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All in One 80-125KW 224KWH Lithium Battery Cabinet C&I Energy Storage System

      Sail Solar 224kwh energy storage cabinet features a high-standard integrated structure with IP54/IP55 waterproof and dustproof protection grade. Adopting premium LiFePO4 battery cells, this integrated cabinet integrates battery packs, intelligent BMS, EMS energy management system and independent thermal management. It is a cost-effective and reliable new energy storage solution for global commercial and industrial users, widely exported to Europe, Southeast Asia, the Middle East, Africa, South America and other regions, and supports customized OEM/ODM services to meet diverse customer needs.

  • اسم العلامة التجارية :

    Sail Solar
  • Model Number :

    BESS-224
  • System Configuration :

    224kwh
  • نطاق القوة :

    80-125kw
  • Rated AC Output Power :

    380/400V, 277/480V
  • Grid Type :

    Off-grid, Hybrid
  • عدد الدورات :

    8000
  • نوع البطارية :

    Lifepo4
  • درجة حرارة التشغيل :

    -20℃-50℃
  • Cooling :

    Air-cooling
  • Dimensions (W*D*H) :

    1300*1260*2375mm
  • درجة الحماية :

    IP55

Sail Solar 241KWH Energy Storage Cabinet

Components

  • #
    Inverter: 80-125kw
    80-125kW three-phase commercial hybrid inverter with integrated MPPT solar charging. Supports on-grid peak shaving, off-grid backup power and seamless mode switching. Built-in EMS for intelligent energy dispatch, full protections against overload, short circuit and islanding.
  • #
    High Voltage Battery
    224kwh LiFePO4 high-voltage battery cluster as energy storage carrier, equipped with independent BMS system. Real-time monitoring of cell voltage, temperature and pressure difference, active balancing and thermal runaway prevention. Long cycle life, stable performance for long-term outdoor operation.
  • #
    High Voltage Control Box
    High-voltage safety protection. Contains pre-charge circuit, DC breaker, insulation monitoring module and emergency interlock. Eliminates inrush current during startup, automatically cuts off high voltage upon faults to guarantee system and operator safety.
  • #
    Cabinet
    IP54/IP55 weatherproof metal enclosure with fire isolation partition to separate battery compartment and electrical compartment. Configured with independent thermal management, automatic fire suppression system, external emergency stop button, lifting lugs and forklift holes. Waterproof, dustproof and anti-corrosion for direct outdoor installation.

 

Technical Datasheet

Battery Parameters:

Battery Cell LFP 3.2V 314AH
Battery Pack 51.2V 314AH
Battery Cluster Rated Voltage 716.8V
Battery Cluster Rated Energy 224.98KWH
Recommend Charging/Discharging Current 100A
Max Charge/Discharge Working Cuurent 200A


Cabinet:

Size: W*D*H 1300*1260*2375mm
Weight: 2500KG
Operating Temperature Range -20-50℃
Noise 75db
Fire Protection System Integrated (Refrigeration, Ventilation, Heating)
Communication  RS232/RS485/CAN


Inverter:

Energy Storage Inverter Solis 100~125KW, AC: Three Phase 380V

 

10*241kwh energy cabinets VS 40'ft customized energy storage container BESS

 

 

 

 

Core Advantages:
1. Split heat load design delivers better cell temperature uniformity under high-temperature conditions
2. Single cooling component failure only affects 10% of total capacity, with extreme system redundancy
3. Compact single-cabinet size ensures good ventilation, minimal heat accumulation and fast hot air dissipation



Core Advantages:
1. Factory pre-integrated design only requires single on-site cable connection, enabling the fastest construction
2. Directly applicable for ocean freight, with convenient dangerous goods declaration, customs clearance and shipping
3. Single integrated fire, monitoring and temperature control system for extremely simple O&M


Key Disadvantages:
1.Heavy on-site commissioning for parallel BMS/PCS cluster, with tedious circulating current and voltage equalization debugging, poses high requirements for later matainence
2. Doubled quantity of foundations, cables, busbar cabinets and fire points, leading to higher EPC costs
Key Disadvantages:
1.Large enclosed containers have mild heat accumulation, causing slight cell temperature deviation and marginally lower cycle durability.

2.Centralized cooling design lacks redundancy; fan or AC failure will shut down the entire system.

 

Diagram of 241kwh Battery Energy Storage Cabinet

1. Standard Internal Wiring

Neat dual-column modular internal wiring. Red for DC positive, green for DC negative. Prevent miswiring and short circuits via unified IN/OUT cascade ports.

2. Module Individual Cooling

Each module comes with an exclusive cooling fan. Minimize temperature gap in long-term PV charge & discharge process.

3. Dedicated Inverter Connection Terminals

Heavy DC cables reserved at the bottom. Directly plug and connect with external solar hybrid inverters easily.

4. Isolated Signal Communication Line

Independent black network cable for BMS communication and remote monitoring. Separate power and signal wires to block electromagnetic interference.

5. Overall System Benefits

Balanced current and SOC across all battery packs. Improve system safety, stability and service life. Simplify field installation, parallel expansion and after-sales maintenance.

Sail Solar Certification

 

 

✅ UN38.3 + MSDS for global safe shipping

✅ IEC/IEC/UL for Industrial ESS Safety Standard

✅ Full documents for Google Shopping merchant verification

 

Factory and Shipping

 

 

Lithium-ion batteries are classified as Class 9 dangerous goods, so we adopt professional shockproof, fireproof and anti-static packaging solution:

1) EPE foam inner lining, flame retardant partition for each module
2) Reinforced export carton + fumigated wooden box for container loading
3) Full compliance with UN38.3 shipping standard for air, sea and land transportation

 

People May Ask

Q1. Will parallel installation of multiple cabinets lead to heat overload?

No, parallel installation won’t result in heat overload if installed per guidelines. Each cabinet has an independent air intake and exhaust system. With the recommended gap reserved between units, hot air can dissipate freely without recirculation. Besides, the built-in intelligent fan speed regulation and over-temperature derating protection further secure stable operation under multi-unit parallel full-load working conditions.


Q2. Air cooling vs Liquid cooling, which one is better for our 224kWh 80-125kW solar energy storage system?

1) Cost: Air cooling has lower cost than liquid cooling. Liquid cooling costs much more on equipment, coolant replacement and pump power, with poor ROI for this small capacity.
2) Maintenance: Air cooling needs simple filter and fan checks by local common technicians. Liquid cooling carries pipe leakage risks and demands professional trained engineers for complex periodic upkeep.
3) Project Suitability: Air cooling is well-suited for standard C&I scenarios. Liquid cooling excels in extreme high-temperature climates, 24/7 full-load operation and large MW-scale energy storage projects

 

Q3. How does the cabinet resist salt mist and humidity in coastal outdoor installation?

The cabinet features galvanized steel housing with anti-salt fog epoxy coating and stainless steel fasteners for exterior corrosion resistance. It has IP54 sealed structure with EPDM gaskets to block humid salt mist. Internal PTC dehumidifiers prevent condensation, while multi-layer inlet filters trap sea salt particles. All circuit boards are covered with three-proof coating, ensuring long-term reliable operation in coastal high-humidity environments.


Q4. Does the system support seamless backup power for heavy factory loads?
Yes, it fully supports seamless backup for heavy factory loads. The 80–125kW hybrid inverter realizes millisecond-level grid-to-off-grid switching with no power outage. It has strong overload capability to handle large starting inrush current of inductive equipment like motors and compressors, and maintains steady voltage & frequency under variable load conditions. In addition, it can synchronize with diesel generators to build a reliable hybrid emergency power microgrid.

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خزانة خارجية متكاملة تجارية وصناعية مبردة بالسوائل بقدرة 261 كيلوواط ساعة، حاصلة على تصنيف IP66 IP66 IP66 ESS
خزانة Sail Solar الخارجية المبردة بالسوائل بسعة 261 كيلوواط/ساعة هي نظام بطاريات عالي الجهد متكامل مصمم خصيصًا لتطبيقات تخزين الطاقة التجارية والصناعية. تدمج الخزانة أربعة أنظمة مساعدة - نظام إدارة البطارية، ونظام إدارة التبريد بالسوائل، ونظام الحماية من الحرائق، ونظام توزيع الطاقة - ضمن إطار تشغيل آمن ذي حلقة مغلقة. تدعم الخزانة ترقيات مرنة ويمكن تكييفها مع أنظمة تخزين الجهد العالي الأخرى ضمن خط منتجاتنا، مما يتيح توسيعًا فعالًا من حيث التكلفة بدءًا من 261 كيلوواط/ساعة فصاعدًا.
نظام تخزين الطاقة الشمسية Solis BESS EverCore - (100-261) كيلوواط ساعة - (50-125) كيلوواط - NV الكل في واحد للمنشآت التجارية والصناعية، خزانة خارجية
تتألف خزانة Solis BESS EverCore الخارجية من عاكس هجين من Solis (HYI)، ونظام بطاريات، ونظام إدارة طاقة (EMU)، ونظام إخماد حرائق (FSS)، ونظام إدارة حرارية (TMS)، ونظام توزيع طاقة مساعد (PDU). تدعم هذه الخزانة تقليل ذروة الطلب، وتحويل الأحمال، وإدارة الطلب/السعة، وتوسيع السعة، والاستجابة للطلب، مما يجعلها مناسبة تمامًا لتطبيقات صناعية وتجارية متنوعة مثل محطات الشحن والمباني التجارية ومرافق التصنيع.
خزانة خارجية BESS-I50، نظام تخزين طاقة شمسية متكامل بسعة 20-50 كيلوواط/ساعة + بطارية 50 كيلوواط/ساعة، للاستخدام التجاري والصناعي.
خزانة Sail Solar الخارجية المتكاملة بقدرة 20-50 كيلوواط + 50 كيلوواط ساعة هي منتج مصمم خصيصًا يجمع بين محول هجين بقدرة 20-50 كيلوواط، وبطارية ليثيوم فوسفات الحديد (LiFePO4) بسعة 50 كيلوواط ساعة، ونظام إدارة البطارية (BMS) في خزانة واحدة. يقلل هذا الحل من تعقيد التركيب، ويوفر المساحة، ويبسط إدارة الطاقة الشمسية بشكل عام. يُعد هذا الحل سهل التركيب والتشغيل مناسبًا بشكل خاص لأنظمة الطاقة الشمسية غير المتصلة بالشبكة، والمناطق التي لا تتوفر فيها إمكانية الوصول إلى الشبكة، والمناطق النائية، والبيئات القاسية.

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الإثنين 11/21 - الأربعاء 11/23: 9 صباحًا - 8 مساءً
الخميس 11/24: مغلق - عيد شكر سعيد!
الجمعة 11/25: 8 صباحًا - 10 مساءً
السبت 11/26 - الأحد 11/27: 10 صباحًا - 9 مساءً
(جميع الساعات بالتوقيت الشرقي)

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