The ACDB 2 In 1 Out (90-90 kW) is an AC Distribution Box designed for solar power systems, specifically configured to manage the output from two 90 kW inverters. This unit provides essential protection and efficient power distribution to the utility grid or load.
Key Features:
- Configuration: Supports 2 input connections from two 90 kW inverters and provides 1 output connection.
- Voltage Rating: Typically rated for up to 415V AC, suitable for large-scale solar installations.
- Current Rating: Designed to handle a rated current of up to 200A, accommodating significant power loads.
- Material: Constructed from durable materials such as CRCA (Cold Rolled Close Annealed) steel with a corrosion-resistant finish.
Protection Features:
- MCCB: Equipped with a Molded Case Circuit Breaker (MCCB) for reliable overcurrent protection, safeguarding the system from electrical faults.
- SPD: Integrated Surge Protective Devices (SPDs) protect against voltage spikes and transients, enhancing overall system reliability.
Specifications:
- Input/Output: 2 In (from two 90 kW inverters), 1 Out (to grid/load).
- Enclosure Dimensions: Typically around 1000mm x 800mm x 300mm (exact dimensions may vary).
- IP Rating: Generally IP54 rated, ensuring protection against dust and water ingress.
Benefits:
- Enhanced Safety: Protects against overcurrent and voltage surges, preventing damage to inverters and connected devices.
- User-Friendly Design: Easy installation and maintenance due to clear labeling and organized layout.
- Durable Construction: Designed for outdoor use with weatherproof features that ensure reliable performance in harsh conditions.
Applications:
The ACDB 2 In 1 Out (90-90 kW) is ideal for:
- Medium to large-scale solar power plants requiring efficient management of inverter outputs.
- Commercial solar installations where monitoring and protection are critical for operational integrity.
This distribution box is an essential component for ensuring the safe operation of high-capacity solar energy systems, providing peace of mind while optimizing performance across multiple inverter connections.