See Energy saving's detailed category ranking
Cuts 97% of the heat caused by "radiant heat"! Leading to significant reductions in utility costs for factories and warehouses.
A highly effective method of "insulation" that blocks heat from the source! We are offering a comprehensive catalog explaining the differences between insulation and heat shielding for free!
A heat-insulating and thermal-insulating sheet (Bright Barrier Petit) that can be applied to windows to combat heat and cold.
Reduce electricity costs and stabilize factory management with self-consumption solar power generation for the sheet metal and welding manufacturing industry. Support for subsidy utilization and a PPA model with zero initial costs is also available.
Kubota expands its agricultural solar power generation fourfold to 20 MW, directly supplying the generated renewable energy to its own factories.
One-stop for both fundraising and design. Simultaneously reduce CO₂ and costs without stopping high-precision equipment.
A change in the leading role of renewable energy. The root cause is dependence on imports, and the solution is "domestic production × perovskite."
Support for decarbonized management! Convert wet steam into high-quality dry steam with steam reforming equipment, improving boiler efficiency. Double reduction in CO2 emissions and fuel costs.
Are you running your boiler unnecessarily? Increase steam dryness with a steam reforming device. By utilizing pressure differences for reforming, reduce the number of units, save energy, and cut costs.
The steam pressure regulator modifies steam through throttling and pressure reduction, minimizing heat loss in piping and drainage! *An easy-to-implement energy-saving measure.
Just incorporate it into the factory's steam line! The steam reforming device utilizes the pressure difference from a high-pressure operating boiler to supply high-quality steam. It reduces fuel costs and CO2 emissions.
Installed under the roofs of factories and warehouses, in high-temperature equipment within factories, and in various outdoor control panels. It significantly reduces radiant heat, demonstrating tremendous effectiveness for both energy savings and heatstroke prevention.
Just by sticking it on the window, you can combat the summer heat and winter cold! Achieve a comfortable office space.
Just by sticking it on the window, you can counter the summer heat and winter cold. Create a comfortable learning environment.
Simply by sticking it to the window, it supports a comfortable healing environment for patients.
Just by sticking it on the window, you can counteract the summer heat and winter cold! Make your working environment comfortable.
Just by sticking it on the window, you can counter the summer heat and winter cold!
Just by sticking it on the window, it improves the cooling efficiency of data center servers.
Just by sticking it on the window, it keeps the temperature inside the greenhouse comfortable.
Energy experts provide strong support for decarbonization, cost reduction, and automatic optimization!
Improvement of maintenance for heat exchangers! Both running costs and CO2 emissions reduced by approximately 60% (compared to steam systems).
Explanation of unused heat! We also introduce our thermal solutions.
Free energy-saving diagnosis until July 11. We provide heat exchangers and system designs that are useful for energy saving and heat stress measures in factories. Presentation of proposal materials.
Achieved a reduction in heat exchange costs of over 9 million yen annually. Utilizing water heater technology, we propose effective waste heat and natural energy utilization.
A case has been confirmed where significant energy-saving effects can be achieved through heat-shielding paint application!
The reduction rate of electricity consumption is approximately 36% due to partial chemical cleaning and thermal insulation coating! *A collection of case studies from four industries is currently being offered.
The chemical cleaning and heat-insulating coating of the AHU outdoor unit have reduced power consumption by approximately 14%! *A collection of case studies from four industries is currently being offered.
An easy-to-understand explanation of the mechanism and effects of 'heat-insulating paint' that reduces power consumption of air conditioning outdoor units, contributing to electricity cost reduction, heat accumulation countermeasures, and extending the lifespan of outdoor units.
[Presentation of Materials] "If the outdoor unit is not maintained for 3 years, the power consumption will more than double..." A detailed explanation of the reasons. We will also introduce case studies on measures such as cleaning and heat-reflective painting!
Simultaneously achieving electricity cost reduction and CO₂ reduction, industrial self-consumption solar power strongly supports environmental measures in manufacturing sites.
Achieve a 28% reduction in electricity costs and maintain profit margins with self-consumption solar power for the precision metal processing manufacturing industry. There are models available with zero initial costs and the use of subsidies.
Simultaneously achieving cost reduction and decarbonization in public works and construction sites: A clear introduction to the benefits of introducing new technologies.
Achieving both electricity cost reduction and protection of factories and equipment simultaneously: Safe and secure decarbonization management with rooftop solar power + lightning rods and SPD.
Simultaneously achieve reduction in electricity costs and workload burden. Start efficiency improvement and decarbonization management on-site with rooftop solar power.
Electricity cost reduction × CO₂ reduction = The number one decarbonization solution with management impact. Introduction with zero initial costs is also possible.
Achieving both visible and sustainable reductions in electricity costs and decarbonization management through business automation by AI.
Industrial self-consumption solar power generation × CO₂ reduction simulation. It's not just about reducing electricity costs. Visualizing the amount of CO₂ reduction accelerates decarbonization management!
Industrial self-consumption solar power generation achieves reliable, sustainable, and low-risk reduction effects compared to improvements in business processes.
Industrial self-consumption solar power generation is the overwhelming No. 1 cost reduction measure.
Electricity costs for clean rooms and manufacturing lines reduced by up to 28%! Implementation with minimized risk is possible using subsidies and a PPA model with zero initial costs.
Electricity costs for forging, heat treatment, and machining reduced by up to 28%! Self-consumption solar power generation system for engine parts manufacturing industry.
Reduce soaring electricity costs by up to 28%. Mitigate business risks with subsidy utilization and zero initial cost model support.
Reducing electricity costs for the electric furnace steel manufacturing industry with self-consumption solar power generation, protecting the future of high-energy industries. Utilizing subsidies and accommodating zero initial cost models.
"Achieving solar power with zero initial costs through onsite PPA" Reducing electricity costs × decarbonization = The most attention-grabbing management strategy right now.
Cut electricity costs by 28% to stabilize management in steel product manufacturing sites. Also available are subsidy support and zero initial cost models.
Released from the risk of rising electricity costs. Additionally, save up to 28% on electricity bills! Effective for clean rooms and air conditioning systems. Subsidy utilization and zero initial cost introduction available.
In an era of soaring electricity costs, a seasoning manufacturing factory reduced power costs by 28% using solar energy from its roof! There are subsidy-compatible models available with zero initial costs.




















































