
LZY-MSC1 Sliding Mobile Solar Container is a portable containerized solar power generation system, including highly efficient folding solar modules, advanced lithium battery storage and intelligent energy management. Designed to meet the growing demand for sustainable and mobile power, especially in situations where conventional power infrastructure is inaccessible or insufficient. Compare the LZY-MSC1 with our sun-tracking MSC2 model or the bolt-on MSC3 solution to find the perfect mobile solar power system for your needs.
The LZY-MSC1 Mobile Solar Container is a mobile solar solution based on a standard container design, equipped with core components such as high-efficiency solar panels, storage batteries and inverters inside, which can be rapidly deployed and provide stable power. These solar panel containers are typically used for outdoor activities, emergencies or any situation where portable power is required. They consist of multiple solar cells that can be connected together to generate the required power. When not in use, these battery units can be folded up to take up less space and be portable. This PV container represents the cutting edge of renewable energy technology, combining the efficiency of photovoltaic power generation with the portability and durability of a containerized structure.
Our mobile PV containers use monocrystalline silicon photovoltaic panels with high conversion efficiency and stability.
There are different models of solar panels with different power, such as 480W solar panels with 120pcs N-Type TOPCon half-cut cells; there are also different models of solar panels with power of 200W, 480W, 610W and so on.
The size of the folded solar panels of the solar panel container varies according to the model and power, for example, there are N-type TOPCon double-sided glass half-cut batteries with the size of 182mm; there are also other models of solar panels with the sizes of 1910mm×1134mm×30mm and 2172mm×1303mm×35mm, and so on.
The number of solar panels installed varies according to the size of the product and the application scenario. For example, the Solar PV Container consists of 42 galvanized steel frames, with 4 solar panels installed on each frame, for a total of 168 solar panels; The number of solar panels for different models of products in the container datasheet ranges from a few dozen to several hundred.
Some of the solar panels are characterized by double-sided power generation, i.e., double-sided glass and double-sided power generation solar panels, which can increase the power generation capacity while improving the power generation efficiency.
Foldable PV panel containers are equipped with lithium batteries, which have the advantages of high capacity, long cycle life, and high charging and discharging efficiencies, and are able to meet the energy storage needs of a variety of application scenarios.
Battery capacity varies according to product model and application scenario, the battery capacity of solar panel container's energy storage system has a variety of specifications such as 100 - 500kWh to meet the requirements of different power and usage time.
The output power of the battery also varies from product to product, to meet the power requirements of some of the higher power requirements of the equipment or the scene of the power needs; container data data of different models of energy storage system output power ranging from a few kilowatts to hundreds of kilowatts.
The charging time of the mobile PV container is 4-6 hours, in the case of sufficient solar energy, it can complete the charging faster, and provide protection for the subsequent power supply.
Usually between -25℃~65℃, some products may have a wider operating temperature range to adapt to temperature changes in different environments, ensuring that they can still work normally under cold or hot conditions.
Grid-connected and hybrid types are available, which can be selected according to different grid access conditions and power demand.
The maximum input power varies according to the model and capacity of the inverter, such as 26000Wp - 150,000Wp, etc., which is able to match the power generated by the corresponding size of solar panels and ensure the effective conversion and utilization of solar power.
The models and capacities of different inverters have different rated AC output power such as 20000W, 40000W, etc., as well as maximum AC output power such as 22000W and 44000W, which are able to provide stable AC power for all kinds of electrical equipment to meet the demand of electricity consumption of different power levels.
Generally support 50/60Hz selectable, can be set and adjusted according to the requirements of different regions of the grid frequency, to adapt to different countries and regions of the world's power grid access standards.
33.3/31.9A, 66.7/63.8A, 133.3/127.5A, etc., which can provide sufficient current support for high power equipment to ensure normal operation.
Usually between -25℃~65℃, some inverters will be derated when the temperature exceeds 45℃ to ensure the safety and reliability of the equipment, and can work stably under the more severe temperature environment and adapt to the conditions of outdoor installation.
It is mainly made of carbon steel square tube, which is characterized by high strength, good stability, corrosion resistance, etc. It can withstand the weight of the solar panels as well as the influence of external factors such as wind, snow load, etc., so as to ensure that the solar panels are firmly mounted and operated stably in the long term.
The size of the bracket is designed according to the specifications of the solar panel and the installation angle, such as Solar PV Container, the size of a single bracket is 2190mm × 1693mm × 30mm, and the size of the bracket in the container data is 2378mm × 2103mm × 30mm, 4726mm × 2103mm × 30mm, 5427mm × 2375mm × 35mm, etc. Different sizes can be adapted to different numbers and sizes of solar panel.
According to the scale of the product and the number of solar panels, the general number of brackets ranges from dozens to hundreds, and each bracket is installed with 3 solar panels, which can ensure the reasonable layout and effective installation of solar panels.
Generally, the expansion angle of the bracket is 15°, which enables the solar panels to obtain a better angle of incidence of light after installation, and improves the conversion efficiency and power generation of solar energy.
The unfolding length and projected area depend on the size of the bracket and the angle of unfolding, for example, the unfolding length of the bracket in the Portable PV Container is 58m, and the projected area is 127m²; the unfolding length and projected area of the bracket are different for different models, the unfolding length of the bracket is 84m, and the projected area is 200m², the unfolding length of the bracket is 84m, and the projected area is 395m², etc., which is very convenient to install the solar panels. The spread length and projection area of different models are also different, the spread length of the bracket is 84m, the projection area is 200m², the spread length of the bracket is 84m, the projection area is 395m², etc., which can provide enough space for the solar panels to be mounted and effective light area.
As the carrier and shell of the whole system, it has the functions of protecting the internal components and facilitating transportation and installation. Different types of containers are available in sizes of 8GP, 10GP, 20GP, 20HQ, 40GP, 40HQ, etc., with weights ranging from 1.6 to 4.8 tons, which are able to meet the requirements for transportation and installation in different scales and application scenarios.
Solar power container includes AC and auxiliary electrical cabinet, electric locker, etc., which can realize the conversion, distribution, storage of solar power, as well as the safety protection and remote control of the equipment and other functions. Its specific configuration and function depends on the product design and application scenario.
Used for power transmission and signal connection between solar panels, inverters, batteries and other electrical equipment to ensure the normal operation of the system and effective communication between components. In the electrical connection step of the mobile solar PV container, PV DC cables need to be connected to the corresponding equipment inside the container through cable holes to realize the transmission and conversion of solar power. The size and number of these cables is determined by the power and voltage levels of the system and the wiring requirements.
Used to lubricate the joints and wheels during the installation process, as well as sealing the reserved holes on the floor, etc., in order to ensure the system's sealing and smooth operation, these auxiliary materials, although not in large quantities, but in the installation and operation of the entire system plays an important role in assisting.
We LZY Container always focuses on the customer, each of our solar containers undergoes strict production specifications, and we only provide mobile power generation for your PV projects.
Capable of rapid movement and redeployment on demand, it can be deployed in as little as 60 minutes by as few as 4 people, providing rapid power support.
Portable solar containers are suitable for a wide range of applications such as outdoor activities, emergency relief, remote areas and construction sites.
The use of high-efficiency PV modules, such as N-type TOPCon half-cut bifacial PV modules, maximizes the use of solar energy and improves power generation efficiency.
Various models can be equipped with 100 - 500kwh high-capacity energy storage systems, which can realize a stable supply of electricity to meet the demand for electricity in different scenarios.
Consisting of multiple standardized components and modules such as folded PV modules, energy storage systems, racking, etc., it can be flexibly combined and configured according to actual needs.
Supports the parallel use of multiple devices, realizing capacity and power expansion to meet the power needs of projects of different sizes.
Designed as a standardized container, it has good compatibility and versatility, and can be easily connected to the power grid or other equipment for quick access and use.
Simple installation process, at least 4 people can complete the installation, without the need for complex infrastructure construction, reducing installation costs and time.
Solar PV containers follow strict safety standards in the design and manufacturing process, with perfect safety protection mechanisms, such as overload protection, short circuit protection, etc., to ensure the safety of equipment and personnel.
With high protection level such as IP65, it can effectively protect against dust and water, adapt to all kinds of bad weather conditions, and ensure the normal operation of the equipment.
Some models of solar panel containers measure 2.2×1.7×1.7 meters in the folded state, covering a small area and very convenient for storage and transportation.
Adopting standardized container design, it can directly use the existing logistics and transportation system to reduce transportation cost and difficulty and improve transportation efficiency.
The LZY-MSC1 Solar Container can be used both for short-term use at events and as a long-term solution. We differentiate between grid-connected systems and completely independent off-grid systems, in order to meet the product requirements in different parts of the world.
Application Scenarios: Outdoor events like music festivals, large-scale performances and outdoor exhibitions require huge power supply.
Application: Solar PV Container may be rapidly deployed upon event location to supply steady power for stage equipment, sound systems, lighting fixtures, etc, preventing electricity problems because of low grid loading or insufficient electric circuitry. Without such provision, event planning will not be smooth.
Application Scenarios: In times of calamities like earthquakes, floods, storms, and other natural disasters, power could be damaged to portions of the local facility; electricity is not satisfactorily provided from the network.
Application Mode: Power for Feeding Holidays from a Solar Powered Container may be installed within a day after arrival of the disaster area. Emergency power is channeled to such critical sites as the rescue command center, temporary medical facility, communication base stations, etc. so as to ensure proper and efficient completion of rescue work and satisfaction of minimum daily needs for the disaster-affected populace.
Application Scenarios: Locations such as remote hills, islands, or deserts that are not attached to a power network or dispense inconsistent electric supply.
Application Mode: Deployment of Solar Container infrastructure will ensure institutional long-term steady electricity supply to local resident community, schools, medical institutions, etc. enhance the quality of life by supporting education and healthcare development and ensuring socio-economic progress and development of remote areas.
Application Event: During construction stages, in most construction sites lots of temporary electricity are required for using many constructions equipment and lighting fixtures.
Application: Solar Energy Containers are ideally suited for flexible fitting near construction sites to power lifts to build floor elevations, welding equipment, concrete mixers, etc., reducing the dependency on conventional power networks, minimizing costs at construction site, and providing more safety for electricity used during construction.
Application Scenarios: Locations needing electric support include military field deployment, border outposts, temporary base camps, etc.
Application Mode: Solar Panel Containers can be rapidly deployed into military areas for power supply reliability to military communication devises and radar systems and to command control systems under need during military operation. Thus it addresses the energy requirement for military operations.
Application Scenarios: Temporary data centers, large venue constructions during events, and seasonal production sites, among others.
Application Mode: Based on the size of temporary power requirement and its duration, the number and specifications of Solar Containers would be arranged appropriately and raised quickly, thus creating temporary power supplies that could suffice power demands for the specific time, thereby eliminating the costs and time investment of scaling up electric grid infrastructure at an extensive scale or associated with the erection of long-term electricity facilities.
We deployed three LZY-MSC1 folding solar panel containers at a remote mine site in Western Australia and the results exceeded our expectations. The rapid deployment was impressive. Our diesel consumption has been reduced by 65%. The remote monitoring system gives us full visibility of the system's performance and the technical support team is responsive and knowledgeable. Highly recommended for any remote industrial business looking to reduce energy costs and environmental impact.
We have already commissioned the LZY-MSC1 500kw mobile PV container system which comes with optional energy storage, as part of our corporate sustainability program. Installation was seamless and the system is fully integrated into our existing electrical infrastructure. The system has been in operation for the last 6 months, saving 40% on electricity. The monitoring platform has become a great place for us to glean insights into the optimization of energy usage patterns.
None of the expectations we had set for the LZY-MSC1 Mobile Solar Container could come true. Its rugged, weatherproof design indeed promises an indelible life in terrible weather conditions. The solar panels have efficacious direct power for lighting, water pumps, and small household gadgets in these remote places. Its low maintenance and quiet operations are considerable advantages over conventional generators; LZY Container presented extensive training in order to get our local technicians to feel confident in operating and maintaining the whole system. This extraordinary product is indeed making a difference in the quality of life for underserved people in rural communities.
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