โ† Red Sea MAX Nano G2 Cube ยท All nano return pumps

Best pumps for the Red Sea MAX Nano G2 Cube

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 Red Sea MAX Nano is a 45cm (17.7 in) rimless all-in-one cube with about 16.5 gallons of display water and ~20 gallons total including its rear sump; the current G2 Cube and the popular original / ReefLED-50 versions share the exact same tank body. It ships complete with an integrated light (a WiFi ReefLED G2 60 on current units), a Nano XL / REEF-SPEC skimmer, an ATO-ready sump, and a filter sock, driven by a single Sicce return pump rated about 250 GPH. Red Sea does not publish internal rear-sump dimensions, so the usable skimmer-chamber footprint should be verified before swapping gear.

Top pick ยท Sicce

Sicce Syncra Nano $34.99

All pumps compared

Pump Max flowTypePriceVerdict
Sicce Syncra Nano
Sicce
110 gphAC$34.99 Top pick
EHEIM compactON 600
EHEIM
159 gphACโ€” Likely โ€” verify fit
MightyJet Desktop DC (326 GPH)
Innovative Marine
326 gphDC$146.00 Likely โ€” verify fit
MightyJet Midsize DC (538 GPH)
Innovative Marine
538 gphDC$159.00 Likely โ€” verify fit
VarioS-2 Controllable DC
Reef Octopus
792 gphDC$311.84 Likely โ€” verify fit
Tunze Silence 1073.008
Tunze
210 gphAC$54.99 Too strong (AC)
Sicce Syncra Silent 1.0
Sicce
251 gphAC$69.99 Too strong (AC)
IceCap EVO 1000
IceCap
315 gphAC$40.01 Too strong (AC)

Size it to your exact setup โ†’

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 5ร— 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.