
OVERVIEW
] PLANETUranus is an . It orbits the Sun at a mean distance of 19.1892 . It has a mass of 14.54 and a mean radius of 3.98 · 25 362 . It was discovered in 1781.
The first planet found with a telescope, tipped so far on its side that it orbits the Sun rolling rather than spinning, with poles that face the Sun for decades at a time.
- WHAT IT IS
- Ice giant
- HOW FAR
- 19.19
- HOW BIG
- 3.98 · 25 362
- ONE ORBIT TAKES
- 84
Its average distance from the Sun, not from Earth.
Its mean radius: half the width across.
One trip round the Sun.
THE MODEL
] WITH ITS RINGSCALCULATED · NOT AN OBSERVATION · CATALOGUED RADIUS · DENSITY 1.27 G/CM³ FROM MASS AND RADIUS · ICE GIANT · RADIUS 25 400 KM · RETROGRADE ROTATION · LIT FROM WHERE THE SUN IS · TURNING ABOUT ITS OWN POLE · RINGS INNER SYSTEM, EPSILON
Drawn from the catalogued radius and from the same properties the picture at the top of this page uses, at the distance a flight to it would stop. Its 2 rings are geometry rather than a texture — each band's edges and its optical depth are catalogued, and how opaque it looks is worked out from the angle the ray crosses it at, which is why they thicken towards edge-on. The outermost reaches 2.0 times the body's own radius. Drag it, or use the arrow keys, to look from another direction. The stars behind are the 498,631 this catalogue holds real distances for, at their real positions and drawn from where the camera actually is — so the constellations are wrong, and that is the point. This is the sky from there, not the sky from here.
IMAGES
] 3 FRAMES- Ardenau4
CC0 - NASA, ESA, A.A. Simon (NASA Goddard), and M.H. Wong and A.I. Hsu (University of California, Berkeley)
CC BY 4.0 - NASA, ESA, and M. Showalter (SETI Institute)
Public domain
OBSERVING
] FROM WHERE YOU AREWhat it takes to see Uranus for yourself. Everything in this part of the page is worked out for a real horizon, a real night and the equipment you say you have.
Say where you are, and this line says when Uranus is worth going out for.
THROUGH AN EYEPIECE
] 150 MM TELESCOPE · 25 MM EYEPIECEBright enough to see with your eyes alone, once you are away from town lights. Today it is 3.60″ across. It stops being a point of light at about 17×, and at 48× it is a small round disc.
- 48×
- 1.08
- 1.25
- 13.0
- 3.60
- SHOWS A DISC FROM
- 17×
- RINGS ACROSS
- 7.26
- MAGNITUDE TODAY
- 5.71 · within reach
The rings reach 7.26″ from edge to edge. What decides whether there is anything there to look at is the material rather than the reach: the densest band, Epsilon, is 0.0035″ wide on the sky — set that against the above — and its of 1 stops 63% of the light passing through it.
Its largest moons swing out to 13.5″ for Ariel, 18.9″ for Umbriel, 30.9″ for Titania and 41.4″ for Oberon, at their widest. Every one of them gets further out than this equipment separates. How bright they are is another question, and one the catalogue does not answer: it publishes no magnitude for any moon.
Computed for 2026-08-27 from the centre of the Earth, and from the mean radius the catalogue holds. A distance changes daily, so this width is a fact about that date and not about the body.
CATALOG DATA
] 12 FIELDSThe raw catalogue values, as the source published them, with the error bars where one was published — sorted by what each set of figures is about rather than by the order they happened to be stored in.
WHAT IT IS MADE OF
What the object is in itself, rather than how it happens to look from here.
- Mean temperature
- −195
- Rotation period
- 17.24 , retrograde
- Axial tilt
- 97.8
WHERE IT IS AND HOW IT MOVES
Position, motion across the sky and the size it covers on it. These are measurements of the object as seen from here, so every one of them depends on where here is.
- North pole (RA)
- 257.311
- North pole (Dec)
- −15.175
THE ORBIT
The shape of the path, where the object sits on it, and the instant those figures were true of. An orbit is a fit to observations and drifts away from the real one either side of its epoch.
- Orbital period
- 84.02
- Eccentricity
- Inclination
- 0.77
- Longitude of ascending node
- 74.02
- Longitude of perihelion
- 170.95
- Mean longitude
- 313.24
- Element epoch
- 2451545.0000
ALSO KNOWN AS
] 1 DESIGNATIONS- Common name Uranus
CITE THIS PAGE
] DR1This page is live and its numbers move when an upstream refreshes, so the citation names the release the rows belong to rather than the day you read them. The release itself is frozen, republished as a bundle, and is what a data-availability statement should point at.
SpaceCatalog. Uranus [catalogue entry]. Data release DR1 (2026-08-21). https://spacecatalog.org/object/uranus
@misc{spacecatalog_uranus,
author = {{SpaceCatalog}},
title = {{Uranus}},
howpublished = {SpaceCatalog, data release DR1 (2026-08-21)},
year = {2026},
url = {https://spacecatalog.org/object/uranus},
note = {Catalogue entry, data release DR1 (2026-08-21). Values from SpaceCatalog curated data.}
}The values above were taken from SpaceCatalog curated data — CC-BY-4.0. Citing this page does not replace citing that catalogue.