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Intelligent IoT technology is used to carry out battery life cycle management optimization and cross-field synergy application that can unlock the value of electric batteries throughout their entire life cycle.
It is done by fusing the world’s leading battery electrochemical technology with cutting-edge IoT best energy practices.
To investigate each mechanism failure, it digitises battery-use conditions and optimises the formulation of materials using AIoT.
Electrochemical modelling is also used to speed up and optimise the design of cells and to forecast battery life under various operating situations.
The Global AIoT Battery market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
Envision AESC launched the newest AIoT battery. The battery will have a high energy density of approximately 300 Wh/kg after passing several safety tests.
In the future, it is anticipated that it will supply a high safety, high energy density, high durability, and reasonably priced batteries to more than 400,000 new energy cars annually throughout the world.
Their batteries have an excellent track record for quality and safety.These batteries are made in Japan, the US, and Europe. In order to dramatically improve batteries in terms of safety, performance, affordability, and longevity, Envision AESC depends on a thorough R&D system and years of reliable core technology.
To achieve adaptation to diverse battery pack sizes and installations, a strong module design system is also essential.
With a capacity increase of 50%, the new battery pack Nissan LEAF was made possible by the strong module design skills.
With the completion of the AESC acquisition, Envision Group announced the launch of its battery sector fund, Envision AESC.
Envision Group boasts the most advanced AIoT operating system, EnOSTM, as well as extensive IoT and AI experience.
Envision Group will completely enable Envision AESC to manage battery status and fault alerts, implement intelligent battery control in terms of R&D, manufacture, installation, and recycling, and further improve the management of the battery life cycle.