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Lithium Battery LFP Luxpower PGEM Max 16.08kwh 51.2V for Solar Storage
The Luxury Battery LuxPower PGEM MAX of 16.08KWH and 51.2V It is a large-capacity low-voltage energy storage solution (48V), designed with cells Iron and lithium phosphate (LFP) High Security This premium model stands out for its great capacity for 314ah and a robust current delivery, allowing a 200A continuous maximum discharge current. Equipped with a system of Intelligent management BMS with automatic addressing and an integrated fire extinction module (Fire Suppression Built in), guarantees an exceptional life cycle of 8000 cycles operating backed by Official 10-year guarantee. With a weight of 120 kg and multiple assembly options, it offers direct connectivity by Can / rs485 and allows you to connect up to 35 units in parallel Directly.
LuxPower PGEM MAX: 314Ah superior performance, maximum integrated security and scalability up to 35 units
Massively optimize photovoltaic surpluses and ensure uninterrupted backup energy in high-consumption homes or small shops requires high capacity accumulators and high durability. The lithium battery Luxpower PGEM MAX it has been created under these demanding standards. It offers an unprecedented installation versatility and an intelligent control electronics that drastically elevates the performance of any low-voltage solar self-consumption, handling massive energy flows with an outstanding thermal resistance.
Ultra secure LFP chemistry of 314Ah and continuous download of 200th
The internal structure of the LuxPower PGEM MAX uses advanced cells of Iron and lithium phosphate (LFP), recognized worldwide by intrinsic stability against overheating or short circuits. With a very high capacity of 314ah and a nominal tension of 51.2v (Accumulating a total of 16,076 KWh Net Energy), this equipment stands out in power: is capable of supplying a continuous discharge current of up to 200A sustained. In addition, to cope with transitory demands and start-up starters, it supports a peak of discharge of 210A for 2 minutes and an extreme peak of 220A for 500 milliseconds before activating your protection systems.
As for the load, it admits a maximum continuous current of 165a. To protect the useful life of the equipment, its intelligent BMS has a preventive system that limits the current to 10A if it detects anomalies, returning the state every 10 minutes. Also, it incorporates technology balanced load of load with very low self-consumption. This prevents decompensations between cells over the years, maintaining the optimal efficiency of the set. If you need to design or fix the photovoltaic field to efficiently feed this storage system, we invite you to explore our range of
Smart BMS high-end, fire safety and unprecedented modularity
The operating heart of the PGEM MAX is governed by a Smart BMS (Battery Management System) industrial that permanently monitors the equipment against overloads, deep, overcurrent, voltage peaks and short circuits. In the physical security section, this model marks the difference when integrating a internal Fire Extinguishing System Built-in Factory (Fire Suppression Built in). At the level of connectivity and fast deployment, it has the technology of auto-addressing (Self-addressing), which automatically configures communication in multi-module systems without the need to configure mechanical microswitches manually. Your firmware also allows a system of update and fully flexible remote maintenance.
For projects that require expanding over time, LuxPower PGEM MAX offers one of the largest parallelization capabilities in the market, allowing to connect up to 35 units in parallel directly without additional control accessories. Its intelligent architecture guarantees that if a slave module is disconnected or enters offline mode, the operational stability of all the remaining bank will not be altered. With a weight of 120 kg and protection Ip20, your Premium chassis offers total physical mounting versatility, being able to install stackable (stackable), resting on the floor (floor-standing), anchored to the wall (Wall-Mount) or equipped with options wheels or fixed standing brackets. It has native ports CAN and RS485 to ensure a fluid compatibility with the inverters of industry reference.
Technical characteristics:
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Cumulative nominal energy: 16,076 kWh.
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Nominal capacity of the module: 314 ah.
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Nominal operating voltage: 51.2 V.
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Type of cells: Lithium Ferro-Phosphate (LFP).
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Recommended load voltage: 56.5 V.
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Maximum current of continuous load: 165a (System of preventive automatic limitation at 10A before anomalies).
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Current load of load: 180A for 15S / 200A for 500MS.
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Maximum continuous discharge current: 200a (Active overcurrent warning alert at 205A without immediate supply cut).
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Pico de Pico Runs (Peak): 210A for 2 minutes / 220a for 500ms.
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Parallel connection capacity: Up to 35 units linking directly.
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Integrated active security: Integrated fire extinction system (Fire Suppression Built in).
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Useful life cycle: 8000 Cycles of loading and unloading.
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Communication ports: Connectors CAN and RS485.
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Advanced BMS management: Multilevel protection against overdrop, short circuits, overvoltages, active rolling management, remote update and auto-addressing.
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Physical placement options: Stackable, floor, wall fixation, wheel choice or standing brackets.
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Dimensions of the chassis (an x pr x al): 900 mm x 445 mm x 230 mm.
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Structural net weight: 120 kg (264.6 lbs).
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Degree of environmental protection: Ip20.
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Factory Commercial Warranty: 10 years old.
Frequently Asked Questions section (FAQ)
- What physical assembly options does the chassis of the PGEM MAX offer me? Unlike other fixed models, the chassis of the PGEM Max stands out for its excellent polyvalence of placement. Can be mounted in a form stackable (stackable) if you are going to place several modules together, stand up directly supported on the ground (floor-standing), look at the vertical position on the wall (wall-Mount), or incorporate wheel accessories or mechanical support feet to facilitate movement and maintenance in the technical room.
- Why is it a great advantage that includes "Fire Suppression Built In"? Although LFP lithium cells are already extremely safe and stable by their own chemistry, Luxpower wanted to provide the PGEM Max series from an industrial layer of passive safety when integrating a internal fire extinction system within the chassis itself. In the remote case of a severe external failure of the installation that thermally affects the equipment, the system is self-suite to immediately mitigate any risk, providing total tranquility in residential and commercial facilities.
- What real benefit does it provide to have a continuous download of 200th? A stream of continuous discharge 200a it allows to extract more from 10 kW of power in a sustained manner through a single battery module. This is ideal if you connect inverters large hybrids (like the range of
High-power Luxpower), ensuring that the power supply of housing will not be strangled even if multiple high-consumption appliances, air conditioning systems or electric vehicle chargers coincide.inverters chargers - How does "Auto-Addressing" technology work by adding more batteries? In traditional battery banks, the installer must handle some small mechanical switches (Dip switches) To assign a single address to each module and avoid communication conflicts. With the Self-addressing of the PGEM MAX, the SMART BMS automatedly recognizes the presence of new modules connected to the CAN / RS485 communication line and assigns their network ID automatically, speeding up and canceling failures Humans in the installation.
- What happens if a parallel bank module experiences a failure or turns off? The parallel architecture of LuxPower is designed in a totally redundant way. If one of the batteries enters an out-line maintenance state, it shuts off or disconnected from the data network, the intelligent algorithm detects it immediately and the rest of the bank's modules continues operational supplying energy inverter without cuts or disturbances in the overall operation of the system.
- Battery Voltage (V)
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- Battery Energy (kWh)