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Outback Power

Modular Lifestyles Green Community

Modular Lifestyles, based in Irvine, California, and founded in 1988, operates as a full-service manufactured home dealer and builder. Parent company Newport Pacific Capital owns five communities in California and manages another 65 parks nationwide, representing more than 14,000 home sites. The manufactured home communities vary in size from 26 to 1,000 units including marinas, RV resorts and apartments. In 2006, sister company Cirus Development built Oak Haven, a senior community in Ojai, California. Modular Lifestyles began developing green, solar powered homes for Oak Haven to promote it as a green community project. These grid-tied homes have received press coverage and won several awards for proven home efficiency improvements and achieving annual $0 electricity bills. The challenge for Modular Lifestyles’ award-winning, grid-tied homes is their location. It is difficult for prospective homeowners to tour a manufactured home and see how efficiently it operates, especially when homeowners live in them. However, the Modular Lifestyles Quest off-grid home is mobile, and therefore available to many visitors in different locations and climate conditions. The home can be located in high elevations where low temperatures and desert environmental conditions exist, and it should perform well in primitive locations where it is either too expensive or even impossible to connect to utility power. In addition to sustainability, green energy sources can offer reliability by keeping the backup battery bank fully charged.   CHALLENGE Create a super-efficient green home using solar power and additional green technologies Design a home to be powered independently from the grid Offer housing with low manufacturing and operation costs Provide housing that is elder-accessible, can be placed in primitive locations, and is movable for use in emergencies   SOLUTION For maximum energy efficiency, Modular Lifestyles uses OutBack products in addition to other green technologies including cork floors, LED lighting, greywater (wastewater generated from domestic activities) recycling systems, recycled glass composite countertops, tankless hot water systems, incinerator toilets and water-saving toilets (depending on the application). Modular Lifestyles homes are located in many different climates, so the design requires a reliable charging power source for the batteries and appropriate insulation to maintain indoor temperatures during the winter and summer. Modular Lifestyles uses the OutBack Power FLEXmax 60 charge controllers, which stand up to extreme variations of climate and solar radiance. The solar energy from OutBack equipment is used to recharge the batteries, which have approximately a four-day charge, onboard the mobile homes. Because of their highly efficient design and off-grid power system, the homes operate with low energy requirements year round. This opened up possibilities for Modular Lifestyles to provide affordable housing in retirement communities to seniors living on fixed incomes. In addition, new homeowners see a significantly increased home value since a resident would potentially only need to pay for propane fuel over the life of the structure with off-grid electricity available.   OUTCOME Homes can now be built in areas without access to utility power Residents of efficient, net-zero green housing can use solar power for heating and air conditioning Modular homes can use reliable off-grid power in extreme environments and remote locations Residents enjoy greater mobility and flexibility in location due to modular efficient design Residents can save between $5,000 and $10,000 per year in energy cost   SYSTEM SPECIFICATIONS Location: Irvine, CaliforniaSystem Power: 7.2kWComponents:FLEXpower TWO (2 inverter/chargers, FLEXmax 60 charge controllers and MATE3 system display and controller)

Solamar Event Services

OVERVIEW Solamor Event Services, based in Portland, Oregon, and founded in 2008, uses custom-engineered units to harness sun, wind and biodiesel energy sources to power events such as outdoor concerts, festivals, film shoots and sporting and community events. Solamor provides power via green temporary generators, a technology that only a handful of companies in the United States deliver, while also improving event sustainability by implementing waste reduction strategies and localized procurement. Working with 40 to 50 clients per year, Solamor provides production services such as site operations management, procurement, production management, staff/volunteer coordination and logistics support. Solamor also provides green power for event equipment at concerts and power systems for food and beverage vehicles during food truck festivals. Solamor recognized the challenges tied to providing continuous power for outdoor events, such as dust storms, rain, high winds and other situations that put event success at the mercy of the elements. Additionally, the mobile power trailers designed by Solamor and other companies took up a lot of space to meet the power demands of events, to the detriment of the overall event experience. Solamor found size to be a particularly troublesome point when it began work with the NBC television drama series, Grimm. While the producers of Grimm had increasing power demands, they also wanted a smaller system that did not require a large trailer, so transport on and off the set would not disrupt the large crew or expensive equipment. CHALLENGE Install a renewable energy generation system to provide off-grid powe Design a compact solar and wind trailer with a custom-engineered, aesthetically pleasing design Provide high power output to support unique, energy-intensive events and filming sets using a small system package SOLUTION Previously, Solamor used a variety of inverters to convert solar energy for its mobile trailers. However, the company needed to use multiple inverter systems with complex connections to achieve the high power output required for energy-intensive events. Solamor decided to install OutBack Power Radian inverter/chargers, which are compact and modular, keeping in line with the final smaller WhisperWing design. The WhisperWing is the newest addition to Solamor’s generator fleet, a mobile hybrid energy trailer using solar, wind and biofuel energy sources to provide low-carbon power to Solamor events. With OutBack’s Radian inverters, Solamor’s WhisperWing can deliver 30kW from a trailer that measures 7 feet wide by 12 feet long. The project’s solar arrays consist of eight 250W modules along with two wind turbines that deliver 200 watts each. The energy from the WhisperWing’s solar and wind equipment is converted by an OutBack Power Radian GS8048 inverter/charger, and uses an OutBack Power FLEXmax 80 charge controller. The on-site power capacity of the WhisperWing enables Solamor to offer a green footprint for outdoor or off-grid events, as well as build a business case for offsetting biofuel usage (reduce biofuel dependency by harnessing solar and wind energy). When the WhisperWing trailer is not in use at events and festivals, the Solamor team uses its renewable energy to power the company’s office and offset electricity costs. OUTCOME Mobile renewable power is delivered on-site to outdoor events and lowers the carbon footprint of the event Compact, modular trailer design is ideal for location film shoots and other entertainment production opportunities Energy produced by trailer during downtime offsets Solamor office energy needs True sine wave power from OutBack inverters ensures on-site power quality, and potentially improves audio/video equipment, sound quality and performance SYSTEM SPECIFICATIONS Location: Portland, Oregon System Power: 30kW hybrid mobile power systemComponents: •Radian inverter/charger •FLEXmax 80 charge controllers

Sacred Power: Navajo Nation

For hundreds of years, Native American ancestors lived close to the earth in balance with nature. That tradition continues today with their descendants, with many modern tribal citizens working to preserve their ancestors’ way of life and closeness to the earth while also enhancing their lives with technology and amenities. There are presently over 18,000 Native American homes without power. Many of them are located in remote, rural areas too far for power lines to reach—in some cases, only reachable by helicopter. Homes are usually on dirt roads 20 to 30 miles apart, and if it snows or rains, roads become impassible. Usually, it is too costly and not beneficial for utilities and infrastructure to expand power lines to their area; utilities don’t see the potential to recoup their investment from the sparse profits. In the past, Native Americans in these remote areas might have access to refrigeration only by storing ice in ice chests. Most appliances in hogans, traditional Navajo homes, or ranch homes would run on kerosene—from kerosene heaters and lanterns to kerosene-powered refrigerators. Any fuel must be transported to the point of use, adding to cost and complexity. A person living on a ranch might run a 5000W generator to power a 200W television, which wasn’t very efficient and required a propane tank that could hold hundreds of gallons of propane. Native American children attend school, and today need lighting at home to read and study. Senior citizens’ prescriptions require cool refrigeration, power for oxygen tanks or other medical devices. Tribal citizens required a clean source of energy that would provide reliable power for modern conveniences. CHALLENGE Install a solar energy generation system to bring power to inaccessible, remote rural areas that had none before Mitigate greenhouse gases and fume inhalation of Navajo residents from a diesel generator and kerosene appliance operation Ensure uninterrupted power supply for food and supply refrigeration and preservation SOLUTION According to the US Department of Agriculture, access to reliable, affordable electricity is paramount for the economic wellbeing and quality of life for all of the United States’ rural residents. The USDA’s move to provide electricity to rural inhabitants traces its roots to the Rural Electrification Act of 1936, which encourages energy service to customers in rural areas. Sacred Power, an OutBack Power integration partner and Native American-owned and operated provider of renewable and distributive energy systems, designed, manufactured and installed the 650 fully-assembled patented energy systems for the Navajo Nation in New Mexico, in cooperation with the USDA Rural Utility Service. Since Sacred Power works with other US agencies beyond the USDA, such as the US Department of the Interior and the Bureau of Indian Affairs, the default choice for keeping its installations online with solar energy are OutBack Power’s components that are designed, manufactured and tested in America. Each of these systems is powered by an OutBack FLEXpower ONE single inverter system due to their weather-resistant and rainproof engineering, as well as flexible capacity to support small hogans or large village energy demands within a compact design. The Navajo homes now have access to electricity where they previously only used diesel or kerosene power. Electricity affords them the new ability to store more supplies, preserve food in refrigeration, read books and study at night. In addition, the Native Americans have better health because they aren’t breathing fumes from kerosene-powered devices. In some cases, Native American artisans with new access to electricity can generate better income from e-commerce. They have started a company on the Internet and market their livestock, pottery, weaving or other skills from their remote villages. OUTCOME Clean, economical solar electricity produced on-site at remote villages and homes, yielding refrigeration for preservation of supplies, medicine and lighting to homes while reducing or eliminating the need to import fuel Improved quality of life and better health enjoyed by rural residents Native American artisans take advantage of the new source of income from an access to reliable Internet and e-commerce Elimination of hundreds of gallons of kerosene as well as equipment maintenance, carbon emissions and greenhouse gases from operation of generators SYSTEM SPECIFICATIONS Location: Navajo Nation, New Mexico System Power: 2.6 to 3.6kW systemsComponents: FLEXpower ONE (FX inverter/charger FLEXmax charge controller and MATE3

OpticsRe Major Update Announcement

Enhancing the OpticsRE Experience At OutBack Power, we’re continually investing in the tools that help our customers monitor and manage their energy systems with confidence. Over the coming weeks, we’ll begin rolling out a significant update to OpticsRE that includes improvements to the platform’s underlying infrastructure and software. These enhancements are designed to deliver a more reliable monitoring experience and provide stronger long-term performance for our customers. Because these updates involve both hardware and software improvements, the rollout will be implemented in phases to help ensure a smooth transition and allow us to carefully validate each stage of deployment. We’re excited to bring these enhancements to the OpticsRE community and will continue to share updates as the rollout progresses. Thank you for being part of the OutBack Power community.

Lead-Acid vs. Lithium Batteries: Which Energy Storage Solution Is Right for You?

As more homeowners and businesses invest in backup power and solar energy systems, one of the most important decisions they’ll make is choosing the right battery technology. For decades, lead-acid batteries were the industry standard for off-grid and backup power applications. Today, lithium iron phosphate (LiFePO₄) batteries have emerged as the preferred choice for many new installations, offering significant improvements in performance, longevity, and ease of ownership. Does that mean lead-acid batteries no longer have a place? Not necessarily. Understanding the strengths and limitations of each technology can help you determine which solution best fits your application—and whether it’s time to upgrade.   Understanding the Two Battery Technologies At a high level, both lead-acid and lithium batteries perform the same function: they store energy for use when it’s needed most. Whether you’re keeping essential appliances running during a power outage or storing excess solar energy for later use, your battery bank serves as the heart of your energy storage system. The difference lies in how efficiently, reliably, and conveniently each technology delivers that power over time.   Lead-Acid Batteries: A Proven Technology Lead-acid batteries have been used in renewable energy systems for decades and continue to be a dependable option for many applications. Advantages Lower Initial Cost Lead-acid batteries generally have a lower upfront purchase price, making them an attractive option for budget-conscious projects. Well-Established Technology With decades of proven performance, installers and system owners are familiar with lead-acid battery design, operation, and maintenance. Reliable for Certain Applications For systems with occasional cycling or lower daily energy demands, lead-acid batteries can provide dependable performance when properly maintained. Considerations Lead-acid batteries also come with tradeoffs that many modern system owners should consider: Require regular maintenance (depending on battery type) Heavier and bulkier than lithium alternatives Lower usable capacity due to recommended depth-of-discharge limits Longer charging times Shorter cycle life compared to modern lithium batteries Performance can decline more noticeably over time For many legacy solar and off-grid systems, these limitations were simply accepted as part of battery ownership.   Lithium (LiFePO₄): Designed for Modern Energy Storage Lithium iron phosphate (LiFePO₄) batteries represent the latest generation of energy storage technology, offering improvements in safety, efficiency, scalability, and ease of use. Advantages Longer Service Life LiFePO₄ batteries are designed for thousands of charge and discharge cycles, helping reduce replacement frequency over the life of the system. Minimal Maintenance Unlike many traditional lead-acid batteries, lithium systems require little ongoing maintenance, allowing owners to spend less time servicing batteries and more time using them. Higher Usable Capacity Lithium batteries can typically be discharged much deeper without negatively impacting longevity, allowing users to access more of their stored energy. Faster Charging Higher charging efficiency means batteries recharge more quickly, making better use of available solar production. Compact Design Lithium batteries provide more energy storage in a smaller footprint while reducing installation challenges associated with larger battery banks. Integrated Battery Management System (BMS) Modern lithium batteries include intelligent electronics that continuously monitor battery health, temperature, voltage, and overall system performance.   Comparing the Two Feature Lead-Acid Lithium (LiFePO₄) Upfront Cost Lower Higher Maintenance Regular (varies by type) Minimal Charging Speed Slower Faster Usable Capacity Lower Higher Cycle Life Shorter Longer Weight Heavier Lighter Expandability More limited Modular options available Monitoring Often external Integrated in many systems While both technologies remain viable, many new energy storage projects are moving toward lithium due to the long-term benefits in performance, maintenance, and overall ownership experience.   Is It Time to Upgrade? If your current battery bank is approaching the end of its service life, upgrading to lithium may provide an opportunity to modernize your entire energy storage system. Some signs it may be time to consider an upgrade include: Increasing battery maintenance Reduced runtime during outages Longer recharge times Expanding your solar system Planning to add new electrical loads such as EV charging or home electrification Replacing aging lead-acid batteries   An upgrade isn’t just about replacing batteries—it’s an opportunity to improve the overall performance and flexibility of your energy system.   Which Battery Is Right for Your Application? Lead-Acid May Be a Good Fit If: You’re replacing an existing lead-acid bank with similar requirements. Your system experiences relatively infrequent cycling. Upfront cost is the primary consideration. You’re comfortable performing regular battery maintenance. Lithium May Be the Better Choice If: You want a low-maintenance energy storage solution. Your system cycles daily. Space is limited. You’re installing a new backup power or solar system. You value scalability and future expansion. You want advanced monitoring and system intelligence.   Meeting the Needs of Today’s Energy Storage Customers Modern homeowners and businesses expect more from their energy storage systems than ever before. They want solutions that are easier to install, simpler to monitor, and capable of adapting as their energy needs change. That’s exactly what the OutBack Power EnergyCell 5 was designed to deliver. Built around safe and reliable lithium iron phosphate (LiFePO₄) technology, the EnergyCell 5 combines modern performance with installer-friendly design. Key features include: 5.12 kWh battery modules that can be configured into systems ranging from 15 kWh to 120 kWh Modular, stackable architecture that simplifies transportation, handling, and installation Integrated Battery Management System (BMS) for intelligent protection and performance monitoring Mobile monitoring app for real-time system visibility IP65-rated enclosure suitable for indoor and outdoor installations UL 9540 certification, providing confidence that the complete energy storage system has been evaluated to recognized safety standards Up to 8,000 cycle life and a 10-year warranty Compatibility with leading inverter platforms, helping installers build flexible system configurations   Whether you’re installing a new backup power system or replacing an aging battery bank, the EnergyCell 5 provides a scalable solution that can grow alongside your needs. The Bottom Line Lead-acid batteries have powered renewable energy systems for decades and continue to serve many applications effectively. However, advances in lithium technology have changed what customers can expect from an energy storage system. Longer service life, faster charging, lower maintenance, and modular expansion have made lithium

CP Masters

OVERVIEW CP Masters delivers cathodic protection, a technique for corrosion prevention and control of metallic structures in the North American oil and gas industries. The company helps clients mitigate risk, decrease unscheduled downtime and repairs, and assure owners and communities that environmental best practices are in place. CP Masters relies on solar power for remote oil and gas installations where utility power is unreliable or unavailable. Solar power is a critical component of the company’s promise “to protect clients’ equipment and prevent dangerous leaks in well casings and pipelines.” CHALLENGE Guarantee 24/7 uptime for remote gas installations Ensure complete safeguarding of client sites and surrounding wildlife areas Increase renewable energy yield without incurring high maintenance costs   SOLUTION CP Masters deployed FLEXmax charge controllers equipped with Maximum Power Point Tracking (MPPT) into all future installations The FLEXmax’s built-in temperature compensation prevents batteries from overcharging or undercharging under severe conditions CP Masters was able to stop both investing in external disconnect cards and manually connecting controllers to relays at each site The company adopted Radian Series inverter/chargers and MATE3 and HUB system displays and controllers to seamlessly program, manage and monitor solar energy systems OUTCOME Built-in disconnect feature saves $50,000 annually in related expenses Temperature compensation reduces battery replacement costs Safe, reliable, renewable energy powers remote gas and oil fields protecting mission-critical equipment SYSTEM SPECIFICATIONS Location: Guthie, OklahomaSystem Power: 8.0kW solar systemComponents: FLEXmax charge controllers Radian Series inverter/charger MATE3 system display and controller HUB communications

What Is Energy Independence? A Homeowner’s Guide to Backup Power & Battery Storage

What Does Energy Independence Really Mean? For many homeowners, energy independence has become more than just a buzzword—it’s a practical goal. As severe weather events, power outages, and rising electricity costs become more common, people are looking for ways to take greater control of how they generate, store, and use energy. But what does energy independence actually mean?   Energy Independence Starts with Control Energy independence doesn’t necessarily mean disconnecting from the utility grid. Instead, it’s about reducing your reliance on it and having the confidence that your home can continue operating when the unexpected happens. Whether it’s a brief outage or an extended power disruption, an energy storage system can help keep essential appliances, lights, communications, and other critical loads powered when you need them most. For homeowners with solar, battery storage also allows you to capture excess energy produced during the day and use it when the sun goes down or during periods of peak electricity demand.   Why More Homeowners Are Investing in Energy Storage Battery storage has become an increasingly important part of modern home energy systems because it provides: Reliable backup power during grid outages Greater energy resilience during severe weather More control over how and when energy is used Flexibility to pair with new or existing solar systems A pathway toward greater long-term energy independence As battery technology continues to evolve, today’s systems are safer, more efficient, and easier to install than ever before.   Choosing the Right Energy Storage Solution Not all battery systems are designed the same. When evaluating energy storage, homeowners and installers should consider several important factors: Safety certifications Battery chemistry Installation flexibility Expandability System monitoring capabilities Warranty and expected lifespan Selecting a system that meets both your current and future energy needs can help ensure reliable performance for years to come.   Built for Reliable Energy Independence At OutBack Power, we’ve spent decades helping homeowners, businesses, and off-grid communities build dependable energy systems. The EnergyCell 5 was designed with those same principles in mind. Its modular, stackable design allows homeowners to scale storage as their needs grow, while its UL 9540 certification, IP65-rated enclosure, and intuitive mobile monitoring app provide confidence that the system is built for real-world conditions. Whether installed indoors or outdoors, the EnergyCell 5 delivers a flexible, installer-friendly solution for backup power and long-term energy resilience.   The Future Is More Independent Energy independence isn’t about replacing the grid—it’s about having options. As energy demands continue to evolve, homeowners are looking for solutions that provide reliability, flexibility, and peace of mind. Whether you’re adding battery storage to an existing solar system or planning a new installation, investing in resilient energy solutions today can help prepare you for whatever tomorrow brings. At OutBack Power, we’re committed to helping homeowners and installers build a more reliable energy future—one that’s powered by confidence, resilience, and greater energy independence. Contact sales@outbackpower.com for more information on battery backup solutions and OutBack Power products.  Become a Distributor Become an Installer

Lumen Prophetae Monastery

OVERVIEW   The Lumen Prophetae monastery in São Paulo, Brazil houses approximately 200 students who have committed to following and reaping the rewards of a religious life. In Brazil, the institution currently has a significant and growing number of religious benefactors. The religious association has several houses in Brazil and around the world. Because the location of this facility is in a remote area with poor power quality and consistency, the monastery decided to install a hybrid energy system to address the power problem.     CHALLENGE  Create a continuous power supply Reduce the use of thermal generators (diesel), which create atmospheric and noise pollution which do not fit the monastery environment Provide energy independence when needed and minimize energy purchase from the utility   SOLUTION   Because of the project scope and complexity, the monastery needed a partner that could handle all aspects from equipment and design to installation and system startup. OutBack Power was the easy choice because of our quality and reliability of equipment in mission-critical applications. Alpha Innovations Brazil, the local OutBack Power distributor, installed an impressive 257kWp system. OutBack equipment supplies power for all loads including the university student rooms, monastery laundry, air conditioning system, lighting and others loads. In the event of a full grid failure, battery backup provides up to three days of energy autonomy for critical loads. If the outage extends beyond three days, OutBack’s OPTICS RE monitoring and control platform is configured to automatically start their diesel generator.     OUTCOME  90% energy economy Energy stability and comfort tolocal residents Generator starting automation, start-up automation and attenuating the generator usage    SYSTEM SPECIFICATIONS Location: São Paulo, Brazil System Power: 257.4kWp hybrid solar plant Components (42) FXR inverter/chargers (27) VFXR inverter/chargers (75) FLEXmax charge controllers (600) EnergyCell batteries (16) MATE3 controllers (16) HUB managers (792) PV modules

National Veterans’ Cemetery 

OFF-GRID CASE STUDY OVERVIEW   With offices in Missouri, Michigan and Texas, Certified Solar Solutions is a full-service renewable energy design and engineering company that installs clean energy systems for residential, commercial and utility applications. The company focuses on photovoltaic (PV) solutions, but also embraces complementary technologies, such as geothermal and solar hot water, to meet the needs of its customers. Certified Solar Solutions has installed systems ranging from a 2kW pole-mount residential project to a 330kW industrial system that also includes a direct-to-grid solar power plant. The company recently completed an installation at the Jefferson Barracks National Cemetery in St. Louis, where an off-grid shelter for burial services honoring fallen and departed veterans had been built. The United States Department of Veterans Affairs (USDVA) originally pursued an alternative solution but after they encountered several obstacles early on in the project, Certified Solar Solutions was hired to redesign and complete the project. CHALLENGE Provide a completely off-grid power solution to the year-round service shelter Avoid the $50,000 cost of running electric lines underground and around grave sites to provide electricity to the shelter through traditional power sources Allow for up to three days of power autonomy, even with severely overcast days Mount all required PV equipment in a limited, compact space for aesthetic reasons   SOLUTION Certified Solar Solutions chose OutBack Power’s fully-integrated FLEXpower ONE power management system to work in conjunction with three SolarWorld SunModule 235W solar panels. The solar array and battery bank consists of eight 108Ah Deka batteries that power two fans, two 120V electrical receptacles and several banks of LED lighting in the shelter. Both lighting and fans are on timers to optimize electrical load management and efficiency without compromising the shelter’s amenities. OutBack Power’s remarkably compact system footprint allows all of the components—including the batteries—to fit in a single electrical cabinet. The integrated FLEXpower approach shaved valuable time off the project since Certified Solar Solutions worked with a single, pre-engineered unit instead of purchasing, integrating and wiring multiple pieces of equipment. OUTCOME The OutBack Power FLEXmax charge controller switches itself off when the shelter is not in use, reducing the power drain on the battery bank and significantly extending battery life The Department of Veterans Affairs avoided the cost of running underground electric power lines through the grounds of the cemetery in order to access electricity The solar service shelter has the most reliable power of any building at the cemetery The shelter’s sustainable design complements the natural beauty of the cemetery and its surrounding ground 

Camp Kernow

OVERVIEW  Camp Kernow is a not-for-profit organization dedicated to empowering and moti vating children in the United Kingdom (UK) to take action toward renewable energy adoption. Located in Cornwall, a fuel-poor area, Camp Kernow provides a practical, firsthand experience of sustainable living techniques and renewable energy technologies through outreach programs and residential camping experiences. Camp Kernow worked with technology integrator CleanEarth Energy in Cornwall, UK, to configure an off-grid system including an OutBack Power FX2024E inverter/charger and FLEXmax 80 charge controller. The goal of Camp Kernow is to immerse children in an environment where renewable energy, waste reduction and energy conservation are a way of life. Camp Kernow has worked with over 7,000 children and opened its off-grid residential center in June 2012.    CHALLENGE  Demonstrate reliability of solar power to children Maximize solar harvesting to ensure continuous power for the camp’s water-providing borehole system, which maintains the water supply for children and staff Increase renewable energy yield to power the camp’s office and standby systems     SOLUTION   Use of Maximum Power Point Tracking (MPPT) technology, as hours of sunlight in the UK are limited Future mobile designs train children in the process of aligning solar panels as part of camp experience System powers computers in the office and lighting in center and also pumps and treats water to a potable standard for children to use    OUTCOME   FLEXmaxcharge controller generated 63.1kW of solar power in the first six months Camp Kernow earns UK government payments for the energy it generates off the utility grid Camp Kernow becomes a showcase for emerging sustainable technologies    SYSTEM SPECIFICATIONS Location: Camp Kernow, Cornwall, UK System Power: 63.1kW solarSystem Components • FX inverter/charger• FLEXmax 80 charge controller