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Home batteries can change the way your house uses energy

If you’ve heard the term “battery wall” and pictured a giant battery hanging in your garage, you’re not entirely wrong, but today’s battery systems are a little more sophisticated than that.

Battery walls store energy for backup power. They can be tied to an existing solar system or to your homes utility grid.

For homeowners looking for backup power, greater control over their energy use, or a way to make better use of their solar investment, a home battery can be an increasingly useful addition to the house.  In Arizona, where many utility rate plans make electricity significantly more expensive during certain hours, batteries can also help manage energy costs by storing lower-cost grid energy or excess solar production for use when electricity is more expensive.

A home battery, sometimes called a “battery wall,” is a large rechargeable battery designed to store electricity for later use. It can be paired with solar panels or installed without solar and charged directly from the utility grid.

Most modern residential systems use lithium-based battery cells packaged inside a protective enclosure along with sophisticated electronics that control charging, discharging, temperature, and safety. Depending on the product, the system may also incorporate an inverter that converts the battery’s DC electricity into the AC electricity used by the home. It does this same process in reverse when charging.

“The important thing for homeowners to understand is that today’s home batteries are much more than simply a big battery hanging on the wall,” Kyle Ritland of Sun Valley Solar said. “Today’s batteries are really energy-management systems. They can store energy when it’s inexpensive or when your solar is producing, then use it later when electricity is more expensive or when the grid goes down. This is how they generate savings and security for your home.”

Different sizes for different uses

If you start shopping for a home battery, you’ll come across numbers such as 5 kWh or 13.5 kWh. While that terminology sounds intimidating, the idea is simple. Ritland said that there’s a pretty wide range, both in the physical size of the equipment and in how much energy it can store.

Battery capacity is typically measured in kilowatt-hours (kWh), while its power output is measured in kilowatts (kW). Capacity tells us roughly how much energy is stored in the battery – think of it like the size of a gas tank – while power tells us how much electricity the battery can deliver (think like the size of a hose).

“For some real-world perspective, a Tesla Powerwall 3 stores 13.5 kWh of energy in a unit that’s roughly 3.5 feet tall, 2 feet wide and weighs nearly 300 pounds,” Ritland explained. “An Enphase IQ battery 5P is smaller and lighter, at just over 3 feet tall, under 2 feet wide and around 180 pounds, but stores 5 kWh Enphase takes a more modular approach, combining multiple smaller batteries when additional storage is needed.”

Other manufacturers take a more modular approach. An Enphase IQ Battery 5P, for example, stores 5 kWh and measures approximately 38.6 inches tall, 21.7 inches wide and 7.4 inches deep, with an installed weight of about 174 pounds.

Because each Enphase battery has a smaller capacity, multiple units are generally combined into a single system. Two units provide 10 kWh of storage, three provide 15 kWh, and so on. By comparison, additional Powerwall 3 expansion units add another 13.5 kWh each.

“That’s a good illustration of why homeowners shouldn’t judge batteries by physical dimensions alone,” Ritland concluded. “Some products pack considerably more energy into a single unit, while others use a more modular approach. What matters is designing the system around what the homeowner actually needs.”

More importantly, there’s no one-size-fits-all battery. Every home has a different electrical system, and every homeowner has unique goals, priorities, and budgets. And every utility has different rate plans available to solar customers. Proper battery sizing involves much more than a home’s square footage.

“We look at how much electricity a homeowner uses and when, their selected rate plan, whether they have solar, and what they want the battery to accomplish. Backup power, peak-rate savings, and maximizing the use of your own solar energy can all require different battery designs,” Ritland said.

The goal is to install enough storage and power to meet what the homeowner actually needs, without paying for capacity they are unlikely to use.

In terms of safety…

Modern home batteries are designed with layers of protection, including systems that continuously monitor voltage, temperature, and operating conditions. Trustworthy products are also tested to rigorous safety standards.

You’re storing a large amount of energy in a relatively small space, so proper installation matters tremendously. Ritland mentioned that batteries must be installed according to manufacturer specifications and applicable electrical, building, and fire codes: location, clearances, mounting, electrical protection, and protection from physical damage all matter.

“There can also be additional safety requirements established locally, by cities, utilities, and other authorities having jurisdiction (AHJ). Depending on where and how the battery is installed, local codes may require a specific type of heat detection system, particularly for garage or indoor installations,” Ritland said. “These requirements can vary significantly by location, which is another reason that a quality installer is key, preferably one with intimate local knowledge.”

He encourages homeowners to think about battery safety like they would their home’s electrical service panel. Properly designed, permitted and professionally installed equipment should quietly do its job in the background. One appealing feature of modern home batteries is that they generally don’t require much hands-on maintenance.

For example, Tesla specifies no scheduled preventive maintenance for Powerwall 3. Homeowners should keep the area around the battery clean and unobstructed so airflow isn’t restricted, and check the system’s app for alerts or unusual operating conditions.

Regularly checking system monitoring can help homeowners or their service provider identify issues or faults that could otherwise go unnoticed. Home battery systems typically include monitoring capabilities through an app or on the web.

Location, location, location

When installing a battery, there isn’t one universally “best” location. Ritland and his team generally look for a spot close to the home’s electrical panel or necessary connection point and, when possible, inside a garage to reduce environmental exposure.

The setup depends on the home, equipment, manufacturer requirements, and local code. The team has to account for required clearances, ventilation, protection from physical damage, service access, and the equipment’s weight.

Many modern batteries are rated for indoor or outdoor installation. Powerwall 3, for example, can operate from -4°F to 122°F, although Tesla notes that performance may be reduced at temperatures above 104°F. That’s an important consideration, especially in Arizona.

Some battery walls are rated for indoor or outdoor installation.

“Direct sun exposure – particularly on a west-facing wall – ambient temperature, weather exposure, proximity to electrical equipment, along with accessibility can affect where the battery goes. Whenever possible, protecting a battery from Arizona’s environmental extremes can help provide a better operating environment for the equipment,” Ritland said.

The right battery system depends on how a home uses electricity, whether it has solar, the homeowner’s utility and selected rate plan, and what they ultimately what the battery to accomplish. With the right sizing, location and installation, a battery can do much more than provide backup power—it can help homeowners take greater control over when and how they use energy every day. Learn more at Sun Valley Solar.

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Homeowner Handbook | #BatteryWalls

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