• 500kWh-1075kWh 20ft Modulares Container-Energiespeichersystem für gewerbliche und industrielle Nutzung Sunpal
  • 1MWh containerisierte ESS-All-in-One-Lösung mit Flüssigkeitskühlung für kommerzielle Anwendungen und Versorgungsbetriebe Sunpal
  • 500kWh-1075kWh 20ft Container ESS LiFePO4 Batteriesystem für C&I Peak Shaving & Erneuerbare Integration Sunpal
  • 500kWh-1075kWh 20ft Modulares Container-Energiespeichersystem für gewerbliche und industrielle Nutzung Sunpal
  • 1MWh containerisierte ESS-All-in-One-Lösung mit Flüssigkeitskühlung für kommerzielle Anwendungen und Versorgungsbetriebe Sunpal
  • 500kWh-1075kWh 20ft Container ESS LiFePO4 Batteriesystem für C&I Peak Shaving & Erneuerbare Integration Sunpal

500KW/1075KWh 20ft Container ESS für gewerbliche und industrielle Nutzung

    LiFePO4-Akkumodul, stabile Entladungsplattform, gute Sicherheitsleistung, lange Lebensdauer;
    500-1075kWh Skalierbare Kapazität mit modularem Aufbau
    Unterstützt Peak Shaving, Backup und Grid Response
    Unabhängige Lade-/Entladesteuerung pro Batteriegruppe
    Cloud EMS mit Echtzeit-Alarmen und Fernaktualisierungen
    IP65-zertifiziert für raue industrielle Außenbedingungen

Teilen:

DC-Daten

ZelltypPrismatische LFP
Marke der ZelleHiGEE
Lebenszyklus einer Zelle>8.000 Zyklen@ 0,5C,25℃
Zelle spec3,2V 280Ah
String-Konfiguration1P224S
Anzahl der Strings5
String-Nennenergiekapazität200kWh
DC-Nennenergiekapazität1000kWh
Nennspannung716.8V
 Spannungsbereich628V~806V
BMS-KommunikationsschnittstelleEthernet, CAN, RS485
 BMS-KommunikationsprotokollModbus RTU, Modbus TCP

AC-Daten

AC-Nennleistung500KW
Maximale AC-Leistung550KW
AC-Nennspannung400V
AC PF1 führend~1 nacheilend
Ausgang THDi≤3%
Nominale Netzfrequenz50/60Hz
Verfahren zur Isolierung3-Phasen-4-Leitungs-Transformator

Allgemeine Daten

Abmessungen ohne Freiräume (L*B*H)6,058*2,438*2,591mm
Gewicht des gesamten Systems<30MT
Grad des SchutzesIP65
Betriebstemperaturbereich-20~65℃
Relative Luftfeuchtigkeit0~95% (nicht kondensierend)
Maximale Arbeitshöhe3.000m/9.842ft
Kühlungskonzept der DC-LukeHAVC
Kühlungskonzept der PCS-LukeKühlung mit Zwangsluft
FeuerlöschanlageHFC-Flaschengruppe
KommunikationsschnittstellenRS485, Ethernet, GPRS
KommunikationsprotokolleModbus RTU, Modbus TCP

Einführung

Q :

1. Wofür ist dieses Container-ESS gedacht?

A :

Container ESS ist ideal für industrielle Anwender, die Solarspeicher, Spitzenlastabschaltung, Notstromversorgung oder netzseitigen Lastausgleich benötigen.

Q :

2. Wie gewährleistet das Container ESS die Betriebssicherheit?

A :

Container ESS umfasst eine Logik zur Fehlerklassifizierung, einen fortschrittlichen BMS-Schutz und eine vollständige Brandunterdrückung zur Minderung der Batterierisiken.

Q :

3. Ist Container ESS mit dem Betrieb eines intelligenten Netzes kompatibel?

A :

Ja, Container ESS unterstützt die Ferndisposition, die Wirk-/Blindleistungssteuerung und die Echtzeitkommunikation über ein cloudbasiertes EMS.

Q :

4. Wie wird das Container-ESS-System gekühlt und geschützt?

A :

Container ESS umfasst Temperaturkontrollsysteme, IP55-Gehäuse und dynamische Umgebungsüberwachung für Zuverlässigkeit im Außenbereich.

Q :

5. Können die Firmware und die Strategie aus der Ferne aktualisiert werden?

A :

Ja, das Container-ESS-System ermöglicht Cloud-basierte Aktualisierungen der Firmware und der Energieverwaltungsstrategien, um die Betriebs- und Wartungskosten zu senken.

Q :

6. How much energy can the lithium-ion battery in a 500 kWh battery energy system store?

A :

The system’s nameplate capacity is 500 kilowatt-hours (kWh), or 500,000 Wh, equivalent to ~1.8 × 10⁹ joules (1.8 GJ). In practice, the amount of usable energy will be lower due to depth-of-discharge limits, internal losses, and aging effects.

At 100% depth of discharge (theoretical), it could power a 0.5 kW (500 W) load for 1,000 hours or deliver 50 kW continuously for 10 hours.

But most systems operate with a safe DoD (e.g. 80 %) to preserve cycle life, so usable energy = 0.8 × 500 = 400 kWh in that case.

With round-trip efficiency of 90 %, the net deliverable may be ~360 kWh.

What is round-trip efficiency and how much energy is lost?

Round-trip efficiency is the ratio of energy output to energy input, accounting for all internal losses (resistive, thermal, conversion). Typical lithium-ion BESS systems achieve 85–95 % efficiency, so 5–15 % of energy is lost during a full charge–discharge cycle.

How many cycles / years will the battery last, and how does capacity degrade?

A well-designed lithium-ion BESS might be rated for 3,000 to 8,000 full cycles (depending on chemistry and operating conditions). Over time, internal degradation reduces capacity; for example, it may degrade ~2–3 % per year or per 1,000 cycles. The warranty often guarantees a minimum remaining capacity after a set number of years or cycles.

What power output (kW) can this system support, and how does that relate to duration?

The discharge power rating is independent of capacity. If the system supports e.g. 250 kW discharge, then for 500 kWh nameplate capacity, it could run at full power ~2 hours (500 ÷ 250). But if limited to 50 kW output, it could last 10 hours (500 ÷ 50). Always match power and duration specs to your application.

In what applications is 500 kWh a good fit?

A medium-sized commercial building to reduce peak demand charges

Backup power / ride-through during grid outages

Microgrid or campus-scale energy shifting

Coupled with renewables (solar/wind) for smoothing and peak shaving

If your critical load is 50 kW, a 500 kWh BESS gives ~10 hours of full backup (less when factoring safety margins).

Q :

7. Is 500kwh battery energy system good for an apartment?

A :

No, a 500 kWh battery capacity is excessive for residential use. The average apartment consumes only 20 to 60 kWh per day. A 500 kWh system is typically designed for commercial, industrial, or utility-scale applications.

Installing such a system in an apartment is impractical, due to limitations related to space, weight, and cost.

A capacity of 500 kWh is exceptionally high. Most residential batteries have individual capacities ranging from only 20 - 60 kWh. A 500 kWh capacity is typically designed for industrial, commercial, or utility-scale applications.

Space Requirements: These systems require large, well-ventilated areas, typically warehouses or dedicated rooms, rather than apartment units.

Energy Consumption: The average apartment consumes approximately 20-60 kWh per day. A 500 kWh system could theoretically power an apartment for 1-3 weeks, representing significant excess capacity.

Cost: Systems of this scale can cost about 4,5000 dollars, far exceeding the practical budget for residential use.

Technical Specifications

This system includes the following features:

Capacity: 500 kW power output, 250 kWh energy storage capacity

Design: Compact dual-container configuration for versatile deployment

Certification Standards: UL 1741 SA, UL 9540, CSA 22.2, UN 3536, UN 38.3, IEEE 1547

Deploying a 500 kWh battery system offers numerous advantages

Cost Reduction: Reduces energy bills by minimizing peak demand charges.

Energy Independence: Enhances power reliability by storing energy during off-peak hours.

Sustainability: Reduces the carbon footprint and supports green energy initiatives.

Scalability: Seamlessly integrates with existing renewable energy systems.

This system is suitable for the following applications

Commercial Buildings: Office towers, retail centers, and mixed-use developments.

Industrial Facilities: Manufacturing plants and warehousing centers.

Educational Institutions: K-12 schools and higher education campuses.

Remote Areas: Locations requiring off-grid power solutions.

Is a 500 kWh Battery Energy Storage System Right for Your Business?

A 500 kWh Battery Energy Storage System is ideal for businesses aiming to reduce energy costs, improve grid reliability, and accelerate ROI.

Sunpal’s system is designed for commercial and industrial clients with high energy demands. It integrates seamlessly with our PV modules (PERC, TOPCon, HJT) and supports both grid-connected and off-grid setups, enabling peak shaving, demand charge management, and backup power.

With Sunpal’s optimized design and vertically integrated manufacturing, clients often achieve payback in 4–6 years. Rising electricity prices and time-of-use tariffs further increase the financial benefits of storing solar energy off-peak and using it during peak hours.

With over 10 GW installed across 100+ countries and full global certifications, Sunpal delivers a reliable, future-proof energy asset that supports sustainability and boosts your bottom line.

Contact Sunpal today for a customized ROI analysis based on your facility’s load and local utility structure.

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