Solar & Lunar Eclipses Visible from Phoenix
Every eclipse in the 2024–2040 catalog that reaches Phoenix (33.4484°, -112.0740°), with contact times on the America/Phoenix clock.
Checking the catalog against today's date…
Open the calculator at Phoenix's coordinates24 of the 32 in the catalog are above the horizon here, 8 of them total. Times are America/Phoenix, converted per eclipse.
Phoenix's best-placed eclipse in the window is the total lunar eclipse of March 13, 2025, greatest at 11:59 PM MST. The moon is fully inside Earth's shadow for 1h 8m, and the whole eclipse happens with the moon up — 58° above the horizon at greatest eclipse.
| Date | From Phoenix | Local times | Moon |
|---|---|---|---|
| Monday, March 25, 2024 Penumbral lunar eclipse | Penumbral The whole eclipse is above Phoenix's horizon, from first contact to last. | 12:13 AM MST greatest eclipse | 54° up at greatest |
| Tuesday, September 17, 2024 Partial lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 6:26 PM, already in the penumbral shading. Everything before that happens while the moon is down. | 7:44 PM MST greatest eclipse Umbral 6:52 PM – 8:36 PM | 16° up at greatest |
| Thursday, March 13, 2025 Total lunar eclipse | Total The whole eclipse is above Phoenix's horizon, from first contact to last. | 11:59 PM MST greatest eclipse Totality 11:25 PM – 12:33 AM | 58° up at greatest 1h 8m total |
| Tuesday, March 3, 2026 Total lunar eclipse | Total The eclipse is still under way at moonset — the moon sets at about 6:57 AM, during the penumbral shading. The rest of it happens below Phoenix's horizon. | 4:33 AM MST greatest eclipse Totality 4:01 AM – 5:05 AM | 30° up at greatest 1h 4m total |
| Thursday, August 27, 2026 Partial lunar eclipse | Partial The whole eclipse is above Phoenix's horizon, from first contact to last. | 9:14 PM MST greatest eclipse Umbral 8:07 PM – 10:21 PM | 27° up at greatest |
| Saturday, February 20, 2027 Penumbral lunar eclipse | Penumbral The eclipse begins below the horizon — the moon rises over Phoenix at about 6:13 PM, already in the penumbral shading. Everything before that happens while the moon is down. | 4:13 PM MST greatest eclipse | below the horizon at greatest |
| Tuesday, August 17, 2027 Partial lunar eclipse | Partial The whole eclipse is above Phoenix's horizon, from first contact to last. | 12:14 AM MST greatest eclipse Umbral 11:14 PM – 1:14 AM | 43° up at greatest |
| Tuesday, January 11, 2028 Partial lunar eclipse | Partial The whole eclipse is above Phoenix's horizon, from first contact to last. | 9:13 PM MST greatest eclipse Umbral 8:17 PM – 10:09 PM | 44° up at greatest |
| Sunday, December 31, 2028 Total lunar eclipse | Partial The eclipse is still under way at moonset — the moon sets at about 7:36 AM, during the penumbral shading. The rest of it happens below Phoenix's horizon. | 9:52 AM MST greatest eclipse Totality 9:15 AM – 10:29 AM | below the horizon at greatest 1h 14m total |
| Monday, June 25, 2029 Total lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 7:37 PM, already in totality. Everything before that happens while the moon is down. | 8:22 PM MST greatest eclipse Totality 7:31 PM – 9:13 PM | 8° up at greatest 1h 42m total |
| Thursday, December 20, 2029 Total lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 5:19 PM, already in the partial phase. Everything before that happens while the moon is down. | 3:41 PM MST greatest eclipse Totality 3:12 PM – 4:10 PM | below the horizon at greatest 58m total |
| Monday, December 9, 2030 Total lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 5:16 PM, already in the penumbral shading. Everything before that happens while the moon is down. | 3:27 PM MST greatest eclipse Totality 3:10 PM – 3:44 PM | below the horizon at greatest 34m total |
| Tuesday, May 6, 2031 Penumbral lunar eclipse | Penumbral The eclipse begins below the horizon — the moon rises over Phoenix at about 7:10 PM, already in the penumbral shading. Everything before that happens while the moon is down. | 8:51 PM MST greatest eclipse | 18° up at greatest |
| Thursday, October 30, 2031 Partial lunar eclipse | Partial The whole eclipse is above Phoenix's horizon, from first contact to last. | 12:44 AM MST greatest eclipse Umbral 11:39 PM – 1:49 AM | 69° up at greatest |
| Sunday, April 25, 2032 Total lunar eclipse | Partial The eclipse is still under way at moonset — the moon sets at about 5:49 AM, during the penumbral shading. The rest of it happens below Phoenix's horizon. | 8:13 AM MST greatest eclipse Totality 7:38 AM – 8:48 AM | below the horizon at greatest 1h 10m total |
| Saturday, October 8, 2033 Total lunar eclipse | Total The eclipse is still under way at moonset — the moon sets at about 6:32 AM, during the penumbral shading. The rest of it happens below Phoenix's horizon. | 3:54 AM MST greatest eclipse Totality 3:16 AM – 4:32 AM | 33° up at greatest 1h 16m total |
| Wednesday, September 27, 2034 Partial lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 6:13 PM, already in the penumbral shading. Everything before that happens while the moon is down. | 7:45 PM MST greatest eclipse Umbral 6:38 PM – 8:52 PM | 19° up at greatest |
| Sunday, September 16, 2035 Total lunar eclipse | Total The eclipse begins below the horizon — the moon rises over Phoenix at about 6:29 PM, already in the partial phase. Everything before that happens while the moon is down. | 7:32 PM MST greatest eclipse Totality 6:46 PM – 8:18 PM | 13° up at greatest 1h 32m total |
| Tuesday, March 11, 2036 Total lunar eclipse | Total The eclipse begins below the horizon — the moon rises over Phoenix at about 6:29 PM, already in the partial phase. Everything before that happens while the moon is down. | 7:47 PM MST greatest eclipse Totality 7:01 PM – 8:33 PM | 16° up at greatest 1h 32m total |
| Saturday, January 31, 2037 Partial lunar eclipse | Partial The whole eclipse is above Phoenix's horizon, from first contact to last. | 1:59 AM MST greatest eclipse Umbral 12:51 AM – 3:07 AM | 66° up at greatest |
| Sunday, July 26, 2037 Total lunar eclipse | Total The whole eclipse is above Phoenix's horizon, from first contact to last. | 10:29 PM MST greatest eclipse Totality 9:39 PM – 11:19 PM | 29° up at greatest 1h 40m total |
| Wednesday, January 20, 2038 Total lunar eclipse | Total The whole eclipse is above Phoenix's horizon, from first contact to last. | 10:02 PM MST greatest eclipse Totality 9:23 PM – 10:41 PM | 53° up at greatest 1h 18m total |
| Sunday, January 9, 2039 Total lunar eclipse | Total The eclipse begins below the horizon — the moon rises over Phoenix at about 5:33 PM, already in the partial phase. Everything before that happens while the moon is down. | 6:27 PM MST greatest eclipse Totality 5:50 PM – 7:04 PM | 10° up at greatest 1h 14m total |
| Friday, May 25, 2040 Total lunar eclipse | Partial The eclipse begins below the horizon — the moon rises over Phoenix at about 7:24 PM, already in totality. Everything before that happens while the moon is down. | 6:45 PM MST greatest eclipse Totality 6:04 PM – 7:26 PM | below the horizon at greatest 1h 22m total |
Reading the table. Greatest eclipse is one instant worldwide, printed on Phoenix's clock — the zone abbreviation is resolved for that date, so it changes across the window wherever the clocks do. From Phoenix is what the horizon leaves: a total eclipse the moon sets during is a partial one here, and the note beside it says which phase was under way. Durations are the eclipse's own, worldwide.
Yes — 2 of the 34 solar eclipses catalogued between 2024 and 2040 bring the moon's shadow over Phoenix: April 8, 2024, June 21, 2039. How deep each one goes is a different question: the path of totality is only a few hundred kilometres wide, and this site's model tracks where the shadow falls, not how much of the sun it covers there. The closest it comes otherwise is Saturday, March 29, 2025: the shadow's footprint does cover Phoenix at greatest eclipse, but the sun is below the horizon here at that moment — so anything Phoenix gets from it is whatever is left as the sun crosses the horizon, which is past where this model stops.
| Date | Greatest eclipse | Sun over Phoenix | Distance |
|---|---|---|---|
| Monday, April 8, 2024 Total solar eclipse | 11:17 AM MST worldwide instant | 59° above the horizon | 1,196 km from the point of greatest eclipse |
| Tuesday, June 21, 2039 Total solar eclipse | 6:55 AM MST worldwide instant | 18° above the horizon | 279 km from the point of greatest eclipse |
A solar eclipse is only safe to look at through ISO 12312-2 filters, except during the totality of a total eclipse. For the path of totality over Phoenix, use NASA's eclipse site — path width is the one thing this page does not model.
Eclipse dates and contact times come from the NASA/Espenak catalog, and everything local to Phoenix — whether the moon or sun is above the horizon, how high it stands, what the horizon cuts off — is computed for 33.4484°, -112.0740° and converted to America/Phoenix. Nothing on this page is stamped with a build date: an eclipse is a catalogued instant, so where the shadow fell and how high the moon stood over Phoenix are as fixed for 2024 as for 2040. Only the "next eclipse" panel at the top reads the clock, and it does so in your browser.
What the horizon decides. A lunar eclipse is visible from wherever the moon is up, which is half the planet — but an eclipse runs for hours and can straddle moonrise or moonset, and then only part of it is Phoenix's. That is why each row carries the moon's altitude at greatest eclipse and, where it matters, which phase was under way as the moon crossed the horizon. An eclipse 70° up is overhead and unmistakable; the same eclipse a few degrees up is behind whatever Phoenix has on its skyline.
Where this page stops. A solar eclipse row says that the moon's shadow reaches Phoenix at the instant of greatest eclipse, and how high the sun stands here when it does. It does not say how much of the sun is covered: the path of totality is a couple of hundred kilometres wide against a footprint thousands of kilometres across, and this site models the footprint, not the path. Nor does it count a shallow partial from a shadow that sweeps past Phoenix before or after that instant — so the 2 solar dates listed here are a floor, not a total.
Safe viewing. A lunar eclipse is safe to watch with the naked eye, binoculars, or a telescope — it is only the full moon, dimmed. A solar eclipse is not: outside the brief totality of a total eclipse, looking at the sun needs ISO 12312-2 filters, and sunglasses are not filters. For the exact path of a solar eclipse over Phoenix, use NASA's eclipse site, whose maps carry the path width this page's model does not model.
When is the next lunar eclipse visible from Phoenix?
The panel at the top of this page names it, counting from today in your browser. The table below is the full record instead: all 24 lunar eclipses between 2024 and 2040 that are above Phoenix's horizon, with contact times already converted to America/Phoenix. 8 of them are total from here.
Will a solar eclipse be visible from Phoenix?
Yes — 2 of the 34 solar eclipses catalogued between 2024 and 2040 bring the moon's shadow over Phoenix: April 8, 2024, June 21, 2039. How deep each one goes is a different question: the path of totality is only a few hundred kilometres wide, and this site's model tracks where the shadow falls, not how much of the sun it covers there. The closest it comes otherwise is Saturday, March 29, 2025: the shadow's footprint does cover Phoenix at greatest eclipse, but the sun is below the horizon here at that moment — so anything Phoenix gets from it is whatever is left as the sun crosses the horizon, which is past where this model stops.
What time does the eclipse start in Phoenix?
Every time on this page is Phoenix local time, converted per eclipse rather than once for the page — the window spans 16 years, so the same zone reads differently in January and July and the abbreviation beside each row says which applies. A lunar eclipse begins with the faint penumbral shading (P1), bites into the disc at first umbral contact (U1) and, if it is total, goes fully dark at U2.
Why does Phoenix see more lunar eclipses than solar ones?
Earth's shadow at the moon's distance is far larger than the moon's shadow on Earth, and a lunar eclipse is visible from the entire night side of the planet at once — so Phoenix catches 24 of the 32 lunar eclipses in the window, and only 2 of the 34 solar ones. A solar eclipse throws a shadow a few thousand kilometres across at most, and its darkest part a few hundred; miss that footprint by an hour of Earth's rotation and there is nothing to see from Phoenix at all.