19 Utc Time

(UTC/GMT) Time Zone Converter If you have a web cast, online chat, conference call or other live event where people from all over the world want to attend, this (UTC/GMT) time zone difference converter lets you offer everyone an easy way to determine their own local time and date for your live event in (UTC/GMT. Such implementations cannot encode times after 03:14:07 UTC on 19 January 2038. Similar to the Y2K problem, the Year 2038 problem is caused by insufficient capacity used to represent time. One of the possible manifestations of the bug on a specific machine: the date could reset at 03:14:08 UTC on 19 January 2038. Today, Greenwich Mean Time is not considered a standard anymore yet it is the label of one of the 24 total time zones on Earth, used by countries in Africa, Western Europe and the UK (during the winter season). List of UTC Offsets. This list provides the UTC time offsets from the western to eastern-most time zones.

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Coordinated Universal Time (UTC)

Coordinated Universal Time (UTC), also referred to as Greenwich Mean Time (GMT), Universal Time (UT), or 'Zulu' is an international time scale used in Amateur Radio, astronomical aviation publications and applications, weather reporting, the military, NASA, and other organizations and documents.
Most Amateur radio operators refer to it as UTC.
UTC uses 24-hour (military) time notation and is based on the local standard time on the 0? longitude meridian which runs through Greenwich, England, hence, Greenwich Mean Time. Midnight in Greenwich corresponds to 00:00 UTC, noon corresponds to 12:00 UTC, and so on. It is a universal 'reference' time so anyone who uses it has a 'point in time' reference to a specific location.

Therefore, if you are in a different location than the reference location, your local time would be either earlier or later referenced to that UTC location point.
So in a manner of speaking, everyone using UTC, uses the same clock!
The UTC time is the same worldwide and does not vary regarding the time zone or daylight saving time. UTC is a very accurate atomic time standard sustained by atomic clocks located in national standards laboratories.

So in other words, it doesn't matter where you travel to, whether you're in a hotel in San Francisco or in one of the many Washington DC hotels, the UTC time is the same. Or for that matter, anywhere on earth, the UTC time is still the same!

UTC Conversion Table

Now although everyone uses the same clock so to speak, most of us live in different locations of the earth and in different time zones. If we need to know what time, (UTC), it is somewhere else, we need to convert from our time zone to UTC.
The following table provides for converting between UTC and U.S. and Canadian time zones or in reverse.
UTC is in the far right hand section of table below in red.
Notice that it starts at 00:00 (midnight). The blue numbers below it indicate 'AM', with a break at 12:00 (noon), then the colors change tored 'PM' all the way to 23:00 pm, then it changes back to the top of the column to 00:00, (midnight) all over again indicating one complete 24 hour period. The colors on the table have nothing to do with 'telling time' except to distinguish between AM and PM to help you use the table easier.
The other sections labeled PST, PDT, MST, MDT, CST, CDT, EST, EDT, represent YOUR LOCAL TIME ZONE. If you live in the Centeral Time zone, then you use the section marked CST, if Daylight Savings Time is in effect, you use CDT.
The same goes for the other time zones.
To use the conversion table, here is an example:
Refer to the table below,
Imagine your time zone was CST and your local time is 7:00PM..find the CST section, read down that section until you find 7:00PM then read to the right under the UTC section and read 01:00..so the UTC time that corresponds with 7:00PM CST is 01:00..it's 1:00 AM in Greenwich, England THE NEXT DAY! Now looking at this from the Greenwich time zone at 00:00 to the left, then it would be 7:00 pm in the Central Time Zone THE PREVIOUS DAY. Remember, at midnight, the day changes either forward or backward depending on the direction of your conversion and your location.

Another example:
It is 06:00 UTC..What time is it in the Eastern Standard Time zone?
Reading to the left from 0:600 UTC until you find the EST zone = 1:00AM. If you were looking at the PST section, it would be 10:00pm, the previous day.

Don't forget that the day advances at midnight or retreats to previous day depending on where you are and the dirction of the conversion! You can actually be talking to someone on the radio who is in your future or in your past, depending on your point of view and your reference in time! Time travel without a time machine!....just rf and some distance!
Chart shows Standard and Daylight Savings Time for each zone.
'S' = Standard and 'D' = Daylight Saving time (CST,CDT)

PSTPDTMSTMDTCSTCDTESTEDTUTC
4 p.m.5 p.m.5 p.m.6 p.m.6 p.m.7 p.m.7 p.m.8 p.m.00:00
5 p.m.6 p.m.6 p.m.7 p.m.7 p.m.8 p.m.8 p.m.9 p.m.01:00
6 p.m.7 p.m.7 p.m.8 p.m.8 p.m.9 p.m.9 p.m.10 p.m.02:00
7 p.m.8 p.m.8 p.m.9 p.m.9 p.m.10 p.m.10 p.m.11 p.m.03:00
8 p.m.9 p.m.9 p.m.10 p.m.10 p.m.11 p.m.11 p.m.Midnight04:00
9 p.m.10 p.m.10 p.m.11 p.m.11 p.m.MidnightMidnight1 a.m.05:00
10 p.m.11 p.m.11 p.m.MidnightMidnight1 a.m.1 a.m.2 a.m.06:00
11 p.m.MidnightMidnight1 a.m.1 a.m.2 a.m.2 a.m.3 a.m.07:00
Midnight1 a.m.1 a.m.2 a.m.2 a.m.3 a.m.3 a.m.4 a.m.08:00
1 a.m.2 a.m.2 a.m.3 a.m.3 a.m.4 a.m.4 a.m.5 a.m.09:00
2 a.m.3 a.m.3 a.m.4 a.m.4 a.m.5 a.m.5 a.m.6 a.m.10:00
3 a.m.4 a.m.4 a.m.5 a.m.5 a.m.6 a.m.6 a.m.7 a.m.11:00
4 a.m.5 a.m.5 a.m.6 a.m.6 a.m.7 a.m.7 a.m.8 a.m.12:00
5 a.m.6 a.m.6 a.m.7 a.m.7 a.m.8 a.m.8 a.m.9 a.m.13:00
6 a.m.7 a.m.7 a.m.8 a.m.8 a.m.9 a.m.9 a.m.10 a.m.14:00
7 a.m.8 a.m.8 a.m.9 a.m.9 a.m.10 a.m.10 a.m.11 a.m.15:00
8 a.m.9 a.m.9 a.m.10 a.m.10 a.m.11 a.m.11 a.m.Noon16:00
9 a.m.10 a.m.10 a.m.11 a.m.11 a.m.NoonNoon1 p.m.17:00
10 a.m.11 a.m.11 a.m.NoonNoon1 p.m.1 p.m.2 p.m.18:00
11 a.m.NoonNoon1 p.m.1 p.m.2 p.m.2 p.m.3 p.m.19:00
Noon1 p.m.1 p.m.2 p.m.2 p.m.3 p.m.3 p.m.4 p.m.20:00
1 p.m.2 p.m.2 p.m.3 p.m.3 p.m.4 p.m.4 p.m.5 p.m.21:00
2 p.m.3 p.m.3 p.m.4 p.m.4 p.m.5 p.m.5 p.m.6 p.m.22:00
3 p.m.4 p.m.4 p.m.5 p.m.5 p.m.6 p.m.6 p.m.7 p.m.23:00

With a little practice using the chart above, you can determine how far 'ahead' or 'behind' you are by a + or - factor of hours. Comparing CST with UTC as an example, UTC is 6 + hours ahead.

How do you know what the correct UTC time is?
Listing to Time Signals on HF

Several radio stations worldwide transmit precise time signals on HF bands and other frequencies. NIST (U.S.A.), continuously broadcasts time signals with voice announcements over hf radio frequencies from stations WWV in Fort Collins, Colorado and WWVH in Kauai, Hawaii. Both stations transmit on 2.500, 5.000, 10.000, and 15.000 MHz. WWV also operates on 20.000 MHz.
If your HF transceiver has general coverage, you are in luck..Just tune in one of the frequencies and get the exact time. They transmit on AM and you can use either the AM mode on your receiver or zero beat the frequencies with either the USB or LSB mode to hear the voice modulation.
Audio Sample of over the air signal from WWV.
(Note that this is not the actual time, it is an audio recording of about 1 minute and 25 seconds taken from 10.000Mhz during the daytime (CST), using a Yaesu FT-107 receiver in USB mode. You will hear the 'time ticks' and the time announced twice if you play it all the way to the finish.

If propagation is 'right', you can use Canada's Institute for National Measurement station, CHU. It transmits time signals and voice announcements from Ottawa, Ontario. CHU broadcasts continuously on 3.330, 7.335, and 14.670 MHz, also AM as with WWV and WWVH.
So you see, you have several HF frequencies from which to choose to get the 'correct' UTC time using your general coverage receiver.

There are also many other stations around the world that transmits time signals and some are strong enough to be heard in the U.S and Canada. There are many ore on the lower frequencies below standard AM broadcast, but they are extremly difficult to hear due to distances, static and power levels. They are not listed here.

See chart below:

The frequencies are believe to be accurate and remember..propagation plays a big part in receiving them. You also have to remember that radio travel a near the speed of light around the world so there is a split second error for listeners in the U.S. tuned to WWV OR WWVH. Believe me, it is accurate enough to set that old clock on your wall very accurately!

The following is a table of some major time stations reported to be in operation from various sources including radio verification at the time of this article, 2007.
Most ham radio operators will find that the stateside frequencies will be the best to copy with the exception of CHU, Canada using a good general purpose antenna. Those highlighted ingreen are usually very good copy with one or more heard at different times of the day. Note that CHU changed frequency from 7.335Mhz to 7.850Mhz effective 01 January, 2009.

Frequency
(MHz)
CallsignLocationComments

1.5100

HD2IOAGuayaquil, EcuadorContinuous
2.5000WWVFort Collins, Colorado, USAContinuous
2.5000WWVHKekaha, Hawaii, USAContinuous
3.3300CHUOttawa, CanadaContinuous
3.8100HD2IOAGuayaquil, Ecuador19:00-07:00 UTC
5.0000WWVFort Collins, Colorado, USAContinuous
5.0000WWVHKekaha, Hawaii, USAContinuous
7.850 (New Freq)CHUOttawa, CanadaEffective 1,1, 2009
10.0000WWVFort Collins, Colorado, USAContinuous
10.0000WWVHKekaha, Hawaii, USAContinuous
14.6700CHUOttawa, CanadaContinuous
15.0000WWVFort Collins, Colorado, USAContinuous
15.0000WWVHKekaha, Hawaii, USAContinuous

20.0000

WWVFort Collins, Colorado, USAContinuous

CDTCentral Daylight Time
CSTCentral Standard Time
EDTEastern Daylight Time
ESTEastern Standard Time
MDTMountain Daylight Time
MSTMountain Standard Time
PDTPacific Daylight Time
PSTPacific Standard Time
UTCCoordinated Universal Time

Helpful links with more info!

World Time Zone Map (NIST)

The Official U.S. Time (NIST) Java Application online time

North America Time Zones (U.S.Time zones from NIST)
Download..AlphaClock - v1.3.1 (Freeware!)
Freeware desktop clock utility for Windows 95/98/Me/NT/2000/XP
Set it to display local or UTC time on your Desktop!
More Freeware Time syncronization software!
Download free computer time synchronization software (Alpha Clock)
It automatically synchronizes the computer
system time clock with the National Institute of Standards and Technology (NIST) time servers.
It uses Coordinated Universal Time from the national time scale UTC(NIST) and sets the correct time on your computer according to your local time zone.

(UTC clock at top of this page provided by
World Time Server)


Copyright Hamuniverse.com - All Rights Reserved!



Time

2018 January 7

Coordinated Universal Time (UTC), also referred to as Greenwich Mean Time (GMT), Universal Time (UT), or 'Zulu' is an international time scale used in astronomical and aviation publications, weather products, and other documents. UTC uses 24-hour (military) time notation and is based on the local standard time on the 0° longitude meridian which runs through Greenwich, England. Midnight in Greenwich corresponds to 00:00 UTC, noon corresponds to 12:00 UTC, and so on.

UTC Conversion Table

The following table provides a convenient way to convert between UTC and U.S. and Canadian time zones1.

PSTPDTMSTMDTCSTCDTESTEDTUTC
4 p.m.5 p.m.5 p.m.6 p.m.6 p.m.7 p.m.7 p.m.8 p.m.00:00
5 p.m.6 p.m.6 p.m.7 p.m.7 p.m.8 p.m.8 p.m.9 p.m.01:00
6 p.m.7 p.m.7 p.m.8 p.m.8 p.m.9 p.m.9 p.m.10 p.m.02:00
7 p.m.8 p.m.8 p.m.9 p.m.9 p.m.10 p.m.10 p.m.11 p.m.03:00
8 p.m.9 p.m.9 p.m.10 p.m.10 p.m.11 p.m.11 p.m.Midnight04:00
9 p.m.10 p.m.10 p.m.11 p.m.11 p.m.MidnightMidnight1 a.m.05:00
10 p.m.11 p.m.11 p.m.MidnightMidnight1 a.m.1 a.m.2 a.m.06:00
11 p.m.MidnightMidnight1 a.m.1 a.m.2 a.m.2 a.m.3 a.m.07:00
Midnight1 a.m.1 a.m.2 a.m.2 a.m.3 a.m.3 a.m.4 a.m.08:00
1 a.m.2 a.m.2 a.m.3 a.m.3 a.m.4 a.m.4 a.m.5 a.m.09:00
2 a.m.3 a.m.3 a.m.4 a.m.4 a.m.5 a.m.5 a.m.6 a.m.10:00
3 a.m.4 a.m.4 a.m.5 a.m.5 a.m.6 a.m.6 a.m.7 a.m.11:00
4 a.m.5 a.m.5 a.m.6 a.m.6 a.m.7 a.m.7 a.m.8 a.m.12:00
5 a.m.6 a.m.6 a.m.7 a.m.7 a.m.8 a.m.8 a.m.9 a.m.13:00
6 a.m.7 a.m.7 a.m.8 a.m.8 a.m.9 a.m.9 a.m.10 a.m.14:00
7 a.m.8 a.m.8 a.m.9 a.m.9 a.m.10 a.m.10 a.m.11 a.m.15:00
8 a.m.9 a.m.9 a.m.10 a.m.10 a.m.11 a.m.11 a.m.Noon16:00
9 a.m.10 a.m.10 a.m.11 a.m.11 a.m.NoonNoon1 p.m.17:00
10 a.m.11 a.m.11 a.m.NoonNoon1 p.m.1 p.m.2 p.m.18:00
11 a.m.NoonNoon1 p.m.1 p.m.2 p.m.2 p.m.3 p.m.19:00
Noon1 p.m.1 p.m.2 p.m.2 p.m.3 p.m.3 p.m.4 p.m.20:00
1 p.m.2 p.m.2 p.m.3 p.m.3 p.m.4 p.m.4 p.m.5 p.m.21:00
2 p.m.3 p.m.3 p.m.4 p.m.4 p.m.5 p.m.5 p.m.6 p.m.22:00
3 p.m.4 p.m.4 p.m.5 p.m.5 p.m.6 p.m.6 p.m.7 p.m.23:00

To illustrate how to convert UTC to local time, assume that an event will occur on Wednesday at 06:00 UTC and you want to convert this to PDT. Using the UTC conversion table, you can see that 06:00 UTC Wednesday translates to 11 p.m. PDT Tuesday.

Sources of UTC

UTC is available via Internet, radio, telephone, and the Global Positioning System (GPS).

Internet

UTC provided by the U.S. National Institute of Standards and Technology (NIST) and the U.S. Naval Observatory is available online at the Official U.S. Time page. Note that the accuracy of the displayed time may vary depending on the type and speed your Internet connection.

Radio

Several radio stations worldwide transmit precise time signals2. However, only a few provide voice announcements indicating the current UTC. NIST continuously broadcasts time signals with voice announcements over shortwave radio from stations WWV in Fort Collins, Colorado and WWVH in Kauai, Hawaii. Both stations transmit on 2.500, 5.000, 10.000, and 15.000 MHz. WWV also operates on 20.000 MHz.

Canada's Institute for National Measurement transmits time signals and voice announcements over radio station CHU in Ottawa, Ontario. CHU broadcasts continuously on 3.330, 7.850, and 14.670 MHz.

Shortwave time signals travel near the speed of light. However, there is a tangible delay between the time they are transmitted and received at your location. This delay increases with your distance from the station. To complicate things further, the amount of the delay for a given location can vary.

If you are several thousand miles from a shortwave time station, the amount of the delay and its variability can make the signals useless for critical timing applications. For most users in the U.S. the received accuracy of time signals from WWV and WWVH should be better than 1/100 of a second.

WWV and WWVH are usually audible up to 2,000 miles away using relatively simple equipment. CHU provides a comparable quality signal in the northeastern U.S. and eastern Canada. Portable shortwave receivers from Sangean, Sony, and other manufacturers offer the least expensive means to hear these stations.

The webmaster purchased this Sangean receiver on sale for about $120. Despite its low cost, it is more than adequate for hearing shortwave time signals in the continental U.S. Copyright 2006, Brian Webb

Unless you are located relatively close to a shortwave time station, you may need to use an external antenna. You can make a simple, but effective external antenna from a length of insulated wire that is 20 feet or longer. Strip the insulation off one end of the wire and connect it to the radio. Depending on the radio, the connection is made by clipping or wrapping the end of the antenna around the tip of the whip antenna, securing it using an antenna terminal screw, or inserting it into an antenna jack using the appropriate plug.

An antenna for receiving shortwave time signals can be fashioned from a length of insulated wire. Speaker wire sold at Radio Shack is inexpensive and works well. The alligator clip attaches the wire to the tip of the radio's antenna. Copyright 2006, Brian Webb
19 utc to germany time

At locations several hundred miles or more from the nearest shortwave time station, reception occurs by way of the ionosphere. The ionosphere, and the thus the reception quality for a given frequency, are affected by the time of day, current solar activity, and season.

The best way to deal with changing ionospheric conditions is to check several time station frequencies to find the one with the best signal. If your receiver has programmable memories, use them to store several time station frequencies (in North America these would be 2.500, 3.330, 5.000, 7.850, 10.000, 14.670, 15.000, and 20.000 MHz).

One problem that can hamper shortwave time signal reception is natural or manmade radio noise. The primary source of natural noise is lightning from thunderstorms. Such noise tends to increase as the frequency decreases. You may be able to minimize it by avoiding frequencies below 8 MHz.

Electronic and electrical equipment such as computers, TV sets, and fluorescent lights can generate signals over a wide range of frequencies. Power lines, cable television cabling, and house wiring are other potential sources of radio interference.

19 Utc Time

There are several ways to counter manmade interference. First, turn off unneeded electronic or electrical equipment. You can also physically separate your receiver and antenna from potential interference sources. An effective way to mitigate the manmade interference common within buildings is to use an appropriately placed outdoor antenna.

Telephone

You can also obtain the current UTC by telephone. NIST provides the audio from WWV at (303) 499-7111 and WWVH at (808) 335-4363. Time signals and voice announcements of the current UTC are also available from the U.S. Naval Observatory at (202) 762-1069 and (202) 762-1401. You can only connect to these numbers for a brief time before the call is terminated. Note that these are not toll-free numbers and callers outside the local calling area are charged at regular long-distance rates.

The accuracy of time signals received by telephone varies with your distance from the time source and the type of connection. According to NIST, their telephone time announcements are normally delayed by less than 3/100 of a second when using land lines from within the continental United States and the delay variation is generally less than 1/1000 of a second. When using mobile phones, the delays are often more than 1/10 of a second due to the multiple access methods used to share cell channels. In rare instances when the telephone connection is via satellite, the time is delayed by 1/4 to 1/2 of a second.

1900 Utc To Est

GPS

An overlooked source of UTC is the Global Positioning System. GPS offers reliable, worldwide coverage and the potential for extremely accurate timing.

Some GPS receivers have a setup option to display the current UTC. Other units can be configured to display the current UTC by specifying a custom time zone with a UTC offset of 0 hours 00 minutes and disabling the automatic Daylight Saving Time correction.

The webmaster's vintage Magellan GPS 2000 searches for satellites to update its position and internal clock. This unit provides a set up option to display the current time as UT. Copyright 2006, Brian Webb

Most GPS receivers only use what is known as the 'NMEA sentence' for timing and can have delays of several tenths of a second. There are also reports of GPS receivers experiencing intermittent errors in the displayed time amounting to entire seconds.

When you use a GPS receiver to receive the current UTC, be sure to let it obtain a good lock so it can update its clock. Otherwise, the displayed time may be incorrect. For applications requiring accuracy within a second or so, you should verify the accuracy of your GPS' displayed UTC by comparing it against an accurate time standard.

Reliable, precision timing is available from the Global Positioning System, but this requires a receiver that uses the GPS 1PPS signal. Such units provide the current UTC to an accuracy of 1/1000 of a second or better.

Notes

1In the U.S. and Canada, Standard Time (PST, MST, CST, and EST) is in effect from the last Sunday in October to the first Sunday in April. Daylight Saving Time (PDT, MDT, CDT, and EDT) is in effect from the first Sunday in April to the last Sunday in October.

Map

2The following is a table of all time stations reported to be in operation. The information was obtained from various sources, most notably the 2006 World Radio and TV Handbook.

Frequency
(MHz)
CallsignLocationComments
0.0205RAB99Khabarovsk, Russia02:06-02:47 and 06:06-06:47 UTC, 01:06-01:47 and 05:06-05:47 UTC summer
0.0205RJH69Maladziecna, Belarus07:06-07:47 UTC, 06:06-06:47 UTC summer
0.0205RJH77Arkhangelsk, Russia09:06-09:47 UTC, 08:06-08:47 UTC summer
0.0205RJH99N. Novgorod, Russia05:06-05:47 UTC, 04:06-04:47 UTC summer
0.0230RAB99Khabarovsk, Russia02:06-02:47 and 06:06-06:47 UTC, 01:06-01:47 and 05:06-05:47 UTC summer
0.0230RJH69Maladziecna, Belarus07:06-07:47 UTC, 06:06-06:47 UTC summer
0.0230RJH77Arkhangelsk, Russia09:06-09:47 UTC, 08:06-08:47 UTC summer
0.0230RJH99N. Novgorod, Russia05:06-05:47 UTC, 04:06-04:47 UTC summer
0.0250RAB99Khabarovsk, Russia02:06-02:47 and 06:06-06:47 UTC, 01:06-01:47 and 05:06-05:47 UTC summer
0.0250RJH66Bishkek, Kyrgyzstan04:06-04:47, 10:06-10:47 UTC
0.0250RJH69Maladziecna, Belarus07:06-07:47 UTC, 06:06-06:47 UTC summer
0.0250RJH77Arkhangelsk, Russia09:06-09:47 UTC, 08:06-08:47 UTC summer
0.0250RJH99N. Novgorod, Russia05:06-05:47 UTC, 04:06-04:47 UTC summer
0.0251RAB99Khabarovsk, Russia02:06-02:47 and 06:06-06:47 UTC, 01:06-01:47 and 05:06-05:47 UTC summer
0.0251RJH69Maladziecna, Belarus07:06-07:47 UTC, 06:06-06:47 UTC summer
0.0251RJH77Arkhangelsk, Russia09:06-09:47 UTC, 08:06-08:47 UTC summer
0.0251RJH99N. Novgorod, Russia05:06-05:47 UTC, 04:06-04:47 UTC summer
0.0255RAB99Khabarovsk, Russia02:06-02:47 and 06:06-06:47 UTC, 01:06-01:47 and 05:06-05:47 UTC summer
0.0255RJH69Maladziecna, Belarus07:06-07:47 UTC, 06:06-06:47 UTC summer
0.0255RJH77Arkhangelsk, Russia09:06-09:47 UTC, 08:06-08:47 UTC summer
0.0255RJH99N. Novgorod, Russia05:06-05:47 UTC, 04:06-04:47 UTC summer
0.0400JJYOhtakadoyayama, JapanContinuous
0.0600JJYHaganeyama, JapanContinuous
0.0600MSFRugby, UKContinuous
0.0600WWVBFort Collins, Colorado, USAContinuous
0.0666RBUMoscow, RussiaContinuous
0.0750HBGPrangins, SwitzerlandContinuous
0.0775DCF77Mainflingen, GermanyContinuous
0.1620---Allouis, FranceContinuous
1.5100HD2IOAGuayaquil, EcuadorContinuous
2.5000BPMLinshan, China09:00-01:00 UTC
2.5000WWVFort Collins, Colorado, USAContinuous
2.5000WWVHKekaha, Hawaii, USAContinuous
3.3300CHUOttawa, CanadaContinuous
3.8100HD2IOAGuayaquil, Ecuador19:00-07:00 UTC
4.9960RWMMoscow, RussiaContinuous
4.9980EBCCadiz, Spain10:00-11:00 UTC Monday-Friday
5.0000BPMLinshan, ChinaContinuous
5.0000BSFChungli, TaiwanContinuous
5.0000HD2IOAGuayaquil, Ecuador12:00-13:00 UTC
5.0000HLADaejeon, South KoreaContinuous
5.0000LOLBuenos Aires, Argentina11:00-12:00, 14:00-15:00, 17:00-18:00, 20:00-21:00, 23:00-24:00 UTC
5.0000WWVFort Collins, Colorado, USAContinuous
5.0000WWVHKekaha, Hawaii, USAContinuous
5.0000YVTOCaracas, VenezuelaContinuous
7.8500CHUOttawa, CanadaContinuous
7.6000HD2IOAGuayaqil, Ecuador13:00-24:00 UTC
9.9960RWMMoscow, RussiaContinuous
10.0000BPMLinshan, ChinaContinuous
10.0000LOLBuenos Aires, Argentina11:00-12:00, 14:00-15:00, 17:00-18:00, 20:00-21:00, 23:00-24:00 UTC
10.0000WWVFort Collins, Colorado, USAContinuous
10.0000WWVHKekaha, Hawaii, USAContinuous
14.6700CHUOttawa, CanadaContinuous
14.9960RWMMoscow, RussiaContinuous
15.0000BPMLinshan, China01:00-09:00 UTC
15.0000BSFChungli, TaiwanContinuous
15.0000WWVFort Collins, Colorado, USAContinuous
15.0000WWVHKekaha, Hawaii, USAContinuous
15.0060EBCCadiz, Spain10:00-11:00 UTC Monday-Friday
20.0000WWVFort Collins, Colorado, USAContinuous

Abbreviations

CDTCentral Daylight Time
CSTCentral Standard Time
EDTEastern Daylight Time
ESTEastern Standard Time
MDTMountain Daylight Time
MSTMountain Standard Time
NMEANational Marine Electronics Association
PDTPacific Daylight Time
PSTPacific Standard Time
UTCCoordinated Universal Time

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