60kWh–130kWh High Voltage Lithium Battery Energy Storage System
The 60kWh–130kWh High Voltage Lithium Battery Energy Storage System is a modular, rack-mounted energy storage solution designed for commercial and light industrial applications.
Operating at high voltage, the system delivers stable power output, high efficiency, and long-term reliability.
Built with premium LiFePO₄ cells, an intelligent BMS, and a triple protection safety architecture, it ensures safe operation, flexible capacity expansion, and seamless integration with inverters and energy management platforms.

6–13
Modules per rack in series
51.2V 100Ah each
307V–665V
System voltage range
HV60 through HV130
0.84m²
Minimum footprint (HV60)
840 × 590 × 2095mm
IP20
Indoor deployment ready
Fan cooling, <50dB noise
Modular Rack Design Engineered for Flexible C&I Deployment
Rack-Mounted Modular Architecture
Unlike stackable or all-in-one cabinet systems, this rack-mounted high voltage battery uses a standardized rack structure with individually serviceable 51.2V 100Ah LiFePO₄ modules in series. Configure 6 to 13 modules per rack for 60kWh to 130kWh capacity - each module can be installed, replaced, or maintained independently without shutting down the entire system. Purpose-built as a lithium battery for solar self-consumption and commercial battery backup applications. Certified to UN38.3, CE, and CE-EMC international standards.
Optimized for Your Energy Needs
Advanced Safety Protection
Equipped with positive relay, negative relay, and circuit breaker, the redundant protection architecture ensures precise control of high-voltage circuits and enhances overall system safety.
Intelligent BMS Control
An advanced BMS provides protection against over-charge, over-discharge, over-current, and extreme temperatures, while automatically managing charge and discharge states and balancing each cell.
Excellent Long Cycle Life
Based on high-stability LiFePO₄ battery cells, the system delivers over 6000 cycles at 0.5C, ensuring long-term stable operation and helping reduce total cost of ownership.
Scalable system configuration
Multiple battery modules can be connected in parallel to expand capacity and power from 60kWh to 130kWh, allowing the system to adapt to growing energy demands.
Specification
| Model | HV60 | HV70 | HV80 | HV90 |
| Battery Module Qty in series | 6 | 7 | 8 | 9 |
| System Nominal Voltage | 307.2V | 358.4V | 409.6V | 460.8V |
| System Operating Min.Voltage | 268.8V | 313.6V | 358.4V | 403.2V |
| System Operating Max.Voltage | 345.6V | 403.2V | 460.8V | 518.4V |
| System Energy |
63kWh
|
73.5kWh
|
84kWh
|
94.5kWh
|
| System Usable Energy | 59.8kWh |
69.8kWh
|
79.8kWh
|
89.7kWh
|
| Dimensions (WxDxH) | 840x590x2095mm | 840x1190x2095mm | ||
| Weight Approximate | 687.5kg | 779.5kg | 871.5kg | 963.5kg |
| Cover An Area | 0.84*0.59m | 0.84*1.19m | ||
| Model | HV100 | HV110 | HV120 | HV130 |
| Battery Module Qty in series | 10 | 11 | 12 | 13 |
| System Nominal Voltage | 512V | 563.2V | 614.4V | 665.6V |
| System Operating Min.Voltage | 448V | 492.8V | 537.6V | 582.4V |
| System Operating Max.Voltage | 576V | 633.6V | 691.2V | 748.8V |
| System Energy | 105kWh | 115.5kWh | 126kWh | 136.4kWh |
| System Usable Energy | 99.7kWh | 109.7kWh | 119.7kWh | 129.7kWh |
| Dimensions (WxDxH) | 840 x 1190 x 2095mm | |||
| Weight Approximate | 1055.5kg | 1147.5kg | 1239.5kg | 1331.5kg |
| Cover An Area | 0.84 x1.19m | |||
| Battery Module | 51.2V 205Ah | |||
| Recommend Charge/Discharge Current | 100/100A | |||
| Max Charge/Discharge Current | 150/200A | |||
| Peak Discharge (3S,25℃) | 200/220A | |||
| Installation Location | Rack Mounting | |||
| Recommend Depth of Discharge | ≤95% | |||
| Cycle Life | 6000 (25℃,0.5C/0.5C,EOL70%) | |||
| Display Type | LED+Touch LCD | |||
| Triple Protection | Positive Relay + Negative Relay + Breaker | |||
| Number of Main Circuit Relays | 3 | |||
| Heat Dissipation | Fan cooling | |||
| Certification | UN38.3/CE/CE-EMC | |||
| Working Temperature | Charge:0~55℃/Discharge:-20~55℃ | |||
| Storage Temperature | 0~35℃ | |||
| Communicaton Port | RS485/CAN/WiFi | |||
| Humidity (RH) | 5%~80% | |||
| Altitude | ≤3000m | |||
| IP Rating of Enclosure | IP20 | |||
| Noise (dB) | <50dB | |||
Listed by Leading Inverter Brands
Our batteries are officially listed as compatible by several globally recognized inverter manufacturers. Each product has undergone rigorous testing and validation to ensure seamless communication, reliable operation, and full compatibility across diverse inverter platforms.












Application Scenarios
Purpose-Built for Commercial & Industrial Energy Storage
From peak shaving and solar battery storage to commercial backup power and microgrid integration, the 60kWh–130kWh rack-mounted HV lithium iron phosphate battery system is engineered for the demanding requirements of C&I power storage environments.

Commercial Building Energy Management
Reduce demand charges and optimize electricity costs for offices, retail chains, hotels, and mixed-use commercial buildings. The scalable commercial energy storage battery supports peak shaving strategies with ≤95% depth of discharge, delivering up to 129.7kWh of usable capacity per rack during high-tariff periods.

Solar Self-Consumption Optimization
Store excess daytime solar generation and significantly increase self-consumption rates. This lithium battery for solar applications delivers high round-trip efficiency through its elevated voltage architecture, while modular rack expansion from 60kWh to 130kWh adapts to evolving PV array output and growing commercial solar battery storage demands.

Light Industrial Backup Power
Provide reliable commercial battery backup for manufacturing lines, cold storage, and critical equipment - maintaining power continuity with up to 129.7kWh of usable energy per rack (HV130) to support critical loads. With a peak discharge of 200/220A (3s pulse) and max continuous output of 200A, the system handles high-demand inrush loads while fan cooling maintains thermal stability during extended discharge cycles.

Microgrid & Off-Grid Power Systems
Deploy as the core microgrid battery system in standalone or hybrid configurations for remote facilities, island communities, or mining sites. A single HV130 rack delivers 136.4kWh of storage capacity, while RS485, CAN, and WiFi communication ensures seamless integration with microgrid controllers and utility-scale energy management platforms.

EV Charging Station Buffering
Reduce grid demand peaks at commercial EV charging stations by deploying an EV charging station battery buffer. The system's operating voltage range of 307V–665V aligns with DC fast-charger architectures, cutting peak grid draw, lowering transformer sizing requirements, and enabling more chargers per site without costly utility upgrades.

Telecom & Data Center UPS
Deliver high-reliability industrial UPS battery protection for communication towers, server rooms, and data centers requiring 99.99% uptime. The 6,000-cycle LiFePO₄ chemistry ensures long-term reliability and significantly lower total cost of ownership compared to traditional VRLA batteries. The IP20 indoor-rated enclosure with <50dB noise integrates seamlessly into controlled equipment room environments.
Deployed Worldwide Across Diverse C&I Environments
|
||
| Polinovel modular rack-mount LiFePO₄ power storage systems are trusted by EPC teams and system integrators across multiple continents - delivering proven reliability in real-world commercial and industrial installations. |
80+ Countries Served |
3,000+ Projects Delivered |

South Africa
130kWh Commercial Solar Storage with Deye Inverter

Southeast Asia
84kWh Rack-Mounted System for Light Industrial Backup

Middle East
105kWh Off-Grid Microgrid for Remote Facility Power
Frequently Asked Questions
As a manufacturer with over a decade of experience in lithium battery energy storage, we've compiled the questions our EPC partners and distributors ask most
about the 60kWh–130kWh HV rack system. Need the full spec sheet? Download the datasheet.
Q: How long will this LiFePO₄ battery system last in a commercial environment?
A: We rate our cells at over 6,000 cycles (0.5C charge/discharge, 25°C, 70% EOL capacity retention). In a typical C&I deployment with one cycle per day, that translates to over 16 years of daily cycling capability - significantly outperforming VRLA or lower-grade lithium alternatives. We've detailed the math behind cycle life vs. real-world lifespan in our blog: When to Upgrade Batteries Energy Storage.
Q: What is the recommended depth of discharge, and how does it affect usable energy?
A: We recommend a depth of discharge of ≤95%. For our HV130 model, that gives you approximately 129.7kWh of usable energy from a total 136.4kWh system capacity. We deliberately engineer for high DoD so our customers get maximum value from every kWh installed - a key advantage of high voltage LiFePO₄ chemistry over NMC or lead-acid alternatives.
Q: Which solar inverter brands are compatible with this HV battery?
A: We've completed rigorous communication protocol testing with 12+ global inverter brands: Deye, GoodWe, Growatt, SAJ, SMA, Victron, Afore, Sunsynk, Solis, Phocos, TBB, and Studer. Each pairing is validated for RS485, CAN, and WiFi data exchange. If your project uses an inverter not on this list, contact our engineering team - we regularly add new compatibility profiles based on partner requests.
Q: How does the modular rack design make installation and maintenance easier?
A: Each 51.2V 100Ah battery module slides into the rack independently - no special tools, no heavy lifting equipment. You can start with as few as 6 modules (63kWh / 307.2V) and expand to 13 modules (136.4kWh / 665.6V) by simply adding units in series. If a single module ever needs service, it can be swapped in minutes without powering down adjacent modules. For smaller projects, see our 20kWh–60kWh series; for larger C&I needs, explore the 96kWh–209kWh series.
Q: Can this system be used as a lithium battery for solar self-consumption?
A: Absolutely - it's one of the most common deployments we see. The elevated voltage design (307V–665V) pairs efficiently with commercial hybrid inverters, and the 95% DoD means you're capturing and using nearly all stored solar energy. Many of our partners combine this system with rooftop PV to significantly boost solar self-consumption. Read more about what energy storage batteries are used for.
Q: Is this system suitable for indoor installation in equipment rooms?
A: Yes - we specifically designed it for indoor deployment. The IP20-rated enclosure with fan cooling keeps noise below 50dB, comparable to a quiet office. Operating conditions: 5%–80% humidity, charge 0–55°C / discharge -20–55°C, altitude up to 3,000m. For outdoor requirements, we recommend our outdoor cabinet BESS product line instead.
Q: What discharge performance can we expect for high-demand loads?
A: The system supports a peak discharge of 200/220A (3-second pulse at 25°C), with max continuous charge/discharge at 150/200A and recommended steady-state at 100/100A. Nominal voltage spans 307.2V (HV60) to 665.6V (HV130), with operating max reaching 748.8V. This makes it well-suited as an industrial UPS battery for high inrush loads in manufacturing and data center environments.
Q: What certifications does this battery system hold for international shipping?
A: Every unit leaves our factory certified to UN38.3 (lithium battery transportation safety), CE (European conformity), and CE-EMC (electromagnetic compatibility). For projects requiring additional compliance - such as IEC 62619, UL 1973, or region-specific grid codes - we provide customized certification support. Learn more about our our certification documents and datasheets.
Q: What remote monitoring and smart management features are included?
A: On-site, a built-in LED + Touch LCD panel displays real-time system status. Remotely, RS485, CAN, and WiFi ports connect to your inverter, EMS, or SCADA platform. The intelligent BMS provides live SoC/SoH monitoring, cell-level balancing status, temperature tracking, and fault diagnostics - giving your operations team full visibility without site visits. Read our guide on which high voltage batteries perform best for energy storage.
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