What Is the 120 Percent Rule and Will It Affect My Solar Panel Installation? - Solar Optimum (2024)

All solar power installations must adhere to the National Electrical Code (NEC), a benchmark for electrical wiring installations. One NEC regulation you must remember when setting up your solar power system is the 120% rule solar. This rule dictates that the sum amperage from the grid electricity and solar power should not surpass 120% of your main service panel’s capacity. Non-compliance could lead to issues like circuit overload or even a fire hazard, making it important to understand how the rule works and when it applies.

How To Compute the 120% Rule

At the center of the MSP is a busbar made of metal components that can melt on overloading, a potential fire hazard. In addition, a circuit breaker trips when power exceeds the rated capacity.

However, the MSP capacity becomes overstretched when a solar system injects additional current. Therefore, the 120% rule is a welcome code covering the additional risk.

Here’s how the 120% rule comes into play.

The NEC, 120% rule states that solar PV systems should be installed in electrical boxes up to 120% of the busbar’s label rating. For example, if the home’s electrical meter rating is 175 amps, the rule allows an additional 20%, an equivalent of 35 amps from the solar system.

175 *120 = 210 amps

210-175= 35 amps

At 210 amps, the system is within the acceptable limit. However, is 35 amps sufficient for the typical solar PV installations and battery storage? Keep in mind that a standard PV installation and battery require an average of 60-80 amps.

So, will it limit the solar PV capacity to 35 amps to remain compliant with the 120% rule?

Let’s explore how to expand the system’s capacity to absorb the additional solar current safely.

How To Navigate the 120% Rule

If you exceed the 120% rule, the electric panel receives more energy beyond its capacity, exposing life and property to fire risks. Remember, you need to observe the system capacity and conform to the NEC code.

Some of the viable alternatives include:

Downsizing the Main Service Panel For Solar

If the expected solar power is 60 amps, vis-a-vis an allowable limit of 35 amps, the main breaker needs an additional capacity of 25 amps.

60-35= 25 amps.

In such a scenario, your service provider can remove the 175 amp main breaker and replace it with a 150 amp unit. The new main breaker will seamlessly integrate the extra 60 amp without compromising the existing power load.

Alternatives of Derating Main Breaker

In some cases, it’s not practical to downsize the breaker. For instance, when the electric system capacity is too large.

In this case, you can:

  • Upgrade the capacity of the current MSP
  • Create a line-side connection, which is a link between the meter and service panel
  • Introduce a solar-ready service panel
  • Feed the existing main breaker into a sub-panel with a higher busbar ampere rating

When Does the 120% Rule Apply?

The 120% rule primarily applies whenever you want to supplement grid power with an alternative energy source like solar. The NEC standard ensures that extra solar power doesn’t overload the main supply panel, which is the first line of defense against power surges.

Specifically, the 120% rule solar applies in the following situations:

1. When Designing a PV System

The 120% rule comes in handy when designing a new photovoltaic system for your residential or commercial properties. In such a situation, the NEC rule helps you select a main service panel to serve your solar and grid power.

With the right size of a main supply panel, you will prevent overloading, one of the hitches that cause electrical fires. Besides accidental fires, the right-sized supply panel will help prevent system failures, costly repairs and even property damage. The 120% rule won’t just dictate the capacity of the main supply panel you need, but can also dictate the size of the photovoltaic system to install.

2. When Doing Load-Side Solar Interconnections

The 120% rule can also come into play when doing load side solar interconnections. Load side solar interconnections involve wiring your solar power system to an existing electrical panel.

In such a situation, the 120% rule solar ensures that the combined amperage from the grid electricity and solar panels does not overload the existing main service panel. That way, you reduce the chances of electrical malfunctions.

3. When Doing a Line Side Tap

NEC’s 120% rule also applies when doing a line side tap. A line side tap connects your solar power systems directly to an incoming power line before entering the main service panel.

The connection allows you to integrate solar power into existing electrical infrastructure without modifying anything. Again, in this scenario, the 120% rule ensures that the combined amperage from the grid and solar power does not exceed what the main service panel can handle.

Get Your Solar Installation Right with Your Local Experts

A good solar power setup should comply with NEC standards, including the 120% rule solar. The compliance prevents mishaps like overloading the main supply panel, an issue that can lead to electrical fires.

At Solar Optimum, we understand all local installation codes and industry standards. We will help you set up a system that checks all the right boxes. Contact us to work with one of our energy experts to design a solar system that meets your home’s unique energy needs.

What Is the 120 Percent Rule and Will It Affect My Solar Panel Installation? - Solar Optimum (2024)

FAQs

What Is the 120 Percent Rule and Will It Affect My Solar Panel Installation? - Solar Optimum? ›

This rule dictates that the sum amperage from the grid electricity and solar power should not surpass 120% of your main service panel's capacity. Non-compliance could lead to issues like circuit overload or even a fire hazard, making it important to understand how the rule works and when it applies.

What is the 120% rule for solar panels? ›

The rule specifies that the sum of the main breaker rating and the solar system's breaker rating must not exceed 120% of the busbar's rating. This ensures that even when the solar system is producing maximum power, there is a sufficient safety margin within the panel's capacity.

Is there a limit to how much solar I can install? ›

A connection limit restricts the size of the inverter that can be connected to the grid. If the connection limit is, for example, 10 kW per phase, you could connect a 10 kW inverter if your grid connection is single-phase. If you have a three-phase connection you could install a three-phase inverter up to 30 kW.

What is the optimum pitch for solar panels? ›

For most homeowners, the ideal angle for a solar panel installation is close to or equal to the latitude of your home. This angle is typically between 30 degrees and 45 degrees.

What factors affect your optimal solar panel angle? ›

The optimum solar panel angle depends on your geographical location and the time of year. For example, if you live in the northern hemisphere, your panels should face south to receive maximum sunlight.

What is the ideal number of solar panels? ›

Based on averages, you will find that: A one-bedroom house needs six solar panels (2.1kW) A three-bedroom house requires 10 solar panels (3.5kW)

What is the rule of thumb for solar panels? ›

Solar systems are rated by their power output in kilowatts (kW). As a rule of thumb, each kilowatt of solar array takes about 100 square feet and produces about 1,100 kWh per year. Systems rated between 5 and 10 kW are generally sufficient to meet the power needs of most homes.

Can you put too many solar panels on your house? ›

Selecting the correct number of solar panels will impact your energy production and long-term savings. Installing too few panels will underpower your home, while too many can result in an overpriced system.

Can I install more solar panels than I need? ›

Adding between five and ten panels is usually enough to cover increased electricity usage, but it ultimately depends on how your usage has changed. Do not add more solar panels to your system if your roof is old, it is a leased system, or if you do not have enough roof space for extra panels.

What is the maximum number of solar panels I can have on my roof? ›

So, while there's no hard limit on rooftop solar installations, practical considerations and regulations should guide your decision. Most typical three-bedroom or four-bedroom homes usually have systems that range from 4 kilowatts peak (kWp) to 6kWp.

Is it better to tilt solar panels or flat? ›

Angling solar panels is generally better than having them flat. Tilted panels optimize sunlight capture, especially if adjusted to your geographic latitude, increasing efficiency. Flat panels can accumulate debris and water, reducing performance and requiring more maintenance.

Is east or west better for solar panels? ›

West-facing panels produce more electricity in the late afternoon and early evening—which is also the time of day when homes tend to use the most electricity.

How high should solar panels be off the ground? ›

You typically won't find panels literally on the ground, but rather tilted at an angle to face the sun and at least a few feet above the surface to allow for air to flow around them and water underneath.

What is the optimum angle for solar panels calculator? ›

The optimum tilt angle is calculated by adding 15 degrees to your latitude during winter, and subtracting 15 degrees from your latitude during summer. For instance, if your latitude is 34°, the optimum tilt angle for your solar panels during winter will be 34 + 15 = 49°.

How to determine the optimum angle for solar modules to be installed? ›

As a rule of thumb, the optimal solar panel angle is the latitude of where your home is located. For example, Miami, Florida is at 25.7617° N so solar panels on homes there should be installed at around a 25° angle. In comparison, Portland, Oregon is at 45.5152° N so panels there should be angled to around 45°.

What is the general rule for determining the angle for a solar panel? ›

A general rule for optimal annual energy production is to set the solar panel tilt angle equal to the geographical latitude. For example, if the location of the solar array is at 50o latitude, the optimal tilt angle is also 50o.

How many solar panels does it take to produce 120 volts? ›

If you take a solar panel generating a voltage of 24 V then you will require 5 solar panels in series to generate 120 Volts.

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