Bringing the joy of “I can do this” and the enjoyment of keeping going to everyday work.

ENERGY

Energy-related business

“Places that generate electricity” are returning to our daily lives.
Until now, electricity was generated at distant power plants and transported over long transmission lines.
However, large-scale centralized mechanisms such as power outages, CO₂, and geopolitical risks during disasters are showing signs of cracking.
Solar, small wind power, fuel cells, micro gas power generation.
We believe in the idea of placing several small power generation units right next to our daily lives,
We design forms of energy that do not stop during both normal and emergency situations.

Recommended for people like this

  • Considering the introduction of self-consumption solar power or fuel cells, but unsure where to start.
  • Considering business continuity during disasters, we want to review power generation plans, including UPS and emergency power generation.
  • Municipalities, schools, and welfare facilities want to establish equipment resilient to power outages.
  • We want to design our own energy balance, including microgrid cogeneration.
  • There is interest not only in large storage batteries but also in alternative technologies such as capacitors.

Areas of Practice

CategoryHandling TechnologiesHow it works for daily life
Power generationMicrogas Power Generation
Small Fuel Cells
Small Wind Power Generation
Solar Power Generation
Reduce electricity purchases from utilities to lower CO₂ emissions and electricity costs.
combined heat and powerCompact cogeneration system
LNG Gas Supply
Improving heating and hot water supply efficiency and reducing fuel costs
Energy Storage and Power QualitySecondary Battery System
Secondary Battery Replacement Capacitors
New Ways UPS
Absorbs uneven power generation from solar and wind power to achieve stable supply
emergency useEmergency Power Generation SystemEven during disasters or power outages, medical equipment, communications, and refrigeration are kept on the road.

Delivery Approach

  1. Visualizing the current electricity balance: measuring power consumption patterns and power quality across the entire facility
  2. Designing combinations of distributed power sources: presenting and comparing multiple proposals on how to combine generation, storage, and power quality corrections
  3. Equipment selection and commissioning: No specific manufacturer restrictions. Proposing optimal combinations from a technology-neutral standpoint
  4. Post-operation effectiveness measurement and improvement: Regular tuning based on data