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In commercial facilities, the rising electricity costs have become a significant challenge for management. At the same time, consideration for the environment is an important factor that contributes to customer evaluation. Rooftop solar power generation systems serve as an effective means to address these challenges simultaneously. By reducing electricity costs and utilizing clean energy, they also contribute to enhancing the company's image. Our products make effective use of the rooftop space of commercial facilities and support sustainable management. 【Usage Scenarios】 - Rooftops of commercial facilities - Parking lots - Stores 【Benefits of Implementation】 - Reduction in electricity costs - Enhancement of corporate image - Contribution to the environment
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In the warehouse industry, the soaring electricity costs have become a significant challenge. Particularly in warehouses that consume a lot of power for temperature control and lighting, energy-saving measures are urgently needed. A self-consumption solar power generation system reduces electricity costs by installing solar panels on the warehouse roof and using the generated electricity within the warehouse. This not only contributes to cost reduction but also helps to reduce environmental impact. 【Usage Scenarios】 - Installation of solar panels on warehouse roofs - Power supply for lighting, air conditioning, and refrigeration equipment - Achieving both electricity cost reduction and CO2 emission reduction 【Effects of Implementation】 - Up to 28% reduction in electricity costs - Contribution to corporate decarbonization - Reduction of initial cost burden through the utilization of subsidy programs
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In factory management, electricity costs are one of the major cost factors. Particularly in the manufacturing industry, there are facilities that operate 24 hours a day and processes that use a lot of power, making the reduction of electricity costs an important issue. A self-consumption solar power generation system can reduce electricity costs and enhance cost competitiveness by supplying the power used within the factory through solar energy. Our rooftop solar power generation system will contribute to your cost reduction. 【Usage Scenarios】 - Power supply for manufacturing lines - Addressing the overall power demand of the factory - Updating aging equipment 【Effects of Implementation】 - Reduction in electricity bills - Reduction in CO₂ emissions - Improvement of the company's image
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In educational institutions, stable power supply and cost management are crucial for experiments. Particularly when conducting high-precision experiments or long-duration tests, electricity costs can become a significant burden. Additionally, consideration for the environment is an important issue for educational institutions. Industrial self-consumption solar power generation addresses these challenges and supports the establishment of a sustainable experimental environment. 【Usage Scenarios】 - Science laboratories - Research labs - Outdoor experimental facilities 【Benefits of Implementation】 - Reduction in electricity costs - Decrease in CO₂ emissions - Improvement of the institution's image
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In the transportation operations of medical institutions, the increase in electricity consumption and costs are significant challenges. In particular, the operation of medical equipment and the use of air conditioning systems contribute to rising electricity demand and pressure on operational costs. A self-consumption solar power generation system can address these challenges by enabling on-site electricity self-sufficiency and reducing dependence on external power sources. This leads to a reduction in electricity costs and improves the efficiency of transportation operations through stable power supply. 【Usage Scenarios】 - Patient transportation within hospitals - Movement of medical equipment - Transportation of pharmaceuticals and medical supplies 【Effects of Implementation】 - Reduction in electricity costs - Mitigation of CO₂ emissions - Enhancement of corporate value
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In the energy industry, sustainable power supply and cost reduction are important challenges. In particular, in the power generation business, stable power supply and reduction of environmental impact are required. Our industrial self-consumption solar power generation provides a reliable solution to these challenges. 【Usage Scenarios】 - Securing self-consumption power for power plants - Reducing electricity costs - Realizing environmentally friendly power plants 【Effects of Implementation】 - Reducing dependence on external power - Decreasing fuel usage - Enhancing corporate value
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In the telecommunications maintenance industry, the stable operation of base stations and communication equipment is essential. Power outages and unstable power supply can lead to the suspension of communication services, potentially damaging customer trust. Particularly, securing power in remote areas and during emergencies is a critical issue. Industrial self-consumption solar power generation enables on-site power self-sufficiency, reducing dependence on external power sources. This contributes to reducing power costs and ensuring power supply during emergencies, thereby supporting the stable operation of communication infrastructure. 【Usage Scenarios】 - Base stations - Communication equipment - Maintenance bases 【Benefits of Implementation】 - Reduction in power costs - Securing power during emergencies - Enhancement of corporate value
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In fisheries management, stable power supply and cost management are crucial. In particular, fluctuations in catch volume and rising fuel costs can put pressure on management. Industrial self-consumption solar power generation addresses these challenges by achieving reductions in electricity costs and stable supply. It also contributes to reducing dependence on external power and lowering fuel usage. 【Usage Scenarios】 - Management of port facilities - Power supply for aquaculture farms - Power supply for fisheries-related facilities 【Effects of Implementation】 - Reduction in electricity costs - Decreased dependence on external power - Increased corporate value
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In mining excavation work, stable power supply and cost management are crucial. In particular, heavy machinery and equipment consume a significant amount of power, and reliance on external power supply can lead to increased costs and higher CO2 emissions. A self-consumption solar power generation system enables on-site power self-sufficiency and reduces dependence on external power. 【Usage Scenarios】 - Excavation sites - Plants - Offices 【Benefits of Implementation】 - Reduction in power costs - Mitigation of CO2 emissions - Enhancement of corporate value
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In forestry surveying operations, a stable power supply is essential for accurate data acquisition. As the use of drones and surveying equipment increases, reliance on external power sources can lead to increased costs and potentially reduce work efficiency. Self-consumption solar power generation allows for on-site power supply needed for surveying operations, reducing electricity costs. 【Usage Scenarios】 - Power supply for drones and surveying equipment in surveying operations - Forest surveys, topographic surveys, resource quantity surveys, etc. 【Benefits of Implementation】 - Reduction in electricity costs - Decreased reliance on external power sources - Improvement of environmentally conscious corporate image
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As automation in warehouses progresses, there is a growing demand for reducing electricity costs and improving operational efficiency through labor savings. Particularly in 24-hour operating warehouses, electricity costs become a significant burden, making energy-saving measures urgent. Industrial self-consumption solar power generation can be installed on warehouse roofs to supply electricity in-house and reduce the purchase of electricity from external sources. This helps to lower electricity costs while also contributing to a reduction in CO₂ emissions. 【Usage Scenarios】 - 24-hour operating warehouses - Large-scale warehouses - Logistics centers 【Benefits of Implementation】 - Reduction in electricity costs - Reduction in CO₂ emissions - Contribution to labor savings
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In the logistics industry, the increasing power consumption in warehouses and distribution centers has become a challenge. In particular, there is a need to address a wide range of power demands related to temperature control for storage and transportation, lighting, and charging forklifts. Rising electricity costs can pressure profits and lead to a decline in competitiveness. Our industrial self-consumption solar power generation provides a solution that ensures both significant cost reductions and a decrease in environmental impact. 【Usage Scenarios】 - Warehouses - Distribution centers - Charging stations for transport vehicles - Storage facilities requiring temperature control 【Benefits of Implementation】 - Reduction in electricity costs - Decrease in CO₂ emissions - Improvement in corporate image
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In manufacturing monitoring systems, stable operation 24 hours a day, 365 days a year is required. Power outages and unstable power supply can lead to interruptions in monitoring and data loss, increasing the risk of production line stoppages and security threats. Self-consumption solar power generation reduces dependence on external power and enables a stable power supply. This improves the reliability of monitoring systems and contributes to maintaining production efficiency. 【Usage Scenarios】 - Power supply for the entire factory - Power supply for surveillance cameras and sensors - Monitoring the operation of production lines 【Benefits of Implementation】 - Reduction in power costs - Securing power during emergencies - Contribution to corporate decarbonization efforts
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In the agricultural sector, labor-saving and cost reduction are important challenges. In particular, the electricity costs associated with operating equipment that consumes a lot of power, such as irrigation systems and greenhouse air conditioning, are a significant burden. Self-consumption solar power generation systems are an effective means to address these challenges by reducing electricity costs and decreasing dependence on external power, thereby establishing a stable management foundation. 【Usage Scenarios】 - Power supply for irrigation systems - Air conditioning management for greenhouses - Power supply for agricultural machinery 【Effects of Implementation】 - Reduction in electricity costs - Decrease in dependence on external power - Environmentally conscious management
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In the construction industry, there is a demand for increased efficiency in site management through remote operation. Particularly, as labor shortages become more severe, remote power supply and energy management at the site are essential for cost reduction and improved safety. Our industrial self-consumption solar power generation system supports efficient site operations through remote management by self-supplying power to the site and reducing dependence on external power sources. 【Use Cases】 - Site monitoring from remote locations - Power supply to unmanned construction sites - Remote operation of material delivery and heavy machinery 【Benefits of Implementation】 - Reduction in power costs - Mitigation of CO₂ emissions - Enhancement of corporate value
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In commercial facilities, environmentally conscious operations are required to enhance customer attraction. Particularly as customers' environmental awareness increases, the introduction of renewable energy contributes to improving the company's image. The implementation of solar power generation simultaneously achieves reductions in electricity costs and CO₂ emissions, enabling sustainable facility management. 【Usage Scenarios】 - Rooftops of commercial facilities - Parking lots - Power supply for stores 【Effects of Implementation】 - Reduction in electricity costs - Improvement in the company's ESG evaluation - Establishment of an environmentally conscious corporate image
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In the warehouse industry, there is a demand for improved storage efficiency while simultaneously reducing environmental impact. Particularly in large warehouse facilities, electricity consumption is high, leading to significant electricity costs. Additionally, from the perspective of ESG investment, reducing CO₂ emissions has become an important issue. Our products address these challenges by installing solar power generation systems on warehouse roofs. 【Usage Scenarios】 - Installation of solar power generation systems on warehouse roofs - Power supply for painting booths, drying ovens, dust collectors, etc. - Reduction of electricity costs and CO₂ emissions 【Benefits of Implementation】 - Up to 28% reduction in electricity costs - Reduction of CO₂ emissions through the use of renewable energy - Improvement in ESG ratings
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In the office, improving employee motivation and enhancing the company's image are important. As awareness of environmental issues increases, efforts towards decarbonization are essential for boosting employee engagement and building trust in the company. The introduction of solar power generation systems serves as an effective means to address these challenges and promote the company's sustainability. 【Usage Scenarios】 - Installation of solar power generation systems on office building roofs - Creation of an environmentally friendly office environment for employees - Improvement of the company's ESG ratings 【Effects of Implementation】 - Cost benefits from reduced electricity bills - Environmental contributions through reduced CO₂ emissions - Increased environmental awareness among employees and fostering pride in the company
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In the field of school education, there is a demand to raise awareness of environmental issues and to engage in efforts toward the realization of a sustainable society. In particular, energy issues are one of the important challenges that children will face in the future. Solar power generation provides an excellent opportunity to deepen understanding of environmental issues through the use of renewable energy. At the same time, it contributes to reducing school electricity costs, making effective use of the education budget possible. 【Utilization Scenes】 - Installation of solar power generation equipment on roofs and schoolyards - Use in environmental education programs - Energy conservation awareness activities 【Effects of Implementation】 - Reduction of environmental impact through the use of renewable energy - Increased efficiency in school operations due to reduced electricity costs - Improvement of children's environmental awareness - Contribution to the local community
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In the hospital industry, reducing electricity costs necessary for providing medical services is an important challenge. At the same time, there is a demand for environmental consideration, and efforts towards ESG are also being emphasized. Our solar power generation system, when installed on hospital roofs, reduces electricity bills and CO₂ emissions. This allows for both a reduction in medical costs and a contribution to the environment. 【Usage Scenarios】 - Installation of solar power generation systems on hospital roofs - Self-supply of electricity for painting booths, drying ovens, dust collectors, etc. - Reduction of electricity costs and CO₂ emissions 【Effects of Implementation】 - Up to 28% reduction in electricity costs - Reduction of CO₂ emissions through the use of renewable energy - Improvement in ESG ratings
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In the hotel industry, consideration for the environment has become an important factor that influences customer evaluations. In particular, guests tend to highly value hotels that provide a comfortable space while also engaging in sustainable practices. Our environmentally friendly paint and solar power generation systems meet these needs. 【Usage Scenarios】 - Installation of solar power generation systems on roofs - Self-consumption of electricity for painting booths and drying ovens - Improved ESG ratings through CO₂ emission reduction 【Effects of Implementation】 - Up to 28% reduction in electricity costs - Reduction in CO₂ emissions through the use of renewable energy - Enhanced customer evaluations and improved corporate image
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In the real estate industry, improving energy efficiency is essential to enhance the asset value of properties. In particular, reducing environmental impact is a crucial factor that influences the evaluation from investors and tenants. The introduction of solar power systems simultaneously achieves reductions in electricity costs and CO₂ emissions, thereby increasing the competitiveness of properties. 【Usage Scenarios】 - Increasing occupancy rates through implementation in rental properties - Attracting tenants by introducing systems in office buildings - Enhancing customer evaluations by implementing systems in commercial facilities 【Effects of Implementation】 - Reducing electricity costs by up to 28% - Improving ESG ratings - Increasing the asset value of properties
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In the food industry, there is a growing demand for sustainable management due to increasing consumer environmental awareness. In particular, reducing CO₂ emissions during the manufacturing process is crucial for enhancing brand image. Our environmentally friendly paints and solar power systems simultaneously achieve reductions in electricity costs and CO₂ emissions, thereby improving corporate ESG ratings. 【Usage Scenarios】 - Installation of solar power systems on food factory roofs - Power supply for energy-intensive equipment such as painting booths and drying ovens - Promotion of corporate decarbonization through the combination of environmentally friendly paints and solar power 【Benefits of Implementation】 - Up to 28% reduction in electricity costs - Improved corporate image through CO₂ emissions reduction - Implementation with zero initial costs by utilizing subsidies and PPA models
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In the agricultural sector, reducing environmental impact and cutting costs are important challenges. In particular, reducing greenhouse gas emissions is essential for the transition to sustainable agriculture. Solar power generation can be an effective means to address these challenges simultaneously. Our solar power generation system supports environmentally friendly agricultural management by reducing electricity costs and lowering CO₂ emissions. 【Usage Scenarios】 - Greenhouses - Livestock facilities - Agricultural processing plants 【Benefits of Implementation】 - Reduction in electricity costs - Reduction in CO₂ emissions - Improvement in ESG ratings
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In the logistics industry, reducing electricity costs and minimizing environmental impact are important challenges in the operation of warehouses and transportation hubs. Particularly in large warehouse facilities, a significant amount of electricity is consumed for lighting, air conditioning, and charging forklifts. The introduction of solar power generation is an effective means to address these challenges and promote sustainable management. 【Usage Scenarios】 - Installation of solar power generation systems on the roofs of logistics warehouses - Power supply for distribution centers - Power supply for forklift charging 【Effects of Implementation】 - Reduction in electricity costs - Decrease in CO₂ emissions - Improvement in the company's ESG rating
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In the manufacturing industry, the high electricity costs associated with the operation of production equipment are a significant challenge. At the same time, there is a demand for addressing environmental impacts, making energy conservation and the reduction of CO₂ emissions urgent priorities. Our solar power generation system, when installed on the roofs of manufacturing sites, can cover the electricity consumption of equipment such as painting booths and drying ovens, reducing electricity costs by up to 28%. Furthermore, by utilizing renewable energy, it also contributes to the reduction of CO₂ emissions. This enables a balance between cost reduction and environmental measures, leading to improved ESG evaluations for companies. 【Usage Scenarios】 - Factories that use a lot of equipment with high electricity consumption, such as painting booths, drying ovens, and dust collectors - Manufacturing companies struggling with rising electricity costs - Companies that want to actively work on reducing environmental impacts 【Benefits of Implementation】 - Reduction in electricity costs - Reduction in CO₂ emissions - Improvement in ESG evaluations - Enhanced reputation from business partners and customers - Reduction of initial costs through the use of subsidies
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In the construction industry, energy conservation and reducing environmental impact have become important issues. In particular, the manufacturing of materials and the operation of construction machinery consume a lot of energy, and there is a demand for reducing CO₂ emissions. Our solar power generation system can be installed on the roofs and vacant spaces of construction sites, reducing electricity costs and CO₂ emissions. This also contributes to improving the company's ESG rating. 【Usage Scenarios】 - Construction site offices - Material storage areas - Prefabricated offices 【Benefits of Implementation】 - Reduction in electricity costs - Reduction in CO₂ emissions - Improvement in the company's ESG rating
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This is a one-stop solution that provides self-consumption solar power generation systems, industrial storage batteries, and support for national and local government subsidy applications. [Our Construction Numbers and Client List] We have constructed 83 solar power plants with a total construction cost of 908.4 billion yen over 12 years. We have numerous transaction records with companies such as Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. There are also cases where we achieved a maximum reduction of 28% in electricity costs and CO₂ emissions simultaneously without stopping high-precision manufacturing and logistics lines, supporting the trifecta of BCP, ESG, and cost.
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Cumulative total construction cost of 908.4 billion yen, developing and constructing 83 power plants nationwide. Collaborating with major companies such as Sharp, Panasonic, Daiwa House, and JA Mitsui Leasing. Achieving up to 28% reduction in electricity costs while simultaneously reducing CO₂ emissions and ensuring stable supply. A next-generation "domestic self-generation model" compatible with perovskite solar cells. 【Industry Issues】 Dependence on foreign-made panels leads to instability in supply and prices. Environmental, landscape, and waste risks associated with the large-scale introduction of renewable energy. From the perspective of energy security, the decline in self-sufficiency rates is becoming serious. 【Current Situation on the Ground】 In factories and logistics warehouses, electricity procurement costs have risen by about 40% over the past five years. The risk of business interruptions during power outages and disasters is also increasing. If we continue to rely on cheap imported renewable energy, the power safety of companies cannot be ensured. Now is the time to establish a system for "producing electricity in-house."
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【Our Construction Numbers and Client List】 A total construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Numerous transaction records with companies such as Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, Canadian Solar, Trina Solar, and many others. Achieved a maximum 28% reduction in electricity costs and simultaneous CO₂ reduction without stopping high-precision manufacturing and logistics equipment! 【Industry Challenges】 Increasing operational restrictions and delivery delays due to the aging of drivers and labor shortages. Rising electricity consumption at warehouses and refrigerated facilities is expanding electricity costs and CO₂ emissions. Logistics functions halt during disasters and power outages, revealing BCP risks. 【On-Site Pain Points】 Electricity costs are rising while the number of drivers is decreasing. Refrigeration, air conditioning, and lighting at logistics centers cannot be stopped, requiring constant operation. At the same time, fuel, labor, and insurance costs are also rising, and profit margins have halved compared to 10 years ago. If this continues, we may fall into a vicious cycle where "even if we run, there are no profits left."
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[Our Construction Numbers and Client List] Cumulative total construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Numerous transaction records with Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Reducing costs and CO₂ simultaneously without stopping high-precision manufacturing equipment! Achieving "Power Cost Reduction × Decarbonization Management" with zero initial investment. In addition to the design and construction of power generation systems, we provide matching support with multiple financing sources such as financial institutions, leasing, and PPA operators. For companies that want to implement but find funding to be a bottleneck, we can propose optimal financing schemes. We also provide one-stop support for implementation assistance that combines subsidies and tax incentives.
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[Our Construction Numbers and Client List] Cumulative total construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Numerous transaction records with Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Simultaneously reduce costs and CO₂ without stopping high-precision manufacturing equipment! By updating existing rooftop solar power generation systems to "latest panels and power conditioners," we achieve improved power generation, system stability, and reduced maintenance burden. This is particularly optimal for corporate self-consumption repowering after the FIT period ends.
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[Our Construction Numbers and Client List] Total accumulated construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Numerous transaction records with Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Reducing costs and CO₂ simultaneously without stopping high-precision manufacturing equipment! Product Introduction Supplement (for the Tohoku Area) "Tohoku has less sunlight and snowfall, making solar power disadvantageous" — we solve that concern with our design. During the snowfall period, we minimize power generation stoppage with elevated structures that can handle snow loads and a one-slope, high-inclination design that eliminates the need for snow removal. From spring to autumn, we maximize annual power generation with high-efficiency modules (compatible with bifacial generation) and high-precision layouts. Furthermore, we optimize self-consumption during nighttime and peak hours with battery integration and EMS. We provide a one-stop solution for cold climate specifications, including PCS, wiring, and snow protection fences.
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[Our Construction Numbers and Client List] Total construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Clients include Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Amidst a record-breaking heatwave, warehouses and logistics centers handling frozen foods are in distress. The operation of refrigeration units and automated warehouses requires a large amount of electricity, and electricity rates have increased by more than 30-50% compared to the previous year. Furthermore, since this autumn, some businesses preparing for contract renewals have reported receiving **"requests for a 100% price increase."** According to a survey by industry organizations, there are already cases where the proportion of electricity costs in storage fees exceeds 20%, leading to a situation where price pass-through and negotiations with shippers are unavoidable. Due to the nature of frozen logistics, which prioritizes quality preservation, there are limits to energy-saving efforts, and the "electricity cost risk" is becoming the biggest challenge for management.
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**[Our Construction Numbers and Client List]** Total accumulated construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Clients include Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Reducing costs and CO₂ simultaneously without stopping high-precision manufacturing equipment! *For more details, please refer to the related links or feel free to contact us.* **■ What is the trending Perovskite Solar Cell?** The recently spotlighted **"Perovskite Solar Cell"** is a next-generation technology with the following features: - Ultra-lightweight and thin, compatible with glass, film, and fabric - Capable of generating power even in low light, and can be applied to building walls and curved surfaces - Manufacturing costs can also be reduced, making large-scale deployment expected in the future However…
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【List of Our Construction Projects and Clients】 Total cumulative construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Clients include Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. Reduce costs and CO₂ emissions simultaneously without stopping high-precision manufacturing equipment! *For more details, please refer to the related links or feel free to contact us. ■ Benefits of Implementation Powering equipment used during the day, such as air conditioning, deodorization, sterilization, hot water supply, and lighting, with solar energy. Effective for securing power during disasters (BCP) when linked with emergency power sources. Achieved up to 40% reduction in electricity costs annually. Can be implemented with zero initial costs by utilizing subsidies and tax incentives.
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[Our Construction Projects and Client List] Total accumulated construction cost of 908.4 billion yen, with 83 solar power plants built over 12 years. Numerous transaction records with companies such as Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, and many others. *For more details, please refer to the related links or feel free to contact us.*
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[List of Partner Companies] Sharp, Panasonic, Daiwa House, Nomura Securities, Mitsubishi HC Capital, JA Mitsui Leasing, DMM.com, KKR, Macquarie Capital, Canadian Solar, Trina Solar, J Holdings, RE100 Power, Excelsior Japan, WindSmile, B&M Asset Management, AD Works, Sparks Asset Management, Etrion, etc., have numerous transaction records with leading companies in the industry. If you would like to request a simulation, please apply through the inquiry link. You can also download examples of proposal documents with simulations.
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Efforts by companies to simultaneously reduce electricity costs and CO₂ emissions are accelerating nationwide. We provide a system for "self-consumption solar power generation" installed on our own roofs, which can be implemented with zero initial costs (on-site PPA).
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**Challenges and Solutions** - Challenges faced by many companies Rising electricity costs are putting pressure on management Back-office operations are not keeping up with efficiency Investment towards a decarbonized society is required - A simple solution provided by solar power Just install on the roof to consume electricity during the day Directly reduce monthly electricity bills No human resources needed, contributing to CO₂ reduction
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**What is On-Site PPA?** An On-Site PPA (Power Purchase Agreement) is a system where a third party owns and operates solar power generation equipment installed on a company's roof or premises, and the company purchases the electricity generated there through a long-term contract. ✅ Can be implemented with zero equipment costs ✅ Achieves both electricity cost reduction and CO₂ reduction simultaneously ✅ No maintenance or operational burden
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Why is visualizing CO₂ reduction important? Three challenges of decarbonization management: 1. It is unclear how much CO₂ will be reduced by specific measures. 2. There is a need for evidence to appeal to business partners and shareholders about environmental contributions. 3. While there is a demand for ESG investment and SDGs compliance, it is unclear where to start.
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"Why Solar Power Dominates" ✅ Reason 1: The effects are "visible" Self-consumption of daytime electricity with rooftop solar → Immediate reduction in electricity costs Directly deducted from factory electricity costs, allowing for monthly verification of effects ✅ Reason 2: Zero additional costs and operational burden Almost maintenance-free after installation No need for PDCA or human resources like process improvements ✅ Reason 3: Zero initial cost introduction with subsidies and PPA Utilizing subsidies for up to 2/3 support
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【Reasons Why Solar Power Dominates】 ✅ Reason 1: Electricity Costs are "Always Consumed" = Reduction is Certain By consuming electricity generated by solar power during the day, it is directly deducted from your monthly electricity bill, allowing for immediate cost savings. ✅ Reason 2: Sustainable Cost Reduction Solar power is free and infinite energy. There is no need for system updates, and the reduction effects continue for over 20 years. ✅ Reason 3: Minimal Additional Costs and Operational Burden Once installed, it is almost maintenance-free. There are no ongoing personnel resources or update costs required, unlike the introduction of DX (digital transformation).
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**[Problem Statement and Solution]** ■ Do you have any of these concerns? The electricity costs for clean rooms and air conditioning systems are enormous. Rising fuel adjustment costs and renewable energy surcharges are putting pressure on management. The entire pharmaceutical industry is being asked to comply with ESG and SDGs. ■ Comparison Before and After Implementation Before Implementation: Formulation, inspection, and packaging processes → High electricity costs After Implementation: Same processes + rooftop solar power for self-consumption during the day → Approximately 28% reduction in electricity costs and increased brand value through CO₂ reduction.
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