Seplos UltraPower 100 IP54 103KWh High Voltage Battery Commercial Energy Storage System Microgrids Off Grid BESS

Seplos UltraPower 100 High Voltage Energy Storage System
What would you get with Seplos UltraPower 100 High Voltage Energy Storage Battery
- Multi-dimensional electrical sensing with multi-level safety protection.
- Integrated PV, high voltage energy storage battery, and PCS equipment for unified bus control and enhanced system stability.
- Early-stage thermal runaway risk warning concept: combines fire detection, suppression, combustible gas monitoring, smoke extraction, and explosion venting in one system.
- Linked protection with BMS and EMS; equipped with standard cabinet-level fire suppression (optional pack-level targeted suppression) to ensure safe high voltage energy storage operation.
- Intelligent thermal management system keeps system temperature difference within ≤5°C, extending battery cycle life by 12%.
- All-in-one modular design with a compact footprint of only 1.21 m² per cabinet.
- High voltage battery energy storage is Suitable for all commercial application scenarios; user-friendly design.
- Easy plug-and-play parallel expansion, covering a wide power range of 50kW–300kW.
- Factory pre-assembled and integrated delivery enables easier installation and maintenance, reducing transportation and commissioning costs by 15%.
- Cloud-based management platform supporting remote or local monitoring and smart operation and Maintenance without requiring on-site experts.
- Smart balancing strategy and early warning system to ensure consistency across the high voltage battery entire lifecycle.
- A reliable power supply in off-grid or microgrid modes.
- Multiple operation modes supported, including virtual power plant (VPP), grid-connected, and off-grid, to maximize ROI.
Schematic Diagram of Application Scenarios
Scenarios One: Grid Connected With Diesel Generator

Scenarios Two: Grid Connected Without Diesel Generators

Scenarios Three: Off Grid With Diesel Generator

Scenarios Four: Off Grid Without Diesel Generator

Scenarios Five: Single Machine Grid Connected With Diesel Generator

Scenarios Six: Single Machine Grid Connection Without Diesel Generator

Scenarios Seven: Single Machine Off Grid With Diesel Engine

Scenarios Eight: Single Machine Off Grid Without Diesel Generator

Technical Parameters
| Model | UltraPower 100 | |
| PV Input | Maximum input power | 50kW |
| Starting voltage | 200V | |
| Photovoltaic maximum voltage | 1000Vdc | |
| Photovoltaic rated voltage | 630Vdc | |
| MPPT operating voltage range | 200-850Vdc | |
| MPPT quantity | 4 | |
| Number of single MPPT input channels | 2 | |
| Maximum input current(Each MPPT) | 30A*4 | |
| Maximum short-circuit current(Each MPPT) | 40A*4 | |
| ESS | Nominal energy | 103kWh |
| Nominal voltage | 691.2Vdc | |
| Battery voltage range | 604.8~777.6Vdc | |
| Rated charge/discharge current | 75A | |
| Maximum charge/discharge current | 90A | |
| Machine Ac Output | Rated output power | 50kW |
| Rated input power | 50kW | |
| Maximum output current | 75A | |
| Rated voltage (input and output) | 3L/N/PE; 400V | |
| Off-grid switching time | <20ms | |
| Grid frequency | 50Hz/60Hz | |
| Voltage total harmonic distortion | <3%@Rated power& Linear load | |
| Mechanical parameters | Weight | Net weight 1480kg; Gross weight packaging 1570kg |
| Overall dimension | 960×1650×2245(W×D×Hmm) | |
| Package size | 1030×1720×2400(W×D×Hmm) | |
| Communication mode | RS485, Ethernet, 4G | |
| Environmental Parameters | Operating temperature | -20℃~50℃(>45℃ derate) |
| Storage temperature | -20℃~45℃ | |
| Relative humidity | 5~95%RH,No condensation | |
| Altitude | 3000m(>2000 derate) | |
| Class of protection | IP54 | |
| Battery certification | IEC62619,IEC61000,UN 38.3 | |
| Inverter certification | IEC61000,1EC62477,IEC62109,EN50549-1 | |
APPLICATION of Seplos UltraPower 100 Distributed Energy Storage System

Distributed energy storage systems deliver stable modular power solutions for schools in remote locations. The Seplos UltraPower 100 efficiently supports classrooms, laboratories, and dormitories with scalable capacity. IP54-rated battery modules coupled with intelligent thermal management guarantee safe operations even in harsh climates. Cloud-based monitoring enables administrators to optimize energy usage effortlessly, making this system an excellent choice for educational institutions.
Energy Independence for Remote Farms
Empower agricultural activities with the UltraPower 103kWh distributed battery energy storage system. Equipped with a robust 50kW inverter, it powers irrigation systems, cold storage facilities, and agricultural machinery. AI-driven, cloud-connected monitoring provides advanced oversight, while wind-cooled battery modules prevent overheating, particularly during intensive seasonal workloads.


Efficient Energy Management for Pastures
Deploy a dependable distributed energy storage system to manage power demands on pasture farms. The modular battery energy storage system (BESS) provides electricity for electric fences, water pumps, and milking equipment. Its fire-resistant battery packs and real-time thermal management system ensure uninterrupted, safe operations. Flexible scalability accommodates fluctuating seasonal energy requirements.
Island Microgrid Renewable Integration
Seamlessly integrate renewable energy sources into island microgrids with the UltraPower 100's 103 kWh distributed energy storage solution. The system’s 50kW hybrid inverter smoothly integrates solar and wind power. IP54-rated and explosion-proof battery modules are designed specifically for coastal climates with high humidity. Cloud-based monitoring further optimizes energy distribution across island communities.


Luxury Off-Grid Villa Living
Enhance luxury villas with the discreet, silent Seplos UltraPower 100 distributed ESS. Its powerful 50kW output reliably supports HVAC systems and household appliances. Smart thermal control and advanced fire detection provide exceptional safety, while cloud-based management ensures complete peace of mind for premium off-grid lifestyles.
FAQ of High Voltage Batteries for Energy Storage
A: Distributed Energy Storage Systems (DESS) are energy storage solutions installed close to consumers, such as homes, businesses, or local communities. Unlike traditional centralized storage systems, DESS provides localized energy storage, enhancing the efficiency and reliability of energy supply.
A: Grid scale battery storage helps balance energy supply and demand, supports the integration of renewable energy sources like solar and wind, and enhances grid reliability. It also offers consumers greater control over energy usage, potentially reducing electricity bills, while enhancing energy independence and security with backup power solutions.
A: Distributed Energy Storage smooths out fluctuations from renewable energy sources like solar or wind, storing excess energy when production is high and supplying it during periods of low production or high demand, thus stabilizing the energy grid.
A: High voltage battery energy storage systems typically offer modular, plug-and-play designs, allowing easy scalability. Users can expand their storage capacity incrementally, adapting to changing energy demands or renewable energy capacity.
A: Common challenges include high initial costs, limited policy incentives in certain regions, and the current complexity of integrating storage solutions into existing energy grids. However, these barriers are decreasing with advancing technologies and supportive policies.
A: A high voltage battery energy storage system is a rechargeable energy storage solution that operates at voltages typically above 100V, ranging from 200V to 1500V. Compared with low-voltage systems, it delivers faster charge/discharge rates, higher efficiency, and greater energy density, making it ideal for residential, commercial, and industrial applications.
A: The main difference lies in the operating voltage:
High Voltage Systems (200V–1500V): Faster charge/discharge, lower current, higher efficiency, better suited for high-demand scenarios such as commercial peak shaving or industrial backup.
Low Voltage Systems (<100V): Safer for small-scale setups, easier installation, but limited in output capacity and efficiency.
1. Residential Solar + Storage Systems: to store excess solar energy for later use.
2. Commercial & Industrial Facilities: for peak shaving, backup power, and energy cost reduction.
3. Electric Vehicles (EVs): to power electric motors with long driving ranges.
4. Grid Energy Storage: to stabilize the renewable energy supply and balance demand.
5. Uninterruptible Power Supply (UPS): for critical operations in data centers, hospitals, etc.
A: High voltage LiFePO4 (Lithium Iron Phosphate) batteries typically offer 6,000–10,000 cycles, depending on usage conditions, which translates to 10–15 years of service life in residential and commercial applications.
1. System Capacity (kWh): Match with your daily consumption and backup needs.
2. Voltage Range: Ensure compatibility with your inverter.
3. Application: Residential, commercial, or industrial use.
4. Safety Certifications: Check for CE, UL, IEC, or equivalent standards.
5. Scalability: Look for modular designs for future expansion.
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