← Innovative Marine Nuvo Fusion Lagoon 25 · All nano return pumps
Best pumps for the Innovative Marine Nuvo Fusion Lagoon 25
Target a return pump that turns over the display volume roughly 5 times per hour, with 4 to 8 times per hour being acceptable. If the pump has no published flow-vs-head curve, derate the rated flow by about 25% to account for head loss from the return line. DC pumps are worth considering on nano tanks because they're throttleable, letting you dial back flow if the rated output is higher than needed.
The Innovative Marine Nuvo Fusion Lagoon 25 is a low-profile, peninsula-style 25-gallon AIO with a long 23.6 in front pane, 19.7 in front-to-back depth, and just 11.8 in of height, in 8mm low-iron glass for an open aquascape. It ships without a light, so plan for a separate fixture. Community sources and the owner's manual put the rear chamber at roughly 8.7 in wide × 2.8 in front-to-back × 8.5 in tall, with that ~2.8 in depth the tight constraint for skimmers and pumps. The original Lagoon 25 ships with two adjustable 130 GPH DC return pumps (about 260 GPH combined); the later Pro revision uses a single MightyJet 326.
Sicce Syncra Nano $34.99
- ~83 gph at the tank ≈ 4.1× display turnover
- 2.3×1.7" footprint fits the 8.7×2.8" rear chamber (community dims)
All pumps compared
| Pump | Max flow | Type | Price | Verdict |
| Sicce Syncra Nano Sicce | 110 gph | AC | $34.99 | Top pick |
| EHEIM compactON 600 EHEIM | 159 gph | AC | — | Recommended |
| Tunze Silence 1073.008 Tunze | 210 gph | AC | $54.99 | Recommended |
| MightyJet Desktop DC (326 GPH) Innovative Marine | 326 gph | DC | $146.00 | Works, oversized |
| MightyJet Midsize DC (538 GPH) Innovative Marine | 538 gph | DC | $159.00 | Works, oversized |
| VarioS-2 Controllable DC Reef Octopus | 792 gph | DC | $311.84 | Likely — verify fit |
| Sicce Syncra Silent 1.0 Sicce | 251 gph | AC | $69.99 | Too strong (AC) |
| IceCap EVO 1000 IceCap | 315 gph | AC | $40.01 | Too strong (AC) |
FAQ
How big a return pump do I need for a 10-gallon AIO?
Aim for roughly 50 GPH of actual flow at head, which is 5× the 10-gallon display volume. If the pump has no head curve, take the rated GPH and reduce it by about 25% to estimate real-world output, then pick a pump whose derated flow lands in the 40-80 GPH range.
What does 'derating for head loss' mean and why does it matter?
Head loss is the flow reduction caused by the pump pushing water upward and through tubing back to the display. A pump rated at 200 GPH in open water may only deliver 150 GPH or less at your actual return height. Without a published flow-vs-head curve, a 25% derating is a reasonable approximation.
Is a DC return pump worth it on a small tank?
Often yes. DC pumps let you throttle flow down if the rated output is too strong for your nano, and they typically run quieter and cooler than AC pumps. The tradeoff is higher upfront cost, but the controllability is genuinely useful on tanks where a few GPH can make a noticeable difference.