Household Solution
Detached and semi-detached houses are suitable for installation of residential PV systems.
There are two main application scenarios for the home PV system: one is the off-grid PV system,
which is used in remote areas without grid access and can replace traditional fuel generators to
provide clean and reliable power supply; The other is the grid-connected PV system, which is an
investment method that has developed rapidly in recent years.It is mainly used in countries and
regions with high electricity prices and large peak-to-valley price differences. Earnings are
obtained through peak-to-valley price differences and power demand response. The excess
electricity can also be sold to the grid, reducing the cost of electricity consumption
Green electricity family Zero-carbon life
All-weather green power supply,energy
conservation and environmental protection
Reduce the cost of household energy, use
and start a zero-carbon life
Smart management Security guarantee
Component-level optimized, intelligent and
protection Lithium iron phosphate (LFP) core to
ensure safety
Intelligent networking, optimal allocation energy
Easy installation Easy expansion
Modular design, block installation Ports are
rich and easy to expand 24-hour system
online
Minimal aesthetics High efficient and reliable
Full black solar panel, high efficient and reliable
System-level design, high-quality control
Household roofs are usually small in size, with an installed capacity of about 8-30kw and 400V
low-voltage grid-connected. Suitable for small-capacity household inverter networking, flexible
capacity configuration.
Optimizing Self-Consumption Mode
With home energy storage installed, home owners may also be able to change from a flat rate electricity tariff to a time-of-use tariff. For the areas and regions, where peak shaving can be applied.
Specifications
MODEL | SKY 1800 | |||
Inverter | Rated Power | 5200W | ||
Output Voltage Waveform | Pure sine wave | |||
Output Voltage Regulation | 230VAC ±5% | |||
Output Frequency | 50Hz or 60Hz (±0.2Hz) | |||
Peak Efficiency | 93% | |||
Nominal DC Input Voltage | 48Vdc | |||
Standby Consumption | < 25W | |||
PV Input | Max Solar Power Input | 4000W | ||
Pv Max Charging Current | 80A | |||
Combined Charging Current | 80A | |||
Max Efficiency | 98% max | |||
Pv Array Open Circuit Voltage | 450VDC | |||
Pv Array MPPT Voltage Range | 150~430VDC | |||
AC Input | Ac Input Voltage | 230VAC ±5% | ||
Acceptable Input Voltage Range | 170~280VAC | |||
Nominal Input Frequency | 50Hz / 60Hz (Auto detection) | |||
Transfer Time | 10ms typical (UPS,VDE); 20ms typical (APL) | |||
AC Charge | Charging Current @ Nominal Input Voltage | 60A | ||
Charging Algorithm | 4-step (Li) | |||
Lithium Battery | Energy | 10Kwh | 20Kwh | 30Kwh |
Nominal Voltage | 51.2V | |||
Battery Capacity | 51.2V 100Ah 3U Module×2 | 51.2V 100Ah 3U Module×4 | 51.2V 100Ah 3U Module×6 | |
Standard Charging And Discharge Current | 100A | |||
Maximum Continuous Charging & Discharge Current | 100A | |||
Battery Protection | Battery Management System(BMS) Dynamic Protection | |||
Operation Ambient Temperature | 0~45 ℃ | |||
Storage Ambient Temperature | -20~55℃ | |||
Protection | Battery Protection | Battery Management System(BMS) Dynamic Protection | ||
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