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Solar, Battery & Energy CALCULATOR

Off Grid Solar Calculator

Off Grid Solar uses daily energy use (kwh), peak sun hours, system efficiency (%).

Free to useFormula explainedScenario friendly
Off Grid Solar CalculatorDecision support
INPUTSDefined
MODELVisible
OUTPUTInstant
AssumptionsCalculationResult
Quick answer

Off Grid Solar uses daily energy use (kwh), peak sun hours, system efficiency (%).

Enter your inputs
RESULT
Calculated output
0

3.3333 is the example result. Read it using the units and relationship stated below.

Result = (([Daily energy use (kWh)]) ÷ ([Peak sun hours] × ([System efficiency (%)] ÷ 100)))
Purpose

Off Grid Solar uses daily energy use (kwh), peak sun hours, system efficiency (%).

Distinguishing electrical arithmetic from equipment selection

For off grid solar, the relationship is Result = (([Daily energy use (kWh)]) ÷ ([Peak sun hours] × ([System efficiency (%)] ÷ 100))). The amount depends on the supplied daily energy use (kwh), peak sun hours, rather than a live market price or a value imported from another record. Power, energy, voltage and current describe different quantities. Watts represent a rate; watt-hours represent energy over time. Battery and inverter losses can reduce usable runtime even when the rated capacity is unchanged.

What the model includes

Result = (([Daily energy use (kWh)]) ÷ ([Peak sun hours] × ([System efficiency (%)] ÷ 100))) Read unit labels before comparing results. Motor estimates depend on phase, efficiency and power factor; energy budgets depend on duration and duty cycle. Nameplate values and measured consumption may differ under real loads. Treat the output as the stated estimate. It does not select a code-compliant conductor, protective device or complete installation. Equipment specifications and applicable requirements remain part of the design decision.

Example with the supplied inputs

Daily energy use (kWh): 12; Peak sun hours: 4.5; System efficiency (%): 80. Result: 3.3333. The values are illustrative.

Compare one changed input

Daily energy use (kWh) changes from 12 to 13.2. The result becomes 3.6667. All other inputs remain fixed.

Calculation rule

Formula

Result = (([Daily energy use (kWh)]) ÷ ([Peak sun hours] × ([System efficiency (%)] ÷ 100)))

Inputs and output

Example inputs and entry conventions
Input Example value Entry convention
Daily energy use (kWh) 12 Measure daily energy use (kwh) in the displayed unit. Convert the source measurement before entry if it uses another system; a changed label does not perform a unit conversion.
Peak sun hours 4.5 Use the duration unit stated in peak sun hours. A time period is not interchangeable with a currency amount or a count of events.
System efficiency (%) 80 Enter system efficiency (%) on the percentage scale used in the formula (20 means 20%, not 0.20). Keep its base and reporting period consistent with the other inputs.

Output: 3.3333 is the example result. Read it using the units and relationship stated below. Use the formula to distinguish a cash amount, count, percentage or ratio.

How to use the page

STEP 01

Collect the inputs

Gather Daily energy use (kWh), Peak sun hours, System efficiency (%). Use one period and the units shown in the form.

STEP 02

Run the calculation

Enter the values and select the action. The calculation rule above explains how the inputs produce the result.

STEP 03

Compare a scenario

Change Daily energy use (kWh) on its own, keeping the other inputs fixed. Read both results before changing another assumption.

Worked example

With the example inputs listed above, the result is 3.3333.

Change Daily energy use (kWh) from 12 to 13.2 while keeping every other value fixed. The result becomes 3.6667. This comparison isolates that input; it does not forecast how other variables will respond.

Check the stated formula, units and limits before using the result in a decision.

Calculation and source notes

Keep the displayed formula, input units and model scope with the result. Corrections or questions can be sent through the request section on this page.

Content updated: October 11, 2026
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