Grade-A LiFePO4 Cells · Built-in Smart BMS · IEC62619 Certified · OEM/ODM Ready

High Voltage Battery 51.2V 314Ah LiFePO4 | C&I Energy Storage for Solar Installers & EPCs

Power your commercial projects with a factory-direct, private-label-ready 51.2V 314Ah LiFePO4 high voltage battery. Engineered for solar integrators, EPCs, and distributors who demand certified performance, scalable capacity, and full OEM flexibility — shipped direct from our Xiamen manufacturing facility.

Home » Products » High Voltage Batteries » High Voltage Battery 51.2V 314Ah LiFePO4

Scalable Battery Energy Storage System Built for Commercial Demand

Product Overview

The 51.2V 314Ah module delivers 16kWh of usable capacity per unit, supporting up to 15 stackable units in parallel for large-scale commercial energy storage deployments across industrial, commercial, and solar applications.

RAKOUR NSTFW-16K-HV 51.2V 314Ah high voltage battery system front view with stackable LiFePO4 modules and BCU control unit
RAKOUR NSTFW-16K-HV battery energy storage system topology showing PV array, high voltage inverter, BCU, and stackable battery modules in series
RAKOUR NSTFW-16K-HV BCU battery control unit with integrated LiFePO4 battery management system, touch screen display, CAN RS485 communication ports
RAKOUR 51.2V 314Ah high voltage battery rack mount installation showing multiple stackable battery modules in iron frame for commercial energy storage application
RAKOUR NSTFW-16K-HV scalable high voltage battery system with 5 to 14 stackable LiFePO4 battery modules connected in series via BCU, delivering 256V to 716.8V for commercial energy storage

System Architecture — Modular High Voltage Battery Design

The RAKOUR NSTFW-16K-HV is a C&I-grade high voltage battery energy storage system composed of stackable 51.2V 314Ah LiFePO4 battery modules connected in series through a dedicated BCU (Battery Control Unit). Each battery module contributes 16.08kWh, and the system supports 5 to 17 modules in series, delivering a scalable operating voltage range of 256V to 716.8V — purpose-built for high voltage inverter integration.
RAKOUR NSTFW-16K-HV dual-layer LiFePO4 battery management system diagram showing slave BMS in each battery module reporting cell voltage and temperature to master BMS in BCU via internal CAN bus

Dual-Layer BMS Architecture for Intelligent Cell Management

Each battery module incorporates a slave BMS that continuously monitors cell voltage and temperature, reporting data to the master BMS housed within the BCU via internal CAN communication. This dual-layer LiFePO4 battery management system governs charge/discharge control, cell balancing, over-current, over-voltage, and thermal protection — ensuring safe, autonomous operation across the full energy storage system without manual intervention.

Integrated LiFePO4 Battery Management System for Maximum Safety

Key Features

Every unit ships with a built-in multi-layer BMS battery that monitors cell balancing, over-temperature, over-voltage, and short-circuit protection — ensuring long cycle life across 6,000+ charge cycles at 80% DoD.

 

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Grade-A LiFePO4 Cells with ≥8,000 Cycle Life at 90% DoD

The RAKOUR NSTFW-16K-HV is built on Grade-A LiFePO4 cells configured in a 16S1P architecture per battery module. Rated at ≥8,000 cycles at 90% DoD, each 314Ah module delivers 16.08kWh of dependable capacity — significantly reducing total cost of ownership for long-duration commercial energy storage deployments.

RAKOUR NSTFW-16K-HV dual-layer BMS battery protection system with slave BMS per module and master BMS in BCU providing real-time monitoring of voltage, current and temperature against overcharge, over-discharge, over-current and thermal fault

Dual-Layer BMS Battery with Multi-Level Fault Protection

The integrated LiFePO4 battery management system operates on two levels: a slave BMS within each stackable battery module and a master BMS inside the BCU. The BMS battery monitors cell voltage, current, and temperature in real time, with active protection against overcharge, over-discharge, over-current, and high/low temperature events — ensuring autonomous, fail-safe operation across the full energy storage system.

RAKOUR NSTFW-16K-HV high voltage battery BCU with active fan cooling per module, built-in soft-start circuit for high voltage inverter compatibility, and on-board touch screen display showing SOC, alarms and system parameters

Active Fan Cooling, Soft-Start Circuit & On-Board Display

Each battery module is equipped with an active cooling fan to manage thermal load during high-current operation. A built-in soft-start circuit enables compatibility with high voltage inverters that lack native soft-start functionality. The BCU integrates a touch screen display for real-time SOC, alarm status, and system parameter monitoring at the installation site.

Full Technical Specifications — High Voltage Battery Module

Technical Specifications

All electrical parameters are factory-verified and third-party certified. Each battery module is tested before shipment to ensure compliance with rated capacity, internal resistance, and BMS response thresholds.

 

RAKOUR NSTFW-16K-HV | 51.2V 314Ah LiFePO4 Battery Module Specifications

The RAKOUR NSTFW-16K-HV battery module is engineered around Grade-A LiFePO4 cells, delivering 16.08kWh per unit at a nominal 51.2V. When configured as a complete commercial energy storage system, 5 to 14 modules connect in series through the BCU, scaling system voltage from 256V to 716.8V to match a broad range of high voltage inverter platforms. With a maximum continuous current of 200A, active fan cooling, and CAN/RS485 communication, every battery module is factory-verified for performance and shipped CE, MSDS, and UN38.3 certified — ready for direct integration into C&I solar energy storage projects.

 

Rack mounted high voltage 51.2V 314Ah battery module used in solar energy storage system

NSTFW-16K-HV Specification Table — Module & System Parameters

RAKOUR NSTFW-16K-HV — 51.2V 314Ah Module & System Specifications
ParameterModule ValueSystem RangeNotes
🔋Electrical Parameters
Cell Chemistry LiFePO4 LiFePO4Grade-A cells · 16S1P per module
Nominal Capacity 314 Ah Per module16.08 kWh usable energy per rack unit
Module Energy 16.08 kWh 80.38 – 225.08 kWh 5–14 modulesUsable at 90% DoD
Nominal Voltage 51.2 V 256 – 716.8 V 5–14 modules in seriesBCU manages series connection
Charge / Discharge Current Rec: 160 A Max: 200 A Per inverter specificationParallel shunt recommended for 80kW inverters
Cycle Life ≥ 8,000 cycles @ 90% DoD5+5 year warranty backed
🌡️Thermal Parameters
Working Temperature −10°C ~ 55°C Discharge range 0°C ~ 55°C Charge rangeActive fan cooling per module
Cooling Mode Active Fan Per battery moduleTriggers automatically on thermal load
Storage Temperature 0°C ~ 35°C RecommendedIndoor installation required
📐Mechanical Parameters
Module Dimensions 771 × 550 × 200 W × D × H (mm) Per moduleStack or iron frame mounting
Module Weight ~118 kg Per module approx.Structural floor loading required
Communication CAN   RS485 BCU to inverterInternal CAN between modules and BCU
🛡️Compliance & Environmental
Certifications
🇪🇺 CE ✅ UN38.3 🧪 MSDS
Third-party verified · export-ready
IP Rating IP20 Indoor installationControlled environment required
Operating Altitude ≤ 2,000 m Above sea levelUN38.3 altitude simulation passed
Humidity 5% ~ 95% RH Non-condensingWorking & storage condition

Rack Mount Battery Backup for Solar, Commercial & Industrial Sites

Applications

Designed for demanding real-world environments, this rack mount battery backup solution is ideal for solar self-consumption, peak shaving, off-grid backup, and time-of-use optimization at the commercial scale.

 

☀️
C&I Solar
Self-Consumption
Config 1–17 racks · 50kW–80kW inverter
Maximize solar ROI, reduce grid dependency
Peak Shaving /
Demand Charge
Config Multi-rack parallel · TOU scheduling
Lower peak demand penalties
🔋
Grid Backup /
UPS
Config Up to 10 inverters AC parallel
Critical load continuity
🏗️
Microgrid /
EPC Projects
Config Iron frame or stack mounting
Scalable phased deployment
C&I solar energy storage LiFePO4 battery module for commercial and industrial energy storage system

C&I Solar Energy Storage — On-Grid, Hybrid & Peak Shaving

The RAKOUR NSTFW-16K-HV is purpose-built for commercial and industrial solar energy storage deployments where high capacity, scalable architecture, and high voltage inverter compatibility are non-negotiable. With each rack delivering 16.08kWh and support for up to 17 battery stacks in parallel — each containing 5 to 14 modules — the system scales to meet large-load demand response, solar self-consumption maximization, and time-of-use peak shaving requirements on a single platform.

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Grid Backup & Multi-Inverter AC Parallel Deployments

The NSTFW-16K-HV energy storage system supports up to 10 inverters in AC parallel operation, making it a viable backbone for microgrid, EPC-designed backup power installations, and multi-building commercial facilities. Its stackable battery architecture enables phased capacity expansion without system redesign — a critical advantage for EPCs and distributors delivering scalable commercial energy storage solutions to end clients.

Server Rack Battery Compatible With Leading High Voltage Inverter Brands

Compatible Inverters

This server rack battery communicates natively with major high voltage inverter brands via RS485 and CAN protocols, enabling plug-and-play commissioning for installers.

 

Verified DEYE High Voltage Inverter Integration — CAN Protocol

The RAKOUR NSTFW-16K-HV high voltage battery communicates with compatible high voltage inverters via CAN protocol, connecting the BCU's CAN port directly to the inverter's BMS1 port. Dedicated wiring and commissioning guides are available for two factory-verified DEYE configurations: the SUN-29.9K~50K-SG01HP3 and the SUN-80K-SG02HP3-EU-EM6. For DEYE 80kW series, parallel shunt wiring across dual BAT interfaces (P1+/P1− → BAT1, P2+/P2− → BAT2) is recommended to maximize discharge current from a single battery energy storage system cluster — reducing total hardware cost per kWh for EPC projects.

 

Verified DEYE high voltage inverter integration via CAN protocol for HV lithium battery system with BMS communication support
🏭Brand📋Inverter Category📡Communication
DEYE
SUN-29.9K~50K-SG01HP3 / SUN-80K-SG02HP3-EU-EM6
CAN
Growatt
High Voltage Series
CAN 🔗RS485
Sofar
High Voltage Series
CAN 🔗RS485
Goodwe
High Voltage Series
CAN 🔗RS485
Solis
High Voltage Series
CAN 🔗RS485
Afore
High Voltage Series
CAN 🔗RS485
ATESS
High Voltage Series
CAN 🔗RS485
Megarevo
High Voltage Series
CAN 🔗RS485
LuxPowerTek
High Voltage Series
CAN 🔗RS485
Koyoe
High Voltage Series
CAN 🔗RS485
📎 Inverter compatibility is subject to firmware version. Contact RAKOUR's technical team for model-specific commissioning documentation.

Certified High Voltage Battery Meeting Global Safety & Shipping Standards

Certifications & Compliance

Every battery unit is manufactured under ISO 9001-certified quality controls and independently tested to ensure your projects meet regulatory and insurance requirements in key markets worldwide.

 

RAKOUR NSTFW-16K-HV — Third-Party Verified Compliance for C&I Deployments

For solar installers, EPCs, and battery distributors operating across international markets, the RAKOUR NSTFW-16K-HV high voltage battery ships with a complete, independently verified certification package. Every 51.2V 314Ah battery module is tested and certified under third-party laboratory conditions — ensuring your commercial energy storage projects meet regulatory, insurance, and logistics compliance requirements without qualification delays.

UN38.3 — Transport Safety Validated Across All Hazard Test Categories

The NSTFW-16K-HV LiFePO4 cells and assembled battery module have been independently tested to UN38.3 (8th Edition) — covering altitude simulation, thermal stress, vibration, mechanical shock, external short circuit, crush, overcharge, and forced discharge. All test results passed with no fire, no explosion, no leakage, and no rupture. UN number: UN 3480 / UN 3481, Transport Hazard Class 9.

🇪🇺
CE
EMC Directive 2014/30/EU

European safety conformity
Electromagnetic compatibility
EN IEC 61000 series tested
🌍 EU Market Projects
🚢
UN38.3
8th Edition · UN 3480 / UN 3481

International transport safety
8 hazard test categories passed
Hazard Class 9 · Air, sea & road
✈️ Air · Sea · Road Shipping
🧪
MSDS
Material Safety Data Sheet

Full chemical composition disclosure
Safe handling & storage guidelines
Emergency response procedures
🌐 Global Logistics & HSE
By Sea
CNAS IB0078 Accredited

Ocean freight hazard classification
Dangerous goods identification report
No marine pollutant designation
🛳️ International Sea Freight
📎 All original certificate documents are available on request. Contact RAKOUR's OEM team for market-specific compliance documentation tailored to your target region.

Private Label & OEM Battery Energy Storage System Manufacturing

OEM & ODM Support

We support distributors and EPCs with full OEM and ODM customization including private label branding, custom BMS firmware, packaging design, and white-label documentation for your end-market.

 

🏷️
Private Label Branding

Custom logo & colour on enclosure
Branded label printing per SKU
White-label packaging design
🎨 Full Visual Identity
Capacity Selection

HV Series: 100Ah / 200Ah / 280Ah / 314Ah
All SKUs independently factory-certified
LiFePO4 cells · 16S1P per module
🔋 4 HV Configurations
🏗️
Form Factor Options

High voltage rackable (NSTFW series)
LV rackable · stack or iron frame mount
LV wall-mounted (NSTLV series)
📦 3 Form Factors
🛡️
Certification Coverage

CE · UN38.3 · MSDS · By Sea per model
Third-party lab verified · export-ready
Original documents on request
✅ Export-Ready Docs
📡
BMS Configuration

CAN / RS485 dual-protocol support
Compatible with 10+ HV inverter brands
Dual-layer master / slave BMS battery
🔗 CAN · RS485
📄
Documentation

White-label user manuals per SKU
Wiring guides & installation docs
CE declaration & compliance paperwork
📋 Full Doc Package

Factory-Direct OEM from Xiamen — High Voltage & Low Voltage Battery Platforms

RAKOUR operates as a Xiamen-based OEM manufacturer with a fully documented product platform spanning both high voltage and low voltage LiFePO4 battery energy storage systems. The NSTFW-16K-HV is one of multiple production-ready battery module configurations — alongside 51.2V 100Ah, 200Ah, and 280Ah HV variants — giving distributors and EPCs a verified, scalable product portfolio to white-label under a single factory partnership.

Confirmed OEM & ODM Capabilities

All RAKOUR 51.2V stackable battery products — including the NSTFW-16K-HV — are available with OEM and ODM support, directly confirmed in official product documentation. This covers both the high voltage rackable series and the LV wall-mounted and rackable form factors, providing distributors with a complete private-label commercial energy storage lineup from a single certified source.

RAKOUR NSTFW-16K-HV High Voltage Battery for C&I Solar Projects

Frequently Asked Questions

What is the maximum scalable capacity of the RAKOUR NSTFW-16K-HV high voltage battery energy storage system?

A single rack of the NSTFW-16K-HV supports 5 to 14 battery modules in series, delivering a system voltage range of 256V to 716.8V and up to 225.08kWh of total energy per rack. For larger C&I solar energy storage deployments, up to 17 racks can be operated in parallel, and up to 10 inverters can be configured in AC parallel operation — enabling multi-hundred-kWh commercial energy storage systems from a single modular platform.

How does the LiFePO4 battery management system work in the NSTFW-16K-HV?

The NSTFW-16K-HV uses a dual-layer BMS battery architecture: a slave BMS embedded in each individual battery module continuously monitors cell voltage and temperature, transmitting data to the master BMS housed within the BCU via internal CAN communication. The master BMS governs charge/discharge control, cell balancing, over-voltage, over-current, and thermal protection autonomously — requiring no manual intervention during normal operation of the energy storage system.

Which high voltage inverters are compatible with the RAKOUR 51.2V 314Ah stackable battery system?

The NSTFW-16K-HV communicates via CAN and RS485 protocols, with factory-verified wiring guides for DEYE SUN-29.9K~50K-SG01HP3 and SUN-80K-SG02HP3-EU-EM6 inverters. Broader compatibility extends to Growatt, Sofar, Goodwe, Solis, Afore, ATESS, Megarevo, LuxPowerTek, and Koyoe high voltage inverter platforms. For DEYE 80kW series, parallel shunt wiring across dual BAT interfaces is recommended to maximize discharge current per cluster.

What is the rated cycle life and warranty of the NSTFW-16K-HV LiFePO4 battery module?

The NSTFW-16K-HV is rated at ≥8,000 cycles at 90% DoD, delivering long-duration commercial energy storage performance with predictable degradation over the asset life. The standard warranty is 5+5 years — covering both the battery modules and system-level components. Grade-A LiFePO4 cells in a 16S1P configuration per module underpin this longevity, making the NSTFW-16K-HV a bankable choice for EPC-designed C&I projects.

What certifications does the RAKOUR NSTFW-16K-HV carry for international shipping and market compliance?

The NSTFW-16K-HV high voltage battery holds CE, UN38.3 (8th Edition), MSDS, and By Sea (CNAS-accredited ocean freight hazard classification) certificates — covering European market compliance, international transport safety, and global logistics requirements. UN transport numbers are UN 3480 / UN 3481, Hazard Class 9. All certificate documents are available for distributor and EPC project qualification use.

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