Sunrise & Sunset in Northern Red Sea, Eritrea πͺπ· Today
Northern Red Sea is a region in Eritrea. This page combines its current local time and time zone information using Massawa as a representative location, plus today's sunrise, sunset, twilight, and daylight duration. Browse 1 listed city in Northern Red Sea below for location-specific solar times.
Today in Northern Red Sea, Eritrea, the sun rises around 06:07 and sets around 18:45, for about 12h 38m of daylight (based on Massawa).
Sun data for this region follows Massawa, all on +03:00 β Pick a city below to see exact sun times, golden hour and how daylight changes through the year.
Country: Eritrea πͺπ·
Population: 599,304
Time Zone: EAT
Representative IANA Timezone: Africa/Asmara
UTC Offset: UTC+03:00
The time for Northern Red Sea shown above is based on the time in its most populous city, Massawa . Times for other cities within the region may vary.
IANA Timezones in Northern Red Sea Region
- Africa/Asmara Sat 07:08
| Timezone | Current Time |
|---|---|
| Africa/Asmara | Sat 07:08 |
Frequently Asked Questions about Northern Red Sea
What time does the sun rise and set in Northern Red Sea today?
Today in Northern Red Sea, Eritrea the sun rises around 06:07 and sets around 18:45, giving about 12h 38m of daylight (based on Massawa).
How many hours of daylight does Northern Red Sea get today?
Northern Red Sea, Eritrea gets about 12h 38m of daylight today. Open a city below for its exact figure and how it changes month to month.
What time zone is Northern Red Sea in?
Northern Red Sea, Eritrea uses UTC offset +03:00 and the Africa/Asmara time zone. All sun and clock times on this page use that local time, with daylight saving applied automatically.
Which cities in Northern Red Sea can I get sun times for?
We list 1 city across this region, including Massawa. Select any of them below for daily sunrise, sunset, twilight and day-length times.
How accurate are these sunrise and sunset times?
They are computed from each place's exact latitude, longitude and time zone using standard astronomical algorithms, accurate to about a minute.