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METEOSAT-10 (MSG-3)

Meteosat-10 is a European geostationary weather satellite in the Meteosat Second Generation series. It has provided high-cadence observations over Europe, Africa and surrounding oceans.

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Object identity

NORAD ID
38552
COSPAR ID
2012-035B
Operator
Not listed
Country
Not listed
Launch date
Not listed

Immediate discovery

Why this satellite matters

Repeated multispectral imaging turns radiance measurements into cloud type, temperature and atmospheric products through calibration and retrieval algorithms.

Understanding the mission

Science and engineering ideas

Repeated multispectral imaging turns radiance measurements into cloud type, temperature and atmospheric products through calibration and retrieval algorithms.

Mission

Mission and purpose

Weather spacecraft carry instruments that observe Earth and its atmosphere in visible, infrared, microwave, or other wavelengths. Different orbits provide either repeated regional views or broad global coverage.

  • Repeated multispectral imaging turns radiance measurements into cloud type, temperature and atmospheric products through calibration and retrieval algorithms.

Design

Engineering

Repeated multispectral imaging turns radiance measurements into cloud type, temperature and atmospheric products through calibration and retrieval algorithms.

Real orbital values

The mathematics

The current two-line element set reports approximately 1.0027 revolutions per day. Dividing 1,440 minutes by that value gives an estimated orbital period of 1,436.1 minutes.

Period

1,436.1 min

Representative speed

11,069 km/h

Representative altitude

35,794 km

Inclination

4.88°

These are representative calculations derived from current orbital elements, not fixed physical specifications. Altitude and speed change around an elliptical orbit, and predictions change as new orbital elements are published.

Launch record

Launch and deployment

MSG-3, later Meteosat-10, launched on 5 July 2012 aboard an Ariane 5 from Kourou.

TransitSatellite does not estimate historical launch weather. Temperature, clouds, wind, holds, and scrub reasons will appear only when supported by traceable historical sources.

Orbit

GEO orbit explained

A geosynchronous satellite takes about one sidereal day to orbit Earth. A circular equatorial geostationary satellite appears to remain near one longitude in the sky.

GEO is valuable when continuous coverage of a broad region matters, although the great distance increases signal delay and reduces image detail compared with lower orbits.

Live TransitSatellite experience

See METEOSAT-10 (MSG-3) moving now

Open the live tracker to view its current calculated position, trajectory, orbital information, visibility tools, and Save and Share controls.

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Learning

Questions to explore

  • Why can infrared instruments observe clouds at night?
  • What is the difference between continuous regional coverage and global coverage?

Evidence

Sources and data notes

Current identity and orbital elements come from CelesTrak’s public GP data. Calculated orbit values are derived from the current TLE and may change after catalog updates. Mission-history claims are added separately and require authoritative sources.

Catalog updated

Sep 17, 2026, 1:04 AM UTC

Story review

1970-01-01T00:00:00.000Z