
Residential 800W/1024Wh Inverter Integrated Solar Energy Storage System
Main Features:
1. Light weight and compact size.
2. Delivers stable pure sine wave output.
3. Independent controlled outputs for DC5521 and 12V.
4. Independent USB controlled output, supporting QC2.0 5V/9V/12V and QC3.0 3.6V~12V.
5. Utilizes semi-solid lithium-ion batteries, which are safe, reliable and eco-friendly.
6. Equipped with an LCD screen display.
7. Supports simultaneous charging from mains power and solar energy.
8. The system features full safety protections including overcharge, over-discharge, over-current, over-temperature and short-circuit protection.
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| Model | REIM001-WM |
| Nominal Capacity/Energy | 1040Wh |
| Input power | Max1000W, 6A |
| Charging voltage range | 154~264VAC±5VAC 50/60Hz |
| Bypass voltage range | 184~264VAC±5VAC 50/60Hz |
| Rated output power | 800W |
| Output waveform | Pure sine wave |
| Power factor | 1PF |
| Rated output voltage (Vac) | 230V |
| Output frequency range (Hz) | 50Hz / 60Hz |
| Maximum efficiency | >93% |
| DC5521 (*2) | 12V/4A Max48W |
| USB fast charging (* 2) | 5V/9V/12V Max 18W |
| Overload capacity(battery) | 10min@105%~110% Load, 1min@110%~120% Load, 2s@130%~150% Load, 200ms@>150% Load |
| Maximum charging current | 15A |
| Controller type (PV) | MPPT |
| PV input voltage range | 28~60V |
| Maximum PV input power | 300W/10A |
| Protection functions | Overdischarge protection, overcharge protection, overcurrent protection, overload protection, short circuit protection, high temperature protection, low temperature protection |
| Working temperature range | -10°C-50°C |
| Storage temperature range | -15°C~60°C |
| Humidity range | 20%~95% (No condensing) |
| Noise level | ≤50db |
| Heat dissipation | Forced air cooling |
| Product size (L*W*H) mm | 370*325*135 |
| Packing size(L*W*H) mm | 418*374*174 |
| Net weight (kg) | 12.6 |
| Gross weight (kg) | 13.8 |
Residential Energy Storage System Solution Application Scenarios
During peak electricity demand periods, concentrated usage from commercial, industrial, and residential users often strains the grid, risking overloads. PV energy storage systems reduce reliance on grid power by discharging stored energy, easing the load on transformers and other grid infrastructure to avoid overload tripping. This is particularly beneficial for factories expanding production but facing delays in grid capacity expansion. Additionally, they serve as “flexible regulators” for urban power grids—pilot projects in a megacity showed a 25% improvement in regional grid stability.

Application Scenarios:
1. Home Emergency Backup Power Provides stable power supply for lighting, routers, refrigerators, monitoring equipment, and medical devices during power outages. Ensures normal communication and basic living electricity use, avoiding data loss and food spoilage caused by sudden blackouts.
2. Outdoor Camping & RV Travel Powers lighting, electric cookers, kettles, projectors, speakers, and other camping equipment. Supports solar charging for off-grid self-sufficiency, making outdoor trips more comfortable and environmentally friendly.
3. Outdoor Work & Engineering Construction Supplies power for electric tools, electric drills, water pumps, testing instruments, and communication equipment. Lightweight and portable, suitable for construction sites, field surveys, emergency repairs, and other mobile work scenarios.
4. Commercial & Small Business Use Provides backup power for cash registers, POS systems, printers, and small display equipment in shops, stalls, and mobile stores. Ensures uninterrupted business operations and prevents transaction interruptions from power failures.
5. Mobile Office & Digital Equipment Charging Charges laptops, tablets, mobile phones, cameras, and other electronic devices. Features multiple independent output ports to meet the simultaneous power supply needs of various digital devices.
6. Disaster Relief & Emergency Rescue Used in field rescue, disaster areas, and temporary command centers to provide reliable power for communication, lighting, and medical equipment. Supports both solar and mains charging, adapting to complex environments with unstable power supply.
7. Rural & Off-Grid Areas Serves as a daily power supply in areas with unstable or no power grid coverage. Combined with solar panels, it forms a small independent power system to meet basic living and production electricity needs.

Residential Homes: Balcony PV Energy Storage + Wall-Mounted Units, a Self-Sufficient Home Energy System. Standalone PV systems have time-dependent power generation limitations—high output during daytime peak sunlight often coincides with low household/enterprise electricity demand, leading to significant energy waste or feed-in at low grid prices. Conversely, PV generation ceases during evening peak usage, forcing reliance on grid power at premium rates. PV energy storage systems store surplus daytime electricity for release during peak demand, boosting PV utilization from 65%-75% to over 90%. Additionally, they leverage time-of-use (TOU) electricity price differences by charging during off-peak hours and discharging during peak periods.
Tags:
- Integrated Inverter Energy Storage System
- |
- Residential ESS






