Eric Robb RC Eric Robb RC RC Builds · Custom Parts · Backyard Engineering
Quick Answer · Free Tool

Where Should the CG Be? RC Airplane CG Calculator

Balance your plane 25–33% of the wing chord back from the leading edge, with the battery in. For most planes, start at 27–29%: measure the chord (leading edge to trailing edge), multiply by 0.27, and mark that distance behind the leading edge. An 8-inch-chord trainer balances about 2.2 inches back. Enter your chord below and I'll give you the exact number — level or slightly nose-down on that mark is right, tail-heavy is the dangerous side.

Balance

Find your balance point

Straight (constant-chord) wings only — one number works at every station. Tapered wing? See the note under the result.

Front to back — leading edge to trailing edge

Tapered wing? The balance point moves with the mean aerodynamic chord, not the root. The Airplane Designer does that math and draws the CG to scale on your plane.

The Full Tool

Want the CG drawn on your actual plane?

This gives you the number. The Airplane Designer gives you the whole design — CG marked on a to-scale plan view, plus wing loading, thrust, servo placement, and a parts list, all from your wingspan and style.

Open the Airplane Designer → More quick calculators

Worked example: the 30-inch trainer

My first-plane build has an 8-inch chord and flies like a trainer. The math: 8 × 0.27 = 2.16 inches behind the leading edge, with a safe range of 8 × 0.25 = 2.0″ to 8 × 0.33 = 2.64″. The cut guide for that plane says 2¼–2½ inches — same window. Mark it under the wing on both sides of the fuselage, put the flight battery in, and lift the plane on two fingertips at the marks. Level or slightly nose-down: fly it. Tail sinking: move the battery forward and check again.

The most common mistake: balancing without the battery

The battery is the heaviest single thing in a foam-board plane, and it sits ahead of the wing. Balance the plane empty, call it perfect, then strap a pack in for the maiden — and the plane you launch is a different aircraft from the one you checked. Every balance check happens flight-ready: battery in, strapped where it will actually fly. It's also your free trim weight — on my 5-foot cargo plane, the fix that tamed a scary maiden wasn't a rebuild, it was moving the battery until the plane balanced on the mark.

Why the percentage works

The wing's lift acts near the front third of the chord. Put the balance point just ahead of that and the plane weathervanes into stable flight; put it behind and the plane is a dart that wants to swap ends. That's why the window is a percentage of chord and not a fixed number of inches — a 6-inch-chord slow flyer and a 12-inch-chord hauler both balance at the same fraction. New to all of this? The beginner path covers CG, throws, and the rest of the first-flight checklist in order.

Common Questions

RC airplane CG, answered

Between 25% and 33% of the wing chord back from the leading edge. Trainers like about 27%, sport planes 29%, gliders 30%, and 3D planes fly at 32%. Flying wings are the exception — they balance much further forward, around 15–20%.
Slightly nose-heavy. A nose-heavy plane flies a little dull but stays controllable; a tail-heavy plane zooms, stalls, and flops over no matter how good the pilot is. When the plane balances level or a touch nose-down on the CG mark, it's right.
Always with the battery in, strapped exactly where it will fly. The battery is the heaviest single part of a foam-board plane, so a plane balanced empty is a completely different plane in the air. Sliding the battery fore or aft is also the free way to fix the balance point.
Measure from the mean aerodynamic chord, not the root chord. Enter the root and tip chords in the tapered mode of my RC Calculators, or use the Airplane Designer — it computes the MAC and draws the balance point to scale on your plane.
Far forward of a normal plane — around 15–20% of the mean chord — and the safe window is tiny. Start at the front of the range and move back in small steps. This calculator's 25–33% band is for conventional planes with a tail.
Next in the Eric Robb Builder System

Next: choose your electronics

Balance point sorted. Now get a matched motor, ESC, battery, prop and servo set sized to your plane.

Open the Checklist Builder → All tools