Guangzhou Hengmeida Automation Technology Co., Ltd

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Photovoltaic Inverter PLC Control Electrical Cabinet Metal Energy Storage BMS Cabinet

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Guangzhou Hengmeida Automation Technology Co., Ltd
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City:guangzhou
Country/Region:china
Contact Person:MrsLueng
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Photovoltaic Inverter PLC Control Electrical Cabinet Metal Energy Storage BMS Cabinet

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Model Number :JL841658626
Certification :ISO9001,CE
Place of Origin :China
MOQ :5
Payment Terms :T/T,Western Union
Delivery Time :15 days
Packaging Details :wooden case packaging
Usage :Electrical Cabinet,PLC control panel
Thickness :1.5mm or more
Accessories :Hinges, Handles, Screws
Type :Cabinet
Features :Durable, Waterproof, Fireproof
Material :Metal
Structure :Single Door/ 2 doors
Shape :Rectangular
Installation :Wall Mounted,free standing
Surface Treatment :Powder Coating
Lock Type :Key Lock
Size :Customizable
Color :Grey or others
Price :USD28-68889
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Photovoltaic Inverter PLC Control Cabinet Energy Storage BMS



Product Describe:

  • Solar Power Plants
    • Coordinating multiple inverters in utility-scale or commercial solar farms to synchronize DC-to-AC conversion, balance load distribution, and maximize energy output based on sunlight intensity.
    • Enabling remote monitoring of inverter performance (e.g., voltage, current, efficiency) and triggering protective actions (e.g., shutdowns) during faults like overvoltage or short circuits.
  • Industrial & Commercial Rooftop PV Systems
    • Integrating with building energy management systems (BEMS) to control inverter operation, prioritizing self-consumption of solar power and managing grid feed-in when excess energy is generated.
    • Adjusting inverter settings dynamically to match fluctuating energy demands in factories, offices, or shopping malls.
  • Off-Grid Solar Installations
    • Controlling inverter interactions with energy storage systems (e.g., batteries) to regulate power flow, ensuring stable supply for remote locations (e.g., rural areas, telecom towers) where grid access is limited.
  • Smart Grid Integration
    • Facilitating communication between inverters and grid management systems to support functions like reactive power compensation, frequency regulation, and compliance with grid codes (e.g., anti-islanding protection).


Specification:

Type Dimensions (Width × Height × Depth, unit: mm) Notes
Standard Sizes 600–1200 × 1000–2000 × 400–800 Suitable for small to medium-scale PV systems (5kW–50kW), such as rooftop installations or mini solar farms. Aligns with standard manufacturing specs for easy inverter integration.
Custom Sizes Large-scale systems: 1500+ × 2200+ × 400–800 (for 100kW+ inverters) Tailored to inverter power (high-capacity models), site constraints (limited space), or environmental needs (weatherproofing, cooling).
Space-constrained areas: 500 × 800 × 300 (compact design)
Outdoor use: Custom width/height × 900+ (with cooling systems)


Material:
Aluminum alloy, stainless steel, carbon steel


Suggestion:

1. Enhanced Protection: Use weatherproof enclosures (IP65+) for outdoor installations to resist dust, rain, and extreme temperatures. For coastal areas, opt for anti-corrosive materials (e.g., 316 stainless steel) to combat salt spray.
2. Thermal Management: Integrate active cooling systems (fans, heat exchangers) or passive heat sinks, especially for high-power inverters (100kW+), to maintain optimal operating temperatures (typically 0–40°C).
3. Grid Compatibility: Include modules for grid code compliance (e.g., anti-islanding protection, reactive power control) and communication interfaces (Ethernet, 4G) to sync with smart grid systems.
4. Scalability: Reserve slots for additional inverters or energy storage system (ESS) integration, allowing easy expansion of solar farms.
5. Remote Monitoring: Add HMI with data logging and cloud connectivity for real-time tracking of inverter performance, fault alerts, and energy output.

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