Part of the data ring
LuxPlan
Photometric sheet 144 sq ft · 150 lux target

12×12 garage:
9 lights

9fixtures A 12×12 ft garage (144 sq ft) needs approximately 9 recessed lights at 800 lumens each — about 5,543 lumens in total — laid out 3 across by 3 deep.

Space them 4 ft apart along the 12 ft wall and 4 ft apart along the 12 ft wall, starting 2 ft from the end walls.

Assumed·8 ft ceiling·working plane floor·light surfaces·UF 0.45·MF 0.8

SOURCE·IES lumen-method recommendations·published recommendations, quoted as ranges·REVIEWED JUL 2026

Fittings9at 800 lm each
Installed lumens5,543to hold 150 lux
Centres4′× 4′ apart
Wall setback2′half a spacing

Sheet 01 · layoutWhere the 9 go, and how far the light gets

Drawn to scale from the computed centres. The dashed rings are iso-lux contours: the line each fitting's own light crosses on the way down from 43 lux beneath it.

32 lx21 lx11 lx43 lx 12 ft 12 ft 3 across × 3 deep · 4 ft × 4 ft apart · 2 ft from the end walls
Fitting, 800 lm 32 lx 21 lx 11 lx Contours: one fitting, direct only

Read the contours off any one fitting. Directly beneath it, a 800 lm downlight at 8 ft above the working plane puts about 43 lux on that plane; 8 ft away it is down to 11 lux. The target for a garage is 150 lux. No single ring gets anywhere near it, and that is the point of the drawing: the level in the room is built out of overlapping contours plus the light that bounces off the walls and ceiling, which is what the utilisation factor of 0.45 pays for. 9 fittings is the count that closes that gap — it is not the room's area divided by a rule of thumb.

SOURCE·Computed from the lumen method·no dataset, every figure reproducible with a calculator·REVIEWED JUL 2026

How this is worked out

  1. Set the ambient target at 150 lx. The published band for a garage is 150–300 lx. The ceiling layer is sized to the bottom of it, because this room has a task layer — under-cabinet, desk or bench — that carries the working plane the rest of the way.
  2. Restate the room in metres, and measure to the plane. 144 sq ft is 13.4 m². Mounting height is taken to the working plane, not the floor: 8 ft under a 8 ft ceiling.
  3. Take the losses off before sizing anything. A room index of 0.75 gives a utilisation factor of 0.45 against light surfaces; the maintenance factor is fixed at 0.8 for dirt and lamp depreciation. Between them 64% of everything the fittings emit never lands on the plane, and it has to be bought up front.
  4. Divide, then fit a grid to the room's own proportions. 5,543 lm required; at 800 lm each that is 6.9 fittings, resolved to 9 in a 3 × 3 grid, because an even grid beats a lopsided one at the same total.
  5. Check it against the spacing criterion. 1.3 × 8 ft allows up to 10.4 ft between fittings. This layout sits at 4 ft, inside the limit.
N  = (E × A) / (F × UF × MF)
   = (150 × 13.4) / (800 × 0.45 × 0.8)
   = 6.9 fittings   →   3 × 3 = 9 installed

E0 = F / (π × Hm²)        contour datum, one fitting, direct only
   = 800 / (π × 2.44²)
   = 43 lx on the plane directly beneath a fitting

The whole method, and the four places it is weak →

Sheet 03 · scheduleRe-lamp it: what a brighter fitting buys you

If the fitting is already chosen, read across from its lumen output. Fewer, brighter fittings raise the contour datum and widen the rings; more, dimmer ones flatten the floor.

Same room, re-lamped: five fittings, five counts RECOMMENDATIONS · JUL 2026
Fixture outputRough equivalentFixtures neededSuggested grid
450 lm 40 W incandescent 123 × 4
650 lm 50 W incandescent 93 × 3
800 lm 60 W incandescent 93 × 3
1000 lm 75 W incandescent 62 × 3
1200 lm 100 W incandescent 42 × 2

Fewer, brighter fixtures give more contrast; more, dimmer fixtures give flatter, more even light. Both rows deliver the same total.

SOURCE·Computed from the lumen method·no dataset, every figure reproducible with a calculator·REVIEWED JUL 2026

Sheet 04 · ledgerEvery input behind the 9, line by line

Target illuminance for a garage150 luxpublished range 150–300 lux
Floor area13.4 m²144 sq ft
Mounting height above the working plane8 ft8 ft ceiling, measured to the floor
Room index0.75(L × W) ÷ (Hm × (L + W))
Utilisation factor0.45from the room index, light surfaces
Maintenance factor0.8dirt and lamp depreciation
Lumens required5,543 lm150 × 13.4 ÷ (0.45 × 0.8)
Fixtures at 800 lm9delivering about 195 lux

A plain storage garage sits at the low end; if you actually work on things in there, design for the top of the range or higher.

SOURCE·IES lumen-method recommendations·published recommendations, quoted as ranges·REVIEWED JUL 2026

Sheet 05 · variationRaise the ceiling and the whole sheet moves

A taller ceiling spreads each fitting's contours wider, which permits wider centres — and drops the level on the plane, which asks for more total output. Both at once.

The same 12×12 ft garage under four ceilings COMPUTED · JUL 2026
CeilingFixturesGridSpacingMax spacing
8 ft93 × 34′ × 4′10.4′
9 ft93 × 34′ × 4′11.7′
10 ft93 × 34′ × 4′13′
12 ft93 × 34′ × 4′15.6′

SOURCE·Computed from the lumen method·no dataset, every figure reproducible with a calculator·REVIEWED JUL 2026

Sheet 06 · queriesWhat an electrician asks next

How many recessed lights do I need for a 12x12 garage?

About 9 fixtures at 800 lumens each, arranged 3 across by 3 deep. That gives roughly 195 lux across 144 square feet, against a target of 150 lux for a garage.

How many lumens does a 12x12 garage need?

Roughly 5,543 lumens in total. That comes from 150 lux over 13.4 m², divided by a utilisation factor of 0.45 and a maintenance factor of 0.8 — the light that never reaches the working plane has to be paid for up front.

How far apart should the lights be in a 12x12 room?

4 ft apart along the 12 ft wall and 4 ft apart along the 12 ft wall, with the outer row about 2 ft in from the end walls — half a spacing. With a 8 ft ceiling the maximum sensible spacing is around 10.4 ft before the floor starts to show scallops.

Does the ceiling height change the answer?

Yes, in two ways. A higher ceiling spreads each fixture's light over a wider area, so fixtures can sit further apart — but it also drops the light level reaching the floor, so a taller room generally needs more total lumens. At 8 ft the room index works out at 0.75, giving a utilisation factor of 0.45.

Identical geometry, different target illuminance. The count is the only thing that changes.

Sheet issued for planning only. Method, assumptions and the four places this sheet is weak.

Planning guidance only, not an electrical design. Fixture counts are a starting point — follow your local wiring rules and use a licensed electrician for the installation.

See all 10 sites in this family, with what each one answers

Published by

Amit Sharma

Auckland real-estate agent and marketer. Builds free, sourced data tools.