An industrial storage battery with a maximum capacity of 384kWh (10 units in parallel) that can also be used as an emergency power source for BCP measures in nursing care facilities! There are many successful cases of utilizing various subsidies!
A systematic explanation of electrochemical evaluations such as charge-discharge curves and impedance, which are essential for predicting the degradation and lifespan of lithium-ion batteries, from the basics to applications.
Resource recycling through redox reactions! Manufacturing method for bead-type and jelly-roll zinc fuel.
The cost reduction of electrode catalysts is a future challenge! Introducing the materials used for the electrode part in fuel cells.
Generate electricity with the quiet, odorless fuel cell ABIOS-1! Since it doesn't emit CO2, lighting fixtures can be used comfortably.
Utilizing preprocessing and analysis techniques to solve problems! Supporting development through various material analyses and evaluations.
Focusing on solid polymer fuel cells (PEFC) and solid oxide fuel cells (SOFC) as fuel cell systems used for various applications.
This is a new positive electrode material that promotes the development of nickel-zinc secondary batteries.
Analysis and Market Forecast of Home Fuel Cells (EneFarm) and the European Micro CHP Market
Lithium battery ⇒ Bipolar ⇒ Dry electrode ⇒ LFP lithium battery ⇔ Inkjet application Which battery manufacturer will complete the development first?
<Also compatible with SDGs!> Peace of mind during disasters and power outages! Long-term use portable storage battery! High-performance lithium-ion battery recycling recognized for EVs!
Towards the future of an electrified society, 'FUJISEIKO' will continue to run together with everyone.
























































































































