Tiamat Sodium-ion cells
Electric vehicles use sodium-ion cells that have a lot of power and can be charged quickly.
Electric vehicles use sodium-ion cells that have a lot of power and can be charged quickly.
A way to charge sensors for the Internet of Things and cut down on waste and toxins in landfills.
A machine learning program for analyzing the batteries of electric cars.
A cheaper and more powerful electric mobility energy network for light vehicles in Africa.
A powertrain for an e-bike that uses Twin Transmission technology to improve performance and user safety.
The world’s first solar backup system with both AC and DC outputs and two inputs.
High energy lithium ion batteries can have silicon anodes that can be made bigger or smaller.
Using a DIY product to compare the alkaline battery market.
A smart way to turn any regular bike into an electric bike.
The CO2 footprint of e-bikes could be reduced with a repairable electric battery that doesn’t use solder.
Technology for fast, cheap, and environmentally friendly lithium extraction.
Installing solar systems in homes and businesses will cut down on how much electricity is made from fossil fuels and water.
A way to store energy for grid stabilization and charging stations for electric vehicles.
A new solar lighting system that uses a solar panel with a high charging capacity.
Makes and uses rechargeable, high-capacity nickel-zinc batteries that can be recycled.
Solar hybrid inverters and operating systems that hold multiple power converters in one enclosure.
A smart-grid pontoon that charges electric boats with clean energy.
An electric motorcycle with an exoskeleton chassis and a new way of building the batteries.
The best lithium-ion battery resource recovery technology in the world.
An independent solar tower designed to keep mission-critical devices working all the time.
Solar and wind power are used to make clean energy that can be used all day long.
Using ambient light, IoT sensor networks can get energy from the environment.
A new ultracapacitor that can store energy and has a high energy and power density.
Recycling lithium-ion battery materials for the manufacturing of new product.
Electric cabinet with recycled batteries to maximize self-consumption of photovoltaic energy for home use.
Solar panels that are ultra-flexible, thin-film (CIGS), light, and useful for tents, trucks, drones, and airships.
Patented stackable power packs make up a smart way to store energy.
A place close by where electric vehicles can charge and swap batteries.
A way to store renewable energy that works like a big water battery and makes the energy transition possible.
M.A.P Technology is a program to make Li-ion batteries last longer and work better.
A solar-powered mobile power supply unit that is small and can be used in many industries.
Solid-state lithium batteries will help all remote places with their transition problems.
A modular system for storing energy that can be used in large buildings.
A smartgrid is a network of smart solar streetlights that are connected wirelessly.