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125KW/241KWH Commercial & Industrial Energy Storage System GCB-E240

125KW/241KWH Commercial & Industrial Energy Storage System GCB-E240

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$38,000.00
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[GCB-E240: ALL-IN-ONE 125KW/241KWH C&I BESS]

125kW PCS + high-voltage LFP battery rack (280Ah/215kWh or 314Ah/241kWh options) + 3-level BMS + EMS + HVAC + FSS in single IP54 enclosure (1300x1260x2375mm, ~3,200kg). Grade A LFP cells: 6,000+ cycles at 90% DOD, >=90% round-trip efficiency. 380V three-phase, 189A output. Three modes: Grid-tied / Off-grid / Hybrid. Up to 6 months maintenance-free storage. CE, IEC 62619, IEC 61000, UN38.3. 5-year warranty. Configurable to site.GCB-E240 Commercial & Industrial Energy Storage System

A high-capacity 125kW/241kWh all-in-one BESS cabinet integrating a three-phase PCS, high-voltage LFP battery rack (280Ah/314Ah cell options), 3-level BMS, EMS, HVAC, and fire suppression in a single IP54 enclosure (1300×1260×2375mm, ~3,200kg). Engineered for peak shaving, backup power, solar self-consumption, TOU arbitrage, microgrid, and EV charging support. Every system is configured to site requirements — cell capacity, operating mode, and protection design confirmed per project.

Key Specifications at a Glance

• AC Power: 125kW — Three-Phase 380V AC, 189A• Nominal Energy: 241.15kWh (314Ah) / 215.04kWh (280Ah)• Battery Cells: Grade A LFP — 3.2V 280Ah/314Ah Options• Cycle Life: 6,000+ at 25°C, 0.5C, 90% DOD• Architecture: All-in-One — BESS + PCS + BMS + EMS + HVAC + FSS• Round-Trip Efficiency: ≥90% System-Level• Enclosure: IP54 — 1300×1260×2375mm — ~3,200kg• Operating Modes: On-Grid / Off-Grid / Hybrid• Certifications: CE / IEC 62619 / IEC 61000 / UN38.3• Warranty: 5 Years Standard 

Core engineering advantages

Ultimate Cycle Longevity:Grade A LFP cells deliver 6,000+ cycles at 90% DOD equivalent to 15+ years of daily operation. LFP thermal runaway threshold >270 °C with zero cobalt provides the lowest TCO in the 100kW+ C&I storage class.

125kW High-Rate Throughput:189A output at 380V three-phase with 90% round-trip efficiency engineered for rapid response to grid signals, load changes, and EV charging demand spikes. Maximizes per-kWh revenue in peak-shaving and arbitrage.

Integrated Thermal Management:Onboard HVAC maintains optimal cell temperature (2030 °C) even at up to 50 °C ambient preserving cycle life and safety in desert, tropical, and industrial environments without external cooling infrastructure.

Level Smart Protection:Comprehensive safety: Level 1 cell-level voltage/temperature/IR monitoring; Level 2 pack-level SOC/SOH estimation and fault isolation; Level 3 system-level EMS, HVAC interlock, and auto-extinguishing FSS. 24/7 protection.

Zero-Voltage Stability:Ultra-low self-discharge rate enables up to 6 months of storage without maintenance or top-up charging. Ideal for seasonal sites, backup-only deployments, and projects with phased commissioning schedules.

High Energy Density:Advanced LFP architecture delivers 241kWh in a 1300×1260mm footprint approximately 1/3 the weight and 1/2 the volume of equivalent lead-acid systems. Saves valuable floor space in equipment rooms and outdoor pads

Category

Parameter

Specification

System Config

Model

GCB-E240

Rating

125kW / 241kWh (AC-Coupled All-in-One Cabinet)

Application

C&I Peak Shaving, Microgrid, Backup Power, Solar Self-Consumption, EV Charging Support

Battery Core

Cell Specification

Grade A LiFePO4 (LFP) 3.2V 280Ah / 314Ah Prismatic

Energy Capacity

241.15 kWh (314Ah) / 215.04 kWh (280Ah)

DoD / Cycle Life

90% DoD / 6,000 Cycles at 25°C, 0.5C

Round-Trip Efficiency

90% System-Level

Inverter PCS

Rated Power

125 kW Three-Phase 380V AC

Output Current

189 A

Operating Modes

On-Grid / Off-Grid / Hybrid (Configurable per Project)

Physical Data

Dimensions / Weight

1300 × 1260 × 2375 mm / ~3,200 kg (with PCS)

Ingress Protection

IP54 Outdoor Rated

Certifications

CE / IEC 62619 / IEC 61000 / UN38.3

Operating Temp.

-20 °C to +50 °C Ambient HVAC-Controlled Internal 2030 °C

Table 1.0 GCB-E240 technical specifications. Cell capacity (280Ah or 314Ah), inverter platform, and operating mode confirmed per project. IEC 62619, IEC 61000, UN38.3 certified. 5-year standard warranty. Customization available subject to project volume.

Frequently asked questions

Q: What is the difference between 280Ah and 314Ah cell options?

The two options offer different energy capacities in the same physical cabinet: 280Ah cells deliver 215.04kWh while 314Ah cells deliver 241.15kWh a 12% capacity increase with zero change to the enclosure dimensions or weight. The 314Ah variant is recommended for projects requiring deeper discharge duration or higher daily throughput. Both use the same Grade A LFP chemistry, 6,000+ cycle rating, and 3-level BMS architecture. Selection should be based on your load profile and autonomy requirements.

Q: Can the GCB-E240 support EV charging infrastructure?

Yes. The GCB-E240's 125kW PCS is well-suited for EV charging hub buffering storing energy during off-peak periods and discharging during charging demand spikes to avoid expensive grid upgrades. In a typical configuration, one GCB-E240 can buffer approximately 34 simultaneous 30kW DC fast chargers or 1520 Level 2 AC chargers during peak periods. The system can also integrate with solar carports for a fully renewable charging solution. Actual sizing depends on charger count, session patterns, and grid capacity contact engineering for a site-specific analysis.

Q: What customization options are available for the GCB-E240?

The GCB-E240 is fully configurable. Customization options subject to project volume include: cell capacity selection (280Ah or 314Ah), inverter platform selection, cabinet color and OEM branding (logo + housing), communication protocol (Modbus TCP/RTU, CAN, IEC 61850), additional parallel cabinets for multi-MWh configurations, and destination-market certification packages.

Q: What site preparations and maintenance does the GCB-E240 require?

Pre-installation: reinforced concrete pad (~3,500kg load + safety factor), minimum 1.2m clearance on all service sides, AC cable routing from main distribution panel, and Ethernet/4G for remote monitoring. Maintenance is minimal no water topping, no electrolyte replacement, no moving parts beyond HVAC fans. Annual inspection includes: visual check of enclosure seals, HVAC filter cleaning, bolt torque verification, and battery SoH reading via the BMS interface. The LFP cells are rated for 15+ years; preventive HVAC service at year 57 is the only scheduled non-battery maintenance item. Remote commissioning support included; on-site engineer available for projects above 500 kWh.