TrackStarlink

STARLINK-31114

Live orbital tracking for STARLINK-31114, part of the SpaceX Starlink constellation.

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NORAD ID58766
COSPAR ID24011B
Altitude473.7 km
Velocity7.63 km/s
Inclination53.16°
Latitude-33.228°
Longitude-109.319°

About STARLINK-31114 and its orbit

STARLINK-31114 is one of the thousands of mass-produced flat-panel satellites that make up SpaceX's Starlink broadband constellation, catalogued as NORAD object 58766. The catalogue number is the reliable way to refer to it: names are revised and reused, catalogue numbers are permanent.

Which shell it flies in

Its 53.2° inclination puts STARLINK-31114 in Starlink's workhorse 53° shell, the constellation's largest group by some margin. Inclination sets the maximum latitude a satellite ever reaches, so this one sweeps everywhere between roughly 53° north and 53° south on every revolution — a band containing the large majority of the world's population.

That single number is why coverage is not uniform across the globe. Observers near 53° latitude see satellites in this shell climb high overhead; observers much further poleward only ever see them low toward the equator, at a shallow angle that costs both signal strength and visibility.

Its orbital plane

Inclination alone does not say where in space the orbit sits — for that you need the right ascension of the ascending node, which for STARLINK-31114 is 313.1°. Think of inclination as how far the orbital ring is tipped, and RAAN as which way that tip is rotated around the Earth's axis. Satellites sharing a shell share an inclination and differ in RAAN, and each distinct RAAN value is one orbital plane.

Starlink distributes satellites across many planes, evenly spaced around the axis, with a string of satellites strung around each plane. That structure is what makes handover work: because the geometry is designed rather than accidental, there is always a next satellite arriving from a predictable direction at a predictable moment. It is also what the laser crosslink mesh is built on, since each satellite's nearest neighbours in orbit are known in advance.

Speed and orbital period

STARLINK-31114 circles the Earth 15.34 times a day, one full orbit every 94 minutes, travelling at 7.63 km/s — about 27,463 km/h. That speed is not a design choice: at this altitude it is precisely what is required to stay in orbit, and every satellite at the same height moves at effectively the same rate.

Because the Earth keeps turning underneath, each successive orbit crosses the equator about 24° of longitude west of the previous one. That westward walk is why a satellite that passed over you today arrives at a noticeably different time tomorrow, and why pass predictions have to be computed for your specific coordinates rather than read off a repeating timetable.

From the ground the same speed means a pass is brief. STARLINK-31114 crosses from one horizon to the other in a handful of minutes, which is why satellite spotting is an appointment rather than a browse.

Altitude and service life

STARLINK-31114 is currently around 474 km up, between the low deployment altitude and the main operational band. That usually means it is manoeuvring. Starlink satellites raise and trim their orbits with onboard Hall-effect ion thrusters — krypton on the earlier generations, argon on the newer ones — which produce very little thrust very efficiently, moving a satellite a few kilometres per day rather than in a single burn.

Its orbit is very nearly circular: eccentricity 0.00014, with an apogee of 464 km and a perigee of 462 km — a difference of only about 2 km between its highest and lowest points. Communications constellations want circular orbits, because a satellite whose altitude swung widely would deliver inconsistent coverage and latency to everyone beneath it.

It launched in 2024 under international designator 24011B, deployed as part of a batch on a single Falcon 9. That launch date puts it in the V2 Mini generation, with substantially larger phased arrays, argon thrusters and dielectric mirror film for brightness control. Starlink satellites are designed for roughly five years of service, limited mainly by propellant, so at about 2 years old this one is still comfortably inside its expected service life.

Where it is right now

When this page was generated, STARLINK-31114 was directly above 33.23° S, 109.32° W. It is currently southbound, heading back toward and past the equator. The point on the ground beneath a satellite is called its sub-satellite point, and it is the one number on this page that is different every time you load it.

Local solar time at that point was around 11:41 — meaning the ground below was in daylight, so anyone directly beneath it could not see it against a bright sky. That distinction is the whole basis of satellite spotting: a satellite is only visible when it is sunlit while the observer beneath it is not.

How current this data is

Everything on this page is computed, not measured. The satellite does not report its position publicly; instead its orbit is described by a two-line element set, and that description is advanced to the current moment with the SGP4 model. This element set has an epoch of 2026-08-24 05:01 UTC, making it about 3 days old. At this age the prediction has drifted somewhat — expect errors of a few kilometres, which shifts pass timings by seconds rather than minutes.

Accuracy decays for two reasons the model cannot anticipate. Atmospheric density at this altitude varies with solar activity, so drag is never exactly what was assumed; and Starlink satellites manoeuvre routinely for station-keeping and collision avoidance, which invalidates any element set published beforehand. This site refreshes its data from the public feed every few hours for precisely that reason.

Seeing STARLINK-31114 from the ground

Whether you can see STARLINK-31114 depends first on geography and then on timing. With a maximum latitude of 53°, it can be seen from up to roughly 63° north or south — beyond that it never rises meaningfully above the horizon.

Within that band, the constraint is light. Starlink satellites emit nothing visible; they are seen only by reflected sunlight, which means the satellite has to be sunlit while your own sky is already dark. That happens during twilight — roughly one to two hours after sunset and the same window before sunrise. In the middle of the night STARLINK-31114 passes through Earth's shadow and reflects nothing at all, which is also why a satellite you are watching can fade to nothing partway across the sky.

  • Look during twilight — the satellite must be sunlit while your sky is dark
  • Expect a steady, unblinking point of light, not a flashing one; aircraft blink
  • A pass crosses a large arc of sky in three to six minutes
  • A sudden fade partway across means it has entered Earth's shadow

Frequently asked questions

Can I see STARLINK-31114 from where I live?
Only if your latitude is below about 63° north or south. With its 53.2° inclination, STARLINK-31114 never travels further than 53° from the equator, so beyond that it never rises meaningfully above the horizon. Within that band it is visible to the naked eye only around dawn or dusk, when the satellite is sunlit while your sky is dark.
How fast is STARLINK-31114 moving?
About 7.63 km/s — roughly 27,463 km/h, completing one orbit every 94 minutes. Every satellite at this altitude moves at effectively the same speed; it is set by orbital mechanics, not by the operator.
What altitude does STARLINK-31114 orbit at?
Its orbit runs between a perigee of 462 km and an apogee of 464 km — an eccentricity of 0.00014, which is very nearly a perfect circle. Communications satellites are placed in circular orbits so that coverage and latency stay consistent for everyone beneath them.
Which orbital plane is STARLINK-31114 in?
Its right ascension of the ascending node is 313.1°, which is the value identifying its orbital plane. Satellites in the same shell share an inclination and are distributed across many planes at different RAAN values, evenly spaced around the Earth's axis.
When was STARLINK-31114 launched?
In 2024, under international designator 24011B — the code that encodes the launch year and which launch of that year carried it. It was deployed as part of a batch of Starlink satellites on a single Falcon 9, released together into a low parking orbit and then climbing to its operational shell under its own power.
How accurate is this tracking data?
Positions are computed from STARLINK-31114's latest public two-line element set using the SGP4 model — the same data and algorithm professional trackers use. The element set in use here has an epoch of 2026-08-24, making it about 62 hours old. Fresh element sets are accurate to roughly a kilometre; accuracy degrades over days because atmospheric drag varies and satellites manoeuvre without notice, which is why this site refreshes its data every few hours.

Want to see a satellite like this with your own eyes? Check tonight's visible Starlink passes over your city, read how the orbital data behind this page works, or browse the full satellite list.