japan. 🚗 Electric vehicle sales are forecasted to rise,indicating that global electricity consumption will continue to increase in the future. 💡 Would renewable energy or green hydrogen be the answer to net-zero? Join the AI grand event at #Computex2024 , alongside CEOs from AMD, Intel, Qualcomm, and ARM. Discover more about this expo!👉https://buff.ly/4bfAak0 🔗
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Recently, we had the opportunity to participate in in-depth testing of a power electronic AC/DC converter at HUAWEI’s laboratories in Nuremberg, Germany. This converter is set to be installed in 2025 as part of a future Battery Energy Storage System (BESS) integrated within a new Enel Green Power (EGP) hybrid renewable plant (PV + BESS) @ Gran Canaria Island. The primary objective of these tests was to evaluate the converter’s performance in Virtual Synchronous Mode for grid-tied applications. Key aspects assessed included its ability to deliver a tunable and transient synchronous response, such as: • Inertia contribution through ROCOF, • Reaction to grid voltage phase angle steps, • Response to step variations in grid voltage magnitude, • Performance under combined ROCOF and phase angle step, • And capability to damp power system oscillations. We also tested the converter’s capabilities to transition between grid-tied and islanding mode (off-grid operation with small load) and its ability to restart the islanded system from a blackout, demonstrating black start functionality. This testing was a highly valuable experience, fostering productive technical exchanges among industry experts and laying the groundwork for a roadmap toward #GridForming solutions and services. Thank you to all participants, especially @HUAWEI team and @EGP colleagues. We look forward to meeting all of you for the next round of testing!!
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