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What is solar power that can lower electricity bills right now, compared to perovskite?
The ideal and reality of perovskite. What companies should choose now is proven self-consumption solar power generation.
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Mr. Takashi's warning: "The drawbacks of foreign-made mega solar" "Domestic production × self-generated power"
Mr. Takashi's warning: "The drawbacks of foreign-made mega solar" - The answer lies in "domestic production × self-generated power."
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Domestic technology compatible, selective self-consumption solar power generation system.
Renewable energy is shifting from "quantity" to "quality." The root cause is dependence on imports, and the answer is "domestic production × self-generation."
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Next-generation perovskite-compatible self-consumption solar power generation system
A change in the leading role of renewable energy. The root cause is dependence on imports, and the solution is "domestic production × perovskite."
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Review of renewable energy? The fundamental issue with self-consumption solar power systems is dependence on imports.
During the period of reviewing renewable energy policies, the root cause is "dependency on imports." The key to solving this is "domestic production × self-generation."
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Self-consumption solar + battery system for the transportation industry
"Power employees to compensate for labor shortages" - Realizing a new model of logistics powered by energy!
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Introducing funding sources! Promoting industrial self-consumption solar power generation projects!
One-stop for both fundraising and design. Simultaneously reduce CO₂ and costs without stopping high-precision equipment.
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Industrial solar power: High-efficiency repowering of aging solar systems with the latest equipment.
Rehabilitate and optimize existing rooftop solar panels! Achieve both improved operational efficiency and reduced maintenance costs simultaneously!
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Industrial solar power generation with stable output even in heavy snowfall, low temperatures, and short days in the Tohoku and Hokkaido regions.
Self-consumption solar power generation that does not stop hospitals, nursing facilities, and manufacturing equipment due to snowfall.
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To avoid regrets when introducing solar power generation - What are the key points for choosing a contractor?
Understand through downloads! A collection of checkpoints for "Choosing a Reliable Contractor."
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The solution for the struggling refrigerated logistics industry suffering from rising electricity costs lies in the utilization of solar energy.
Rising electricity prices hit the frozen logistics sector hard.
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Ultra-lightweight next-generation solar cells 'Perovskite' explanation.
However, if companies want to achieve reductions in electricity costs and CO₂ emissions now, "conventional industrial solar power generation" is the best option.
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Facilities that don't stop even during power outages. The choice of rooftop solar as the core of BCP.
Before a "power outage" during a disaster becomes fatal. In normal times, it reduces electricity costs, and in emergencies, it ensures power supply—solar power generation fulfills both roles.
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Balancing power reduction for air conditioning infection control and BCP with self-consumption solar power generation at hospitals.
Reduce electricity costs while strengthening air conditioning, infection control, and disaster response!! A time to simultaneously reassess energy costs and resilience in hospitals and welfare facilities.
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Reduce warehouse electricity costs by 20%! Would you like to install rooftop solar power generation?
With zero initial investment and zero risk, you can capitalize on the roofs of factories and warehouses, utilizing them to reduce electricity costs and as a new source of net profit.
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Just by renting out the roof, you can generate new net profit and also earn rental income from rooftop solar power.
With zero initial investment and zero risk, you can capitalize on the roofs of factories and warehouses, utilizing them as a new pillar of net profit.
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Roof-mounted solar power electricity cost reduction simulation case insider information disclosure
Up to 28% reduction in electricity costs with rooftop solar! Total construction cost of 908.4 billion yen, with a track record of 83 solar power plants built over 12 years! Names of partner companies are also publicly available!
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Reducing electricity costs × Carbon neutrality Coexisting with agriculture through agrivoltaics
Kubota expands its agricultural solar power generation fourfold to 20 MW, directly supplying the generated renewable energy to its own factories.
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Achieving both electricity cost reduction and CO₂ reduction! Solar power generation introduced by SUBARU!
SUBARU expands the introduction of PPA-type solar power at its bases in Gunma and Tokyo.
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Simultaneously achieve electricity cost reduction and decarbonization! Industrial self-consumption solar power generation on our own roof.
Currently, the number of companies generating renewable energy in-house is increasing. Hokuriku Electric Power and Marubeni New Power have started supplying PPA-type solar power to Toshiba's factory.
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Industrial self-consumption solar power generation is an option following NETIS technology.
Simultaneously achieving cost reduction and decarbonization in public works and construction sites: A clear introduction to the benefits of introducing new technologies.
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Industrial self-consumption solar power generation that also realizes measures against lightning damage.
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.
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Industrial self-consumption solar power is a more reliable cost reduction strategy than business automation through AI.
Achieving both visible and sustainable reductions in electricity costs and decarbonization management through business automation by AI.
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Industrial self-consumption solar power accelerates labor-saving at construction sites.
Simultaneously achieve reduced electricity costs and decreased workload. Start efficiency improvement and decarbonization management on-site with rooftop solar installations.
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Cost reduction through zero initial cost solar power generation realized at airports and large facilities.
"Achieving solar power with zero initial costs through on-site PPA" Reducing electricity costs × decarbonization = The most attention-grabbing management strategy right now.
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Visualization simulation of CO₂ reduction amount for industrial self-consumption solar power.
Industrial self-consumption solar power generation × CO₂ reduction simulation: It's not just about reducing electricity costs. Visualizing CO₂ reduction amounts accelerates decarbonization management!
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Which cost reduction measure should the factory choose? The clear winner is industrial self-consumption solar power generation!
Industrial self-consumption solar power generation achieves reliable, sustainable, and low-risk reduction effects compared to business process improvements.
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The first step in decarbonization management is a 28% cost reduction through industrial self-consumption solar power generation!
Electricity cost reduction × CO₂ reduction = The number one decarbonization solution with management impact. Introduction with zero initial cost is also possible.
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Industrial self-consumption solar power generation vs. thorough comparison of cost reduction through DX!
Industrial self-consumption solar power generation is the overwhelming No. 1 cost reduction measure.
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Up to 28% reduction in electricity costs with self-consumption solar power generation for the general-purpose pharmaceutical manufacturing industry.
Electricity costs for clean rooms and manufacturing lines reduced by up to 28%! Implementation with minimized risks is possible using a PPA model with zero initial costs and leveraging subsidies.
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