Reference figures, 5 m at full white
Computed by the same engine as the calculator above, so they agree with it. Ranges reflect the spread between vendors. Verify against the actual strip and supply specifications.
| Strip | LED/m | Pixels | Current | Power | Supply |
|---|---|---|---|---|---|
| WS2812B (5 V RGB) | 30 | 150 | 9.15 A (7.29–9.18) | 45.8 W | 5 V · 15 A |
| WS2812B (5 V RGB) | 60 | 300 | 18.3 A (14.6–18.4) | 91.5 W | 5 V · 25 A |
| WS2812B (5 V RGB) | 144 | 720 | 43.9 A (35.0–44.1) | 220 W | 5 V · 60 A |
| SK6812 RGBW (5 V) | 30 | 150 | 12.2 A (9.69–12.2) | 60.8 W | 5 V · 20 A |
| SK6812 RGBW (5 V) | 60 | 300 | 24.3 A (19.4–24.4) | 122 W | 5 V · 40 A |
| SK6812 RGBW (5 V) | 144 | 720 | 58.3 A (46.5–58.5) | 292 W | 5 V · 74 A |
| WS2815 (12 V RGB) | 30 | 150 | 3.45 A (2.70–4.50) | 41.4 W | 12 V · 8.5 A |
| WS2815 (12 V RGB) | 60 | 300 | 6.90 A (5.40–9.00) | 82.8 W | 12 V · 12.5 A |
| WS2815 (12 V RGB) | 144 | 720 | 16.6 A (13.0–21.6) | 199 W | 12 V · 30 A |
The sizing chain
Required continuous current = the worst-case current at the top of its estimated range + the controller. Recommended capacity = that ÷ 0.8, rounded up to the next size sold: 5 V supplies come in 5, 10, 15, 20, 25, 30, 40, 50, 60 and 70 A; 12 V in 2, 3, 5, 8.5, 10, 12.5, 15, 17, 20, 25 and 30 A. The list is dense in the middle on purpose — rounding 11.4 A up to 17 A because 12.5 A was missing would be bad advice, not caution.
Why 0.8: nameplate ratings assume roughly 25 °C in free air, electrolytic capacitor life halves for every 10 °C, and a fan failing at full load is a fire path. It is a heuristic, not a substitute for the model’s own derating curve, and an enclosed or hot location needs more.
Checking a supply you already have
Enter its capacity and PixelPower reports utilisation and headroom against the worst case, with a verdict: comfortable above 20 % headroom, tight between 10 and 20 %, not enough below 10 %, overloaded past 100 %. The supply’s own overcurrent protection is set far above what a strip’s copper or a JST connector survives, which is why each branch also gets a fuse recommendation.
Several supplies are sized one group at a time — the load on a supply is the sum of what hangs off it, not of the installation.
Questions people ask
What size power supply do I need for 300 WS2812B LEDs?
PixelPower estimates 18.3 A at full white on 5 V and recommends a 25 A supply: 18.4 A at the top of the range plus 0.15 A for the controller, divided by 0.8, is 23.2 A, rounded up to the next size sold. Verify against the actual strip and supply specifications before you buy or build.
Should I divide watts by the supply’s efficiency when sizing it?
No. A supply’s nameplate is its DC output; efficiency is what it takes from the wall to deliver that. Dividing by efficiency oversizes the supply by around 15 % for the wrong reason. Efficiency matters for the running-cost estimate, where PixelPower applies it.
Can I use one big supply for several strips?
Yes, and PixelPower sizes it from the sum of what is on it. Each strip still needs its own fused branch, because the supply’s protection will not trip before a strip trace or a connector fails. The Wiring section plans the branches, fuses and cable.
Is a 60 A 5 V supply dangerous for a small strip?
The supply will happily deliver 60 A into a fault on a strip trace that is only good for a few amps. That is why every branch from the supply to a load should carry its own fuse sized for that branch — PixelPower recommends a value per branch and lists it in the parts list.
Take the plan further
The answer above is the start. The full planner draws the layout, plans the branches, fuses and cable from each supply, writes a WLED configuration from the plan and produces a parts list and a printable report — all from the numbers you just typed, and nothing to sign up for.