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Equinoxes and solstices 2030: 20 Mar, 21 Jun, 22 Sept, 21 Dec

In 2030 the March equinox falls on 20 March at 13:51 UTC, the June solstice on 21 June at 07:31, the September equinox on 22 September at 23:27 and the December solstice on 21 December at 20:09. Each is a single instant everywhere on earth, so the local date differs by zone — east of a certain meridian these fall a day later on the calendar.

2030UTC

March equinox
20 Mar
13:51 UTC
June solstice
21 Jun
07:31 UTC
September equinox
22 Sept
23:27 UTC
December solstice
21 Dec
20:09 UTC
Where you are UTC
  • March equinox Wednesday 20 March, 13:51
  • June solstice Friday 21 June, 07:31
  • September equinox Sunday 22 September, 23:27
  • December solstice Saturday 21 December, 20:09

Read from your browser — nothing is asked for and nothing is sent anywhere.

Where the calendar disagrees

One instant, placed by offset — west on the left, east on the right. The date on the wall depends on where the wall is.

22 September 23 September Honolulu 13:27 Los Angeles 16:27 New York 19:27 London 00:27 Oslo 01:27 Mumbai 04:57 Tokyo 08:27 Auckland 11:27 One instant: 22 September 2030, 23:27 UTC west ← offset → east
The september equinox is a single moment for the whole planet. It lands on 22 September in 3 of these cities and 23 September in 5 of these cities — which is why two reputable sources give different dates and neither is wrong.

What each one starts, and where

The 2030 equinoxes and solstices with the season each begins
Turning point UTC Begins, north Begins, south
March equinox 20 March, 13:51 spring autumn
June solstice 21 June, 07:31 summer winter
September equinox 22 September, 23:27 autumn spring
December solstice 21 December, 20:09 winter summer

Where the calendar disagrees

Each of these is one instant for the whole planet, but the date on the wall depends on where the wall is. These are the places whose local date differs from the UTC one.

Two definitions of the same season

Ask when summer starts and you will get two confident, different answers. The astronomical one is the solstice — the instant the sun reaches its furthest point north, which is what this page computes. The meteorological one is whole months: summer is June, July and August in the north, because climate statistics need periods of equal length that do not wander by a day and a half each year. Weather services use the second; almanacs and newspapers use the first; both are correct about different things.

The other thing worth knowing is that a solstice and an equinox are instants, not days. The June solstice does not last from midnight to midnight — it is a moment, and calling the whole day "the solstice" is a convenience. That matters here because the moment can fall either side of local midnight, which is why the same event is printed as the 20th in one country and the 21st in another, without either being a mistake.

These figures are computed rather than looked up. The solstices and equinoxes are the instants the sun's apparent longitude passes 0°, 90°, 180° and 270°, and that is calculable centuries either way. Nothing on this page is a table that could go stale — but it is checked against a second, independently written ephemeris before publication, because an unchecked calculation is just a confident one.

Other years
20242025202620272028202920312032
How to use this
  1. Read the UTC instant first — that is the event itself, one moment for the whole planet.
  2. The panel above converts it into your own time zone, where the date may be a day later.
  3. For the season your weather service means, use the meteorological convention: whole months, starting on the 1st.

Worth knowing: These are astronomical instants, accurate to well under a minute. They say nothing about weather: the hottest and coldest weeks lag the solstices by a month or more, and vary by how far you are from an ocean.

FAQ

When is the first day of spring in 2030?

Astronomically, the March equinox: 20 March at 13:51 UTC in the northern hemisphere. Meteorologists use a different convention — whole months, so spring begins on 1 March — and weather services around the world quote that one. Both are in use and neither is wrong; they answer different questions. In the southern hemisphere the same instant begins autumn.

Why does the equinox move between the 19th, 20th and 21st?

Because the year is not a whole number of days. Each ordinary year the equinox arrives about six hours later than the last, and each leap day pulls it back by a whole day. That four-year saw-tooth is what makes the date wander, and it is also why the Gregorian calendar skips three leap days every four centuries — without that correction the equinox would drift through the calendar.

Are day and night exactly equal at the equinox?

No, and this is the most repeated wrong fact about it. Sunrise and sunset are measured from the sun's upper edge rather than its centre, and the atmosphere refracts the image upward so the sun is visible while geometrically below the horizon. Both effects add daylight, so the equinox has several minutes more day than night everywhere. The date when they truly balance — the equilux — comes a few days earlier in spring and later in autumn, and depends on your latitude.

Is the solstice the hottest or coldest day?

No. It is the extreme of daylight, not of temperature. Land and ocean take weeks to catch up with the change in incoming sunlight, so the warmest weeks come well after the June solstice in the north and the coldest well after December — the lag is about a month inland and longer near the coast.

Where do these times come from?

They are computed from the sun's apparent longitude — the solstices and equinoxes are the instants it reaches 0°, 90°, 180° and 270° — using the method in Meeus's Astronomical Algorithms, then corrected from Terrestrial Time to UTC. Every instant on this page is checked against an independently written ephemeris before the page is published; the two agree to within a fraction of a minute.