Atlas Power Technologies’ ATP1-3800 supercapacitor cells boast of 2.7V 3800F that is UL 810A certified that delivers high power density, rapid charge/discharge, and over 1,000,000 cycle life, making it ideal for renewable energy, industrial power, and transportation. With our patented dry-electrode technology, it ensures reliable energy buffering and backup power
The Atlas Capacitor Module is a high-performance energy storage solution featuring 32 advanced 3800F supercapacitor cells. Designed for industrial, grid, and transport applications, it delivers 123Wh of total energy, 350A discharge capacity, and has UL 1973 compliance for superior safety and reliability. It ensures long-term durability and seamless maintenance.
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The Atlas Supercapacitor Energy Storage System (SC-ESS) is a modular building block designed for grid stability, industrial power, and rapid energy discharge applications. Each system is built in-house, utilizing Atlas modules, intelligent charge controllers, and a Power Conversion System (PCS) for seamless grid or system integration. En
The Atlas Supercapacitor Energy Storage System (SC-ESS) is a modular building block designed for grid stability, industrial power, and rapid energy discharge applications. Each system is built in-house, utilizing Atlas modules, intelligent charge controllers, and a Power Conversion System (PCS) for seamless grid or system integration. Engineered for safety, efficiency, and scalability, the SESS delivers up to 2 MW discharge power.
Atlas Power Technologies has developed a patented activated carbon production process to enhance energy storage efficiency. We have optimized activation for greater consistency and performance. Our in-house activated carbon demonstrates higher capacitance (4200-4500F) compared to industry standards (3500F), making it a superior choice for supercapacitor applications.
Atlas' manufacturing process is water-based and a drop-in solution for battery production. Atlas' process eliminates NMP and solvent recovery systems from your new and existing facilities. Our method allows for ultra-thick electrodes of 160 μm.
31673 Marshall Road, Abbotsford, British Columbia V2T 6B1, Canada