With homes suddenly the center of US business activity due to stay at home orders, interest is heightening in residential nanogrids. So the timing is fortuitous for a new smart panel announced today that promises to up the abilities of nanogrids and home on-site energy.
Span, a San Francisco-based company led by executives and lead engineers from Tesla, Amazon Echo, and Sunrun, recently raised $10.2 million and has begun commercializing the smart circuit panel.
The panel creates a single point of control for generation, energy storage and devices in the home.
When the power goes out, Span automatically islands the house and allows the homeowner, via a cell phone, to prioritize energy use for appliances and connected devices, so that the most important are energized first.
This extends the time that the home can use on-site energy during an outage; battery power isn’t wasted on unimportant functions.
“What we have done is provided the ability to not only backup your entire home, but to actually configure what circuits in your home are powered during an outage in real time,” said CEO Arch Rao, who previously led the product team for Tesla’s Powerwall. “So you, through the Span app, receive real time feedback on how many hours and minutes of backup you have left.”
Very different from today’s traditional electrical panels, which provide only passive current protection, the smart panel can monitor and control 32 circuits, said Rao.
The panel also simplifies installation of solar, energy storage and electric vehicle charging — common elements of home nanogrids. Span speeds installation by up to 50%, which Rao expects to translate into 10 to 15% cost savings for solar installations.
“In order to install a solar battery system in your home today, most installers have to go through a very laborious process of customized design and installation,” said Rao in an interview with Microgrid Knowledge. “By making the panel more intelligent and more digital, we’re both able to reduce the cost and complexity of solar installation, or solar storage installation, while providing customers a lot more functionality.”
Span expects to begin deploying the systems, which are UL certified, this month. The company will initially focus heavily on California in anticipation of a repeat of last year’s power outages as utilities de-energize power lines to avoid sparking wildfires.
The panel is being offered through partnerships with solar and storage installers, as well as LG Chem. Costs vary depending on how the installer configures its package, but the technology alone, if purchased directly at retail by customers, would cost under $5,000, he said.
“We already have a number of early access customers signed up with us, and we have a number of installation partners in the Bay Area signed up with us,” he said.
The idea for the smart panel emerged out of Rao’s work for Tesla, where he was head of products for the energy business until about two years ago.
During his five years at Tesla, he wore a few different hats, leading early R&D efforts on the Powerwall, and working on Tesla’s solar product line and the company’s battery effort, as it expanded into international markets.
Rao said a combination of factors led him to see a need for the smart panel: the growing size of solar systems, increased installation of energy storage and solar plus storage, and a rise in home electrification and electric vehicle use.
“The vast majority of homeowners have electrical panels that were put in 20, 30, maybe 50 years ago, right? Those are largely inadequate when it comes to being able to handle just the power levels of these new appliances being added to your home,” he said. “So if your electrical panel is being upgraded or replaced anyway, I saw that as an opportunity for us to introduce a more capable 21st Century digital electrical panel.”
Investors to date include ArcTern Ventures, Capricorn Investment Group, Incite Ventures, Wireframe Ventures, Congruent Ventures, Ulu Ventures, Energy Foundry, Hardware Club, 1/0 Capital, and Wells Fargo Strategic Capital.
This article was originally published on Microgrid Knowledge. Republished here with permission.
This post was published on May 13, 2020 11:22 am
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