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Different Types of Electric Panels

Electric panels are a critical part of electrical systems, facilitating the safe and efficient distribution of power to various loads. Each type of panel is designed to meet specific requirements, whether for residential, commercial, or industrial applications. Understanding the different types of electric panels helps in selecting the right panel for safety, functionality, and efficiency.

    Main Distribution Panel (MDP)

  • Purpose : Serves as the central hub for electrical distribution in a facility.

  • Usage : Found in commercial and industrial buildings, factories, and residential complexes.

  • Features :-

    Distributes power to subpanels and branch circuits.

    Equipped with main circuit breakers and surge protection.

    Ensures safe energy distribution and overload protection.

    2. Sub Distribution Panel (SDP)

  • Purpose :Extends power from the main panel to different sections of a building.

  • Usage : Used in large buildings, apartments, or factories where power needs to be distributed across multiple locations.

  • Features :-

    Receives power from the MDP and distributes it further.

    Equipped with individual circuit breakers for safety.

    Reduces electrical load on the main panel.

    3. Motor Control Center (MCC Panel)

  • Purpose : Controls and manages electric motors efficiently

  • Usage : Found in industries with heavy motor operations like manufacturing, HVAC systems, and water treatment plants.

  • Features :-

    Houses motor starters, overload relays, and circuit breakers.

    Allows centralized motor control and protection.

    Enhances efficiency with automation and remote monitoring options.

    4. Power Control Center (PCC Panel)

  • Purpose : Controls and manages electrical power distribution.

  • Usage : Used in industries such as steel plants, cement plants, and refineries.

  • Features :-

    Controls the main power distribution.

    Equipped with high-capacity circuit breakers for protection.

    Enhances electrical safety and fault tolerance.

    5. Automatic Transfer Switch (ATS) Panel

  • Purpose : Automatically switches to a backup power source in case of main power failure.

  • Usage : Used in hospitals, data centers, telecom industries, and buildings with standby generators.

  • Features :-

    Ensures seamless switching between the main and backup power supply.

    Helps maintain uninterrupted power supply during outages.

    Increases electrical reliability for critical operations.

    6. Capacitor Panel (Power Factor Correction Panel)

  • Purpose : Improves power factor and reduces electricity losses.

  • Usage : Found in industries with high inductive loads such as steel mills, paper mills, and foundries.

  • Features :-

    Reduces reactive power loss.

    Helps in reducing electricity bills by avoiding penalties.

    Improves the efficiency of electrical systems.

    7. Lighting Distribution Board (LDB)

  • Purpose : Controls and distributes power to lighting circuits in a facility.

  • Usage : Used in homes, commercial buildings, malls, and parking areas.

  • Features :-

    Ensures separate control of lighting systems.

    Equipped with individual MCBs (Miniature Circuit Breakers) for protection.

    Helps in energy-efficient lighting control.

    8. AC Distribution Box (ACDB) and DC Distribution Box (DCDB)

  • Purpose : Used in solar power plants for proper power distribution.

  • Usage : ACDB distributes AC power, while DCDB distributes DC power in solar panel systems.

  • Features :-

    ACDB protects solar inverters from AC fluctuations.

    DCDB safeguards against overvoltage and reverse currents in the DC system.

    Ensures the safety and reliability of solar power plants.

Conclusion

Different types of electric panels play crucial roles in electrical systems, ensuring power distribution, safety, and efficiency across various applications. Whether for residential, commercial, or industrial use, choosing the right type of panel enhances system reliability, prevents electrical hazards, and improves power management.

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