Prusa Research Original Prusa CORE One Print Cost Calculator
Pre-calibrated digital manufacturing cost model for the Prusa Research Original Prusa CORE One (FDM). Accurately estimates power draw (300W), machine depreciation ($0.200/hr), material usage, and commercial quoting margins.
Commercial Quote & Margin Engine
Calculate retail client selling price and estimated profit.
Prusa Research Original Prusa CORE One Hardware Specifications
Understanding Prusa Research Original Prusa CORE One Running Costs
How FDM affects the numbers
FDM machines draw power in bursts rather than continuously. The hotend and heated bed cycle on and off to hold temperature, so the average figure used here sits well below the peak nameplate rating — the bed is usually the single largest consumer, which is why enclosed and large-bed machines cost noticeably more per hour to run.
Power draw: 300 W
Drawing 250 W or more puts this machine in heated-chamber or large-bed territory, where electricity becomes a real cost. Long prints on high-temperature materials push consumption higher still, since the bed and chamber work hardest maintaining temperature against ambient losses. If you run a farm, this is the tier where circuit capacity starts to constrain how many machines share a breaker.
What dominates the hourly rate
Depreciation is the larger share of this machine’s hourly rate, so the assumed lifespan drives your cost more than your electricity tariff does. If you service the machine well and expect to exceed the default hours, raise the lifespan figure in the calculator — it will lower your quoted cost more than any energy saving could.
Quoting at this price point
At this price point depreciation clearly dominates the hourly rate, which changes how you should think about utilization. An idle prosumer machine is expensive; a busy one amortizes quickly. The lifespan assumption matters more than the electricity rate here, so revisit it if you service the machine well and expect to exceed the default hours.
Build volume: 14,850 cm³
A standard desktop envelope handles the large majority of hobby and small-commercial work without splitting parts. For quoting purposes this is the most predictable size class: heat-up time, energy draw, and failure risk all scale roughly with print duration rather than part geometry.
Prusa Research Original Prusa CORE One Operating Cost by Print Duration
Pre-calculatedEstimated electricity cost (at $0.16/kWh) and hardware depreciation over print duration. Excludes material and labor.
| Print Duration | Energy (kWh) | Electricity Cost | Depreciation | Total Machine Cost |
|---|---|---|---|---|
| 1 Hour | 0.3 kWh | $0.05 | $0.20 | $0.25 |
| 4 Hours | 1.2 kWh | $0.19 | $0.80 | $0.99 |
| 8 Hours | 2.4 kWh | $0.38 | $1.60 | $1.98 |
| 12 Hours | 3.6 kWh | $0.58 | $2.40 | $2.98 |
| 24 Hours | 7.2 kWh | $1.15 | $4.80 | $5.95 |
| 100 Hours | 30 kWh | $4.80 | $19.98 | $24.78 |
Frequently Asked Questions
How much electricity does the Prusa Research Original Prusa CORE One use?
The Prusa Research Original Prusa CORE One draws an average of 300 watts during active printing. At the standard residential electricity rate of $0.16 per kWh, running this printer costs approximately $0.048 per hour in power. A 10-hour print consumes ~3.00 kWh (about $0.48 in electricity).
What is the depreciation rate for the Prusa Research Original Prusa CORE One?
With a retail MSRP of $1199 and an expected operational lifespan of 6,000 printing hours, the machine depreciation rate is $0.200 per operating hour. Including this in your print quotes ensures hardware replacement and maintenance costs are recovered.
What is the combined machine running cost per hour for the Prusa Research Original Prusa CORE One?
Combining power consumption ($0.048/hr) and equipment depreciation ($0.200/hr), the total baseline operating cost for the Prusa Research Original Prusa CORE One is approximately $0.25 per hour (excluding raw filament/resin and operator labor).
Is electricity or depreciation the bigger cost on the Prusa Research Original Prusa CORE One?
Depreciation is the larger share of this machine’s hourly rate, so the assumed lifespan drives your cost more than your electricity tariff does. If you service the machine well and expect to exceed the default hours, raise the lifespan figure in the calculator — it will lower your quoted cost more than any energy saving could.
What should I know about running the Prusa Research Original Prusa CORE One (FDM) commercially?
Drawing 250 W or more puts this machine in heated-chamber or large-bed territory, where electricity becomes a real cost. Long prints on high-temperature materials push consumption higher still, since the bed and chamber work hardest maintaining temperature against ambient losses. If you run a farm, this is the tier where circuit capacity starts to constrain how many machines share a breaker. At this price point depreciation clearly dominates the hourly rate, which changes how you should think about utilization. An idle prosumer machine is expensive; a busy one amortizes quickly. The lifespan assumption matters more than the electricity rate here, so revisit it if you service the machine well and expect to exceed the default hours.
How do I calculate commercial quotes for 3D prints on a Prusa Research Original Prusa CORE One?
To calculate a profitable quote: (1) calculate filament or resin consumed, (2) add machine operating cost ($0.25/hr × print time), (3) add labor preparation time, (4) apply an 8%–10% risk buffer for print failures, and (5) apply your target retail profit margin (typically 40%–60%).
Calculate maximum melt zone limits (mm³/s) to prevent underextrusion on high-speed prints.
Material DensitiesFilament Weight & Length Directory →Look up densities and spool tare deductions for PLA, PETG, ABS, and engineering polymers.