This article explains electrical resistance in lithium-ion cells and details key measurement methods. It highlights why understanding internal resistance is crucial for battery performance and diagnostics.
This article explains how the OCV method is used to estimate battery state of charge and why it is important for BMS accuracy.
This article describes SIG Energy Technology's approach to cell testing and technical support for energy storage projects.
Cell characterization involves rigorous testing to ensure lithium-ion cell quality and performance. This process helps anticipate product lifespan and optimize battery management systems.
This article explains the differences between prismatic, cylindrical, and pouch lithium-ion cells, and how SIG Energy Technology focuses on prismatic and cylindrical formats for industrial and automotive applications.
SIG Energy Technology supports research and education in lithium-ion batteries, partnering with universities and student projects to advance green technology.
This article details the use of mechanical simulation in designing spacers for lithium-ion cell modules, ensuring optimal compression and reliability.
SIG Energy Technology’s spacers improve cell compression, safety, and performance in lithium-ion modules, using recycled materials and innovative design.
This article explains the role of Battery Management Systems (BMS) in lithium-ion batteries, including balancing, protection, and communication functions.
French local authorities are driving electric mobility by investing in zero-emission vehicles, charging stations, and innovative transport policies to improve air quality and meet future mobility needs.
This article discusses battery recycling, second life applications, and SIG Energy Technology's commitment to sustainable manufacturing in France with eco-designed modules.
This article explores how stationary storage systems provide essential flexibility to energy networks during consumption peaks and offer economic advantages amid rising energy costs.
A festive message from SIG Energy Technology wishing everyone a merry Christmas and a wonderful year 2022.
This article explains how lithium-ion batteries revolutionize industrial logistics equipment, offering up to 5 times more energy storage and eliminating maintenance requirements compared to lead-acid batteries.
This article describes SIG Energy Technology's partnership with Top Dutch Solar Racing, providing custom lithium-ion cells for their solar car Green Spirit in Groningen, Netherlands.
This article explains how the French government supports the conversion of combustion vehicles to electric (retrofit), its benefits, and SIG Energy Technology's involvement in retrofit projects.
This article compares NMC and LFP lithium-ion battery technologies, their applications, and why SIG Energy Technology focuses on LFP for safety, durability, and sustainability.
This article explains SIG Energy Technology's approach to lithium-ion battery logistics, including dangerous goods transport regulations, UN38.3 certification, and their strategic warehouse location near Paris.
This article covers SIG Energy Technology's participation at EVS 32 symposium in Lyon, examining major changes in sustainable mobility for lifestyles and economy.
This article describes SIG Energy Technology's participation at The Battery Show in Stuttgart, Europe's largest showcase of batteries and advanced hybrid technologies.
This article covers SIG Energy Technology's participation at Energy Storage Düsseldorf, showcasing products and exchanging with leading companies in energy storage industry.
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