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LUMINA DISPLAY SYSTEMS

Aspect Ratio: The One Decision Most LED Screen Buyers Get Wrong

01.08.26 09:04 PM By Hetul Thakkar

Lumina Display Systems · Buyer's Guide

Aspect Ratio: The One Decision Most LED Screen Buyers Get Wrong

Your LED wall can be any size you want. That's exactly why it's so easy to get wrong.

LED video walls~31 min readMumbai
4 × 3cabinets of 640 × 480 mm = exact 16:9 at 2.56 × 1.44 m
12 × 9of the same cabinet at P2 = native 3840 × 2160
16 × 9square outdoor cabinets = exact 16:9 at hoarding size
1.7778the number every wall in this guide is checked against

Every television and monitor you have ever bought came in one of two shapes: 16:9 or, if it was old, 4:3. You never had to think about it. The shape was decided for you, and every piece of content in the world — films, ads, presentations, cricket broadcasts, YouTube — was made to fit it.

A modular LED display is different. It is built from modules, which sit in cabinets, which stack into a wall — and that wall can be almost any rectangle you like. Nine metres wide and two metres tall? Fine. A perfect square? Fine. That freedom is the single best thing about LED, and it is also the reason so many screens end up with black bars down the sides, stretched faces in the video, or a content bill that never stops arriving.

This guide explains why aspect ratio matters, why the answer is different indoors and outdoors, and — with full working tables — exactly which module, which cabinet and which grid to choose so that the finished wall lands on 16:9.


1. The world is built in 16:9

16:9 is not a preference. It is a standard, written into how video is produced, broadcast and delivered.

16:9The world standardBUILD THIS4:3Legacy SD / projectors21:9Ultra-wide, custom content9:16Vertical / standee
The four shapes you will be offered. Content exists for the first and the last; the middle two mean custom creative.
FormatResolutionRatioWhere you meet it
Full HD / 1080p1920 × 108016:9Broadcast TV, most corporate video, media players
HD / 720p1280 × 72016:9Streaming, older signage players, live feeds
4K UHD3840 × 216016:9Premium video, modern cameras, high-end signage
8K UHD7680 × 432016:9Emerging premium production
PowerPoint (default since 2013)13.33 × 7.5 in16:9Every corporate presentation
Google Slides (default)10 × 5.63 in16:9Every other corporate presentation
YouTube standard upload1920 × 108016:9Marketing and brand films
Laptop HDMI output1920 × 108016:9The single most common source at any venue

The industry bodies say the same thing. The OAAA/IAB Digital Out-of-Home Creative and Content Guide — the reference agencies use when building DOOH campaigns — lists 16:9 and 9:16 as the primary full-screen formats, with 16:10 as the alternative, and 1920×1080, 1280×720 and 3840×2160 as the standard resolutions. Anything outside that list is a custom build the agency has to be asked, and paid, to produce.

Two practical consequences:

  • If your screen is 16:9, content just works. Every laptop, every media player, every agency file, every stock video, with no conversion.
  • If your screen is not 16:9, someone has to make content specifically for it — forever. Not once. Every campaign, every new video, every seasonal creative.

Where 4:3 still lives

4:3 was the shape of standard-definition television and the older projector generation, and it survives in three places: legacy archive footage, some industrial and CCTV camera outputs, and older classroom projector content. It is worth knowing about, but in 2026 it is almost never the right shape to build a new screen in. If you have a 4:3 archive you must show, it displays comfortably inside a 16:9 screen with side pillars — the reverse is far more painful.

And the fast-growing third shape: 9:16

Vertical. Standees, lift lobbies, mall totems, QSR menu rails, retail window displays. This is simply 16:9 rotated, and everything in this guide applies to it with width and height swapped. Instagram Reels, YouTube Shorts and most social creative are already 1080 × 1920, so a 9:16 screen inherits the same "content just works" advantage.


2. What actually happens when the ratio doesn't match

When a 16:9 video meets a screen that isn't 16:9, your player has exactly four options, and all four cost you something.

Letterbox / pillarbox — you paid for pixels you don't use. The content is fitted inside and the leftover area goes black. On a screen where you bought 20 square metres of LED, you might be lighting 17. The bars are also visually obvious at night on an outdoor site.

Stretch — the content is distorted. Faces get wide, logos get squashed, circular brand marks become ovals. Marketing teams notice this immediately and it looks unprofessional. Never accept a screen that requires permanent stretching.

Crop — you lose the edges. The player zooms until the frame fills, and heads, prices, phone numbers and legal text fall off the sides. This is the most dangerous option because it usually looks fine on the test loop and destroys a real campaign later.

Re-master — the honest option, and the expensive one. Content is rebuilt at the screen's native resolution. Correct, beautiful — and a recurring cost for the life of the screen.

LetterboxYou paid for dark pixels16% of the wall unusedStretchFaces and logos distortcircle becomes an ovalCropEdges fall off screendashed area is lostBuild it 16:9Everything just fits
The same 16:9 video on a screen that is not 16:9. Only the fourth option costs you nothing.

How close is close enough?

Not every wall lands on exactly 1.7778. The useful question is how much black bar a near-miss actually produces. Here is the real answer in millimetres:

Wall ratioOff 16:9 byTotal bar on a 4 m wide wallTotal bar on an 8 m wide wall
1.7810.19 %4 mm9 mm
1.7690.48 %11 mm22 mm
1.8001.25 %28 mm (left/right)56 mm (left/right)
1.7501.56 %36 mm71 mm
1.83333.13 %68 mm (left/right)136 mm (left/right)
1.7143.57 %83 mm167 mm
1.600 (16:10)10 %250 mm500 mm
1.333 (4:3)25 %750 mm1500 mm

The working rule we use at Lumina:

  • Within 2 % of 16:9 — treat it as 16:9. The bar is a few millimetres and invisible from viewing distance.
  • 2 % to 5 % — acceptable, but design the content with a safe margin so nothing important sits at the edge.
  • Beyond 5 % — this is now a custom-content screen. Make that decision deliberately, with a content budget attached.
7 × 4 grid — 1.7501.56 % off71 mm total16:10 screen — 1.60010 % off500 mm total4:3 screen — 1.33325 % off1500 mm totalAll three drawn to the same scale — an 8 m wide wall.
Black bars drawn to scale on an 8 m wall. A 1.56 % miss is 71 mm — invisible. A 4:3 screen loses 1.5 m of picture height.

3. When custom is genuinely right

Being able to build any shape is not a flaw — it is the reason LED wins jobs that no television can. Custom is the correct choice when:

  • The content is made for the screen, not borrowed. A 12 m × 2 m ribbon board above a stadium concourse, an anamorphic corner display, a curved reception feature, a facade wrapped around a column. These exist to be bespoke, and the creative is budgeted alongside the hardware.
  • The architecture dictates the opening. A hoarding frame, a lift lobby recess, a shopfront transom. Physical constraints win, and the screen fills them.
  • The screen is the artwork. Motion graphics, generative content, brand environments — where there is no external video to be compatible with.
  • You want a striking format on purpose. Ultra-wide 32:9 and 21:9 walls are extremely effective for lobbies and control rooms, and content for them is a one-time design exercise.

But when a screen has to accept other people's content — a rented ad slot, a client's presentation, a live feed, a broadcast, a customer's USB stick — build it in 16:9 or as close as the cabinets allow. That includes almost every DOOH and OOH advertising site, retail and mall screen, boardroom, auditorium, broadcast backdrop, stadium main screen, showroom, hotel lobby and QSR menu board.

The freedom to build any shape should be spent on the jobs that need it — not on the ordinary screen where it silently becomes a permanent tax on your content.


4. Module families: one universal size, and two specialists

This is the part most guides skip, and it is the reason a single "best cabinet" answer does not exist. There are really only three module grids you will meet, and they do not split neatly into "indoor" and "outdoor" — the main one does both.

320 × 160 mm — the universal module, indoor and outdoor

320 × 160 mm is the conventional module size of the LED industry, and it is the most common size for indoor and outdoor alike. If you order a module without specifying anything else, this is what arrives. It is the most manufactured, most stocked and most price-competitive footprint in the world — and it is now made in every construction that matters:

  • SMD — the mainstream, indoor and outdoor, P1.25 to P10
  • GOB (glue-on-board) — the ruggedised version for touchable and high-traffic screens, same footprint
  • COB (chip-on-board) — and this is the new part: COB is now available in 320 × 160 mm as well, so the newest technology drops straight into the cabinets you already use

That is the single strongest reason to design around it. One footprint, every technology, indoors and out — and, as Section 6 shows, a cabinet grid that reaches exact 16:9 in twelve panels.

Module320 × 160 mm (also 160 × 160 mm, 320 × 320 mm)
Cabinet640 × 480, 640 × 960, 1280 × 960 mm indoor; 960 × 960 mm outdoor
TechnologiesSMD, GOB and COB
Typical pitchP1.25 – P4 indoor, P4 – P10 outdoor
Used inBoardrooms, auditoriums, retail, studios, lobbies, entertainment venues — and hoardings, facades, stadium perimeters, transport hubs

250 × 250 mm — the rental and staging module

250 × 250 mm is a square module, and in practice you meet it on rental series panels: the quick-lock, curve-capable, road-case cabinets used for concerts, weddings, exhibitions and corporate stages.

It goes into two cabinet sizes, and really only two:

CabinetModulesWhy this one
500 × 500 mm2 × 2 = 4The standard rental cube — light, stackable, one person lifts it
500 × 1000 mm2 × 4 = 8The tall rental panel — half as many seams for the same wall

Both sit on a 500 mm grid, which is what makes rental walls so quick to size on site: every dimension is a multiple of half a metre.

The same 250 mm grid also appears in 1000 × 1000 mm fixed outdoor cabinets (4 × 4 modules), but that is the minority case. For fixed outdoor work, the 320 × 160 outdoor module in 960 × 960 mm cabinets is far more common.

192 × 192 mm — the P3 and P6 grid

192 × 192 mm is a real module and you will see it quoted. It exists for one specific reason, and it is worth understanding so that you are neither steered onto it by accident nor talked out of it when it is genuinely the right choice.

A module size only works at pitches that divide into it evenly. Here is what each common module can actually do:

ModulePitches it supports (with pixel count)
320 × 160 mmP1.25 (256 × 128), P2 (160 × 80), P2.5 (128 × 64), P3.08 (104 × 52), P4 (80 × 40), P5 (64 × 32), P6.67 (48 × 24), P8 (40 × 20), P10 (32 × 16)
250 × 250 mmP1.25 (200 × 200), P1.5625 (160 × 160), P2 (125 × 125), P2.5 (100 × 100), P5 (50 × 50), P6.25 (40 × 40), P10 (25 × 25)
192 × 192 mmP1.5 (128 × 128), P2 (96 × 96), P3 (64 × 64), P4 (48 × 48), P6 (32 × 32), P8 (24 × 24), P12 (16 × 16)

(P3.08 and P6.67 are the trade names; the exact pitches are 3.0769 mm and 6.6667 mm, which is what makes the pixel count come out whole.)

Look at the two bolded entries. P3 and P6 are the only pitches that 192 × 192 covers and 320 × 160 cannot — 320 ÷ 3 = 106.67, which is not a whole number of pixels, so a true P3 module simply cannot be built at 320 × 160 mm. That is the entire reason the size exists, and it splits cleanly into two products:

  • Indoor 192 × 192 is a P3 module, and it sits in a 576 × 576 mm cabinet — 3 × 3 modules, a square cabinet on a 192 mm grid. If you are quoted a genuine indoor P3 screen, this is very likely what is inside it.
  • Outdoor 192 × 192 is a P6 module. It is a comparatively rare size internationally, but it is well established in India and you will meet it on mid-range outdoor work.

Away from those two pitches, the market has moved around it:

  • Want roughly P3 indoors on the mainstream grid? P3.08 on a 320 × 160 module gives 104 × 52 pixels — visually indistinguishable from P3.
  • Want roughly P6 outdoors on the mainstream grid? P6.67 on a 320 × 160 module gives 48 × 24 pixels.
  • Everything finer or coarser — P1.25, P2, P2.5, P4, P5, P8, P10 — is already covered by 320 × 160 and 250 × 250.

So 192 × 192 is the specialist grid for P3 and P6 — the right answer at those two pitches, and the wrong one at any other. If it is quoted to you at some other pitch, ask what the 320 × 160 equivalent would be.

Which module goes in which cabinet

Fixed arithmetic — every division has to come out a whole number:

ModuleCabinetModules per cabinetTypical use
320 × 160 mm640 × 480 mm2 × 3 = 6Indoor fixed install
320 × 160 mm640 × 960 mm2 × 6 = 12Indoor fixed install, tall
320 × 160 mm960 × 960 mm3 × 6 = 18Outdoor fixed install
250 × 250 mm500 × 500 mm2 × 2 = 4Rental / staging
250 × 250 mm500 × 1000 mm2 × 4 = 8Rental / staging, tall
250 × 250 mm1000 × 1000 mm4 × 4 = 16Outdoor fixed install
192 × 192 mm576 × 576 mm3 × 3 = 9Indoor P3
192 × 192 mm960 × 960 mm5 × 5 = 25Outdoor P6
320 × 320 mm960 × 960 mm3 × 3 = 9Outdoor
160 × 160 mm640 × 480 mm4 × 3 = 12Indoor fine pitch

What this means for aspect ratio

Here is the consequence, and it is a happy one:

  • The indoor 320 × 160 cabinets are 4:3 or 2:3 shaped, so they reach exact 16:9 in very small grids — a 4 × 3 grid of 640 × 480 cabinets is just 12 cabinets, 2.56 × 1.44 m. Indoor walls are small, and this family hits 16:9 exactly at exactly those sizes.
  • Square cabinets — 500, 576, 960 and 1000 mm — need a 16 × 9 grid, 144 cabinets, for an exact hit. That sounds like a lot until you notice what it measures: 16 × 9 cabinets of 1000 × 1000 mm is 16.00 m × 9.00 m, precisely a large hoarding. Square cabinets land on 16:9 exactly at outdoor sizes.
  • Tall 1:2 rental cabinets (500 × 1000 mm) would need a 32 × 9 grid, which is impractical — so for rental, either use the near-16:9 grids in Section 9, or mix in 500 × 500 cabinets to trim the wall back to shape.

The geometry is not fighting you. Each family lands on 16:9 in the size range it was designed for. You just have to know the grid.

Indoor cabinet 640 × 480 mm4 × 3 grid — 12 cabinets2.56 m × 1.44 mexact 16:9Outdoor cabinet 1000 × 1000 mm16 × 9 grid — 144 cabinets16.00 m × 9.00 mexact 16:9
Both are exactly 16:9. The indoor 4:3 cabinet gets there in 12 panels; the square outdoor cabinet needs 144 — which is precisely a hoarding.

5. The maths: it's a three-step chain

A modular screen's proportions are decided in three steps, and each one has to work or the next one can't.

Step 1 — Does the module fit the cabinet? Both must be whole numbers.

modules across = cabinet width  ÷ module width
modules down   = cabinet height ÷ module height

Step 2 — Does the cabinet grid make 16:9?

columns ÷ rows = (16 ÷ 9) × (cabinet height ÷ cabinet width)

or check it directly:
(columns × cabinet width) ÷ (rows × cabinet height) = 1.7778

Step 3 — What resolution does that give?

module pixels = module size ÷ pixel pitch
wall pixels   = module pixels × modules per cabinet × cabinet grid
1. MODULE320 × 1602:1 shape2. CABINET640 × 480 — 2 × 3 modules4:3 shape3. WALL12 × 9 grid — 7.68 m × 4.32 mexact 16:9 · 3840 × 2160 at P2
Module to cabinet to wall. Each step has to divide evenly, and the cabinet's own shape is what makes the last step land on 16:9.

And a point that saves a lot of confusion: because pixel pitch is identical horizontally and vertically, a wall that is physically 16:9 is automatically 16:9 in pixels too. Get the shape right and the ratio of the resolution takes care of itself. Step 3 only tells you how many pixels, not what shape they make.

The shape of the cabinet decides how easy 16:9 is

Cabinet shapeExample sizesFamilySmallest exact 16:9 gridVerdict
4:3640 × 480, 1280 × 960 mmIndoor4 × 3 (12 cabinets)Best in class. Exact 16:9 at almost any size
2:3640 × 960 mmIndoor8 × 3 (24 cabinets)Excellent — exact at practical sizes
8:51280 × 800 mmIndoor10 × 9 (90 cabinets)Good for large walls
1:1 (square)500, 576, 960, 1000 mmOutdoor / rental / P316 × 9 (144 cabinets)Exact at hoarding sizes; near-16:9 options for smaller
1:2 (tall)500 × 1000, 640 × 1280, 960 × 1920 mmRental / standee32 × 9 (288 cabinets)Exact grid is impractical — use the near-16:9 options
3:4960 × 1280 mmOutdoor64 × 27 (1728 cabinets)Exact grid is impractical — use the near-16:9 options

6. Worked example: "We want 320 × 160 modules, for an entertainment screen"

This is the most common brief we get, so let's run it all the way through. Entertainment means video, live feed and broadcast content — so 16:9 is not negotiable.

Step 1 — the module is already chosen, and it's a 2:1 shape

320 × 160 mm has a 2:1 ratio. On its own, that is awkward: to reach 16:9 from bare modules you need a grid where columns ÷ rows = 8 ÷ 9 — that is 8 across × 9 down, 72 modules, for a wall of only 2.56 m × 1.44 m. It works, but it is a lot of modules for a small screen and gives you no structural frame.

This is exactly what cabinets are for. Put the modules in the right cabinet and the problem disappears.

Step 2 — choose the cabinet: 640 × 480 mm

Candidate cabinetModulesCabinet shapeSmallest exact 16:9 gridVerdict
640 × 480 mm2 × 3 = 64:34 × 3 = 12 cabinetsChoose this
640 × 960 mm2 × 6 = 122:38 × 3 = 24 cabinetsGood alternative for tall builds
1280 × 960 mm4 × 6 = 244:34 × 3 = 12 cabinetsSame shape, larger steps
640 × 640 mm2 × 4 = 81:116 × 9 = 144 cabinetsToo coarse for indoor sizes
960 × 960 mm3 × 6 = 181:116 × 9 = 144 cabinetsOutdoor cabinet — 15.36 m minimum
960 × 640 mm3 × 4 = 123:232 × 27 = 864 cabinetsAvoid — never reaches 16:9 sensibly

640 × 480 mm is the ideal cabinet for a 320 × 160 module. It takes 6 modules (2 across, 3 down), it is 4:3 shaped, and it reaches exact 16:9 in a 4 × 3 grid of just 12 cabinets.

640×480640×480640×480640×480640×480640×480640×480640×480640×480640×480640×480640×4802.56 m (4 × 640 mm)1.44 m (3 × 480 mm)12 cabinets · 72 modules · exactly 16:9
The smallest exact 16:9 wall in the range: four 640 × 480 mm cabinets across, three down.

Step 3 — choose the grid

Every one of these is mathematically exact 16:9:

GridCabinetsModulesWall sizeScreen area
4 × 312722.56 m × 1.44 m3.7 m²
8 × 6482885.12 m × 2.88 m14.7 m²
12 × 91086487.68 m × 4.32 m33.2 m²
16 × 12192115210.24 m × 5.76 m59.0 m²
20 × 15300180012.80 m × 7.20 m92.2 m²

Step 4 — choose the pitch, and read off the resolution

Pitch is set by viewing distance, not by aspect ratio. But it decides whether you land on a standard resolution as well as a standard shape.

PitchModule pixelsCabinet pixels4 × 3 wall (2.56 × 1.44 m)8 × 6 wall (5.12 × 2.88 m)12 × 9 wall (7.68 × 4.32 m)
P1.25256 × 128512 × 3842048 × 11524096 × 23046144 × 3456
P1.53208 × 104416 × 3121664 × 9363328 × 18724992 × 2808
P1.86172 × 86344 × 2581376 × 7742752 × 15484128 × 2322
P2160 × 80320 × 2401280 × 7202560 × 14403840 × 2160
P2.5128 × 64256 × 1921024 × 5762048 × 11523072 × 1728
P3.07104 × 52208 × 156832 × 4681664 × 9362496 × 1404
P480 × 40160 × 120640 × 3601280 × 7201920 × 1080

standard = an exact standard broadcast resolution

The answer

320 × 160 mm modules at P2, in 640 × 480 mm cabinets, stacked 12 across × 9 down.7.68 m × 4.32 m. Exactly 16:9. Exactly 3840 × 2160 — native 4K. 108 cabinets, 648 modules. Plug in a 4K player and every pixel maps one-to-one, with no scaling anywhere in the chain.

And the same combination scales down perfectly: 8 × 6 cabinets gives 5.12 × 2.88 m at native 2560 × 1440, and 4 × 3 gives 2.56 × 1.44 m at native 1280 × 720. One module, one cabinet, three screen sizes, all exactly 16:9 and all at standard resolutions.

If the budget is tighter, P2.5 in the same 12 × 9 grid gives the same 7.68 × 4.32 m at 3072 × 1728 — still exactly 16:9, just not a named resolution. A 1080p file scales onto it cleanly at 1.6×. If the screen is large and viewed from 8 m or more, P4 in a 12 × 9 grid gives you native 1920 × 1080 at the same 7.68 × 4.32 m for considerably less money.


7. Worked example: an outdoor hoarding

Same logic, different family.

320 × 160 outdoor modules in 960 × 960 cabinets

The same universal module, in its outdoor IP65 build. A 960 × 960 mm cabinet takes 3 across × 6 down = 18 modules.

PitchModule pixelsCabinet pixels (3 × 6 modules)16 × 9 wall = 15.36 m × 8.64 m
P480 × 40240 × 2403840 × 2160
P564 × 32192 × 1923072 × 1728
P6.6748 × 24144 × 1442304 × 1296
P840 × 20120 × 1201920 × 1080
P1032 × 1696 × 961536 × 864

320 × 160 mm outdoor modules at P8, in 960 × 960 mm cabinets, stacked 16 across × 9 down.15.36 m × 8.64 m. Exactly 16:9. Exactly 1920 × 1080 — native Full HD. 144 cabinets, 2592 modules. Every agency file plays natively.

Same build at P4 gives native 3840 × 2160 — a 4K hoarding at the identical physical size.

250 × 250 modules in 1000 × 1000 cabinets (fixed outdoor)

PitchModule pixelsCabinet pixels (4 × 4 modules)16 × 9 wall = 16.00 m × 9.00 m
P550 × 50200 × 2003200 × 1800
P6.2540 × 40160 × 1602560 × 1440 standard
P1025 × 25100 × 1001600 × 900

A 16 × 9 metre hoarding at P6.25 is natively 2560 × 1440 — a clean 16:9 canvas that a 1080p file upscales onto at exactly 1.333×.

250 × 250 modules in 500 × 500 rental cabinets

This is the rental series format — and the same numbers apply to the 500 × 1000 mm tall rental panel, which is simply two of these stacked.

PitchModule pixelsCabinet pixels (2 × 2 modules)16 × 9 wall = 8.00 m × 4.50 m
P2.5100 × 100200 × 2003200 × 1800
P550 × 50100 × 1001600 × 900
P6.2540 × 4080 × 801280 × 720 standard
P1025 × 2550 × 50800 × 450

If a full 16 × 9 grid is more screen than the site needs, the near-16:9 grids in Section 9 give you 7 × 4, 9 × 5 and 14 × 8 options that are within 1.6 % — a black bar of a few centimetres on a screen that size.

And if you are on a 192 × 192 grid

Relevant when the pitch is specifically P3 (indoor) or P6 (outdoor) — see Section 4.

Indoor P3, in the 576 × 576 mm cabinet (3 × 3 = 9 modules per cabinet):

GridCabinet pixelsWall sizeWall resolution
7 × 4192 × 1924.03 m × 2.30 m1344 × 768
9 × 5192 × 1925.18 m × 2.88 m1728 × 960
14 × 8192 × 1928.06 m × 4.61 m2688 × 1536
16 × 9192 × 1929.22 m × 5.18 m3072 × 1728

The 16 × 9 grid is an exact hit; 7 × 4, 9 × 5 and 14 × 8 are all within 1.6 %, which covers the sizes a real indoor room actually needs.

Outdoor P6, in the 960 × 960 mm cabinet (5 × 5 = 25 modules per cabinet):

PitchModule pixelsCabinet pixels (5 × 5 modules)16 × 9 wall = 15.36 m × 8.64 m
P364 × 64320 × 3205120 × 2880
P448 × 48240 × 2403840 × 2160 standard
P632 × 32160 × 1602560 × 1440 standard
P824 × 24120 × 1201920 × 1080 standard

The arithmetic works out just as cleanly. Note that the P4 and P8 rows land on exactly the same wall size and resolution as the 320 × 160 build above — at those pitches there is no reason to specify 192 × 192.


8. Coming soon: COB panels that are already 16:9

COB (chip-on-board) is a newer construction where the LED chips are encapsulated in a solid resin layer rather than mounted as individual SMD packages. It is tougher, more contrast-rich and better at very fine pitches. It comes in two formats, and the difference between them matters for this discussion.

COB in the conventional 320 × 160 mm module — this is available now, and it is the important one for most buyers. It is the same footprint as a standard SMD module, so it drops straight into the 640 × 480 mm and 640 × 960 mm indoor cabinets described in Section 6. You get COB's durability and contrast, and you keep every exact-16:9 grid in this guide. Nothing about your sizing changes.

COB in a 600 × 337.5 mm panel — a purpose-designed format, and worth understanding because of one number. 600 ÷ 337.5 = 1.7778. The panel is itself exactly 16:9.

That single fact changes the whole calculation: any square grid of 600 × 337.5 mm panels is exactly 16:9. 2 × 2, 3 × 3, 4 × 4, 8 × 8 — you cannot get it wrong. There is no near-miss to manage and no tolerance to argue about.

The panel itself600 mm337.5 mm600 ÷ 337.5 = 1.7778= exactly 16:9…so every square grid is 16:9 too2 × 216:93 × 316:94 × 416:9
A 600 × 337.5 mm COB panel is already 16:9, so any n × n grid of them is exactly 16:9. Coming soon to the Lumina range.

It goes further. The standard pitch ladder for this panel is chosen so the pixel count is a whole number in both directions, and every one of those counts is itself 16:9:

PitchPanel resolutionPanel ratioNative 1920 × 1080Native 3840 × 2160 (4K)Native 7680 × 4320 (8K)
P0.78768 × 43216:95 × 5 → 3.00 × 1.69 m10 × 10 → 6.00 × 3.38 m
P0.9375640 × 36016:93 × 3 → 1.80 × 1.01 m6 × 6 → 3.60 × 2.03 m12 × 12 → 7.20 × 4.05 m
P1.25480 × 27016:94 × 4 → 2.40 × 1.35 m8 × 8 → 4.80 × 2.70 m16 × 16 → 9.60 × 5.40 m
P1.5625384 × 21616:95 × 5 → 3.00 × 1.69 m10 × 10 → 6.00 × 3.38 m20 × 20 → 12.00 × 6.75 m
P1.875320 × 18016:96 × 6 → 3.60 × 2.03 m12 × 12 → 7.20 × 4.05 m24 × 24 → 14.40 × 8.10 m
P2.5240 × 13516:98 × 8 → 4.80 × 2.70 m16 × 16 → 9.60 × 5.40 m32 × 32 → 19.20 × 10.80 m

Read that table as a menu. Want a native 4K wall? Pick your pitch by viewing distance and the panel count and wall size are already decided: 8 × 8 panels at P1.25 gives 4.80 m × 2.70 m at exactly 3840 × 2160. Want native Full HD in a boardroom? 4 × 4 panels at P1.25 is 2.40 m × 1.35 m at exactly 1920 × 1080.

A note on availability. The 600 × 337.5 mm 16:9 COB panel is not yet part of the Lumina range — we are adding it, and it will be available shortly. Register your interest and we will come to you first when it lands.

In the meantime, you do not need to wait to get an exact 16:9 screen. Our indoor cabinet range already does this today, and does it at more sizes and better value. A 640 × 480 mm cabinet with 320 × 160 mm modules reaches exact 16:9 in a 4 × 3 grid — 2.56 m × 1.44 m — and again at 5.12 m, 7.68 m, 10.24 m and 12.80 m wide. If you want COB specifically, we supply it now in the conventional 320 × 160 mm module, which fits those same cabinets.

Where the 16:9 COB panel will win: boardrooms, control rooms, broadcast studios, luxury retail, premium reception walls, home cinema — anywhere the screen is viewed from under 4 metres and has to look flawless.

Where the standard families still win, today: everything else. For outdoor, for large-format, for the 2–13 m indoor range and for anything cost-sensitive, the 320 × 160 module in 640 × 480 and 640 × 960 cabinets — in SMD, GOB or COB — remains the right answer, and it already lands on exact 16:9.


9. Reference tables: exact and near-16:9 grids

Exact 16:9 — indoor cabinets and modules

Cabinet / module (mm)Grid (cols × rows)PanelsWall size
640 × 4804 × 3122.56 m × 1.44 m
640 × 4808 × 6485.12 m × 2.88 m
640 × 48012 × 91087.68 m × 4.32 m
640 × 48016 × 1219210.24 m × 5.76 m
640 × 48020 × 1530012.80 m × 7.20 m
1280 × 9604 × 3125.12 m × 2.88 m
640 × 9608 × 3245.12 m × 2.88 m
640 × 96016 × 69610.24 m × 5.76 m
640 × 96024 × 921615.36 m × 8.64 m
1280 × 80010 × 99012.80 m × 7.20 m
320 × 1608 × 9722.56 m × 1.44 m
320 × 16016 × 182885.12 m × 2.88 m
600 × 337.5 (coming soon)any n × nsee Section 8

Exact 16:9 — square and tall cabinets (outdoor, rental, P3/P6)

Cabinet / module (mm)Grid (cols × rows)PanelsWall size
500 × 50016 × 91448.00 m × 4.50 m
576 × 57616 × 91449.22 m × 5.18 m
960 × 96016 × 914415.36 m × 8.64 m
1000 × 100016 × 914416.00 m × 9.00 m
250 × 25016 × 91444.00 m × 2.25 m
320 × 32016 × 91445.12 m × 2.88 m
192 × 192 (P3 / P6 grid)16 × 91443.07 m × 1.73 m
500 × 100032 × 928816.00 m × 9.00 m
640 × 128032 × 928820.48 m × 11.52 m
960 × 192032 × 928830.72 m × 17.28 m

Near-16:9 — square cabinets and modules

Square panels all share the same grid options; only the resulting wall size changes.

GridRatioOff 16:9PanelsWall — 500 mm576 mm960 mm1000 mm
7 × 41.7501.56 %283.50 × 2.00 m4.03 × 2.30 m6.72 × 3.84 m7.00 × 4.00 m
9 × 51.8001.25 %454.50 × 2.50 m5.18 × 2.88 m8.64 × 4.80 m9.00 × 5.00 m
14 × 81.7501.56 %1127.00 × 4.00 m8.06 × 4.61 m13.44 × 7.68 m14.00 × 8.00 m
16 × 91.778exact1448.00 × 4.50 m9.22 × 5.18 m15.36 × 8.64 m16.00 × 9.00 m
18 × 101.8001.25 %1809.00 × 5.00 m10.37 × 5.76 m17.28 × 9.60 m18.00 × 10.00 m
23 × 131.7690.48 %29911.50 × 6.50 m13.25 × 7.49 m22.08 × 12.48 m23.00 × 13.00 m

For 320 × 320 mm modules these grids give 2.24 × 1.28 m (7 × 4), 2.88 × 1.60 m (9 × 5) and 5.12 × 2.88 m (16 × 9). For 250 × 250 mm: 1.75 × 1.00 m, 2.25 × 1.25 m and 4.00 × 2.25 m. For 192 × 192 mm: 1.34 × 0.77 m, 1.73 × 0.96 m and 3.07 × 1.73 m.

The 576 mm column is the indoor P3 cabinet; 500 mm is the rental cube; 960 and 1000 mm are the fixed outdoor cabinets.

Near-16:9 — 640 × 480 mm cabinet

GridRatioOff 16:9PanelsWall size
4 × 31.778exact122.56 × 1.44 m
8 × 61.778exact485.12 × 2.88 m
12 × 91.778exact1087.68 × 4.32 m
16 × 121.778exact19210.24 × 5.76 m
17 × 131.7441.92 %22110.88 × 6.24 m
19 × 141.8101.79 %26612.16 × 6.72 m
20 × 151.778exact30012.80 × 7.20 m

Near-16:9 — 640 × 960 mm cabinet

GridRatioOff 16:9PanelsWall size
8 × 31.778exact245.12 × 2.88 m
11 × 41.8333.13 %447.04 × 3.84 m
13 × 51.7332.50 %658.32 × 4.80 m
16 × 61.778exact9610.24 × 5.76 m
19 × 71.8101.79 %13312.16 × 6.72 m
21 × 81.7501.56 %16813.44 × 7.68 m
24 × 91.778exact21615.36 × 8.64 m

Near-16:9 — 960 × 1280 mm cabinet

GridRatioOff 16:9PanelsWall size
7 × 31.7501.56 %216.72 × 3.84 m
12 × 51.8001.25 %6011.52 × 6.40 m
14 × 61.7501.56 %8413.44 × 7.68 m
19 × 81.7810.19 %15218.24 × 10.24 m
21 × 91.7501.56 %18920.16 × 11.52 m

Near-16:9 — tall 1:2 cabinets (500 × 1000, 640 × 1280, 960 × 1920 mm)

GridRatioOff 16:9Panels500 × 1000640 × 1280960 × 1920
7 × 21.7501.56 %143.50 × 2.00 m4.48 × 2.56 m6.72 × 3.84 m
11 × 31.8333.13 %335.50 × 3.00 m7.04 × 3.84 m10.56 × 5.76 m
14 × 41.7501.56 %567.00 × 4.00 m8.96 × 5.12 m13.44 × 7.68 m
18 × 51.8001.25 %909.00 × 5.00 m11.52 × 6.40 m17.28 × 9.60 m
21 × 61.7501.56 %12610.50 × 6.00 m13.44 × 7.68 m20.16 × 11.52 m

Near-16:9 — 1280 × 800 mm cabinet

GridRatioOff 16:9PanelsWall size
9 × 81.8001.25 %7211.52 × 6.40 m
10 × 91.778exact9012.80 × 7.20 m
11 × 101.7601.00 %11014.08 × 8.00 m
12 × 111.7451.82 %13215.36 × 8.80 m

10. Reference: what size is a native Full HD wall?

Matching the ratio means content fits. Matching the resolution means content is displayed pixel-for-pixel, with no scaling at all. Because pitch sets the pixel count, a native Full HD wall is simply 1920 × pitch wide:

Pixel pitchNative 1920 × 1080 wallDiagonal
P1.252.40 m × 1.35 m2.75 m
P1.532.94 m × 1.65 m3.37 m
P1.863.57 m × 2.01 m4.10 m
P23.84 m × 2.16 m4.41 m
P2.54.80 m × 2.70 m5.51 m
P35.76 m × 3.24 m6.61 m
P47.68 m × 4.32 m8.81 m
P59.60 m × 5.40 m11.01 m
P6.6712.81 m × 7.20 m14.69 m
P815.36 m × 8.64 m17.62 m
P1019.20 m × 10.80 m22.03 m

Double every wall dimension for native 4K at the same pitch.


11. A simple decision checklist

  1. Fixed install or rental? Fixed install, indoor or outdoor, means the 320 × 160 mm module — in SMD, GOB or COB — and its 640 × 480, 640 × 960 or 960 × 960 mm cabinets. Rental means 250 × 250 mm modules in 500 × 500 or 500 × 1000 mm cabinets. Only a genuine P3 or P6 requirement should put you on 192 × 192 (576 × 576 mm cabinet indoors, 960 × 960 mm outdoors).
  2. Where does the content come from? If the answer is "an agency", "the brand", "a laptop", "a live feed" or "a franchise pack" — build 16:9. If the answer is "we will have it designed for this screen" — custom is open to you.
  3. Is the opening fixed? Measure the true clear opening, then choose the cabinet whose shape gets closest to 16:9 inside it, rather than choosing the cabinet first.
  4. How far off 16:9 is the closest fit? Under 2 %, proceed. Over 5 %, budget for custom content or change the cabinet.
  5. What viewing distance? This sets the pixel pitch, and pitch plus the 16:9 shape together tell you whether you land on a native 1080p or 4K canvas.
  6. Will the screen ever be rented out or sold as ad inventory? If yes, 16:9 or 9:16 is close to mandatory — the media buyers will not remaster for you.

Send us the opening, not the screen size

Give us your clear opening dimensions, your viewing distance, whether it is indoor or outdoor, and where the content comes from. We will come back with the module, the cabinet, the grid, the exact wall size, the native resolution and the aspect ratio — before a single panel is ordered.

Get a sizing recommendation

Lumina Display Systems, Mumbai — indoor and outdoor LED displays, cabinets, modules and complete control systems. luminadisplay.com

Hetul Thakkar

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