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* Solar Panel 1

Solar Panel

What it is: A solar panel converts sunlight into electrical energy using photovoltaic cells.
How it works: When sunlight falls on the photovoltaic cells, they generate DC electricity. This electricity is then sent to the solar inverter for further conversion.
Key Specifications: Power output (Wp), cell type, efficiency, operating voltage/current, dimensions, weight and weather resistance.

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inverter

Solar Inverter

What it is: A solar inverter converts the DC electricity generated by solar panels into usable AC electricity.
How it works: It receives DC power from the solar panels and converts it into AC power for electrical appliances or grid supply.
Key Specifications: Rated power, input/output voltage, efficiency, MPPT range, protection features and monitoring options

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battery1

Solar Battery

What it is: A solar battery stores electricity generated by the solar system for later use.
How it works: During solar generation, excess energy is stored in the battery. When solar power is unavailable or insufficient, the stored energy is supplied to the connected load.
Key Specifications: Battery type, voltage, capacity (Ah/kWh), cycle life, depth of discharge, charging time and BMS.

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DCDB - I

DCDB

What it is: A DC Distribution Box protects the DC side of a solar power system.
How it works: DC power from the solar panels passes through the DCDB before reaching the inverter. Its protective devices help isolate the circuit and protect against faults and surges.
Key Specifications: DC voltage/current rating, number of inputs/outputs, DC isolator, fuse/MCB, SPD and IP rating.

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metal

Solar Mounting Structure

What it is: A mounting structure provides a strong and stable support for installing solar panels.
How it works: Panels are fixed to the structure using rails, clamps and other mounting accessories. The structure keeps the panels at the required position and angle.
Key Specifications: Material, panel capacity, mounting type, tilt angle, corrosion resistance and structural strength.

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DCDB - 3

ACDB

What it is: An AC Distribution Box provides protection and distribution on the AC side of the solar system.
How it works: AC power from the inverter enters the ACDB, where protective devices control and protect the supply before it reaches the load or grid.
Key Specifications: AC voltage/current rating, MCB/MCCB, AC SPD, isolator, phase configuration and IP rating.

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meter1

Net Meter

What it is: A net meter measures electricity imported from and exported to the electrical grid.
How it works: It records electricity consumed from the grid and electricity sent back to the grid by the solar system.
Key Specifications: Bidirectional measurement, voltage, current rating, accuracy class, communication features and single/three-phase compatibility.

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meter

Generation Meter

What it is: A generation meter measures the total electricity produced by the solar system.
How it works: It continuously measures the electrical energy generated by the solar plant and records the total generation in kWh.
Key Specifications: Voltage/current rating, energy measurement in kWh, accuracy, display and communication options.

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Protection Devices - III

AC MCB

What it is: An AC Miniature Circuit Breaker protects AC circuits from overload and short circuits.
How it works: It automatically disconnects the circuit when excessive current is detected.
Key Specifications: AC voltage, current rating, poles, breaking capacity and trip curve.

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Cable - I

Solar DC Cable

What it is: A solar DC cable carries DC electricity from solar panels to the inverter or DC protection equipment.
How it works: It safely transfers the electrical current generated by PV panels while withstanding outdoor environmental conditions.
Key Specifications: Cable size, voltage rating, conductor material, insulation, UV resistance and temperature range.

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cable - II

Solar AC Cable

What it is: A solar AC cable carries AC electricity from the inverter to the ACDB, electrical load or grid.
How it works: It transfers converted AC power while providing electrical insulation and mechanical protection.
Key Specifications: Conductor material, cross-sectional area, voltage rating, insulation type and current capacity.

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Cable - III

MC4 Connector

What it is: An MC4 connector provides a secure connection between solar panels and PV cables.
How it works: Male and female connectors lock together to create a reliable electrical connection while protecting the joint from moisture and outdoor conditions.
Key Specifications: Voltage/current rating, connector type, cable size compatibility, IP rating and operating temperature.

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Earthing - I

Lightning Arrester

What it is: A lightning arrester helps protect electrical and solar equipment from lightning-related surges.
How it works: It provides a low-resistance path for high surge currents to flow safely toward the earthing system.
Key Specifications: Rated voltage, discharge current, protection level, response characteristics and earthing arrangement.

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Earthing - II

Earthing Electrode

What it is: A lightning arrester helps protect electrical and solar equipment from lightning-related surges.
How it works: It provides a low-resistance path for high surge currents to flow safely toward the earthing system.
Key Specifications: Rated voltage, discharge current, protection level, response characteristics and earthing arrangement.

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Earthing - III

Earthing Strip

What it is: An earthing electrode creates a conductive connection between an electrical system and the ground.
How it works: It is installed in the ground and provides a low-resistance path for fault current to dissipate safely into the earth.
Key Specifications: Material, length, diameter, corrosion resistance and expected earth resistance.

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