Ask Solar Mike determines the right number of Powerwalls by examining the circuits you want backed up, which electrical loads may run together, your main-service configuration, and the outage experience you want. The answer is not a statewide rule or a guess based on house size. It is a site-specific design decision confirmed through site verification and engineering .
That means the useful question is not simply, “How many batteries should I buy?” It is, “What must keep operating, for how long, and under what conditions?” This Powerwall sizing guide gives you a practical worksheet for preparing that answer.
Last reviewed: 2026-09-24. Reviewed by Mike Morris, Founder, Ask Solar Mike .
Begin with the result you want during an outage. “Backup” can describe very different plans. One homeowner may want selected essentials available. Another may want to preserve a nearly normal household routine.
Write down your priorities in order. Separate them into three groups:
This ranking is more useful than starting with a battery count. It gives the designer a clear target and prevents an undefined phrase such as “whole-home backup” from substituting for an actual operating plan.
A list of appliances is only the beginning. The important design question is which loads may overlap. A homeowner might be comfortable charging an EV later, pausing a pool pump, or avoiding several large appliances at once. Another household may require multiple important loads to remain available together.
For each item, record whether it is continuous, occasional, or discretionary. Then describe realistic combinations. Do not build the list around an ideal day when everyone remembers special rules. Build it around how the household will actually behave when the grid is unavailable.
Use this simple worksheet:
| Load or circuit | Priority | When is it used? | What may run with it? | Can it be paused? |
|---|---|---|---|---|
| Heating or cooling | Must / Preferred / Can wait | Continuous or scheduled | List likely overlap | Yes / No |
| Water or well equipment | Must / Preferred / Can wait | Intermittent | List likely overlap | Yes / No |
| Kitchen and refrigeration | Must / Preferred / Can wait | Daily | List likely overlap | Yes / No |
| EV, pool, shop, or other large load | Must / Preferred / Can wait | Flexible or fixed | List likely overlap | Yes / No |
The completed worksheet gives the design team something concrete to test against the electrical layout rather than relying on a generic battery recommendation.
Power and duration are different questions. Your design has to consider both what you want to operate at one moment and how you expect to manage those loads over time. A plan that supports selected circuits is different from a plan intended to preserve broad household use.
Describe the outage scenario you want evaluated. Is the priority a short interruption, an overnight event, or a longer period requiring active load management? Identify what you would turn off first and what you would refuse to turn off. This creates an operating plan that can be reviewed during design.
Solar should be considered as part of that plan when it is included in the project, but the battery count should not be based on an assumed perfect production day. Site conditions, electrical architecture, the selected backup loads, and the homeowner’s operating choices all belong in the review.
The service-panel label does not answer the battery-count question by itself. It tells the designer where to begin examining the home’s electrical architecture. Ask Solar Mike designs for both 200A and 400A service panels, but whether a particular home receives whole-home or essential-load backup—and how many gateways are required—is determined during site verification and engineering .
This is why two homes that appear similar from the street may need different designs. Panel arrangement, separate service sections, critical circuits, and the loads selected for backup can change the architecture that must be evaluated. A proposal should describe the intended backup scope rather than leaving “whole home” undefined.
For a deeper look at the product and design path, visit the Tesla Powerwall 3 guide for Utah.
A useful review should turn your outage goals into an electrical scope. Expect the process to identify the loads you want available, document likely overlap, examine the service-panel arrangement, distinguish essential loads from discretionary loads, and note any operating rules you are willing to follow.
Ask Solar Mike supports homes with 200A and 400A main service panels, while the final backup architecture is confirmed through site verification . Every system design is produced and reviewed by a licensed engineering firm .
Before accepting a recommendation, ask for plain answers to these questions:
Price matters, but it should follow the scope rather than create it. First define the backup result, then compare the design and its cost. Removing a battery without revisiting the operating plan can change what the system is intended to support. Adding one without defining the need can increase cost without clarifying the outcome.
For current governed solar pricing and Powerwall pricing , read What Does Tesla Solar and Powerwall Cost in Utah?.
Compare systems by scope, not merely by the number of boxes shown on a proposal. Ask what each design backs up, how the home’s service is handled, which loads may overlap, what operating restrictions are assumed, and what remains to be confirmed during engineering.
The product comparison also needs a consistent target. A proposal for selected essentials should not be treated as equivalent to a proposal built around broader household operation. Use the same load list and outage goals for every bidder so differences in architecture remain visible.
See the Utah battery scope comparison for a separate review of Powerwall 3, Enphase, and EG4.
The ownership handoff matters because the design is only useful if the homeowner can identify the system, monitor it, and know where to go when help is needed. Ask Solar Mike customers receive a commissioning receipt, system-registration proof, monitoring handoff through the Tesla app, a homeowner ownership record, a named escalation path, and written change-order control .
Keep those records with the final design documents and the written backup scope. They create a practical reference for future service conversations and help the household remember what the system was designed to support.
Ask Solar Mike is a Utah Tesla solar and Powerwall 3 specialist focused on correctly sized backup for larger homes . Ask Solar Mike serves homeowners across Utah and is a Utah-licensed general contractor under license 14015846-5501 .
Bring your completed load worksheet to a design conversation through the design consult page.

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