The Philippines experiences approximately 1.15 million lightning strikes per year, with Mindanao and the Visayas among the most lightning-affected regions in Asia. A solar system without proper grounding is a lightning rod for disaster.
Yet grounding is one of the most commonly skimped components in Philippine solar installations — usually because it's invisible, clients don't ask about it, and it saves the installer ₱3,000-₱8,000 in materials and labor.
Connects all metal enclosures, mounting rails, panel frames, inverter chassis, and conduit to a common ground bus, which connects to earth. Purpose: if a fault occurs (e.g., a live wire touches the metal frame), current flows to ground instead of through a person touching the frame.
A dedicated low-impedance path from Surge Protection Devices (SPDs) to earth, designed to conduct the enormous surge current from a nearby lightning strike safely to ground before it reaches your inverter and appliances.
Per PEC 2017 (aligned with NEC Article 250), acceptable grounding electrodes include:
| System/Inverter Size | Grounding Conductor | Material |
|---|---|---|
| Up to 5 kW | 5.5 mm² (10 AWG) | Bare or green insulated copper |
| 5–10 kW | 8 mm² (8 AWG) | Bare or green insulated copper |
| 10–20 kW | 14 mm² (6 AWG) | Bare or green insulated copper |
A grounding system is only effective if it achieves low earth resistance. The PEC and IEEE 142 recommend:
In rocky or sandy soil (common in coastal and mountain provinces), achieving low resistance is harder. Use ground enhancement material (GEM) backfill or multiple ground rods in parallel.
"Can I see the grounding conductor running from the mounting rails to the ground rod, and can you measure the ground resistance for me?"
A qualified installer will have a ground resistance tester and should have no problem showing you the result. If they can't — the grounding may not have been done properly.
Engr. Jason Morales — Founder, SolarEnergyPH