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Industrial Energy Storage PCS 1.3–1.7MW | High‑Efficiency Bidirectional Power Conversion for Utility & C&I ESS
GreenMore's 1.3–1.7MW power storage converter (PCS) is a high-performance bidirectional power conversion system designed for utility-scale energy storage, renewable energy grid integration, microgrids, and industrial peak shaving applications.It supports parallel operation and can flexibly scale from 1MW to several MW configurations.The PCS utilizes industrial-grade components, intelligent control algorithms, and advanced grid support features to ensure stable, efficient, and safe power conversion in harsh grid environments.
Item No :
GM-LEG1575KPayment :
TT/LCProduct Origin :
ChinaCustom Made :
YesLead Time :
20 daysWarranty :
5 yearsAI Summary
This Energy Storage Converter delivers high‑efficiency bidirectional AC‑DC conversion for MW‑level battery systems. With 1500V DC support, three‑level topology, IP54 outdoor protection, and flexible parallel expansion, it is designed for utility‑scale, commercial, and industrial energy storage applications.
Key Features
Ultra‑High Conversion Efficiency — Adopts advanced three‑level topology, achieving up to 99% conversion efficiency for maximum system performance.
1500V DC Input Support — Compatible with DC 1500V battery systems and offers a wide operating voltage range for flexible system design.
IP54 Outdoor Protection — Rugged cabinet design suitable for harsh outdoor environments, ensuring long‑term reliability in extreme weather.
Comprehensive Safety Mechanisms — Integrated multi‑level protection including insulation monitoring, surge protection, and anti‑islanding functionality.
Parallel Expansion Capability — Supports multi‑machine parallel operation, enabling scalable deployment from MW to multi‑MW systems.
Reactive Power Compensation — Provides dynamic reactive power support and stable operation in isolated grid (off‑grid) environments.
Smart Charge/Discharge Management — Built‑in battery management enables flexible switching between multiple operating modes such as peak‑shaving, self‑consumption, and backup power.
Technical Specifications
| Model | GM-LEG1250K | GM-LEG1575K | GM-LEG1725K |
| Maximum DC Voltage (V) | 1500 | ||
| Minimum DC Voltage (V) | 800 | 915 | 1000 |
| DC Voltage Operating Range (V) | 800-1500 | 915-1500 | 1000-1500 |
| Maximum DC Current (A) | 1935 | ||
| AC Side (Grid-connected) | |||
| Rated Output Power (KW) | 1250 | 1575 | 1725 |
| Maximum Output Power (KVA) | 1512 | 1732 | 1897 |
| Rated AC Current(A) | 1443 | ||
| Maximum AC Current (A) | 1587 | ||
| Rated AC Voltage(V) | 550 | 630 | 690 |
| AC Voltage Range (V) | 467.5-605 | 535.5-693 | 586.5-759 |
| Rated Grid Frequency (Hz) | 50 | ||
| Grid Frequency Range (Hz) | 45-55 | ||
| Total Current Waveform Distortion Rate | <3% rated power | ||
| Power Factor | >0.99 rated power | ||
| Feed Phase Number/Output Phase Number | 3/3 | ||
| AC side (off-grid) | |||
| Rated AC Voltage (V) | 550 | 630 | 690 |
| AC Voltage Range (V) | 467.5-605 | 535.5-693 | 586.5-759 |
| Rated Output Frequency (Hz) | 50 | ||
| AC Voltage Distortion Rrate | <3% linear load | ||
| DC Voltage Component (V) | <0.5%Un linear load | ||
| Unbalanced Load Capacity | 100% | ||
| Protect | |||
| Surge Protection | Yes | ||
| Power Grid Monitoring | Yes | ||
| Overheat Protection | Yes | ||
| General Parameters | |||
| Maximum Efficiency | 98.0% | ||
| Isolation Transformer | NO | ||
| Protection Level | IP54 | ||
| Cooling Method | Intelligent forced air cooling | ||
| Relative Humidity | 0-100% | ||
| Operating Temperature (°C) | -30~+60 | ||
| Altitude (m) | 3000 | ||
| Dispatch Communication Method | RS485、CAN、Ethernet | ||
| Communication Protocol | MODBUS-RTU/TCP | ||
| Reference Weight | 1500 | ||
| Reference Size (W*D*H) (mm) | 1200*1450*2400 | ||
Updated on: May 19, 2026
Application Scenarios
Safety & Compliance
CE / IEC / UL compliant design
High‑voltage electrical protection
Emergency stop button (E‑STOP)
Real‑time fault detection & event logging
Meets global grid‑connection standards
Why Choose GreenMore PCS?
15+ years of energy storage manufacturing experience,Professional energy storage equipment manufacturer
Full product line: residential ESS, C&I ESS, PCS, solar systems, BIPV, solar tiles
Global deployments in Europe, Middle East, Southeast Asia, South America, Africa
Strong R&D and OEM/ODM capability
Factory certifications: ISO 9001 / 14001 / 45001, BSCI, and global brand audits
Optional Add‑Ons
Battery Containers (20ft/40ft)
EMS Energy Management System
PV Inverters for Hybrid Plants
BESS Fire Protection System
FAQ
This PCS performs bidirectional AC‑DC conversion, enabling batteries to charge and discharge efficiently. It stabilizes power flow, supports grid interaction, and provides essential functions such as reactive power compensation, black‑start capability, and multi‑mode operation for various energy storage applications.
Yes. The PCS supports DC 1500V input and offers a wide operating voltage range, making it compatible with modern large‑scale battery systems. This ensures higher efficiency, lower system losses, and greater flexibility in designing utility‑scale and commercial energy storage solutions.
Yes. The PCS supports parallel operation, allowing multiple units to be combined for MW‑level or multi‑MW‑level systems. This enables flexible capacity expansion, redundancy, and improved system reliability for utility, industrial, and renewable energy applications.
Yes. With an IP54 protection rating, the PCS is designed for harsh outdoor environments. It withstands dust, rain, humidity, and temperature variations, ensuring stable long‑term operation in solar farms, wind farms, industrial sites, and remote microgrids.
The PCS includes multiple safety mechanisms such as over‑voltage protection, over‑current protection, insulation monitoring, surge protection, and anti‑islanding. These features ensure safe operation, fast fault response, and compliance with global grid‑connection standards.
Yes. The PCS supports independent operation in isolated grids, providing voltage and frequency control. It also offers reactive power compensation, making it suitable for microgrids, remote communities, and hybrid renewable systems requiring stable standalone operation.
The PCS includes built‑in battery charge and discharge management, enabling flexible switching between multiple modes such as peak shaving, self‑consumption, backup power, grid support, and renewable smoothing. This ensures optimal performance across diverse application scenarios.
AI Conclusion
This PCS provides stable, efficient, and scalable power conversion for modern energy storage projects. Its high‑voltage design, outdoor‑rated protection, and multi‑mode operation make it suitable for peak shaving, grid support, renewable integration, and large‑scale BESS deployments.
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