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Air Conditioner Size Calculator (Australia)

A kW starting point for a room, using the watts-per-square-metre bands Australian installers publish. It is a rule of thumb, not a standard — and we will say why on this page rather than pretend otherwise.

Rule of thumb — no standard
Longest wall, inside face to inside face.
Across the short way.
Pick the closest. Inland and coastal in the same state can differ.
Standard is 2.4m. A 2.7m ceiling is 12.5% more air to cool.
Ceiling insulation makes the biggest single difference.
West-facing afternoon sun is the brutal one in an Australian summer.
Count anything big — sliding doors, a wall of glass. Each adds 5%, capped at 20%.
Leave blank to use the band for the climate above.
Put these numbers straight into a quote →

How we worked this out

Floor area times a watts-per-square-metre rate for your climate, then adjusted for ceiling height, insulation, sun and glass.

  • Area = length × width
  • Base watts = area × the W/m² band for your climate
  • Ceiling factor = your ceiling height ÷ 2.4
  • Adjustments — poor insulation ×1.15, good ×0.90; high sun ×1.15, low ×0.93; each large window +5%, capped at +20%
  • Suggested unit = the next standard size at or above the result

This is a cooling estimate. Heating in a cold climate can want a different number, and a reverse-cycle unit sized on cooling may be light on heating in Tasmania or the Victorian highlands.

Where the figures come from: A rule-of-thumb guide only. No Australian Standard prescribing residential air-conditioner sizing was found — these are the watts-per-square-metre bands Australian installers publish. A proper heat-load calculation accounts for orientation, glazing, insulation and infiltration.

⚠️ This one is a rule of thumb, not a standard. We looked for an Australian Standard that sets these numbers and couldn't find one — every Australian sizing tool we checked uses the same kind of rough guide. Treat the answer as a starting point for a conversation, not a specification.

There is no Australian Standard for this. We looked.

Every other calculator on this site derives from something — a standard, the NCC, published product data. This one does not. We went looking for an Australian Standard that prescribes how to size a residential air conditioner and there isn't one. What exists instead is a watts-per-square-metre rule of thumb, varied by climate, published by installers and retailers. Every Australian sizing tool we checked uses the same rough method, and most present it as though it came from somewhere official.

So: this is a starting point for a conversation with an installer. It is not a specification, and nobody should order a ducted system off it.

The watts per square metre bands

ClimateWhereRate
CoolTasmania, Victorian highlands120 W/m²
TemperateMelbourne, Sydney, Adelaide, Perth140 W/m²
SubtropicalBrisbane, northern NSW155 W/m²
TropicalDarwin, Cairns, Townsville175 W/m²

Multiply the room's floor area by the rate and you have watts. Divide by a thousand for kilowatts, which is how Australian units are sold.

Quick reference — kW by room size and climate

RoomCoolTemperateSubtropicalTropical
15 m² bedroom1.8 kW2.1 kW2.3 kW2.6 kW
20 m² bedroom / study2.4 kW2.8 kW3.1 kW3.5 kW
30 m² lounge3.6 kW4.2 kW4.7 kW5.3 kW
40 m² open living4.8 kW5.6 kW6.2 kW7.0 kW
60 m² big open plan7.2 kW8.4 kW9.3 kW10.5 kW

Standard Australian split sizes run roughly 2.5, 3.5, 5.0, 6.0, 7.1, 8.0 and 9.5 kW, so in practice you round up to the nearest one.

A worked example

A 5m × 4m lounge in Brisbane, 2.7m ceilings, west facing with two big sliding doors:

  • Area: 5 × 4 = 20 m²
  • Subtropical band: 20 × 155 = 3,100 W
  • Ceiling 2.7m instead of 2.4m: 2.7 ÷ 2.4 = ×1.125 → 3,488 W
  • High sun exposure: ×1.15 → 4,011 W
  • Two large glass doors: ×1.10 → 4,412 W, so 4.41 kW
  • Nearest standard unit up: 5.0 kW

The same room in Melbourne, 2.4m ceilings, south facing and shaded, works out at 20 × 140 × 0.93 = 2,604 W — a 3.5 kW unit. Same floor plan, one size apart. That is why the plain "square metres to kilowatts" charts get it wrong so often.

Bigger is not safer — oversizing is a real problem

The instinct is to round up hard, and plenty of installers do it to avoid a callback. It backfires, and it is worth being able to explain why to a customer who wants the biggest unit on the wall.

  • Short cycling. An oversized unit hits the set temperature fast, shuts down, and restarts a few minutes later. Compressors wear out on start-ups, not on running hours.
  • It never dries the air. Dehumidification happens while the unit runs. A unit that only runs in short bursts leaves a room cold and clammy — exactly the complaint you get in Brisbane and Darwin, and exactly where people oversize the most.
  • More money, twice. Dearer to buy, and inefficient at the part load it spends its whole life in.

Undersizing has its own problems — the unit runs flat out, never quite gets there, and costs a fortune on the hottest week of the year. The answer is not "go big", it is "get the number roughly right, then check it properly".

What a proper heat-load calculation does

A rule of thumb sees floor area and a climate label. A real heat-load calculation sees the building. It accounts for:

  • Orientation — which way each wall and window faces, and when the sun hits it
  • Glazing — area, single or double, tinted, shaded or bare
  • Insulation — ceiling, wall and floor R-values, individually
  • Infiltration — how much outside air leaks in, which is enormous in an old weatherboard and small in a new build
  • Internal gains — people, cooking, a TV, lighting

For a single split in a bedroom, the rule of thumb is usually close enough to shop with. For a ducted system, do the heat load. Ducted is a lot of money, it is sized zone by zone, and a guess-and-round job produces rooms that never balance and an owner who is unhappy for a decade.

kW to BTU, for anyone reading a US spec sheet

Australian units are rated in kilowatts. American ones are in BTU per hour. 1 kW ≈ 3,412 BTU/h.

BTU/h (US)kW (Australia)Nearest AU unit
9,0002.64 kW2.5 or 3.5 kW
12,0003.52 kW3.5 kW
18,0005.28 kW5.0 kW
24,0007.03 kW7.1 kW

Worth knowing when a customer forwards you a link to something they found online.

Installing it is licensed work

Sizing is one thing. Fitting it is another, and both halves are regulated.

  • Refrigerant. Handling refrigerant — connecting, charging, recovering, decommissioning — requires a refrigerant handling licence, and the business needs a refrigerant trading authorisation to buy and hold the gas. This is federal, it applies everywhere in Australia, and the penalties for working without it are serious.
  • Electrical. The connection is electrical work and must be done by a licensed electrician. A hard-wired split or a ducted unit generally wants its own dedicated circuit, so on an older switchboard the job may be bigger than the customer expects.
  • Condensate and mounting. Drains have to fall somewhere legal, and outdoor units near a boundary can run into noise rules that vary by state and council.

Doing the electrical side of someone else's install? Look at the switchboard before you quote and price that work separately. It is where these jobs blow out.

Built for electricians, handymans. See how Yamate handles quotes, invoices and getting paid for Electricians · Handymans — or grab a free electrician quote template.

Sized it up. Now get the quote out before someone else does.

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Air conditioner sizing FAQ

What size air conditioner do I need for a room in Australia?

As a rough guide, multiply the floor area by 120 to 175 watts per square metre depending on your climate — 140 W/m² suits Melbourne, Sydney, Adelaide and Perth. A 20 m² room in a temperate climate comes out around 2.8 kW, so you would look at a 3.5 kW unit.

Is there an Australian Standard for air conditioner sizing?

We could not find one that prescribes residential sizing. Every Australian sizing tool we checked uses a watts-per-square-metre rule of thumb varied by climate. Treat any answer, including ours, as a starting point rather than a specification.

Is it better to oversize an air conditioner?

No. An oversized unit short-cycles, wears the compressor on repeated start-ups, and never runs long enough to pull moisture out — so the room ends up cold and clammy. It also costs more to buy and runs inefficiently at part load.

How many BTU is a 3.5 kW air conditioner?

About 11,900 BTU per hour, since 1 kW is roughly 3,412 BTU/h. Going the other way, a 12,000 BTU American unit is about 3.5 kW.

Does ceiling height change the air conditioner size?

Yes — you are cooling volume, not floor area. A 2.7m ceiling is 12.5% more air than a standard 2.4m one, and a 3m ceiling is 25% more. The calculator above scales for it.

When do I need a proper heat-load calculation?

For any ducted system, and for anything unusual — big glazing, a poorly insulated old house, a west-facing room that bakes. A heat load accounts for orientation, glazing, insulation and air leakage, which a square-metre rule of thumb cannot see.

Who can install a split system in Australia?

Anyone handling refrigerant needs a refrigerant handling licence, and the business needs a refrigerant trading authorisation to buy the gas. The electrical connection must be done by a licensed electrician. Both apply everywhere in Australia.

General information for Australian trades, and an estimate only — not tax, financial or legal advice. It is not engineering, building or design advice either: a calculator works out a quantity from the figures you enter, and anything that needs sign-off still needs your engineer, certifier or building surveyor. This is a rule-of-thumb guide, not a specification. No Australian Standard prescribing residential air-conditioner sizing was found — the watts-per-square-metre bands used here are the ones Australian installers publish. A proper heat-load calculation accounts for orientation, glazing, insulation and air infiltration, and is what you should be doing for a ducted system or an unusual room. Installation involves licensed refrigerant handling and licensed electrical work.