February 17, 2026
Annular solar eclipse
Seen from: southern Argentina and Chile, southern Africa, Antarctica.
Path of the annular eclipse: Antarctica
Mid-eclipse: 12:11 UT
Sky calendar
Every lunar and solar eclipse through 2030, with where each one can be seen, from NASA’s eclipse tables. Set a place on Tonight’s moon and this page shows the local time and whether each lunar eclipse is visible from there.
Night side: lunar eclipse visible Path of totality or annularity Your placeTypical clouds that month (NOAA, 1991–2020)
February 17, 2026
Seen from: southern Argentina and Chile, southern Africa, Antarctica.
Path of the annular eclipse: Antarctica
Mid-eclipse: 12:11 UT
March 3, 2026
Seen from: eastern Asia, Australia, Pacific, Americas.
Mid-eclipse: 11:33 UT
August 12, 2026
Seen from: northern North America, western Africa, Europe.
Path of the total eclipse: Arctic, Greenland, Iceland, Spain
Mid-eclipse: 17:45 UT
August 28, 2026
Seen from: eastern Pacific, Americas, Europe, Africa.
Mid-eclipse: 04:12 UT
February 6, 2027
Seen from: South America, Antarctica, western and southern Africa.
Path of the annular eclipse: Chile, Argentina, Atlantic
Mid-eclipse: 15:59 UT
February 20, 2027
Seen from: Americas, Europe, Africa, Asia. A penumbral eclipse is faint: the moon dims slightly but never darkens.
Mid-eclipse: 23:12 UT
July 18, 2027
Seen from: eastern Africa, Asia, Australia, Pacific. A penumbral eclipse is faint: the moon dims slightly but never darkens.
Mid-eclipse: 16:02 UT
August 2, 2027
Seen from: Africa, Europe, Middle East, western and southern Asia.
Path of the total eclipse: Morocco, Spain, Algeria, Libya, Egypt, Saudi Arabia, Yemen, Somalia
Mid-eclipse: 10:06 UT
August 17, 2027
Seen from: Pacific, Americas. A penumbral eclipse is faint: the moon dims slightly but never darkens.
Mid-eclipse: 07:13 UT
January 12, 2028
Seen from: Americas, Europe, Africa.
Mid-eclipse: 04:13 UT
January 26, 2028
Seen from: eastern North America, Central and South America, western Europe, northwestern Africa.
Path of the annular eclipse: Ecuador, Peru, Brazil, Suriname, Spain, Portugal
Mid-eclipse: 15:07 UT
July 6, 2028
Seen from: Europe, Africa, Asia, Australia.
Mid-eclipse: 18:19 UT
July 22, 2028
Seen from: SE Asia, East Indies, Australia, New Zealand.
Path of the total eclipse: Australia, New Zealand
Mid-eclipse: 02:55 UT
December 31, 2028
Seen from: Europe, Africa, Asia, Australia, Pacific.
Mid-eclipse: 16:52 UT
January 14, 2029
Seen from: North America, Central America.
Mid-eclipse: 17:12 UT
June 12, 2029
Seen from: Arctic, Scandinavia, Alaska, northern Asia, northern Canada.
Mid-eclipse: 04:05 UT
June 26, 2029
Seen from: Americas, Europe, Africa, Middle East.
Mid-eclipse: 03:22 UT
July 11, 2029
Seen from: southern Chile, southern Argentina.
Mid-eclipse: 15:36 UT
December 5, 2029
Seen from: southern Argentina, southern Chile, Antarctica.
Mid-eclipse: 15:02 UT
December 20, 2029
Seen from: Americas, Europe, Africa, Asia.
Mid-eclipse: 22:42 UT
June 1, 2030
Seen from: Europe, northern Africa, Middle East, Asia, Arctic, Alaska.
Path of the annular eclipse: Algeria, Tunisia, Greece, Turkey, Russia, n China, Japan
Mid-eclipse: 06:28 UT
June 15, 2030
Seen from: Europe, Africa, Asia, Australia.
Mid-eclipse: 18:33 UT
November 25, 2030
Seen from: southern Africa, southern Indian Ocean, East Indies, Australia, Antarctica.
Path of the total eclipse: Botswana, South Africa, Australia
Mid-eclipse: 06:50 UT
December 9, 2030
Seen from: Americas, Europe, Africa, Asia. A penumbral eclipse is faint: the moon dims slightly but never darkens.
Mid-eclipse: 22:27 UT
August 23, 2044: totality crosses Greenland, northern Canada, Montana, North Dakota (in U.S. local time this falls on the evening of August 22, and the path ends where the sun sets during totality, in western North Dakota).
August 12, 2045: totality runs coast to coast across the southern U.S., then the Caribbean and northern South America.
Times along the path are in UT.
Lunar eclipses are safe to watch with your eyes and can be seen from anywhere the moon is up at the time, which is about half the world. Solar eclipses are seen only along a narrow path for totality or annularity, with a partial eclipse over a wider area; never look at the sun without certified eclipse glasses.
Source: NASA Goddard Space Flight Center eclipse tables by Fred Espenak (eclipse.gsfc.nasa.gov). Times are for mid-eclipse; a lunar eclipse unfolds over a few hours around it. Typical clouds: average total cloud cover for the eclipse’s month, 1991–2020, from the NCEP/NCAR Reanalysis (NOAA Physical Sciences Laboratory); darker gray means cloudier. It shows the odds, not the weather on the day.