What Is Swath Width? Satellite Swath Explained Simply

Quick answer: Swath width is how wide a strip of ground a satellite can see in one pass. Picture a paint roller: as the satellite moves along its orbit, it rolls out a long strip of images, and the width of that strip is the swath. A wide swath covers a lot of land quickly but shows less detail. A narrow swath shows fine detail but covers less ground. For example, Sentinel-2 images a 290 km wide strip at 10 m detail, while SuperView Neo-1 images a 12 km strip at 30 cm detail.

Swath width sounds technical, but it decides very practical things: how much land you get in one picture, how many passes your area needs, how often a satellite can come back, and how fast an imagery order is finished. This guide explains satellite swath width in plain words, shows real numbers for more than 30 satellites, and tells you how to pick the right swath for your project.

What Is Swath Width?

Swath width is the width of the strip of Earth a satellite sensor images as it flies, measured side to side, across its path. The satellite keeps moving forward, so the strip can be very long, but its width stays the same. Spec sheets usually give the swath at nadir, which means looking straight down, because that is where the strip is narrowest and sharpest.

Diagram of a satellite imaging a strip of ground: the width of the strip across the flight path is the swath width, with nadir straight below and an off-nadir view tilted to the side

The swath is the strip the satellite sees straight below. Tilting off-nadir lets it reach land beside that strip.

A few related words often get mixed up with swath width. Here is what each one means:

Term

What it means

Example

Swath width

How wide the imaged strip is, side to side

12 km for SuperView Neo-1

Strip length

How long the strip is, front to back, set by how long the camera stays on

Can run for hundreds of kilometres

Scene

One standard image cut from a strip

A Landsat scene is about 170 km by 185 km

Nadir

The point straight below the satellite

Swath widths are usually listed at nadir

Ground track

The line on the ground directly under the satellite's path

The swath is centred on it when looking straight down

Field of regard

All the ground a satellite can reach by tilting its camera

Often hundreds of kilometres wider than the swath

What Decides a Satellite's Swath Width?

A satellite's swath width depends mainly on two things: how high it flies and how wide its camera's view angle is. It works like a flashlight. Hold it higher, or use a wider beam, and the circle of light on the floor gets bigger.

  • Altitude: a higher orbit makes a wider strip.
  • Field of view: a camera with a wider viewing angle sees a wider strip.
  • Pixels across the sensor: each camera has a fixed row of detectors, so spreading them over a wider strip makes every pixel cover more ground.
  • Number of cameras: some satellites place cameras side by side. GF-2 joins two cameras for a 45 km swath, and GF-1 uses four wide-field cameras to cover about 800 km.
  • Imaging mode: radar satellites can switch between narrow and wide modes on command.

For a camera looking straight down, there is a simple rule: swath width is about 2 × altitude × tan(half the view angle). Sentinel-2 flies at 786 km with a 20.6 degree view angle, so its swath works out to about 290 km. Earth's curve makes very wide swaths a little wider than this rule says.

Pixel counts show why wide swaths lose detail. Sentinel-2 spreads about 29,000 pixels across its 290 km strip, so each pixel covers 10 m. SuperView Neo-1 spreads about 40,000 pixels across a 12 km strip, so each pixel covers 30 cm. The cameras hold a similar number of pixels; one spreads them thin and wide, the other packs them close together.

Swath Width vs Resolution and Revisit Time

Every imaging satellite balances three things: how wide it sees (swath width), how much detail it shows (resolution) and how often it comes back (revisit time). You cannot max out all three with one camera. A wider swath means less detail per pixel but faster coverage of the whole planet; a narrower swath means sharper images but fewer places seen on each orbit.

Bar chart comparing satellite swath widths from 3,040 km for VIIRS and 290 km for Sentinel-2 down to 12 km for SuperView Neo-1 and 5.9 km for SkySat, with each satellite's resolution

Swath widths of 15 well-known satellites on a log scale. The sharpest cameras have the narrowest strips.

Why a Wider Swath Means Less Detail

A camera has a fixed number of pixels in each row. Stretch that row over a wider strip and every pixel has to cover more ground, so small things blur together. That is why the satellites that map the whole Earth every day see at 250 m or more, while satellites that can spot a parked car look at strips only 10 to 15 km wide. Detail also drops near the edges of very wide swaths, because the camera views those areas at a slant.

Seville Sentinel 2C satellite imagery

Wide swath, less detail: Sentinel-2C shows the whole Seville region at 10 m per pixel from a 290 km strip.

Doha Qatar 30cm beijing 3b bj3n-satellite imagery

Narrow swath, fine detail: a 30 cm Beijing-3B image of Doha shows individual tanks, trucks and rooftops.

How Swath Width Sets Revisit Time

Earth observation satellites circle the planet about 14 to 15 times a day. At the equator, one day's orbits land roughly 2,700 km apart, so a satellite with a 2,330 km swath, such as MODIS, can cover almost everywhere daily. Landsat's 185 km swath needs 16 days of slightly shifted orbits to fill the gaps, which is exactly why each Landsat satellite repeats every 16 days. Sentinel-2's 290 km swath plus a second satellite brings the repeat down to five days. High resolution satellites with 10 to 20 km swaths could not cover the world this way, so they tilt toward their targets instead, as our guide to satellite revisit rates explains.

off-nadir

Agile satellites tilt toward targets instead of waiting for them to pass directly below, which shortens revisit times for narrow-swath cameras.

Satellite Swath Width Comparison

Satellite swath widths range from about 5 km for the sharpest commercial cameras to over 3,000 km for daily weather and climate sensors. The table lists optical satellites from widest to narrowest, measured at nadir, with the best resolution each one offers:

Satellite or camera

Swath width

Best resolution

Best for

VIIRS (Suomi NPP, NOAA-20 and NOAA-21)

3,040 km

375 m

Daily fires, night lights, weather

MODIS (Terra and Aqua)

2,330 km

250 m

Daily global land and ocean

Sentinel-3 OLCI

1,270 km

300 m

Ocean and land colour

CBERS-04 wide-field imager

866 km

64 m

Regional land cover

GF-1 (four wide-field cameras together)

About 830 km

16 m

Regional crops, water and land change

GF-6 wide-field camera

800 km

16 m

Crop and forest monitoring

CBERS-04A wide-field imager

685 km

55 m

Regional land cover

Sentinel-2

290 km

10 m

Free land monitoring every five days

Landsat 8 and 9

185 km

15 m (black and white), 30 m (colour)

Free land imaging back to 1972

SuperView Neo-3

130 km

0.5 m

Very high resolution over large areas

GF-6 main camera

90 km

2 m

Detailed regional mapping

GF-1 B, C and D

66 to 69 km

2 m

Land use and farming

SPOT 6 and 7

60 km

1.5 m

Regional mapping

ZY-3 (straight-down camera)

51 km

2.1 m

Stereo mapping and elevation

GF-2 (two cameras together)

45 km

0.8 m

City and land resource mapping

TripleSat

About 24 km

0.8 m

Daily revisit with three satellites

Beijing-3A

23.5 km

0.5 m

Land and resource monitoring

GF-7

At least 20 km

0.65 m

Stereo mapping

Pléiades

20 km

0.5 m

Detailed mapping

SuperView-2

15 km

0.42 m

Detailed mapping with extra colour bands

Pléiades Neo

14 km

0.3 m

Very detailed site imaging

WorldView-3

13.1 km

0.31 m

Very detailed site imaging

SuperView-1 and SuperView Neo-1

12 km

0.5 m and 0.3 m

Very detailed site imaging

WorldView Legion

10 km

About 0.3 m

Frequent high-detail revisits

Planet SkySat

5.9 km

0.5 m

Small targets, video

Off-Nadir Tilting: Seeing Beyond the Swath

Modern high resolution satellites are agile: they can roll and tilt to point their camera away from straight down, called off-nadir viewing. This lets a satellite with a 12 km swath reach targets hundreds of kilometres to the side of its path, so it can revisit a site far more often. The catch is that tilting looks through more air and at a slant, so each pixel covers more ground and detail drops a little; see our guide to the off-nadir angle for how much.

Nadir vs off nadir angle

Nadir (left) looks straight down for the sharpest view; off-nadir (right) reaches farther to the side at a slant.

Agile satellites also use tilting to cover areas wider than one swath in a single pass:

  • Multi-strip mapping: the satellite takes one strip, rolls slightly sideways, and takes the next strip beside it, building a block of imagery in minutes.
  • Corridor imaging: the satellite steers along a long, winding feature such as a pipeline, road, railway, river or coastline, instead of a straight north-south strip.

SAR Satellite Swath Width: Changing With the Mode

Radar (SAR) satellites are different: they can change their swath width on command by steering their radar beam. Spotlight mode stares at one small patch for the finest detail, stripmap mode images a steady medium strip, and ScanSAR mode sweeps the beam across several sub-strips to cover a very wide area with less detail. Radar also sees through cloud and at night.

Satellite and mode

Swath width

Resolution

Sentinel-1 Stripmap

80 km

5 m

Sentinel-1 Interferometric Wide (main land mode)

250 km

5 × 20 m

Sentinel-1 Extra Wide (oceans and ice)

400 km

20 × 40 m

Sentinel-1 Wave

20 × 20 km samples

5 m

GF-3 Spotlight

10 km

1 m

GF-3 Ultra-fine and Fine Stripmap

30 to 100 km

3 to 10 m

GF-3 Standard and Quad-Polarisation

30 to 150 km

8 to 25 m

GF-3 ScanSAR

300 to 650 km

50 to 500 m

LT-1 Stripmap (L-band)

30 to 250 km

3 to 30 m

LT-1 Scan (L-band)

400 km

30 m

A radar (SAR) image of farm fields. Narrow radar modes show detail like this; wide modes trade it for coverage. See our SAR satellite imagery options.

Hyperspectral and Geostationary Swath Widths

Hyperspectral cameras split light into hundreds of narrow colours, which leaves fewer pixels for width, so their swaths are usually 20 to 60 km. Geostationary cameras are the opposite case: from 35,786 km up, they stare at the same region all day instead of sweeping a strip.

spectral cube hyperspectral imagery

A hyperspectral image is a cube: width and height on the ground, plus hundreds of colour layers. Those extra layers are why hyperspectral swaths stay narrow.

Satellite and camera

Swath width

Resolution

GF-5 and GF-5B hyperspectral imager (AHSI)

60 km

30 m

ZY-1 02D and 02E hyperspectral camera

60 km

30 m

ZY-1 02D and 02E multispectral camera

115 km

2.5 m (black and white), 10 m (colour)

Pixxel

40 km

About 5 m

Wyvern Dragonette-1

20 km

5.3 m

GF-4 (geostationary, staring camera)

400 km

50 m

Gaofen-4 geostationary satellite images of a wildfire smoke plume in Gaoming District, Foshan, captured repeatedly over three days

GF-4 watches a 400 km area from geostationary orbit, so it can photograph the same wildfire again and again over several days.

Stereo Swath and 3D Elevation Models

Stereo mapping satellites carry cameras that look forward and backward as they fly, so every spot in the swath is photographed from two angles a few seconds apart. Comparing the two views reveals height, which is how digital elevation models are made. ZY-3's straight-down camera covers 51 km and its forward and backward cameras 52 km, while GF-7 covers at least 20 km at 0.65 m detail. The usable stereo area is where the forward and backward strips overlap.

Stereo satellite image acquisition: one satellite images the same city from two positions along its orbit, producing a point cloud, DSM, 3D mesh and 3D city model

One satellite photographs the same area from two positions along its orbit to build 3D data. See our stereo satellite imagery.

Swath Width and Daily Collection Capacity

Swath width also caps how much ground a satellite can photograph in a day, because each second of imaging adds a strip exactly one swath wide. Operators publish this as daily collection capacity in square kilometres:

Satellite or fleet

Swath width

Daily capacity (operator figures)

SuperView Neo-1

12 km

Up to 1.5 million km²

SuperView-1

12 km

Up to 2 million km²

SuperView Neo-3

130 km

About 1.4 million km²

TripleSat (three satellites)

About 24 km

About 0.5 million km²

Full SuperView Neo network (28 satellites)

12 to 130 km

Up to 30 million km²

How Swath Width Affects Your Imagery Order

When you order new satellite images, swath width decides how many passes your area needs. If your area is wider than the satellite's swath, it has to be split into strips, and each strip may be captured on a different pass or day. More passes mean a longer wait.

Here is a simple example. Say your area is 40 km by 40 km. A satellite with a 12 km swath needs four side-by-side strips to cover it. A satellite with a 130 km swath, such as SuperView Neo-3, covers it in one pass. Both can deliver 50 cm or better detail, but one finishes in a single shot.

A few tips help you plan:

  • Match swath to area: if one clean, same-day view matters, pick a satellite whose swath is wider than your area.
  • Expect seams across strips: strips taken on different days can differ in light, shadows, clouds or crop colour.
  • Use corridors for long, thin areas: pipelines and roads are cheaper and faster as corridor strips than as one big box.
  • Check the archive first: existing images that already cover your area can be delivered right away.

Which Swath Width Do You Need?

Choose the swath width by the size of your area and the smallest thing you need to see. Wide swaths suit regional monitoring; narrow swaths suit sites and assets.

Job

Swath that fits

Example satellites

National crop, drought or fire monitoring

300 to 3,000 km

MODIS, VIIRS, GF-6 wide-field camera

Farm, forest and water monitoring

100 to 300 km

Sentinel-2, Landsat, SuperView Neo-3

City planning and land use

20 to 130 km

GF-2, Beijing-3A, SuperView Neo-3

Construction sites and asset checks

5 to 15 km

SuperView Neo-1, WorldView-3, SkySat

Floods and disasters under cloud

100 to 650 km radar

Sentinel-1, GF-3 ScanSAR, LT-1

3D terrain and elevation models

20 to 50 km stereo

GF-7, ZY-3

Pipelines, roads and coastlines

Narrow swath in corridor strips

Agile very high resolution satellites

Find the Right Swath for Your Area

Send us your area and the detail you need. We will check archive images and new captures across more than 130 satellites, from 12 km to 130 km swaths and radar, and send you a free quote.

Frequently Asked Questions

Is swath width the same as field of view?

No. Field of view is an angle, measured in degrees, that describes how wide the camera looks. Swath width is a distance on the ground, measured in kilometres, that results from that angle and the satellite's height.

Which satellite has the widest swath?

Among satellites that sweep strips, VIIRS has one of the widest at about 3,040 km. Geostationary weather satellites go further: they see a whole face of Earth at once, so they do not use a swath at all.

Do neighbouring swaths overlap?

Yes, slightly at the equator and much more near the poles, where orbits bunch together. For Landsat, side overlap between neighbouring paths grows from about 7% at the equator to over 80% at high latitudes, which is why polar areas get imaged more often.

What does swath width mean in sonar seafloor mapping?

Ships use multibeam sonar that sends sound in a fan across the seafloor. The width of seabed measured in one pass is also called the swath, and it grows with water depth, so deep-ocean surveys cover much wider strips than coastal ones.

What does swath width mean for drones and crop sprayers?

In farming equipment, swath width is the width of ground a sprayer, spreader or spray drone covers in one pass. The idea is the same as with satellites, but the numbers are metres instead of kilometres.

Where can I find a satellite's swath width?

Check the operator's specification sheet, where swath is listed at nadir, or reference databases such as ESA's eoPortal and the CEOS mission database. Imagery providers also list swath widths when you plan a tasking order.

Does a wider swath make imagery cheaper?

Usually per square kilometre, yes. Wide-swath medium resolution data such as Sentinel-2 and Landsat is free, and wide-swath commercial satellites can cover large areas with fewer passes. Very high resolution narrow-swath imagery is priced per square kilometre with minimum order sizes.

Sources

  • ESA: Sentinel-2 MSI and Sentinel-1 SAR user guides, acquisition modes and swath
  • USGS: Landsat 8 and Landsat 9 missions, Worldwide Reference System and scene size
  • NASA: MODIS and VIIRS instrument specifications
  • ESA: Sentinel-3 OLCI instrument
  • China Centre for Resources Satellite Data and Application: GF-1, GF-2, GF-3, GF-4, GF-5, GF-6, GF-7, ZY-1 02D/02E, ZY-3 and CBERS-04/04A specifications
  • China Siwei Surveying and Mapping Technology: SuperView-1, SuperView-2, SuperView Neo-1 and SuperView Neo-3 specifications
  • Twenty First Century Aerospace Technology: TripleSat and Beijing-3A specifications

Mustafa Jawaad, General Manager at XRTech Group

Mustafa Jawaad
General Manager, XRTech Group

Mustafa helps governments and critical industries get satellite and UAV data in days rather than weeks, from archive search and new satellite tasking to processed maps, so teams can plan infrastructure faster and with less risk. Connect on LinkedIn.

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