Growcol 100 kW Commercial Energy Storage System — Indoor
Bundled configuration: GW-MPS0100 100 kW MPS hybrid inverter, Pylontech HV battery stack (112 kWh nominal), HV BMS & cabling, 105.6 kWp PV array (192 × 550 W half-cell mono)
Overview
Purpose-built for demanding commercial, agricultural, and light-industrial sites, the Growcol 100 kW Commercial ESS pairs our 100 kW MPS hybrid inverter with a high-voltage Pylontech battery stack and a 105.6 kWp PV field. The result is a tightly integrated, indoor-rated power platform for self-consumption, peak-shaving, back-up, and time-of-use arbitrage—delivered with fast installation and closed-loop battery control.
Key Highlights
- 100 kW three-phase hybrid output for robust backup and seamless PV + battery blending
- 112 kWh HV lithium storage (20 × 5.6 kWh Pylontech HM3A180) for long reserve time and high round-trip efficiency
- High-voltage architecture → lower DC current, slimmer cabling, reduced losses, cleaner installations
- Closed-loop BMS control via CAN/RS485 for precise SOC, protection, and optimized charge profiles
- 105.6 kWp PV array (192 × 550 W modules) sized for strong daytime offset and rapid battery recharge
- Modular & serviceable design with field-replaceable battery modules and clear front-access wiring
- Safety first: multi-layer protections (OV/UV/OCP/OTP/short-circuit), insulation monitoring, and compliant hardware
Typical Applications
- Retail & commercial buildings, lodges, cold rooms, petrol stations, workshops
- Farms & agri-processing (irrigation pumps, packhouses, refrigeration)
- Office parks, clinics, schools, telecom & light-industrial facilities
Technical Summary*
- AC inverter: Growcol GW-MPS0100, 100 kW three-phase hybrid
- Battery energy: ≈112 kWh (20 × 5.6 kWh HV LFP)
- Battery chemistry: LiFePO₄ (LFP) for stability, safety, long cycle life
- Battery BMS: Pylontech Master BMS for M3A/HM3A180 stack (closed-loop)
- System topology: High-voltage battery stack with dedicated HV control & protection
- PV field: ≈105.6 kWp (192 × 550 W half-cell mono)
- Communications: CAN/RS485 (inverter ↔ BMS), monitoring-ready
- Operating temperature: Charge 0–50 °C / Discharge −20–55 °C (battery), optimal 15–30 °C
- Cycle life (battery): ≥6,000 cycles at standard DoD/conditions (typical)
- Installation: Indoor; front-access rack wiring; installer-friendly harnessing
*Performance and exact limits depend on site design, local utilities, ambient conditions, and commissioning settings. Always size breakers, fuses, and cable gauges to code and the final single-line diagram.
What’s in the Bundle
- 1 × GW-MPS0100 Growcol 100 kW MPS hybrid inverter
- 20 × PYLONHM3A180 Pylontech HM3A180 5.6 kWh HV battery modules (≈112 kWh total)
- 1 × SC1500 (M3A180) Master BMS for HV stack control
- 1 × HM3A180CAB KIT (HV interconnect/cable kit)
- 1 × CAB-PYHV5M Pylontech HV cable 5 m (black)
- 1 × CAB-PYHV5MR Pylontech HV cable 5 m (red)
- 192 × TW550 – 550 W half-cell mono PV modules (≈105.6 kWp)
Integration & Compliance
- Native closed-loop operation between GW-MPS0100 and Pylontech HV stack for warranty-compliant charging.
- Designed to meet relevant IEC/CE/UN38.3 standards (final certificates/batch docs available via authorized channel).
- Supports generator interlock, grid-tie with export limits, and advanced backup modes (per local regulations).
Installation & Commissioning
- Install by qualified professionals following the project SLD and local electrical codes.
- Commission with Growcol and Pylontech procedures to enable closed-loop protections, accurate SOC, and event logging.
- Indoor location with adequate ventilation and clearance; provide upstream DC/AC protection and earthing as specified.
Warranty & Support
- Covered by Growcol inverter warranty and Pylontech battery warranty (regional terms apply).
- Technical design reviews, commissioning guidance, and after-sales support available through authorized Growcol partners.
Professional note: Battery-to-inverter power limits, PV-to-battery charge ceilings, and parallel expansion options should be validated against the final inverter firmware, BMS config, and utility requirements before procurement.
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