BOOSTESS Battery Module 20.096kWh
CTP Design | Air-Cooled C&I Module | Indoor











Product Introduction
The BOOSTESS battery module 20.096kWh is made of industry-leading 314Ah LFP battery cell engineered for scalable commercial and industrial energy storage. Featuring Kanda Air Tunnel cooling, which make the temperature difference (at<3℃) during the whole operation. The CTP design (30% cost reduction), it enables an optimized heat dissipation for better protection of battery cell. Supports stacking of 13+ units (260kWh+) in series connection with 93-95% efficiency and UL9540A/IEC-certified safety.
Why Choose Air-Cooled Battery Module 20.096kWh
- Dedicated Cell Airflow Channel Design:
Direct heat dissipation from the battery surface improves overall cooling efficiency, achieving a temperature variance of less than 3°C between individual cells. - Kanda Curved Air Duct Design
Optimized curved duct design enhances airflow distribution, delivering superior heat dissipation per unit area. - Thermal Simulation & Customized Airflow Control:
Precisely tailored air inlet volumes for each channel, enable differentiated airflow management and improved cell temperature uniformity. - CTP (Cell-to-Pack) Modular-Free Design:
Steel belts, and copper busbar connections, reducing costs by 30% and doubling assembly efficiency. - External Quick-Plug Design:
Simplified BMS and fan maintenance with plug-and-play structure, significantly reducing repair and service costs. - Integrated Compression Molding Process:
One-piece compression technology enhances structural strength, with cell pulse load resistance exceeding 40,000 N.
Features
Single Cell Air Duct
Kanda Surface
CTP Non-modular Design
All-in-One Integrated System
Automatical BMS Operation
AI-Powered Longevity
Air-Cooled Battery Module Structure
Battery Case: protect battery cells, and integrate the BMS with heat dissipation parts
Module: 1P20S LFP Battery Cell in 314 Ah
BMU:the key component of BMS that can in-time monitor battery SOC
Battery Cover
Fan : forced air cooling for high heat dissipation efficiency
The air cooling battery module consists of LFP battery cells , BMS slave boards (voltage/temperature monitoring), air cooling system -fans, structural frame (aluminum/composite), busbars (current conduction), fuses/contactors (safety protection), and fireproof insulation. Designed for high efficiency, thermal stability, and easy scalability, complying with IEC62619/UL1973.
Configuration Plan of Battery module + BESS system
| Solution Name | Hybrid Rack Mount Battery Rack |
Core Application | Short-term backup power for critical equipment in factory or data center rooms |
Energy/Power Characteristic | High power density, fast response (high discharge rate) |
Integration Method | Standardized rack module, supports redundant parallel connection |
Thermal Management | Built-in intelligent fans, focuses on heat dissipation and noise control within the rack |
Key Metrics | Discharge rate (C-rate), installation height (U), noise |
Smart O&M (Operations & Maintenance) | Integrated into DCIM systems, local alarms |
Feature Dimension | Option 2: 241kWh Air-Cooled Energy Storage Cabinet Integration |
Core Application | Commercial & industrial peak shaving, VPP, PV solar storage |
Energy/Power Characteristic | Large capacity energy type, focuses on cycle life and levelized cost of energy (LCOE) |
Integration Method | Integrated as a sub-module into a large all-in-one cabinet, deeply integrated with PCS/EMS |
Thermal Management | Industrial AC + precision air duct design, emphasizes cell temperature difference control (<6°C) |
Key Metrics | System efficiency (RTE), depth of discharge (DOD), cycle life (≥8000 cycles) |
Smart O&M (Operations & Maintenance) | Cloud-based energy management platform, supports VPP dispatch and remote O&M |
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Recommended Applications of Battery Module
Rack-based C&I energy storage systems are ideal for factories such as video processing plants, woodworking factories, and industrial parks. Through a HYBRID inverter, the battery racks can connect directly to diesel generators, supporting both self-consumption and stable backup power. During normal operation, the battery system reduces grid dependence and lowers energy costs; during outages, it works together with the diesel generator to keep key equipment running. Multiple racks can be paralleled to build large multi-MWh capacity, meeting the high energy demands of large manufacturing facilities while improving reliability and reducing fuel consumption.
Factory Self Consumption
PV Distributed Storage System for Farming Application
The 20.096kWh air-cooled battery module is a core part of the farm’s distributed PV+storage system, storing excess solar energy for stable power supply. Paired with PV panels and PCS, it ensures efficient energy management, reducing grid dependency. Its modular design and reliable cooling make it ideal for agricultural applications, supporting sustainable operations day and night.
The 20.096kWh air-cooled battery module is a key component in the island UPS backup power solution, ensuring reliable energy storage for uninterrupted power supply. Integrated with inverters and controllers, it provides stable DC/AC conversion, enhancing grid independence. Its compact design and efficient cooling make it ideal for remote island deployments, safeguarding critical loads during outages.
UPS Backup for Island Application
Spec
Battery Pack Parameters
| Cell Type | LFP |
| Configuration | 1P20S |
| Nominal Voltage (V) | 64V |
| Rated Capacity (Ah) | 314Ah |
| Nominal Energy (kWh) | 20.096kWh |
| Standard Charge Rate | 0.5C |
| Standard Discharge Rate | 0.5C |
| Cooling Method | Forced Air Cooling |
| Operating Voltage (V) | 50~72V |
| Dimensions (W×D×H mm) | 490×896×230 |
| Weight (kg) | 135 |
| Protection Level | IP20 |
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Case Study
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