Skip to main content
hank-builds.com

Annular solar eclipse of 1 June 2030

The Moon covers the Sun completely along a band 246 km wide, reaching 5 minutes 16 seconds of annularity where the eclipse is greatest. Of the 3,116 cities searched, 1690 see the Sun at least partly covered and 66 sit inside the path itself.

Greatest duration
5 min 16 s
Path width
246 km
Cities in path
66
Cities seeing it
1690

Where the shadow falls

The bright band is where the eclipse is annular. The shading around it is how much of the Sun's area is covered at each place's own maximum, brightening towards the path.

Watch the shadow move

The Earth as the Sun sees it, so the edge of the globe is sunrise and sunset. Drag the slider, or press play. The small dark spot is the umbra, the only place the eclipse is annular, and it is drawn to scale, which is the point: it is a few hundred kilometres across on a planet twelve thousand wide.

What you would see

Annular eclipse. 89% of the Sun's area covered, with the Sun 56° above the horizon.

Annularity runs from 12:15:04 to 12:17:49, lasting 2 minutes 45 seconds.

Starts 10:45:2412:16:26Ends 13:51:00 · UTC+6

Local times, city by city

Every time is that city's own local clock at the moment given. Ordered by how much of the Sun is covered.

Showing the 30 most covered of 1,690 cities. Search, or sort a column, to reach them all.

Annular10:4512:1613:5189%2 min 45 s
Annular12:0313:3515:0789%5 min 12 s
Annular12:1113:4415:1589%5 min 2 s
Annular09:4011:0912:4489%4 min 43 s
Annular12:1413:4815:1889%4 min 46 s
Annular12:1913:5215:2189%5 min 12 s
Annular09:3110:5912:3389%1 min 7 s
Annular09:3711:0412:3789%4 min 5 s
Annular13:2915:0116:2789%4 min 39 s
Partial09:3310:5812:3089%
Annular09:2710:5212:2589%5 min 7 s
Partial09:3010:5812:3289%
Annular09:2510:4812:2089%3 min 40 s
Annular09:2110:4512:1789%4 min 47 s
Annular09:2510:4912:2089%2 min 22 s
Partial12:0313:3715:1089%
Partial09:3110:5612:2889%
Annular09:1810:3912:1089%4 min 57 s
Partial14:5116:2217:4389%
Annular07:1308:3109:5989%2 min 38 s
Annular07:1008:2809:5689%4 min 53 s
Annular07:1008:2809:5689%4 min 52 s
Annular07:0708:2309:5089%4 min 52 s
Annular07:0708:2209:4889%3 min 36 s
Annular07:0608:2209:4789%4 min 7 s
Annular07:0508:2109:4689%4 min 21 s
Annular07:0608:2109:4689%4 min 9 s
Annular07:0508:2009:4588%3 min 16 s
Annular07:0208:1609:4188%3 min 12 s
Annular14:1615:4016:5588%1 min 42 s

Reading these numbers

Covered is obscuration: the fraction of the Sun's area the Moon hides. It is not the same as magnitude, the fraction of the Sun's diametercovered, which is the larger number and the one usually quoted. A magnitude of 0.5 leaves 61% of the Sun's light, not 50%.

The difference matters more than it sounds. Even at 99% obscuration the remaining sliver is thousands of times brighter than the full Moon, the sky stays blue, and none of what makes a total eclipse worth travelling for happens. Only inside the path of totality does the corona appear.

Positions come from a truncated VSOP87/ELP ephemeris accurate to about an arcminute, and the path is traced by intersecting the Moon's shadow cone with the Earth's ellipsoid. The published time of greatest eclipse for 1 June 2030 is reproduced to within a few seconds, and contact times for individual cities agree with published values to the minute. Durations are good to a few seconds; a prediction this far ahead cannot do better, because the Earth's rotation is not known exactly that far in advance.

Looking at the Sun without certified eclipse filters will damage your eyes. The only moment it is safe to look unaided is during totality itself: the interval marked in the timeline above, and only if you are inside the path of totality. Everywhere else, and at every other moment, you need proper filters.

Every solar eclipse to 2040 · World time map