The use of industrial storage batteries to achieve corporate RE100 goals.
Industrial storage batteries from CONNEXX SYSTEMS
The introduction of energy storage batteries towards RE100 offers many benefits for companies. It can optimize the energy management of businesses.
▼The Importance of RE100 and Corporate Initiatives RE100 (Renewable Energy 100%) is an international initiative aimed at having companies meet 100% of their electricity consumption from renewable energy sources in their business activities. For companies that join RE100 to achieve their goals, it is important not only to utilize renewable energy sources such as solar and wind power but also to manage energy efficiently and ensure stable supply. Among these, "industrial batteries" play a significant role. ▼Benefits of Introducing Batteries for RE100 The introduction of batteries towards achieving RE100 offers many benefits for companies. Renewable energy is challenged by unstable supply due to weather and time of day, but by utilizing batteries, this can be supplemented, optimizing the company's energy management. For companies aiming for RE100, the introduction of batteries enables maximum utilization of renewable energy, providing significant advantages in terms of stable energy supply, cost reduction, and risk management. Furthermore, by promoting CO2 reduction, it enhances the sustainability of the company and fulfills social responsibilities.
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▼Stable Energy Supply Renewable energy generation is unstable due to weather and time of day, so surplus power can be stored using batteries and supplied during shortages. This makes it possible to balance energy supply and demand. ▼Reduction of Energy Costs By utilizing batteries, it is possible to store electricity during cheaper rate periods and use it during peak times or high-cost periods, enabling peak shifting and peak cutting. This can reduce electricity costs and alleviate the financial burden on businesses. ▼Improvement of Renewable Energy Utilization Efficiency Sometimes, generated renewable energy cannot be fully utilized on-site, resulting in surplus. Batteries can store this surplus energy without waste, maximizing the efficiency of renewable energy utilization. As a result, businesses can reduce energy waste and achieve more efficient operations. ▼Backup Power Source During Outages Batteries also function as backup power sources during outages or emergencies. This is crucial for businesses where power supply must not be interrupted. It allows for the use of renewable energy while minimizing risks.
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▼Strategic Use of Energy Storage for Achieving Corporate RE100 Goals For companies, RE100 is not just about contributing to the environment; it is positioned as an important strategic choice for building long-term competitiveness and a sustainable business model. For companies aiming for RE100, the introduction of energy storage enables the maximum utilization of renewable energy, providing significant benefits in terms of stable energy supply, cost reduction, and risk management. Furthermore, by promoting the reduction of carbon dioxide emissions, it enhances corporate sustainability and fulfills social responsibility.
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Applications/Examples of results
▼Reduction of Carbon Dioxide Emissions By increasing the usage rate of renewable energy, companies can promote the reduction of their carbon dioxide emissions. Utilizing storage batteries can maximize the use of renewable energy and contribute to decarbonization goals. ▼Improvement of Self-Sufficiency Rate in Renewable Energy Power It is important for companies to efficiently consume the renewable energy they generate within their own facilities as part of RE100. By using storage batteries, companies can store the generated energy and use it when needed, thereby increasing their self-consumption rate of electricity. This serves as a means to reduce external electricity purchases and strengthen the self-sufficiency rate of renewable energy. ▼The Important Role of Industrial Storage Batteries in Achieving Corporate RE100 To achieve the RE100 goal, companies must cover all their electricity usage with renewable energy. By introducing storage batteries, companies can store surplus renewable energy and further increase the proportion of renewable energy used. This initiative significantly reduces carbon dioxide emissions from companies and accelerates the achievement of RE100.
Detailed information
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●Stable Supply of Energy The generation of renewable energy is greatly influenced by weather and time of day, but by utilizing batteries, surplus electricity can be stored and supplied during times of low generation. This compensates for the instability of renewable energy supply and enables the stable use of 100% renewable energy.
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●Reduction of Energy Costs By utilizing storage batteries, it is possible to store electricity during times when rates are low and use it during peak times or high-cost periods, enabling "peak shifting" and "peak cutting." This allows for a reduction in electricity costs and alleviates the financial burden on businesses.
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Improving the utilization efficiency of renewable energy There are times when the generated renewable energy cannot be used on-site, resulting in surplus energy. Energy storage systems can store this surplus energy without wasting it, maximizing the utilization efficiency of renewable energy. As a result, companies can reduce energy waste and achieve more efficient operations.
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●Backup Power During Power Outages Batteries also function as backup power sources during power outages and emergencies. This is particularly important for businesses such as factories and data centers, where power supply must never be interrupted. It allows for the use of renewable energy while minimizing risks.
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●Reduction of carbon dioxide emissions To achieve the RE100 goal, companies need to source all of their electricity from renewable energy. By introducing energy storage systems, surplus renewable energy can be stored, further increasing the proportion of renewable energy used. This initiative significantly reduces a company's carbon dioxide emissions and accelerates the achievement of RE100.
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●Improving the Self-Sufficiency Rate of Renewable Energy Power It is important for companies to efficiently consume the renewable energy they generate within their own facilities, as outlined in RE100. By using storage batteries, they can store the generated energy and use it when needed, thereby increasing the self-consumption rate of electricity. This serves as a means to reduce the purchase of electricity from external sources and strengthen the self-sufficiency rate of renewable energy.
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●Adjustment of Energy Supply and Demand and Grid Load Reduction By using batteries, it is possible to store energy during times when renewable energy is in excess supply and discharge it during times of high energy demand. This helps to reduce the load on the power grid and plays a role in balancing supply and demand. Reducing dependence on the grid also contributes to mitigating future energy supply risks.
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●Stabilization of Long-term Energy Costs While batteries require an initial investment, they contribute to the stabilization of long-term energy costs by maximizing the use of renewable energy and adjusting supply and demand for electricity. In particular, they can reduce the risks associated with price fluctuations in the electricity market, providing significant advantages for corporate energy strategies.
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● Increasing social demands for corporate compliance, CSR, etc. ▷ Demand for securing trust from stakeholders such as local communities, employees, shareholders, and business partners ▷ Contribution to the local community during disasters There is a growing expectation from local communities for companies to open their facilities and provide support in terms of relief supplies during disasters. Alongside their own BCP (Business Continuity Plan) efforts, more companies are considering contributions to the entire region and implementing DCP (District Continuity Plan) measures. For companies with strong ties to the community, active engagement in CSR (Corporate Social Responsibility) activities, such as "contribution to the local community," is becoming more common, and participation in and response to local continuity plans is seen as part of the company's BCP efforts.
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Model number | overview |
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Container-type large-scale energy storage system | This is a large-scale energy storage system ideal for megawatt-scale projects. It can be customized to meet specific needs, including AC links for off-site storage and highly compatible DC links for on-site installations with solar power. It comes standard with control EMS for load-following control, peak cutting, and BCP measures, which are required for on-site installations. We provide a one-stop solution. |
LB0610GS-DC (DC link compatible model) | Industrial Energy Storage System LUVIS / DC link compatible model that can directly input solar power into the battery. The industrial energy storage system LUVIS features a lineup of DC link models (LB0610GS-DC) that allow solar power to be stored in its direct current form. By reducing the number of power conversions, it minimizes power loss, improves the utilization efficiency of the battery, and enables direct current power supply with less energy loss. |
LB0610GS-AC (AC link compatible model) | This is an industrial storage system that pursues the best balance of efficient output and storage capacity while keeping installation costs down with a reasonable system design. It achieves reductions in electricity costs through self-consumption in conjunction with solar power generation, as well as measures against power outages during disasters. It contributes to the effective use of renewable energy and CO2 reduction, and by reducing energy consumption through energy creation, it can contribute to decarbonization efforts. It encompasses functions that promote energy conservation and the advancement of SDGs management. |
LB0700HN | The industrial storage system <BLP> enables full-scale business continuity during disasters, featuring a storage capacity of 73.7 kWh and a rated output of 30 kW (three-phase three-wire type). It is a high-capacity, high-output three-phase storage system designed for industrial use. With a compact outdoor installation that integrates the PCS and battery enclosure, it contributes to space-saving. It can be introduced at low cost and in a short period. The system is ideal for BCP applications, allowing for reasonable increases in capacity as needed during emergencies. |
LB0700HN-S | Industrial storage battery system <BLP> salt damage countermeasure model / It can be safely installed in coastal areas and regions with heavy salt damage. For batteries that are not designed to be salt-resistant, it is necessary to store them in dedicated enclosures such as containers, which can lead to issues with size, installation location, and cost. With the salt damage countermeasure model, installation is now possible in locations that were previously deemed unsuitable, significantly expanding the installation scenarios for industrial storage batteries. |
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"Transforming energy infrastructure with innovative energy storage technology" We aim to promote regional energy independence and contribute to the creation of a clean and resilient future energy infrastructure. CONNEXX SYSTEMS is a startup company that, with this vision in mind, challenges innovations in energy storage technology that far exceed conventional wisdom. Energy storage is the "bond" that connects today's energy to the energy of the future. CONNEXX SYSTEMS contributes to the creation of a safe and secure future society through innovative energy storage solutions. CONNEXX SYSTEMS primarily engages in the development, manufacturing, sales, and planning design of next-generation energy storage systems, among other business activities. We also provide system integration services. Through the accumulation of our unique technologies, we continue to evolve our energy storage systems to offer to our customers.