Lcd Display 48v 50ah 100ah 200ah Wall Mount Energy Storage Lifepo4 Battery

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LCD Display 48v 50AH 100AH 200AH energy storage Lifepo4 battery is a revolutionary product in the energy storage industry. This battery is designed to provide a reliable and long-lasting source of power for a wide range of applications. With its durable and high-capacity design, this battery is capable of storing and delivering energy efficiently and effectively.


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The LCD display on this battery is a key feature that makes it stand out from other energy storage solutions. The display provides real-time information on the state of the battery, including its charge level, voltage, and other important data. This information allows users to monitor the battery's performance and optimize its usage for their specific needs.

One of the great advantages of this battery is its high capacity. With 50AH, 100AH, and 200AH options, this battery provides plenty of energy to power a wide range of devices and applications. Whether you need to power an RV, a boat, or a backup power system for your home, this battery has you covered.

Another advantage Lifepo4 battery is its long lifespan. Unlike traditional lead-acid batteries, this battery is designed to last for thousands of charge and discharge cycles. This means that you can rely on this battery for years to come without having to worry about replacing it or dealing with the hassle of regular maintenance.

In addition to its high capacity and long lifespan, this battery is also eco-friendly. The Lifepo4 technology used in this battery is much safer and more environmentally friendly than traditional battery technologies. This means that this battery is not only good for your wallet, but also good for the planet.

Overall, the LCD Display 48v 50AH 100AH 200AH energy storage Lifepo4 battery is a powerful and reliable energy storage solution that is perfect for a wide range of applications. Whether you need to power your home during a blackout, keep your boat running on the open sea, or provide backup power to your RV, this battery has the capacity and reliability to meet your needs. So why wait? Get your LCD Display 48v 50AH 100AH 200AH energy storage Lifepo4 battery today and enjoy the many benefits of this innovative energy storage solution.

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  • Mode DKW4850 DKW48100 DKW48200
    Specification 48V50Ah 51.2V50Ah 48V100Ah 51.2V100Ah 48V200Ah 51 .2V200Ah
    Combination 15S1P 16S1P 15S1P 16S1P 15S1P 16S1P
    Capacity 2,4KWh 2.56KWh 4.8KWh 5.12KWh 9.6KWh 10.24KWh
    Standard discharge
    current
    50A 50A 50A 50A 50A 50A
    Max.discharge current 100A 100A 100A 100A 100A 100A
    Working voltage range 40.5-54VDC 43.2-57.6VDC 40.5-54VDC 43.2-57.6VDC 40.5-54VDC 43.2-57.6VDC
    Standard Vo ltage 48VDC 51.2VDC 48VDC 51.2VDC 48VDC 51.2VDC
    Max.charging current 50A 50A 50A 50A 100A 100A
    Max.charging voltage 54V 57.6V 54V 57.6V 54V 57.6V
    Cycle 3000~6000cycles @DOD 80%/25℃/0.5C
    Working humidity 65±20%RH
    Operating temperature -10~+50℃
    Working altitude ≤2500m
    Cooling method Natural cooling
    Installation Wall mount
    Protection level IP20
    Max of paralle 15PCS
    Warranty 5~10 Years
    Communicalion Default:RS485/RS232/CAN O ptional:W i F il4G/B luetoot
    Certifed CE ROHS FCC UN38.3 MSDS
    Product S ize 400*200*585mm 400*230*585mm 400*230*610 mm
    Package S ize 500*260*630mm 500*290°630mm 460*250*650mm
    Net weight 35kg 40kg 42kg 46kg 102kg 106K9
    Gross weight 40K9 45kg 50kg 54kg 11289 11689

    1. Why is your quotation higher than other suppliers?

    In the Chinese market, many factories sell low-cost inverters that are assembled by small, unlicensed workshops. These factories cut costs by using substandard components. This results in major security risks.

    SOLARWAY is a professional company engaged in R&D, manufacturing, and sales of power inverters. We have been actively involved in the German market for over 10 years, exporting around 50,000 to 100,000 power inverters each year to Germany and its neighboring markets. Our product quality is deserving of your trust!

    2. How many categories do your power inverters have according to the output waveform?

    Type 1: Our NM and NS series Modified Sine Wave inverters use PWM (Pulse Width Modulation) to generate a modified sine wave. Thanks to the use of intelligent, dedicated circuits and high-power field-effect transistors, these inverters significantly reduce power loss and improve the soft-start function, ensuring greater reliability. While this type of power inverter can meet the needs of most electrical equipment when power quality is not highly demanding, it still experiences around 20% harmonic distortion when running sophisticated equipment. The power inverter can also cause high-frequency interference to radio communications equipment. However, this type of power inverter is efficient, produces low noise, is moderately priced, and is therefore a mainstream product on the market.

    Type 2: Our NP, FS, and NK series Pure Sine Wave inverters adopt an isolated coupling circuit design, offering high efficiency and stable output waveforms. With high-frequency technology, these power inverters are compact and suitable for a wide range of loads. They can be connected to common electrical devices and inductive loads (such as refrigerators and electric drills) without causing any interference (e.g., buzzing or TV noise). The output of a pure sine wave power inverter is identical to the grid power we use daily—or even better—since it does not produce the electromagnetic pollution associated with grid-tied power.

    3. What are resistive load appliances?

    Appliances such as mobile phones, computers, LCD TVs, incandescent lights, electric fans, video broadcasters, small printers, electric mahjong machines, and rice cookers are considered resistive loads. Our modified sine wave inverters can successfully power these devices.

    4. What are inductive load appliances?

    Inductive load appliances are devices that rely on electromagnetic induction, such as motors, compressors, relays, fluorescent lamps, electric stoves, refrigerators, air conditioners, energy-saving lamps, and pumps. These appliances typically require 3 to 7 times their rated power during startup. As a result, only a pure sine wave inverter is suitable for powering them.

    5. How to choose a suitable inverter?

    If your load consists of resistive appliances, such as light bulbs, you can choose a modified sine wave inverter. However, for inductive and capacitive loads, we recommend using a pure sine wave inverter. Examples of such loads include fans, precision instruments, air conditioners, refrigerators, coffee machines, and computers. While a modified sine wave inverter may start some inductive loads, it can shorten its lifespan because inductive and capacitive loads require high-quality power for optimal performance.

    6. How do I choose the size of the inverter?

    Different types of loads require different amounts of power. To determine the size of the inverter, you should check the power ratings of your loads.

    • Resistive loads: Choose an inverter with the same power rating as the load.
    • Capacitive loads: Choose an inverter with 2 to 5 times the power rating of the load.
    • Inductive loads: Choose an inverter with 4 to 7 times the power rating of the load.

    7. How should the battery and inverter be connected?

    It is generally recommended that the cables connecting the battery terminals to the inverter be as short as possible. For standard cables, the length should be no more than 0.5 meters, and the polarity should match between the battery and the inverter.

    If you need to increase the distance between the battery and the inverter, please contact us for assistance. We can calculate the appropriate cable size and length.

    Keep in mind that longer cable connections can cause voltage loss, meaning the inverter voltage may be significantly lower than the battery terminal voltage, leading to an undervoltage alarm on the inverter.

    8. How do you calculate the load and working hours required to configure the battery size?

    We typically use the following formula for calculation, though it may not be 100% accurate due to factors like the condition of the battery. Older batteries may have some loss, so this should be considered a reference value:

    Work hours (H) = (Battery capacity (AH)*Battery voltage (V0.8)/ Load power (W)

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