200kWh Hybrid LFP+Supercap High Power - Ultra-Fast Response BESS
Energy Storage

200kWh Hybrid LFP+Supercap High Power - Ultra-Fast Response BESS

EPC Price Range
$80,000 - $115,000

Key Features

  • 200 kWh energy capacity with 400 kW continuous power rating for 2C discharge capability
  • Hybrid LFP+Supercapacitor architecture with sub-20ms response time for grid frequency regulation
  • Over 8,000 cycle lifespan with 80% capacity retention through intelligent power distribution
  • UL 9540A tested with three-tier fire suppression system and advanced BMS monitoring
  • Plug-and-play 20ft containerized design with >96% round-trip efficiency and dual-mode operation

Description

The SOLARTODO 200kWh Hybrid LFP+Supercap High Power system represents the next generation of battery energy storage systems (BESS), engineered for the most demanding commercial and industrial applications. By integrating the high energy density of Lithium Iron Phosphate (LFP) chemistry with the instantaneous power delivery of supercapacitors, this hybrid system offers a unique solution that excels in high-power, fast-response scenarios such as grid frequency regulation, data center backup, and industrial peak shaving. With a continuous power rating of 400 kW and a sub-20-millisecond response time, it delivers unparalleled performance, reliability, and safety, all compliant with the latest international standards including UL 9540, IEC 62619, and NFPA 855.

The core of this system is its innovative hybrid architecture. The 200 kWh of LFP battery capacity provides the sustained energy required for long-duration discharge, enabling applications like solar self-consumption optimization and demand charge reduction. LFP chemistry is renowned for its safety, long cycle life, and thermal stability, forming the reliable backbone of the system. Complementing the LFP battery is a high-power supercapacitor bank. Supercapacitors can charge and discharge almost instantaneously, handling the volatile, high-frequency power demands that are typical in grid stabilization services. This dual-technology approach not only enables a 2C continuous discharge rate but also protects the LFP battery from the high-stress, repetitive cycling associated with power-intensive applications, thereby extending the system's operational lifespan to over 8,000 cycles.

Engineered for high performance, the system boasts a 400 kW power rating, allowing it to respond to the most demanding power requirements. Its ability to react in under 20 milliseconds makes it a critical asset for maintaining grid stability. As renewable energy penetration increases, the need for fast-acting grid services like frequency response becomes paramount. This system is designed to meet the stringent requirements of grid operators, providing both Fast Frequency Response (FFR) and primary frequency control. The bidirectional Power Conversion System (PCS) operates at over 96% efficiency, ensuring that minimal energy is lost during charge and discharge cycles. It supports both grid-tied and island modes, providing flexibility for a wide range of on-grid and off-grid applications.

Safety is the cornerstone of the SOLARTODO design philosophy. The 200kWh Hybrid system is built to meet and exceed the most rigorous safety standards in the industry. It has successfully passed the UL 9540A large-scale fire test, which evaluates the fire safety of BESS at the cell, module, unit, and installation level. This demonstrates the system's resilience to thermal runaway propagation. A three-tier fire suppression system, including gas detection, automated shutdown protocols, and an integrated fire extinguishing agent, provides multiple layers of protection. The advanced Battery Management System (BMS) continuously monitors the state of charge (SOC), state of health (SOH), and temperature of every cell, ensuring optimal performance and preventing potential hazards through active cell balancing and thermal management. The entire system is housed in a 20-foot containerized unit, pre-engineered and factory-tested for plug-and-play installation, minimizing on-site commissioning time and ensuring compliance with NFPA 855 installation guidelines.

Technical Specifications

Energy Capacity200kWh
Continuous Power Rating400kW
Peak Power (Supercap Boost)500kW
Battery ChemistryHybrid LFP + Supercapacitor
C-Rate (Continuous)2C
Response Time20ms
Round-trip Efficiency96%
Depth of Discharge (DoD)90%
Cycle Life (80% Capacity)8000cycles
Calendar Life15years
Operating Temperature Range-20 to 50°C
Cooling MethodLiquid Cooling
Container Size20ft Standard
Dimensions (L×W×H)6.06 × 2.44 × 2.59m
Weight (Approximate)12000kg
Grid Connection3-Phase 480V AC
Communication ProtocolsModbus TCP, CAN, Ethernet
Warranty Period10years
Warranty Capacity Retention70%

Price Breakdown

ItemQuantityUnit PriceSubtotal
LFP Battery Cells (200kWh)200 kWh$55$11,000
Supercapacitor Bank (50kW Peak)50 kW$120$6,000
Battery Management System (BMS)200 kWh$15$3,000
Bidirectional PCS Inverter (400kW)400 kW$80$32,000
DC-DC Converter (Hybrid Control)100 kW$30$3,000
Liquid Cooling System200 kWh$25$5,000
20ft Container Enclosure1 unit$8,000$8,000
Three-Tier Fire Suppression System1 unit$5,000$5,000
Energy Management System (EMS)1 system$3,000$3,000
Installation & Integration200 kWh$20$4,000
Commissioning & Testing1 system$5,000$5,000
Total Price Range$80,000 - $115,000

Frequently Asked Questions

What makes a hybrid LFP+Supercapacitor system superior to a standard LFP battery?
The hybrid design leverages the strengths of two distinct technologies. While the LFP battery provides high energy capacity for long-duration storage, the supercapacitors deliver instantaneous, high-power bursts for applications like frequency regulation. This division of labor protects the LFP battery from rapid, high-stress cycling, significantly extending its lifespan to over 8,000 cycles and improving overall system performance and return on investment.
What are the primary applications for this 200kWh high-power system?
This system is specifically designed for power-intensive applications that require fast response times. Its primary use cases include grid frequency regulation, where it helps stabilize the grid by injecting or absorbing power in milliseconds. Other key applications include industrial peak shaving to reduce demand charges, providing uninterruptible power supply (UPS) for critical facilities like data centers, and optimizing the use of large-scale solar installations.
How does the system ensure safety against fire and other hazards?
Safety is paramount. The system complies with UL 9540 and has passed the rigorous UL 9540A fire propagation test. It incorporates a multi-layered safety approach: an advanced BMS for real-time monitoring and protection, a liquid cooling system to maintain optimal operating temperatures, and a three-tier fire suppression system with gas detection, automated shutdown, and integrated fire extinguishing capabilities, all adhering to NFPA 855 standards.
What is the expected lifespan and warranty of the system?
The SOLARTODO 200kWh Hybrid system is designed for a long operational life, rated for over 8,000 cycles while retaining at least 80% of its original capacity. This translates to a calendar life of over 15 years under typical operating conditions. We back our technology with a standard 10-year warranty, ensuring 70% capacity retention, with options for extended warranty and performance guarantees.
Is the system difficult to install and commission?
No, the system is delivered as a fully integrated, plug-and-play solution within a standard 20-foot container. This pre-engineered and factory-tested approach significantly simplifies on-site logistics and reduces installation and commissioning time. Our team provides comprehensive support to ensure a smooth deployment process, from site preparation to final grid connection, ensuring full compliance with local regulations and standards like IEEE 1547.

Certifications & Standards

UL 9540
UL 9540A
IEC 62619
IEC 62619
NFPA 855
IEEE 1547
IEEE 1547
UN38.3
CE
CE

Data Sources & References

  • UL Standards & Engagement 2023
  • IEC 62619:2022 Safety Requirements
  • NFPA 855:2026 Installation Standards
  • IEEE 1547-2018 Interconnection Standards
  • CATL TENER 2025 Technical Specifications

Project Cases

200kWh Hybrid LFP+Supercap High Power - Ultra-Fast Response BESS - 1
200kWh Hybrid LFP+Supercap High Power - Ultra-Fast Response BESS - 2

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