If the installation method is still open, route it on the overview first.
→ LED Downlight Installation Methods: Recessed vs Surface Mount vs Adjustable
Once the downlight for ceiling path is locked and the ceiling type is confirmed, there are still six specs that fail orders on site.
This page freezes them before the purchase order leaves your desk: cutout diameter, recess depth, IP rating, weight and mounting, trim type, and IC/fire rating.
It is not a guide to choosing which downlight suits which ceiling — that decision lives on how to choose downlights by ceiling type.
Think of it as the engineering pass between the catalogue shortlist and the supplier order form.

Viktiga slutsatser
– Measure the actual cutout hole; the nominal inch label on the fixture is not the diameter you cut.
– Recess depth is housing body plus driver plus wiring bend — the can height alone tells you half the story.
– IP rating follows the zone map on the project drawings. The finish colour does not change the moisture exposure.
– False ceiling grids and plasterboard both have weight limits. Some codes require support for 2× the fixture weight.
– Trim must overhang the cutout by 10–20mm on all sides, or the rough hole edge shows after install.
– IC-rated is mandatory where insulation contacts the housing. Fire-rated is required when the fitting penetrates a fire-compartment ceiling.
Before you use this page
Have these on hand:
- Confirmed ceiling type and construction (from the project RCP or site survey)
- Measured void depth at the shallowest bay — not the average across the grid
- Product install sheets for the shortlisted fittings (cutout tolerance, stack height, IP mark, weight, IC/fire certificates)
- Project fire strategy document and zone classification map
- Grid or substrate spec if the ceiling is a suspended system
Step-by-step install craft lives on separate installation guides — not here.
1. Cutout diameter — the hole, not the fixture name
A “4-inch” recessed ceiling downlight can need a hole anywhere from 85mm to 130mm.
Brand, housing design, and retention type all shift the number. The nominal size on the box describes the trim face. The downlight ceiling cutout size you actually cut is on the datasheet — and two different 4-inch SKUs from the same catalogue can land 20mm apart.
Measure the existing hole in three directions at different angles for any retrofit. Ceiling cuts are rarely perfectly round. The smallest measured dimension controls what fits.
If the old cutout is larger than the new trim overhang, the retrofit kit will not cover it. That means ceiling repair or a wider trim — neither of which you want to discover after the order arrives.
Standard cutout diameters span roughly 50mm at the miniature end to 205mm for large-aperture units. Most commercial led downlight for ceiling fittings sit between 75mm and 150mm.
| Nominal size | Typical cutout range | Common application |
|---|---|---|
| 2″ (50mm) | 50–65mm | Accent, task, cabinet |
| 3″ (75mm) | 65–85mm | Small aperture, corridor |
| 4″ (100mm) | 85–110mm | General commercial |
| 5″ (125mm) | 110–135mm | Reception, retail |
| 6″ (150mm) | 130–160mm | Open plan, high bay |
| 8″ (200mm) | 175–205mm | Large area, feature |
Trim overhang needs 10–20mm on all sides. Less than that and the rough plaster edge reads through — a walk-through fail that no lumen package can rescue.
Common cutout fails
| Symptom | Likely cause | Fix |
|---|---|---|
| Fixture does not seat; springs slip | Cutout too large for the trim overhang | Wider-trim SKU or ceiling repair |
| Fixture will not enter the hole | Cutout too small; nominal size confused with cutout | Re-measure across three angles; match datasheet tolerance |
| Uneven rim gap after install | Hole not round; measured in one direction only | Use the smallest of three measurements |
| Retrofit kit exposes old hole edge | Old cutout wider than new trim overhang | Wider trim or conversion plate |
Check the datasheet tolerance before cutting or ordering. A hole that is too large cannot be undone.
For the ceiling downlight layout och modern ceiling downlight layout: map fixture positions to the grid lines and cluster heavy units near tee bar intersections, where load capacity is highest.
🎯 What cutout diameter does this ceiling need?
Measure the actual hole in three directions and match the smallest dimension to the trim overhang range on the datasheet — not the nominal inch label on the box.
2. Recess depth — body, driver, and the wiring loop
Recess depth is housing body plus driver plus wiring bend radius — not the printed can height. Change any one and the stack moves.
| Kategori | Typical void needed | Best fit |
|---|---|---|
| Ultra-slim | ~30mm | Shallow plasterboard voids, concrete soffits with minimal plenum |
| Standard | 75–120mm | Most commercial ceilings with adequate cavity |
| Deep / gimbal | 150mm+ | Deep-recessed glare control, tilt-envelope clearance |
För false ceiling downlight och drop ceiling recessed light work, measure from the finished ceiling plane to the nearest obstruction. Take the shallowest point in the bay with a stiff wire through a pilot hole.
Concrete soffits with zero plenum fail the depth check. If the shallowest measured point is under 30mm, surface-mount downlight installation guide is the correct path.
Integrated driver: sits in the housing, adds to depth. Remote driver: separates to a junction box — needs accessible, correctly enclosed cavity.
🎯 How much recess depth is actually needed?
The shallowest measured void must clear the full datasheet stack — housing plus driver plus wiring bend — not the marketing dimension printed on the brochure.
3. IP rating — the zone map decides, not the finish
IP20 in a shower steam path corrodes the driver within months. The fixture finish has nothing to do with whether the housing survives the moisture in the room.
Match the IP rating to the zone classification on the project drawings, not to the colour sample.
| Rating | Skydd | Check against |
|---|---|---|
| IP20 | No moisture protection | Dry indoor spaces only |
| IP44 | Splash-resistant | Damp zones: bathroom zone 2, covered eaves, kitchens |
| IP65 | Dust-tight, jet-protected | Wet zones: bathroom zone 1, open outdoor soffits, wash-down areas |
Verify the IP mark on the housing or datasheet — the product description alone is not proof. Ratings are tested under IEC 60529.
Common IP fails
| Symptom | Likely cause | Fix |
|---|---|---|
| Internal corrosion, early failure | IP20 in a wet zone | Replace with IP65-rated fitting matched to the zone |
| Condensation pooling inside lens | IP44 in zone 1 where jets reach | Upgrade to IP65; verify seal integrity on the sheet |
| Inspection fail on bathroom install | Wrong IP for the zone classification | Match IP to the zone map before ordering |
🎯 What IP rating does this zone require?
IP20 for dry indoor, IP44 for damp and splash zones, IP65 where water jets reach the fitting — match the zone map on the drawings, not the finish swatch.
4. Weight and mounting — what the substrate actually holds
A 0.5kg downlight hanging from a suspended grid tee is a structural question. The same fixture clipped into 12.5mm plasterboard between joists is a different question entirely.
Most suspended grid systems take 3–5kg per tee bar at standard 1200mm drop-wire spacing. Go heavier than that or run tighter wire centres and the support calc changes — independent wires, brackets, or unistrut backing enter the conversation.
Standard 12.5mm plasterboard on 600mm joist centres can typically handle 1–2kg point loads with correct fixings. Spring clips work for lightweight trims up to about 0.5kg. Push past 1kg and the board alone should not be the only thing holding the fixture — add framing or a support bracket.
Some codes require the mounting system to support 2× the fixture weight. That is a structural requirement, not a suggestion.
| Fixture weight | Typical hardware | Anteckningar |
|---|---|---|
| <0.5kg | Spring clips, torsion springs | Standard for most residential and light commercial trims |
| 0.5–1.0kg | Torsion springs or frame brackets | Verify board condition and joist spacing first |
| >1.0kg | Full frame, grid kit, or independent support | Mandatory; confirm against the structural schedule |
A false ceiling downlight design that ignores grid weight limits fails inspection regardless of lumen output or CRI.
🎯 Can this ceiling support the fixture weight?
Check the grid or board weight limit against the fixture plus driver; add independent support for anything over 1kg or where code demands the 2× factor.
5. Trim and bezel — covering the cutout
Trim diameter needs 10–20mm of overhang past the cutout on every side. Less than that exposes the rough plaster edge.
Flanged trims with 10–20mm of overhang cover most commercial jobs. Trimless styles use a plaster-in bezel fitted before the skim coat — the finish is cleaner but the labour lands on both the electrician and the plasterer.
Square trims need a square cutout and a compatible square housing. A square trim spec on a round cutout is a return-and-reorder error — the housing will not seat.
Anti-glare trims add an internal baffle. They cut down ceiling glow at the cost of additional recess depth. Check the full stack on the datasheet before you commit.
Match the trim family to the housing. Not all trims fit all brands, even at the same nominal size.
🎯 What trim correctly covers this cutout?
A trim with 10–20mm overhang on all sides, housing-compatible, and matched to the cutout shape — round for round, square for square.
6. IC rating and fire rating — two separate checks
IC rating and fire rating are independent. A fitting can carry one, both, or neither.
IC-4 rated: tested for direct insulation contact, up to 90°C case temperature under IEC/EN or equivalent standards. Non-IC: needs 75–100mm air clearance on every side. Loose-fill insulation shifts over time and can bridge that gap — verify the clearance is maintainable, not just measured once.
Fire-rated: required when the fitting penetrates a fire-rated ceiling assembly. Common ratings are 30, 60, and 90 minutes. Match the downlight certificate to the ceiling requirement.
| Ceiling condition | Rating required |
|---|---|
| Insulation present, contacts housing | IC-rated (typically IC-4) |
| Fitting penetrates fire-rated ceiling assembly | Fire-rated (30/60/90 min per strategy) |
| Both conditions present | Both ratings required; verify with AHJ |
| Neither condition | Standard listing sufficient; still confirm local code |
Find the project fire strategy before you order. Inspectors check the housing marking — a missing IC or fire label is a common rejection. Keep the product certificate on site.
🎯 Is IC or fire rating required on this ceiling?
IC-rated where insulation touches the housing; fire-rated where the fitting penetrates a fire-compartment assembly — two separate checks, both answered by the datasheet and the fire strategy.
Pre-order freeze checklist
Six specs locked before the order hits the supplier:
- Cutout diameter — measure the actual hole in three directions; match the smallest to the trim overhang range
- Recess depth — full stack: housing + driver + wiring bend; measure at the shallowest point in the void
- IP-klassning — match the zone map on the drawings, not the finish swatch
- Weight and mounting — check grid or board limit; independent support above 1kg or where code demands 2× factor
- Trim overhang — minimum 10–20mm all sides; shape matches housing (round to round, square to square)
- IC / fire rating — IC where insulation contacts; fire-rated where the ceiling assembly is a fire compartment
Freeze the six. Order one sample. Verify against the actual ceiling. Then release the bulk order.
Vad man ska göra härnäst
- Lock the installation method → LED Downlight Installation Methods overview
- Choose the right downlight by ceiling type → How to Choose Downlights for Different Ceiling Types
- Understand adjustable vs fixed aiming → What’s the Difference Between Adjustable and Fixed Downlights?
Soft brand (fit only)
XHLUX supplies commercial LED downlight families across cutout sizes, IP classes, and IC/fire-rated configurations for dry, damp, and wet ceilings.
Freeze the six specs against the real ceiling first. Then shortlist a product that clears every gate on the datasheet.
Notes on evidence
Cutout bands in §1 are industry planning ranges from commercial cutout-size guides — not a code. Always confirm on the fixture datasheet.
Depth categories in §2 come from manufacturer install sheets. Driver location and wiring bend radius add to the published body height — measure the as-built void.
IP zone mapping follows IEC 60529 testing and local wiring regulations. Bathroom zone dimensions are typical; confirm against the applicable edition of the wiring code for the jurisdiction.
IC-4 and fire-rating references follow manufacturer test certificates and common commercial ceiling assembly requirements. Confirm the specific certificate against the project fire strategy and local authority.
Weight and mounting figures in §4 (3–5 kg/tee bar, 1–2 kg plasterboard point load, 0.5 kg spring-clip threshold, 2× fixture-weight factor) are planning bands from commercial suspended-ceiling installation guides and plasterboard manufacturer fixing tables — not structural engineering values. Confirm grid load ratings, board fixings, and support requirements against the project structural schedule and local code.
Always override planning guides with the product install sheet, measured site conditions, and the project engineering documents.


