Satellite Pass Times for Your Location

Know exactly when the next satellite will fly over you — and where to look. OrbitalNodes.ai calculates pass predictions in real time using SGP4 orbital propagation, automatically detecting your location via GPS.

We track 8 major satellites including the ISS, Tiangong, Hubble, Landsat 9, and more. For each one, we predict the next visible pass from your exact location and show a live countdown timer with the direction and elevation in plain English — "Look Northwest, halfway up the sky, in 23 minutes."

Our "Best Pass This Week" feature highlights the single best, brightest, easiest-to-see pass coming up in the next 7 days.

⏱ SEE NEXT PASSES
NEXT PASS OVERHEADES — YOUR LOCATION
Live predictions using your GPS coordinates
WAITING
Tap to calculate the next passes over you
PEAK ELEVATION — HOW HIGH A PASS CLIMBS
Every pass rises from the horizon, peaks, then sets. The higher above your horizon it climbs, the brighter, longer and clearer it looks — a pass near the zenith (straight overhead) is the best you can get.
90° · zenithhigh pass · greatlow pass · poorYOU
PASS QUALITY — WHAT MAKES A GREAT SIGHTING
POOR
MAX ELEVUnder 20°
DURATION1–2 min
BRIGHTNESSDim · mag 2–4
Skip it
GOOD
MAX ELEV30– 60°
DURATION3–5 min
BRIGHTNESSBright · mag 0–2
Worth it
OVERHEAD
MAX ELEV75–90°
DURATION5–6 min
BRIGHTNESSmag −3 to −6
★ Best!
Why overhead passes are so much brighter: at 15° the ISS is 2,400 km away; directly overhead it’s only 400 km — 6× closer. Brightness follows the inverse-square law, so 6× closer is 36× brighter — the difference between a faint star and a blazing light crossing the sky.

PASS PREDICTION FAQ

How accurate are satellite pass predictions?

Very accurate for the next few hours — typically within 1-2 seconds for timing and 1-2 degrees for position. Accuracy decreases for passes further into the future because orbits are affected by atmospheric drag, solar activity, and for the ISS, regular orbital boosts. OrbitalNodes uses live TLE data refreshed from CelesTrak and Space-Track multiple times per day.

What does "peak elevation" mean?

The highest point the satellite reaches during its pass, measured in degrees above the horizon — 0° is the horizon, 90° is directly overhead. Higher passes are brighter, longer, and easier to see. OrbitalNodes rates passes above 45° as "great" and above 15° as "good." The diagram above shows the difference visually.

Why is a pass listed but marked "not visible"?

A satellite can be above your horizon but still invisible — it might be daylight, the satellite might be in Earth's shadow (no sunlight to reflect), or it might be too faint for the naked eye. OrbitalNodes checks all three conditions and only highlights passes you can actually go outside and see.

What are "naked eye" vs "binoculars" passes?

Naked eye passes are bright enough to see without equipment — the ISS, Tiangong, and BlueBird-6 at peak can reach magnitude −4, brighter than any star. Binoculars passes are dimmer satellites like BlueBirds 1-5 (magnitude 3) that reward a pair of 7x50 binoculars but are still genuinely impressive to spot.

Why did a satellite pass at a different time than predicted?

Orbital mechanics are affected by atmospheric drag (especially below 500km altitude), solar radiation pressure, and active manoeuvring. The ISS periodically fires thrusters to boost its orbit, which can shift pass times by minutes. Always use a fresh prediction from the day of observation for best accuracy.

How long does a satellite pass last?

Typically 3-6 minutes from horizon to horizon for a high-elevation pass. Low passes (under 15°) may only be visible for 1-2 minutes before dipping back below the horizon or into Earth's shadow. The ISS at 80° elevation gives you the full 6 minutes — plenty of time to find it and watch it cross.

What's the best elevation for a satellite pass?

Anything above 40° is excellent. At 80-90° the satellite passes nearly directly overhead, maximising brightness because it's at its closest point to you — the ISS can appear 4x brighter at 90° than at 15°. The catch is you have to crane your neck — a 45-60° pass is often the sweet spot for comfortable viewing.

CITE THIS PAGE
OrbitalNodes.ai. “Satellite Pass Times for Your Location”. https://orbitalnodes.ai/passes/
Figures on this page are computed from current orbital elements and released under CC BY 4.0 — quote, republish or build on them freely with credit to OrbitalNodes.ai.
EARENDIL-1 · ONE SATELLITE LICENSED · LAUNCHES 2026

A mirror in orbit, aimed at a five-kilometre spot after dark.

Independent tracking — pass times, brightness and mission status.

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