| Brand | RW Energy |
| Numero sa Modelo | 2.4–10.24 KWh Pamilyar nga Naka-ilog nga Bateria sa Pag-imbak og Enerhiya |
| Kapasidad sa Pag-atiman sa Kuryente | 10.24kWh |
| Kalidad sa mga Sel ng Elektrisidad | Class A |
| Serye | W48 |
Ang pag-install sa pader para sa mas magandang hitsura, mga function sa komunikasyon ng RS485/RS232 at CAN, na nagbibigay-daan sa komunikasyon sa mga upper computer at inverters, nakakamit ang mga terminal para sa serye-paralelo para sa madaling pag-group, may switch upang kontrolin ang lithium batteries, na may display ng power at DC protection circuit breaker, maaaring i-configure bilang 48V system na may 15 strings o 51.2V system na may 16 strings, opisyal na mga function ng WIFI, 4G, at Bluetooth, na may display screen, default na charging current ay 0.5C at discharging current ay 1C (ang iba pang mga parameter ay kailangan ng customization).
Kakaibang Katangian
Tataas na density ng energy.
Nakakamit ang BMS battery management system, mas mahabang cycle life.
Maganda ang hitsura; Libreng combination, madaling pag-install.
Ang panel ay naglalaman ng iba't ibang interfaces, suportado ng maraming protocols, at ADAPTS sa karamihan ng photovoltaic inverters at energy storage converters.
Maaaring i-customize ang adjustment management ng battery charging at discharging strategy.
Modular design, madaling maintenance.
Teknikal na Parameter


Pahayag:
Ang A-class cell ay maaaring i-charge at i-discharge 6000 beses, at ang B-class cell ay maaaring i-charge at i-discharge 3000 beses, at ang default na discharge ratio ay 0.5C.
Warranty ng A-class cell ay 60 buwan, warranty ng B-class cell ay 30 buwan.
Mga Application Scenario
Pagsuporta sa Energy Storage para sa Household Photovoltaics
Nagso-solve ito ng pain point ng photovoltaics kung saan "ang electricity na nai-generate sa araw ay nasasayang at walang electricity sa gabi". Ang isang 10.24KWh unit ay maaaring matugunan ang basic na pangangailangan ng electricity ng isang pamilya para sa 2-3 araw, na sumusuporta sa parallel expansion ng hanggang 15 units. Ang LiFePO4 battery cells ay ligtas na maaring i-install sa loob, at ang custom charging at discharging strategy ay maaaring makapag-save ng 15%-20% ng electricity bills.
Emergency Power Supply para sa Small Commercial Places
Suitable para sa convenience stores at small offices, ang 5KW power ay maaaring i-drive ang refrigerators at cash register systems. Ito ay may natural cooling, walang maintenance, at hindi kumukupkop ng lugar. Ang koneksyon sa energy management system ay nagbibigay-daan sa real-time monitoring ng backup duration, na nag-iwas sa mga loss dahil sa power outages.
Energy storage:When the power supply is sufficient, the wall-mounted energy storage battery converts alternating current (AC) from the power grid into direct current (DC) through a charger or inverter and stores it in the internal battery.
Batteries usually adopt lithium-ion battery technologies such as lithium iron phosphate (LiFePO4), ternary material (NMC), etc. These batteries have the characteristics of high energy density and long lifespan.
Energy management:The Battery Management System (BMS) monitors the state of the battery, including parameters such as voltage, current, and temperature, and optimizes the battery's charging and discharging process through algorithms to ensure the safe and efficient operation of the battery.
The BMS includes various protection mechanisms such as overcharge/overdischarge protection, over-temperature protection, and short-circuit protection.
Energy conversion:The inverter converts the direct current (DC) stored in the battery into alternating current (AC) for use by household appliances.
The inverter is also responsible for ensuring the quality of the output electrical energy, such as voltage stability and accurate frequency.
Energy release:When power demand increases or supply is insufficient, the wall-mounted energy storage battery converts the stored direct current into alternating current through the inverter and outputs it to terminal devices for use through sockets or other interfaces.
Through intelligent algorithms, the Energy Management System (EMS) can dynamically adjust the charging and discharging strategies according to electricity prices and grid demands to maximize economic benefits.