HM-36 手咪 定义

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The bandwidth (BBBB above) is expressed as four characters: three digits and one letter. The letter occupies the position normally used for a decimal point, and indicates what unit of frequency is used to express the bandwidth. The letter H indicates Hertz, K indicates kiloHertz, M indicates megaHertz, and G indicates gigaHertz. For instance, “500H” means 500 Hz, and “2M50” means 2.5 MHz. The first character must be a digit between 1 and 9; it may not be the digit 0 or a letter.
| Character | Description |
|---|---|
| A | Double-sideband amplitude modulation (e.g. AM broadcast radio) |
| B | Independent sideband (two sidebands containing different signals) |
| C | Vestigial sideband (e.g. NTSC) |
| D | Combination of AM and FM or PM |
| F | Frequency modulation (e.g. FM broadcast radio) |
| G | Phase modulation |
| H | Single-sideband with full carrier (e.g. as used by CHU) |
| J | Single-sideband with suppressed carrier (e.g. Shortwave utility and amateur stations) |
| K | Pulse amplitude modulation |
| L | Pulse width modulation (e.g. as used by WWVB) |
| M | Pulse position modulation |
| N | Unmodulated carrier |
| P | Sequence of pulses without modulation |
| Q | Sequence of pulses, phase or frequency modulation within each pulse |
| R | Single-sideband with reduced or variable carrier |
| V | Combination of pulse modulation methods |
| W | Combination of any of the above |
| X | None of the above |
| Character | Description |
|---|---|
| 0 | No modulating signal |
| 1 | One channel containing digital information, no subcarrier |
| 2 | One channel containing digital information, using a subcarrier |
| 3 | One channel containing analog information |
| 7 | More than one channel containing digital information |
| 8 | More than one channel containing analog information |
| 9 | Combination of analog and digital channels |
| X | None of the above |
Types 4 and 5 were removed from use with the 1982 Radio Regulations. In previous editions, they had indicated facsimile and video, respectively.
| Character | Description |
|---|---|
| A | Aural telegraphy, intended to be decoded by ear, such as Morse code |
| B | Electronic telegraphy, intended to be decoded by machine (radioteletype and digital modes) |
| C | Facsimile (still images) |
| D | Data transmission, telemetry or telecommand (remote control) |
| E | Telephony (voice or music intended to be listened to by a human) |
| F | Video (television signals) |
| N | No transmitted information |
| W | Combination of any of the above |
| X | None of the above |
| Character | Description |
|---|---|
| A | Two-condition code, elements vary in quantity and duration |
| B | Two-condition code, elements fixed in quantity and duration |
| C | Two-condition code, elements fixed in quantity and duration, error-correction included |
| D | Four-condition code, one condition per “signal element” |
| E | Multi-condition code, one condition per “signal element” |
| F | Multi-condition code, one character represented by one or more conditions |
| G | Monophonic broadcast-quality sound |
| H | Stereophonic or quadraphonic broadcast-quality sound |
| J | Commercial-quality sound (non-broadcast) |
| K | Commercial-quality sound—frequency inversion and-or “band-splitting” employed |
| L | Commercial-quality sound, independent FM signals, such as pilot tones, used to control the demodulated signal |
| M | Greyscale images or video |
| N | Full-color images or video |
| W | Combination of two or more of the above |
| X | None of the above |
| Character | Description |
|---|---|
| C | Code-division (excluding spread spectrum) |
| F | Frequency-division |
| N | None used |
| T | Time-division |
| W | Combination of Frequency-division and Time-division |
| X | None of the above |
There is some overlap in signal types, so a transmission might legitimately be described by two or more designators. In such cases, there is usually a preferred conventional designator.
The designators F1B and F1D should be used for FSK radiotelegraphy and data transmissions, no matter how the radio frequency signal is generated (common examples are Audio FSK used to modulate an SSB transmitter or direct FSK modulation of an FM transmitter via varactor diode). However, occasionally the alternatives J2B and J2D are used to designate FSK signals generated by audio modulation of an SSB transmitter.
Views: 47
| 苏州数字中继应急点名演练438.090 -5 色码1 时序1 接收组1 发射全呼 ID不限 | |||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 |
| 1 | BI4VNM | MD780 | 1.2米玻璃钢 | 5 | 江阴80米高度 | 59 | 21:36 |
| 2 | BI4XFD | PD680 | 原装 | 4 | 莫邪路和葑门路 | 59 | 21:37 |
| 3 | BH4QNP | M8668 | 钻石天线 | 中功 | 吴中区城南 | 59 | 21:39 |
| 4 | BH4QVA | PD980 | 原装 | 1 | 平江新城 | 59 | 21:40 |
| 5 | BH4QXY | TD360 | 原装 | 满功 | 南施街 | 59 | 21:41 |
| 6 | BI4QZW | MD780 | 770 | 4 | 竹辉路3F | 59 | 21:44 |
| 7 | BI4RSI | PD680 | 玻璃钢 | 满功 | 越溪镇 | 59 | 21:47 |
| 8 | |||||||
| 9 | |||||||
| 10 | |||||||
| 11 | |||||||
| 12 | |||||||
| 13 | OP:BI4XZT | ||||||
Views: 2
| 苏州中继应急点名演练438.025 -5 88.5 OP:BI4XZT | |||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 |
| 1 | BD4QGN | GM300 | 1.2米玻璃钢 | 满功 | 何山花园 | 59 | 20:36 |
| 2 | BH4WNE | 欧讯920R | 770H | 低功 | 新区滨河路 | 59 | 20:37 |
| 3 | BI4XFD | 小米 | 原装 | 2 | 莫邪路和葑门路 | 59 | 20:38 |
| 4 | BH4DXF | GP88 | 770 | 5 | 上海宝山15米高度 | 59 | 20:39 |
| 5 | BI4WCJ | 泉盛UV2 | 老鹰7900 | 5 | 港龙城 | 59 | 20:40 |
| 6 | BG4UQI | 威泰克斯5400 | 4米玻璃钢 | 10 | 海门120米 | 59 | 20:42 |
| 7 | BH4ECI | 400XD | X520 | 5 | 上海闵行 | 59 | 20:43 |
| 8 | BI4SUG | 欧讯车台 | LY700 | 低功 | 相城区繁华中心 | 59 | 20:44 |
| 9 | BD4SO | M8668 | 原装 | 低功 | 龙西路与太湖路路口 | 58 | 20:45 |
| 10 | BI4WTW | 建伍3178 | 原装 | 4 | 吴中区郭巷 | 59 | 20:47 |
| 11 | BD4RAL | 欧讯UVD1P | LY775拉杆 | 满功 | 吴江盛泽18F | 59 | 20:49 |
| 12 | BI4XDT | ICOM7100 | X520 | 中功 | 浒关 | 59 | 20:51 |
| 13 | BI4UCF | 欧讯8D | 原装 | 4 | 相城 | 59 | 20:52 |
| 14 | BI4VNM | MD780 | 1.2米玻璃钢 | 25 | 江阴80米高度 | 59 | 20:53 |
| 15 | BI4SQM | 摩托罗拉W3车台 | 车载 | 满功 | 金鸡湖大道和星湖街路口 | 59 | 20:55 |
| 16 | BH5EFS | 400XD | 健博通 | 20 | 浙江省桐乡 | 58 | 20:57 |
| 17 | BI4TEV | ICOM2730 | 钻石760 | 25 | 吴江高级中学地面 | 59 | 20:58 |
| 18 | BI4QZW | PD980 | 原装 | 1 | 090天线位置 | 58 | 20:59 |
| 19 | BD4QZH | FT1907 | 1.2米玻璃钢 | 5 | 吴江西河路 | 59 | 21:00 |
| 20 | BH4QVA | PD980 | 原装 | 4 | 桃花坞大街 | 59 | 21:02 |
| 21 | BI4WTX | PD980 | 原装 | 4 | 新庄立交3F | 59 | 21:03 |
| 22 | BD4QHH | GP338 | 原装 | 满功 | 绿宝广场 | 59 | 21:05 |
| 23 | BH4DLD | 400XD | X520 | 25 | 上海闵行 | 59 | 21:07 |
| 24 | BD4SU | 威诺6600 | 猪尾巴 | 中功 | 城北西路 | 59 | 21:09 |
| 25 | BH4EGJ | PD780 | 八木 | 满功 | 上海宝山20米高度 | 58 | 21:10 |
| 26 | BH7MZM | VX6R | 加长天线 | 5 | 金门路小商品 | 59 | 21:13 |
| 27 | BI4SDT | ICOM2720 | X520 | 中功 | 劳动路20F | 59 | 21:14 |
| 28 | BH4QNP | FT1807 | 钻石天线 | 5 | 吴中区城南 | 59 | 21:17 |
| 29 | BH4QXY | 威诺6600 | 老鹰车载 | 8 | 园区科文中心 | 59 | 21:23 |
| 30 | BH4EBS | 400XD | 钻石7900 | 满功 | 上海沪宁路地面高度 | 58 | 21:29 |
| 31 | BD4QZU | VX6R | 原装 | 5 | 苏州大学 | 59 | 21:32 |
Views: 9
Radio Morse code from 3 to 60 MHz (3000 to 60000 kHz).
Morse code in the 21st century.
Morse code radio listening in Sydney, Australia from 3 to 60 MHz.
Learning to receive and send Morse code in the 21st century- 2.
3.699 MHz 3699 kHz VK2WI, amateur radio station in Dural, Northern Sydney,
N.S.W., Australia.
Amateur Radio New South Wales, Australia is a 24 hour automatic Morse code
transmitting station for anyone who wants to learn Morse code. The speed of the Morse
code transmission changes from slow (5 words per minute) to higher speeds. The call sign
VK2WI in CW (Morse code) is transmitted every 2 minutes. Heard on 9 May 2009 at 0100
UTC signal strength 9.
4.209.5 MHz 4209.5 kHz TAH Istanbul Radio, Turkey (Istanbul Turk Radyo) coastal radio
station ship to shore communications.
Heard on 16 May 2009 at 1951 UTC signal strength 8 sending the radio call sign TAH
once on Morse code followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously. (Not 4209 kHz TAH or 4210 kHz TAH).
4.210.5 MHz 4210.5 kHz A9M Hamala Radio, Bahrain coastal radio station ship to shore
communications. On 20 June 2009 at 1525 UTC signal strength 6 sending “de A9M tlx” on
Morse code every 18 seconds followed by synchronizing signals. Tlx means Telex or
Telex by HF radio.
4.210.5 MHz 4210.5 kHz UFL Vladivostok Radio, Russia Pacific Ocean coastal radio
station ship to shore communications.
On 18 May 2009 at 1424 UTC sending “de UFL” on Morse code every 18 seconds
followed by synchronizing signals at signal strength 7. (Not 4210 kHz UFL or 4211 kHz
UFL).
4.212 MHz 4212 kHz XSQ Guangzhou Radio, China coastal radio station ship to shore
communications.
Heard on 16 May 2009 at 1950 UTC signal strength 9 sending the radio call sign XSQ
once on Morse code followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously.
4.215 MHz 4215 kHz XSG Shanghai Radio, China coastal radio station ship to
shore communications.
Heard on 16 May 2009 at 1945 UTC signal strength 9 sending the radio call sign XSG in
Morse code once followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously.
4.212.5 MHz 4212.5 kHz XSV Tianjin Radio, China coastal radio station ship to shore
communications.
Heard on 20 June 2009 at 1539 UTC signal strength 7 sending on Morse code “XSV” once
followed by four synchronizing signals for digital radio communications. This Morse code
and digital transmission format is repeated continuously. (Not 4.212 MHz 4212 kHz XSV
or 4.213 MHz 4213 kHz).
4.218.5 MHz 4218.5 kHz XSG Shanghai Radio, China coastal radio station ship to shore
communications.
Heard on 20 June 2009 at 1945 UTC signal strength 9 sending the radio call sign XSG in
Morse code once followed by 4 synchronizing signals. This Morse code and digital
sequence is repeated continuously. (Not 4.218 MHz 4218 kHz XSG or 4.219 MHz 4219
kHz XSG).
4219 MHz 4219 kHz TAH Istanbul Radio, Turkey (Istanbul Turk Radyo) coastal radio
station ship to shore communications.
Heard on 16 May 2009 at 2004 UTC signal strength 8 sending the radio call sign TAH
once on Morse code followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously.
4.225 MHz 4225 kHz 7NPE Chinese military radio communications station, China.
Transmitting V V V test signal and “7NPE” Morse code identification on 22 May 2009 at
1350 UTC signal strength-7. This station was not heard for many days earlier during which
time a wideband signal was occuping the frequency.
This station was earlier reported as 7NWI as follows:
4.225 MHz 4225 kHz 7NWI (4225 kHz 7NPE) unknown station.
Heard on 16 May 2009 at 2042 UTC signal strength-3 sending Morse code “V V V de
7NWI”
three times.
W I and PE can be confused at high Morse code speed.
W is dit-daaa-daaa.
i is dit-dit.
P is dit-daaa-daaa-dit.
E is dit.
4.325.9 MHz 4325.9 kHz R Russian Federation Army communications station, Izhevsk,
Udmurt Republic, Russian Federation. Central European Russian Federation frequency
marker R. Non Directional Beacon R.
Frequency marker heard on 17 May 2009 at 2000 UTC signal strength 1 sending the
Morse code letter “R” continuously at a speed around 5 words per minute (5wpm). A
“beep” was also heard every 6 seconds. This was first reported as 4326 MHz 4326 kHz R.
4.331 MHz 4331 kHz 4XZ Haifa Radio, Israel navy coastal radio station ship to
shore communications.
Heard on 16 May 2009 at 2020 UTC signal strength 6 sending Morse code messages with
call sign identification “V V V de 4XZ” repeated before continuing with the message. Morse
code speed was around 15 words a minute. I initially thought the call sign was 4X7 (4331
kHz 4X7). On 17 May 2009 between 1430 UTC to 2030 UTC 4XZ was heard several
times.
4.238 MHz 4238 kHz VTP India Navy Wireless Station, Visakhapatnam, India. Indian
Naval coastal radio station ship to shore communications.
Repeating in Morse code the message V V V (3 times) VTP4/6/7/8 (3 times) on 17 May
2009 at 1350 UTC with signal strength 8. In Morse code slash (/) is daaa dit dit daaa dit.
4.534 MHz 4534 kHz UWM2 unknown military communications station.
Heard on 16 May 2009 at 1946 UTC signal strength 9 sending “ZKT5 (3 times) de (means
this is) UMW2 (3 times)”. This Morse code format is repeated continuously. Station ZKT5
is unknown.
4.554 MHz 4554 kHz UWM2 unknown military communications station.
Heard on 15 May 2009 at 2022 UTC signal strength 3 sending “de UMW2” (three times)
“K” (over) on Morse code (CW). This Morse code format is repeated continuously.
4.558.3 MHz 4558.3 kHz K Russian naval station, Petropavlovsk-Kamchatskiy,
Kamchatka, Russia. Far east Asian Russia Bering Sea radio beacon. Non Directional
Beacon K.
The letter K is transmitted every second in Morse code.
13 Jul 2009 at 1412 UTC signal strength 7. (Not 4.558 MHz 4558 kHz K).
4.717.4 MHz 4717.4 kHz Morse code letters sent once in groups of 5.
22 May 2009 at 2025 UTC signal strength 7 to 8. (Not 4.717 MHz 4717 kHz 5 letter groups
or 4.717.5 MHz 4717.5 kHz 5 letter groups or 4.718 MHz 4718 kHz 5 letter groups)
5.000 MHz 5000 kHz BPM Shaanxi Astronomical Observatory, China Academy of
Sciences, Shaanxi, China. This is the Chinese National Time Service Centre providing
accurate time by broadcasting a “beep” every second. Heard on 12 May 2009 at 1059
UTC with fair signal strength using MCW to identify the call sign “BPM” at one minute
before and 29 minutes past each hour.
5154.3 MHz 5154.3 kHz K Russian naval station, Petropavlovsk-Kamchatskiy, ,
Kamchatka, Russia. Far east Asian Russia Bering Sea radio beacon. Non Directional
Beacon K.
The letter K is transmitted every second in Morse code.
13 Jul 2009 at 1327 UTC signal strength 3. (Not 5154 MHz 5154 kHz K).
5.153.7 MHz 5153.7 kHz D Russian naval station, Sevastopol, Ukraine. Russian Black
Sea coastal radio beacon. Non Directional Beacon D.
The letter D is transmitted every second in Morse code.
21 Jul 2009 at 1857 UTC signal strength 1.
(Not 5.153 MHz 5153 kHz D or 5.153.5 MHz 5153.5 kHz D or 5.154 MHz 5154 kHz).
5.153.8 MHz 5153.8 kHz M Russian naval station, Magadan, Russia. Far east Asian
Russia Sea of Okhotsk Non Directional radio beacon. Non Directional Beacon M.
The letter M is transmitted every 2 seconds in Morse code.
13 Jul 2009 at 1342 UTC signal strength 7. (Not 8.495.5 MHz 8495.5 kHz M or 8.495 MHz
8495 kHz M or 5.154.3 MHz 5154.3 kHz M).
6.317 MHz 6317 kHz WLO Mobile Radio, city of Mobile, Alabama, USA coastal radio
station ship to shore communications. 18 July 2009 at 0530 UTC signal strength 3 sending
the radio call sign WLO on Morse code followed by 4 synchronizing signals for SITOR,
AMTOR, PACTOR and PACTOR II digital radio communications.
6318 MHz 6318 kHz KLB Seattle Marine Radio, Seattle, Washington State, USA coastal
radio station ship to shore communications.
Heard on 18 May 2009 at 1415 UTC signal strength 7 sending in Morse code the call sign
“KLB” (once) followed by 3 synchronizing signals. This Morse code and digital sequence is
repeated continuously.
18 July 2009 at 0715 UTC signal strength 6.
6.325.5 MHz 6325.5 kHz VZG420 Townsville Radio, Queensland, Australia coastal radio
station ship to shore communications.
Heard on 17 May 2009 at 1952 UTC signal strength 2 sending the Morse code message
“CQ de VZG420” every 3 minutes followed by synchronous signals for digital
communications.
This Morse code and digital sequence is repeated continuously. Heard on 18 May 2009 at
2109 UTC signal strength 9. (Not 6325 kHz VZG420 or 6326 kHz VZG420).
7.038.7 MHz 7038.7 kHz D Sevastopol Russian naval station, Sevastopol, Ukraine.
Russian Black Sea coastal radio beacon. Non Directional Beacon D.
The letter D is transmitted every second in Morse code.
12 Jul 2009 at 1538 UTC signal strength 5. (Not 7.039 MHz 7039 kHz D).
7.038.9 MHz 7038.9 kHz S Russian naval station, Russian northern fleet base,
Severomorsk, Murmansk district, Russia. Kola Bay, Arctic and Northern Russia coastal
radio beacon. Non Directional Beacon S.
The letter S is transmitted every second in Morse code.
12 Jul 2009 at 1538 UTC signal strength 3. (Not 7.039 MHz 7039 kHz S).
7.039 MHz 7039 kHz C Russian naval Headquarter, Moscow, Russia. Central European
Russia Moscow River coastal radio beacon. Non Directional Beacon C.
The letter C is transmitted every second in Morse code.
23 Jul 2009 at 1629 UTC.with signal strength 1.
7.0393 MHz 7039.3 kHz K Russian naval station, Petropavlovsk-
Kamchatskiy, Kamchatka, Russia. Far east Asian Russia Bering Sea radio beacon. Non
Directional Beacon K.
The letter K is transmitted every second in Morse code.
12 Jul 2009 at 1113 UTC signal strength 2. This is a continuous 24 hour transmission.
Sometimes K faded in while station M faded out briefly. Signal strength 7 at 1210
UTC. (Not 7.039 MHz 7039 kHz K).
7.0394 MHz 7039.4 kHz M Russian naval station, Magadan, Sea of Okhotsk, Russia. Far
east Asian Russia Sea of Okhotsk radio beacon. Non Directional Beacon M.
The letter M is transmitted every 2 seconds in Morse code.
12 Jul 2009 at 1113 UTC signal strength 1. This is a continuous transmission. Sometimes
M faded in while station K faded out briefly. Signal strength 6 at 1210 UTC. (Not 7.039
MHz 7039 kHz M).
8.417.5 MHz 8417.5 kHz XSV Tianjin Radio, China coastal radio station ship to
shore communications.
Heard on 17 May 2009 at 2024 UTC signal strength 8 sending the radio call sign XSV
once on Morse code followed by 4 synchronizing signals. This Morse code and digital
sequence is repeated continuously.
(Not 8417 kHz XSV or 8418 kHz XSV).
8.418 MHz 8418 kHz IAR Roma Radio (Rome Radio), Italy coastal radio station ship to
shore communications.
Heard on 15 May 2009 at 1754 UTC signal strength 6 sending the radio call sign IAR once
on Morse code (CW) followed by synchronizing signals for digital radio communications.
This Morse code and digital transmission format is repeated continuously.
18 July 2009 signal strength 5 at 0545 UTC repeating in Morse code IAR once followed by
4 synchronizing signals.
8.421 MHz 8421 kHz WLO Mobile Radio, city of Mobile, Alabama, USA coastal radio
station ship to shore communications.
Heard on 8 May 2009 at 1026 UTC signal strength 5 regularly sending the radio call sign
WLO on Morse code followed by synchronizing signals for SITOR, AMTOR, PACTOR and
PACTOR II digital radio communications.
8.422 MHz 8422 kHz NRV Guam Island, central Pacific Ocean, United States Coast
Guard USCG coastal radio station ship to shore communications.
Heard on 8 May 2009 at 1022 UTC signal strength 9 sending the radio call sign NRV on
Morse code once followed by three synchronizing signals. This Morse code identification
and digital sequence is repeated.
18 July 2009 at 0530 UTC signal strength 5.
8.423 MHz 8423 kHz UFL Vladivostok Radio, Russia Pacific Ocean coastal radio
station ship to shore communications.
On 17 May 2009 at 2026 UTC sending “de UFL” on Morse code every 18 seconds with
signal strength 4.
8.424 MHz 8424 kHz SVO Olympia Radio, Greece coastal radio station ship to shore
communications remotely controlled from Athens, Greece.
Heard on 15 May 2009 at 1745 UTC signal strength 5 sending on Morse code “de SVO”
followed by a 2-second long carrier. This Morse code and carrier format is repeated
continuously.
18 July 2009 at 0540 UTC signal strength 6.
8.425.5 MHz 8425.5 kHz XSG Shanghai Radio, China coastal radio station ship to
shore communications.
Heard on 8 May 2009 at 1038 UTC signal strength 7 regularly sending the radio call sign
XSG on Morse code followed by synchronizing signals. (Not 8425 kHz XSG or 8426 kHz
XSG).
8.427.5 MHz 8427.5 kHz A9M Hamala Radio, Bahrain coastal radio station ship to shore
communications.
Heard on 15 May 2009 at 1748 UTC signal strength 3 sending on Morse code “de A9M tlx”
(tlx means Telex, Telex by HF radio) followed by synchronizing signals for digital radio
communications. This Morse code and digital transmission format is repeated
continuously.
(Not 8427 kHz A9M or 8428 kHz A9M).
8.431 MHz 8431 kHz TAH Istanbul Radio, Turkey coastal radio station ship to
shore communications.
Heard on 9 May 2009 at 2152 UTC signal strength 3 regularly sending the radio call sign
TAS on Morse code followed by synchronizing signals.
8431.5 MHz 8431.5 kHz UAT Moscow Radio, Russia coastal radio station ship to shore
communications.
Heard on 20 June 2009 at 1617 UTC signal strength 7 sending the radio call sign “de
UAT” in Morse code every 18 seconds once followed by synchronizing signals. This Morse
code and digital sequence is repeated continuously. (Not 8431 kHz UAT or 8432 kHz
UAT).
8.433 MHz 8.433 kHz XSG Shanghai Radio, China coastal radio station ship to shore
communications.
Heard on 9 May 2009 at 0907 UTC signal strength 7 regularly sending the radio call sign
XSG on Morse code followed by synchronizing signals.
8.434 MHz 8434 kHz TAH Istanbul Radio, Turkey coastal radio station ship to shore
communications.
Heard on 9 May 2009 at 2154 UTC signal strength 3 regularly sending the radio call sign
TAH on Morse code followed by synchronizing signals.
8.435 MHz 8435 kHz XSQ Guangzhou Radio, China coastal radio station ship to shore
communications.
Heard on 8 May 2009 at 1032 UTC signal strength 5 sending the radio call sign XSQ once
on Morse code followed by synchronizing signals. This Morse code and digital sequence is
repeated continuously.
8.436 MHz 8436 kHz VZG420 Townsville Radio, Queensland, Australia coastal radio
station
ship to shore communications.
Heard on 8 May 2009 at 1032 UTC signal strength 5 sending the Morse code message
“CQ de VZG420” every 5 minutes followed by synchronous signals for digital
communications. This Morse code and digital sequence is repeated continuously.
8.484 MHz 8484 kHz HLG Seoul Radio, South Korea coastal radio station ship to shore
communications.
Repeating the Morse code message: CQ (meaning “general call to any station” sent 3
times) de (meaning “this is” sent one time) HLG (call sign HLG sent 3 times) QSX (means
listening on) 8 MHz K (means go ahead or over). Heard on 8 May 2009 at 1017 UTC
signal strength 5 to 7.
8.491 MHz 8491 kHz AQP, 8491 kHz AQP4/5 Pakistan navy communications station,
Karachi, Pakistan.
Transmitting in Morse code V V V (3 times) followed by the call sign AQP4/5 (once).
Repeated continuously.
14 July 2009 at 1240 UTC with signal strength 5. (Not 8490 kHz AQP or 8490 kHz
AQP4/5).
8.494.7 MHz 8494.7 kHz D Sevastopol Russian naval station, Sevastopol, Ukraine.
Russian Black Sea coastal radio beacon. Non Directional Beacon D.
The letter D is transmitted every second in Morse code.
14 Jul 2009 at 1436 UTC signal strength under 1. (Not 8.495 MHz 8495 kHz D or 8.494.5
MHz 8494.5 kHz D or 8.493 MHz 8493 kHz D).
8.494.9 MHz 8494.9 kHz S Russian naval station, Russian northern fleet base,
Severomorsk, Murmansk district, Russia. Kola Bay, Arctic and Northern Russia coastal
radio beacon. Non Directional Beacon S.
The letter S is transmitted every second in Morse code.
15 July 2009 at 1230 UTC with signal strength under 1 fading in and out.
8.495 MHz 8495 kHz C Russian naval Headquarter, Moscow, Russia. Central European
Russia Moscow River coastal radio beacon. Non Directional Beacon C.
The letter C is transmitted every second in Morse code.
23 Jul 2009 at 1632 UTC.with signal strength 2.
8.495.2 MHz 8495.2 KHz F Russian naval station, Vladivostok, Russia. Far east Asian
Russia Sea of Japan coastal radio beacon. Non Directional Beacon F.
The letter F is transmitted every second in Morse code.
17 July 2009 at 1110 UTC with signal strength 2.
8.495.3 MHz 8495.3 kHz K Russian naval station, Petropavlovsk-Kamchatskiy,
Kamchatka, Russia. Far east Asian Russia Bering Sea radio beacon. Non Directional
Beacon K.
The letter K is transmitted every second in Morse code.
13 Jul 2009 at 1309 UTC signal strength 5. (Not 8.495.5 MHz 8495.5 kHz K or 8.495 MHz
8495 kHz K)
8.495.4 MHz 8495.4 kHz M Russian naval station, Magadan, Russia. Far east Asian
Russia Sea of Okhotsk radio beacon. Non Directional Beacon M.
The letter M is transmitted every 2 seconds in Morse code. Signal strength 6 at 1210 UTC.
13 Jul 2009 at 1310 UTC signal strength 1. (Not 8.495.5 MHz 8495.5 kHz M or 8.495 MHz
8495 kHz M)
8.636 MHz 8636 kHz HLW, Seoul Radio, South Korea coastal radio station ship to shore
communications.
Repeating the Morse code message: CQ (meaning “general call to any station” sent 3
times) de (meaning “this is” sent one time) HLW (call sign HLW sent 3 times) QSX (means
listening on) 8 MHz K (means go ahead or over). Heard on 8 May 2009 at 1010 UTC
signal strength 7.
13 July 2009 News flash!
USA returns to Morse code 10 years after it was last commercially used by USA ships.
8.642 MHz 8642 kHz KPH Point Reyes coastal radio station, Bolinas, north of San
Francisco, California, USA.
This radio station was closed 10 years ago.
13 July 2009 I heard a computer quality Morse code message followed by V V V de KPH
at 0700 UTC and then I heard a hand sent Morse code message starting with CQ CQ CQ
de KPH. Signal strength 7.
10 years ago radio station KPH sent its last commercial Morse code message in the USA.
During a special event beginning 12 July 2009 at 1701 UTC (13 July 2009 at 0001 UTC)
marine radio station KPH has returned to the air on Morse code to commemorate the men
and women who used Morse code on ships and in coast radio stations in the USA and
around the world.
KPH is transmitting on Morse code using 426 kHz, 500 kHz, 4247.0 kHz, 6477.5 kHz,
8642.0 kHz, 12808.5 kHz, 17016.8 kHz and 22477.5 kHz.
KPH is listening for Morse code replies from ships on 500 kHz, 4184.0 kHz, 6276.0 kHz,
8368.0 kHz, 12552.0 kHz, 16736.0 kHz and 22280.5 kHz.
Many other USA coastal radio stations have also joined this special event on Morse code.
8.646 MHz 8646 kHz VTP India Navy Wireless Station, Visakhapatnam, India. Indian
Naval coastal radio station ship to shore communications.
Repeating in Morse code the message V V V (3 times) VTP4/6/7/8 (3 times) on 13 July
2009 at 1212 UTC with signal strength 8. In Morse code slash (/) is daaa dit dit daaa dit.
9.112 MHz 9112 kHz Morse code letters sent once in groups of 5.
Heard on MCW on 8 May 2009 at 1015 UTC signal strength 9. This is the same
transmitter (reported to be from Cuba) that was earlier on 9.153 MHz 9153 kHz.
9.153 MHz 9153 kHz Morse code letters sent once in groups of 5.
Heard on MCW on 8 May 2009 at 0715 UTC with signal strength 9 plus 10db.
These broadcasts have previously been reported as originating from transmitters in Cuba.
10.000 MHz 10.000 MHz BPM Shaanxi Astronomical Observatory, China Academy of
Sciences, Shaanxi, China. This is the Chinese National Time Service Centre providing
accurate time by broadcasting a “beep” every second. Heard on 12 May 2009 at 1059
UTC with fair signal strength using MCW to identify the call sign “BPM” at one minute
before and 29 minutes past each hour.
10.433 MHz 10433 kHz Morse code letters sent once in groups of 5.
Heard on MCW on 11 May 2009 at 0933 UTC signal strength 9.
10.871.7 MHz 10871.7 kHz D Sevastopol joint Russian naval station, Sevastopol, Ukraine.
Russian Black Sea coastal radio beacon. Non Directional Beacon D.
The letter D is transmitted every second in Morse code.
14 Jul 2009 at 1401 UTC signal strength under 1. (Not 10.872 MHz 10872 kHz D or
10.871.5 MHz 10871.5 kHz D).
10871.9 MHz 10871.9 kHz S Russian naval station, Russian northern fleet base,
Severomorsk, Murmansk district, Russia. Kola Bay, Arctic and Northern Russia coastal
radio beacon. Non Directional Beacon S.
The letter S is transmitted every second in Morse code.
21 July 2009 at 2150 UTC with signal strength 1.
10.872 MHz 10872 kHz C Russian naval Headquarters, Moscow, Russia. Central
European Russia Moscow River coastal radio beacon. Non Directional Beacon C.
The letter C is transmitted every second in Morse code.
14 Jul 2009 at 1513 UTC.with signal strength 1.
10.872.1 MHz 10872.1 kHz A Russian naval station, Astrakhan, Russia. Southern
European Russia Caspian Sea coastal radio beacon. Non Directional Beacon A.
The letter A is transmitted every second in Morse code.
13 Jul 2009 at 1356 UTC signal strength 1. (Not 10.872 MHz 10872 kHz A).
10.872.3 MHz 10872.3 kHz T Russian naval station, Russia. Faulty Non Directional
Beacon T.
The letter T is transmitted every 3 seconds in Morse code with occasional spaces in the
transmission.
21 July 2009 at 2030 UTC.with signal strength 1. Still heard at 2100 UTC. Some clicks
noted at the start of keying at 2102 UTC. By 2003 UTC T had disappeared and replaced
by two clicking sounds repeated, one T heard at 2005 UTC followed by 2 clicks without
sound repeated then again one last T heard, 2 clicks without sound repeated. This could
be a faulty Morse code beacon. The first identified Russian Navy beacon to appear was
the A beacon at 2101 UTC under signal strength 1. Two clicking sounds continued with no
further tones by 2112 UTC and faded out by 2120 UTC. (At 2100 UTC the D beacon heard
on 7038.7 kHz and 8494.7 kHz).
(Not 10.872 MHz 10872 kHz T or 10.872.5 MHz 10873.5 kHz T).
11.000 MHz 11000 kHz RIW Russian Navy Headquarters, Moscow, Russia.
Radio Operators based in the Kremlin in Moscow sending Morse code remotely through
transmitter sites in Russia. Very active using CW Morse code to call stations followed by
call sign “RIW” then “K” (K means “go ahead”). Heard on 13 May 2009 at 0630 UTC signal
strength 1.
12.581.5 MHz 12581.5 kHz XSV Tianjin Radio, China coastal radio station ship to shore
communications.
Heard on 15 May 2009 at 2125 UTC signal strength 5 sending on Morse code “XSV” once
followed by four synchronizing signals for digital radio communications. This Morse code
and digital transmission format is repeated continuously. (Not 12581 kHz XSV or 12582
kHz XSV).
12.585 MHz 12585 kHz NRV Guam Island, central Pacific Ocean, United States Coast
Guard USCG coastal radio station ship to shore communications.
Heard on 16 May 2009 at 2026 UTC signal strength 9 sending the radio call sign NRV on
Morse code once followed by four synchronizing signals. This Morse code identification
and digital sequence is repeated.
12.590.5 MHz 12590.5 kHz KLB Seattle Marine Radio, Seattle, Washington State, USA
coastal radio station ship to shore communications.
18 July 2009 at 0533 UTC signal strength 7 sending in Morse code the call sign “KLB”
(once) followed by 4 synchronizing signals. This Morse code and digital sequence is
repeated continuously.
12.591.5 MHz 12591.5 kHz UFL Vladivostok Radio, Russia Pacific Ocean coastal radio
station ship to shore communications. 18 July 2009 at 0812 UTC signal strength 5 sending
“de UFL” on Morse code every 13 seconds followed by synchronizing signals. (Not 12.591
MHz 12591 kHz UFL or 12.592 MHz 12592 kHz UFL).
12.613 MHz 12613 kHz XSQ Guangzhou Radio, China coastal radio station ship to shore
communications.
18 July 2009 at 0250 UTC signal strength 5 sending the radio call sign XSQ once on
Morse code followed by 3 synchronizing signals. This Morse code and digital sequence is
repeated continuously.
12.637.5 MHz 12637.5 kHz XSG Shanghai Radio, China coastal radio station ship to
shore communications.
Heard on 15 May 2009 at 2122 UTC signal strength 8 regularly sending the radio call sign
XSG once on Morse code followed by synchronizing signals. Morse code and digital
transmission format is repeated continuously.
(Not 12637 kHz XSG or 12638 kHz XSG).
12.843 MHz 12843 kHz HLO Seoul Radio, South Korea coastal radio station ship to shore
communications. Repeating the Morse code message: CQ (meaning “general call to any
station” sent 3 times) de (meaning “this is” sent one time) HLO (call sign HLO sent 3 times)
QSX (Q code meaning “I am listening on”) 12 MHz K (K means “go ahead anyone wishing
to contact me”). Heard on 12 May 2009 at 1154 UTC signal strength 8.
12.916.5 MHz 12916.5 kHz HLF Seoul Radio, South Korea coastal radio station ship to
shore communications. Repeating the Morse code message: CQ (meaning “general call to
any station” sent 3 times) de (meaning “this is” sent one time) HLF (call sign HLF sent 3
times) QSX (Q code meaning “I am listening on”) 12 MHz K (K means “go ahead anyone
wishing to contact me”). Heard on 12 May 2009 at 1150 UTC signal strength 8. (Not 12916
kHz HLF or 12917 kHz HLF).
12.923 MHz 12923 kHz HLW2 Seoul Radio, South Korea coastal radio station ship to
shore communications.
Repeating the Morse code message: CQ (meaning “general call to any station” sent 3
times) de (meaning “this is” sent one time) HLW2 (call sign HLW2 sent 3 times) QSX
(meaning “listening on “) 12 MHz K (meaning “over”). Heard on 15 May 2009 at 2117 UTC
signal strength 8.
12.935 MHz 12935 kHz HLG Seoul Radio, South Korea coastal radio station ship to
shore communications.
Repeating the Morse code message: CQ (meaning “general call to any station” sent 3
times) de (meaning “this is” sent one time) HLG (call sign HLG sent 3 times) QSX
(meaning “listening on “) 12 MHz K (meaning “over”). Heard on 15 May 2009 at 2116 UTC
signal strength 8.
13.527.7 MHz 13527.7 kHz D Sevastopol joint Russian naval station, Sevastopol, Ukraine.
Russian Black Sea coastal radio beacon. Non Directional Beacon D.
The letter D is transmitted every second in Morse code.
14 Jul 2009 at 0355 UTC signal strength under 1 and some fade out. (Not 13.528 MHz
13528 kHz D or 13.527.5 MHz 13527.5 kHz D).
13.527.8 MHz 13527.8 kHz M Russian naval station, Magadan, Russia. Far east Asian
Russia Sea of Okhotsk radio beacon. Non Directional Beacon M.
The letter M is transmitted every 2 seconds in Morse code.
21 Jul 2009 at 2205 UTC signal strength 1.
(Not 13.527.5 MHz 13.527.5 kHz M or 13.527 MHz 13.527 kHz M or 13.528 MHz 13.528
kHz M)
13.527.9 MHz 13527.9 kHz S Russian naval station, Russian northern fleet base,
Severomorsk, Murmansk district, Russia. Kola Bay, Arctic and Northern Russia coastal
radio beacon. Non Directional Beacon S.
Non Directional Beacon S.
The letter S is transmitted every second in Morse code.
14 July 2009 at 1250 UTC with signal strength 1.
13.528 MHz 13.528 kHz A Russian naval station, Astrakhan, Russia. Southern European
Russia Caspian Sea coastal radio beacon. Non Directional Beacon A.
The letter A is transmitted every second in Morse code.
14 Jul 2009 at 0116 UTC signal strength 1.
13.528 MHz 13528 kHz C Russian naval Headquarters, Moscow, Russia. Central
European Russia Moscow River coastal radio beacon. Non Directional Beacon C.
The letter C is transmitted every second in Morse code.
14 Jul 2009 at 1255 UTC with signal strength 1.
14.047.5 MHz 14047.5 kHz W1AW American Radio Relay League (ARRL), Newington,
Connecticut, USA.
The USA amateur radio headquarter station Morse code practice broadcast heard on 12
June 2009 at 0212 UTC signal strength 5 to 6.
14.100 MHz 14100 kHz W6WX San Jose, California, USA. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Northern California DX Foundation Inc (NCDXF) propagation research radio beacon
uses a vertical antenna to transmit the call sign W6WX in Morse code once every 3
minutes followed by 4 carriers of decreasing power levels. 20 June 2009 at 0609 UTC 4
carriers were heard, 100 Watts, 10 Watt, 1 Watt and 0.1 Watt (100 mw) signal strength 9
to signal strength 1.
14.100 MHz 14100 kHz KH6WO Laie, Oahu, Hawaii, USA. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Honolulu Amateur Radio Club propagation research radio beacon uses a vertical
antenna to transmit the call sign KH6WO in Morse code once every 3 minutes followed by
4 carriers of decreasing power levels. 20 June 2009 at 0627 UTC 4 carriers were heard,
100 Watts, 10 Watt, 1 Watt and 0.1 Watt (100 mw) signal strength 7 to signal strength 1.
14.100 MHz 14100 kHz ZL6B Masterton, New Zealand. Amateur Radio International radio
beacon project to monitor Solar and other factors that affect radio communications.
The New Zealand Association of Radio Transmitters (NZART) propagation research radio
beacon uses a vertical antenna to transmit the call sign ZL6B in Morse code once every 3
minutes followed by 4 carriers of decreasing power levels. 19 June 2009 at 2348 UTC 4
carriers were heard, 100 Watts was signal strength 9, then 10 Watt and 1 Watt. 0.1 Watt
(100 mw) was signal strength 5.
14.100 MHz 14100 kHz VK6RBP Perth, Western Australia. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Wireless Institute Of Australia (WIA) Western Australian Division propagation
research radio beacon uses a vertical antenna to transmit the call sign VK6RBP in Morse
code once every 3 minutes followed by 4 carriers of decreasing power levels. 19 June
2009 at 0116 UTC 4 carriers were heard, 100 Watts was signal strength 8, then 10 Watt
and 1 Watt. 0.1 Watt (100 mw) was signal strength 1.
14.100 MHz 14100 kHz JA2IGY Mount Asama, Ise city, Mie, Japan. Amateur Radio
International radio beacon project to monitor Solar and other factors that affect radio
communications. The Japan Amateur Radio League (JARL) propagation research radio
beacon uses a vertical antenna to transmit the call sign JA2IGY in Morse code once every
3 minutes followed by 4 carriers of decreasing power levels. 20 June 2009 at 0628 UTC
heard 1 carrier at 100 Watts signal strength less than 1.
15.000 MHz 15.000 kHz BPM Shaanxi Astronomical Observatory, China Academy of
Sciences, Shaanxi, China. This is the Chinese National Time Service Centre providing
accurate time by broadcasting a “beep” every second. Heard on 13 May 2009 at 0759
UTC with fair signal strength using Modulated Morse code (MCW). The call sign “BPM” is
sent 8 or 9 times at one minute before and 29 minutes past each hour.
16.332 MHz 16332 kHz A Russian naval station, Astrakhan, Russia. Southern European
Russia Caspian Sea coastal radio beacon. Non Directional Beacon A.
The letter A transmitted every second in Morse code.
14 Jul 2009 at 0655 UTC signal strength 1.
16.812.5 MHz 16812.5 kHz NRV Guam Island Radio, central Pacific Ocean, United States
Coast Guard USCG coastal radio station ship to shore communications. Heard on 9 May
2009 at 0212 UTC signal strength 1 to 2 sending the radio call sign NRV on Morse code
every 15 seconds followed by synchronizing signals.
(Not 16812 kHz NRV or 16813 kHz NRV).
16.876.7 MHz 16876.7 kHz XSQ Guangzhou Radio, China coastal radio station ship to
shore communications.
Heard on 14 July 2009 at 2330 UTC signal strength 5 sending the radio call sign XSQ
once on Morse code followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously. (Not 16.876.5 MHz 16876.5 kHz XSQ or 16.876 MHz
16876 kHz XSQ or 16.877 MHz 16877 kHz XSQ)
16.880 MHz 16880 kHz XSQ Guangzhou Radio, China coastal radio station ship to shore
communications.
Heard on 14 July 2009 at 2330 UTC signal strength 5 sending the radio call sign XSQ
once on Morse code followed by 3 synchronizing signals. This Morse code and digital
sequence is repeated continuously.
16.892 MHz 16892 kHz XSG Shanghai Radio, China coastal radio station ship to shore
communications. Heard on 14 July 2009 at 2332 UTC signal strength 5 sending the radio
call sign XSG once on Morse code followed by 3 synchronizing signals. This transmission
format is repeated continuously.
16.898.5 MHz 16898.5 kHz XSG Shanghai Radio, China coastal radio station ship to
shore communications. Heard on 12 May 2009 at 1038 UTC signal strength 1 sending the
radio call sign XSG once on Morse code followed by 3 synchronizing signals. This
transmission format is repeated continuously.
(Not 16898 kHz XSG or 16899 kHz XSG).
16.910 MHz 16.910 kHz HLJ, Seoul Radio, South Korea coastal radio station ship to shore
communications. Repeating the Morse code message: CQ (meaning “general call to any
station” sent 3 times) de (meaning “this is” sent one time) HLJ (call sign HLJ sent 3 times).
Heard on 11 May 2009 at 0218 UTC signal strength 1.
17.130 MHz 17130 kHz HLW, Seoul Radio, South Korea coastal radio station ship to
shore communications.
Repeating the Morse code message: CQ (meaning “general call to any station” sent 3
times) de (meaning “this is” sent one time) HLW (call sign HLW sent 3 times) QSX
(meaning “listening on “) 12 MHz K (K means “over”). Heard on 11 May 2009 at 0214 UTC
signal strength 7.
18.097.5 MHz 18097.5 kHz W1AW American Radio Relay League (ARRL), Newington,
Connecticut, USA.
The USA amateur radio headquarter station Morse code practice broadcast heard on 12
June 2009 at 2303 UTC signal strength 1. This is often heard in Sydney.
18.110 MHz 18110 kHz W6WX San Jose, California, USA. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Northern California DX Foundation Inc (NCDXF) propagation research radio beacon
uses a vertical antenna to transmit the call sign W6WX in Morse code once every 3
minutes followed by 4 carriers of decreasing power levels. 21 June 2009 at 0615 UTC 3
carriers were heard, 100 Watts, 10 Watt and 1 Watt all signal strength 1.
18.110 MHz 18110 kHz KH6WO Laie, Oahu, Hawaii, USA. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Honolulu Amateur Radio Club propagation research radio beacon uses a vertical
antenna to transmit the call sign KH6WO in Morse code once every 3 minutes followed by
4 carriers of decreasing power levels.
21 June 2009 at 0621 UTC 1 carrier was heard at 100 Watts signal strength 1.
18.110 MHz 18110 kHz ZL6B Masterton, New Zealand. Amateur Radio International radio
beacon project to monitor Solar and other factors that affect radio communications.
The New Zealand Association of Radio Transmitters (NZART) propagation research radio
beacon uses a vertical antenna to transmit the call sign ZL6B in Morse code once every 3
minutes followed by 4 carriers of decreasing power levels. 20 June 2009 at 0225 UTC 4
carriers were heard 100 Watts, 10 Watt, 1 Watt and 0.1 Watt (100 milliwatts) all at and
under signal strength 1.
18.110 MHz 18110 kHz VK6RBP Perth, Western Australia. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Wireless Institute Of Australia (WIA) Western Australian Division propagation
research radio beacon uses a vertical antenna to transmit the call sign VK6RBP in Morse
code once every 3 minutes followed by 4 carriers of decreasing power levels. 20 June
2009 at 0228 UTC 3 carriers were heard 100 Watts, 10 Watts and 1 Watt all under signal
strength 1. 21 June 2009 at 0622 UTC 2 carriers were heard at 100 Watts and 10 Watts
signal strength 1.
18.110 MHz 18110 kHz JA2IGY Mount Asama, Ise city, Mie, Japan. Amateur Radio
International radio beacon project to monitor Solar and other factors that affect radio
communications.
The Japan Amateur Radio League (JARL) propagation research radio beacon uses a
vertical antenna to transmit the call sign JA2IGY in Morse code once every 3 minutes
followed by 4 carriers of decreasing power levels. 21 June 2009 at 0622 UTC 2 carriers
were heard at 100 Watts and 10 Watts signal strength 1.
21.067.5 MHz 21067.5 kHz W1AW American Radio Relay League (ARRL), Newington,
Connecticut, USA.
The USA amateur radio headquarter station Morse code practice broadcast heard on 12
June 2009 at 0208 UTC signal strength 5.
21.150 MHz 21150 kHz W6WX San Jose, California, USA. Amateur Radio International
radio beacon project to monitor Solar and other factors that affect radio communications.
The Northern California DX Foundation Inc (NCDXF) propagation research radio beacon
uses a vertical antenna to transmit the call sign W6WX in Morse code once every 3
minutes followed by 4 carriers of decreasing power levels. 21 June 2009 at 0506 UTC 3
carriers were heard, 100 Watts, 10 Watt and 1 Watt all signal strength 1.
21.150 MHz 21150 kHz JA2IGY Mount Asama, Ise city, Mie, Japan. Amateur Radio
International radio beacon project to monitor Solar and other factors that affect radio
communications.
The Japan Amateur Radio League (JARL) propagation research radio beacon uses a
vertical antenna to transmit the call sign JA2IGY in Morse code once every 3 minutes
followed by 4 carriers of decreasing power levels. 19 June 2009 at 0223 UTC 2 carriers
were heard, 100 Watts and 10 Watt signal strength 1.
22.382 MHz 22.382 kHz NRV Guam Island, central Pacific Ocean, United States Coast
Guard USCG coastal radio station ship to shore communications.
Heard on 16 May 2009 at 0248 UTC signal strength 9 sending the radio call sign NRV on
Morse code once followed by four synchronizing signals. This Morse code identification
and digital sequence is repeated.
21 July 2009 at 0139 UTC signal strength 1 (signal strength 5 at 0343 UTC).
22.383.5 MHz 22383.5 kHz WLO Mobile Radio, city of Mobile, Alabama, USA coastal
radio station ship to shore communications.
21 July 2009 at 0138 UTC signal strength 1 sending the radio call sign WLO on Morse
code once followed by 4 synchronizing signals for SITOR, AMTOR, PACTOR and
PACTOR II digital radio communications. This Morse code and digital transmission format
is repeated continuously.
28.262 MHz 28262 kHz VK2RSY amateur radio station in Dural, Northern Sydney, N.S.W.,
Australia.
Amateur Radio New South Wales, Australia is a 24 hour automatic radio beacon providing
a signal for propagation “radio weather” research.
Heard on 9 May 2009 at 0430 UTC signal strength 9 plus 10db sending the radio call sign
VK2RSY on Morse code every 40 seconds followed by a continuous unmodulated (no
audio) radio frequency carrier wave.
Morse code on VHF (Very High Frequency) Radio.
50.288 MHz 50288 kHz VK2RHV amateur radio beacon station in Newcastle, N.S.W.,
Australia.
This is a 24 hour automatic radio beacon providing a signal for propagation “radio weather”
research. Heard on 12 May 2009 at 2345 UTC signal strength 1 sending this message on
Morse code “Beacon de VK2RHV Newcastle …” 10 second carrier, 4 “dits” followed again
with the Morse code identification message. This transmission format is repeated
continuously.
50.289 MHz 50289 kHz VK2RSY amateur radio station in Dural, Northern Sydney, N.S.W.,
Australia.
Amateur Radio New South Wales, Australia is a 24 hour automatic radio beacon providing
a signal for propagation “radio weather” research. Heard on 9 May 2009 at 0423 UTC
signal strength 3 sending the radio call sign VK2RSY on Morse code every 40 seconds
followed by a continuous unmodulated (no audio) radio frequency carrier wave.
53.850 MHz 53850 kHz VK2RWI amateur radio repeater station in Dural, Northern
Sydney, N.S.W., Australia.
Amateur Radio New South Wales, Australia maintains this 24 hour automatic radio
repeater station to provide a free automatic relay station that retransmits the FM voice
conversations of amateur radio mobile, handheld or home stations over a long distance in
the 6 metre amateur radio band. The Morse code identification transmits the repeater call
sign “VK2RWI” in Frequency Modulated Morse code (MCW).
Views: 59
| 2018.4.7苏州中继应急点名演练438.025 -5 88.5 OP:BI4XDT | |||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 |
| 1 | BI4XFM | PD780 | 原装天线 | 满功 | 迎春南路附近 | 59 | 20:01 |
| 2 | BI4SQU | 1907 | 车载天线 | 5W | 城北西路附近 | 59 | 20:03 |
| 3 | BD4QIO | MOTO手台 | 原装天线 | 1W | 园区斜塘 | 59 | 20:05 |
| 4 | BD4QZJ | BF-330 | 原装天线 | 4W | 金阊新城14F | 59 | 20:06 |
| 5 | BI4VCJ | 泉盛UVR | 车载老鹰7900 | 5W | 高新区港龙城 | 59 | 20:08 |
| 6 | BD4QIH | UV5R | 车载天线 | 5W | 独墅湖体育馆附近 | 59 | 20:09 |
| 7 | BH4QVI | 建伍F6 | 自制天线 | 5W | 南环路附近 | 59 | 20:11 |
| 8 | BH4QVA | PD980 | 原装天线 | 1W | 人民路乐桥 | 59 | 20:13 |
| 9 | BI4WTX | IC-2820 | 猪尾巴天线 | 满功 | 中环西路附近 | 59 | 20:14 |
| 10 | BI4WTW | GP328 | 原装天线 | 4W | 郭巷 | 59 | 20:16 |
| 11 | BD4RAG | 建武F6 | 钻石771 | 5W | 昆山亭林大桥 | 59 | 20:17 |
| 12 | BH4QNP | 1807 | 钻石天线 | 5W | 吴中城南 | 59 | 20:19 |
| 13 | BH4QYW | 建武308 | 原装天线 | 低功 | 吴中大道 | 59 | 20:21 |
| 14 | BD4SX | MOTO SL1M | 原装天线 | 低功 | 金门路附近 | 59 | 20:23 |
| 15 | BD4SU | TYT MD380 | 原装天线 | 满功 | 金阊新城32F | 59 | 20:24 |
| 16 | BI4SDT | TYT MD760 | 原装天线 | 5W | 杨树路附近 | 59 | 20:25 |
| 17 | BH4QXY | 威诺6600 | 老鹰天线 | 8W | 斜塘老街附近 | 59 | 20:27 |
| 18 | BI4XFD | UV5R | 原装天线 | 5W | 里河新村 | 59 | 20:28 |
| 19 | BD4QZH | 欧讯9D | 原装天线 | 5W | 吴江苏州河附近 | 59 | 20:31 |
| 20 | BD4QCQ | 欧讯手台 | 原装天线 | 满功 | G2京沪高速苏州出口 | 59 | 20:32 |
| 21 | BD4QZL | MOTO 3688 | 原装天线 | 4W | 吴中尹山湖 | 59 | 20:34 |
| 22 | BH4SDO | 八重洲V6 | 钻石805 | 5W | 新区浒关 | 59 | 20:36 |
| 23 | BI4TSH | M8668 | X520 | 低功 | 木渎 | 59 | 20:37 |
| 24 | BH4EGJ | D9000车台 | 八木天线 | 50W | 上海宝山 | 59 | 20:38 |
| 25 | BI4QVU | 宝峰3R | 玻璃钢天线 | 0.5W | 宜兴 | 59 | 20:43 |
| 26 | BI4XZV | 小米手台 | 原装天线 | 2W | 平江万达5F | 59 | 20:45 |
| 27 | BD4QZM | MOTO GP88 | 原装天线 | 5W | 尹山湖2F | 59 | 20:46 |
| 28 | BH4DXF | MOTO GP88 | 八木天线 | 5W | 上海宝山15米 | 59 | 20:52 |
| 29 | BH4ECI | 400XDR | X50 | 5W | 江月路附近 | 59 | 20:53 |
| 30 | BI4RYE | 1907 | 八木天线 | 中功 | 无锡惠山 | 59 | 20:56 |
| 31 | BH4BFY | M8660 | X300 | 满功 | 上海 | 59 | 20:58 |
| 32 | BI4XZT | 1907 | 车载天线 | 低功 | 中环西路附近 | 59 | 21:00 |
| 33 | BD4QAB | MOTO SL1M | 原装天线 | 低功 | 金门路附近 | 59 | 21:01 |
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Views: 19
| 2018.4.7苏州中继应急点名演练438.090 -5 色码1 时序1 接收组1 发射全呼 ID不限 OP:BI4XDT | ||||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 | |
| 1 | BD4QAA | MOTO SL1M | 原装天线 | 2W | 金门路附近 | 59 | 21:05 | |
| 2 | BD4SX | MOTO SL1M | 原装天线 | 2W | 金门路附近 | 59 | 21:05 | |
| 3 | BH4QNP | M8668 | 钻石天线 | 20W | 吴中城南 | 59 | 21:07 | |
| 4 | BH4QVA | PD980 | 原装天线 | 1W | 平江新城 | 59 | 21:08 | |
| 5 | BI4WTX | PD980 | 原装天线 | 4W | 新庄立交 | 59 | 21:09 | |
| 6 | BI4SQU | PD9780 | 原装天线 | 5W | 吴中万达附近 | 59 | 21:10 | |
| 7 | BD4QAB | MOTO SL1M | 原装天线 | 2W | 金门路附近 | 59 | 21:12 | |
| 8 | BI4XZT | PD680 | 原装天线 | 低功 | 南环西路地面 | 59 | 21:13 | |
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Views: 4
苏州数字中继应急点名演练438.090 -5 色码1 时序1 接收组1 发射全呼 ID不限
编号 呼号 设备 天线 功率(W) QTH 信号报告 确认时间
1 BH4QVA PD980 原装 1 平江新城26F 59 21:10
2 BI4XFD PD680 原装 4 相城区15F 59 21:12
3 BH4QYW PD980 原装 1 吴中大道蠡墅镇 59 21:13
4 BI4QZW ICOM2820 老鹰TSM-1317 5 竹辉路3F室内 59 21:15
5 BI4SDT TYT MD-760 原装 5 劳动路附近 59 21:16
6 BH4SRC TYT MD-760 原装 5 解放西路 59 21:22
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13 OP:BI4XZT
Views: 8
| 2018.03.31苏州中继应急点名演练438.025 -5 88.5 OP:BI4SDT | |||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 |
| 1 | BI4QMU | MD780G | 11单元八木 | 48 | 水香街 | 59 | 20:01 |
| 2 | BI4XZT | IC2730 | 4M玻璃钢 | 低功 | 南环西路 | 59 | 20:02 |
| 3 | BI4XFD | PD680 | 原装 | 4 | 吴江永旺高架 | 59 | 20:03 |
| 4 | BI4XDT | FT817 | X520 | 5 | 40M浒关 | 59 | 20:05 |
| 5 | BI4VCJ | 泉盛UV2 | 7900 | 5 | 新区港龙城 | 59 | 20:06 |
| 6 | BI4WTW | 建武TK3178 | 原装 | 0.6W | 吴中本旺车市 | 59 | 20:07 |
| 7 | BH4SRB | PD980 | 原装 | 4 | 华元路 | 59 | 20:09 |
| 8 | BD4QIO | GP2000 | 原装 | 1 | 5F联丰广场 | 59 | 20:10 |
| 9 | BD4RAG | 建武 | 771 | 满功 | 昆山亭林大道 | 49 | 20:13 |
| 10 | BD4QIH | 1907 | 2.6M玻璃钢 | 5 | 斜塘 | 59 | 20:14 |
| 11 | BD4RAL | 欧讯D1P | 原装 | 4 | 吴江盛泽18F | 59 | 20:16 |
| 12 | BH4UUH | 自由通9800 | 1.8M玻璃钢 | 满功 | 无锡新区 | 59 | 20:17 |
| 13 | BI4SQS | IC2720 | X520 | 5 | 招商小石城 | 59 | 20:19 |
| 14 | BI4UCU | IC2720 | X520 | 5 | 招商小石城 | 59 | 20:20 |
| 15 | BH4SRC | 普兴333 | 原装 | 5 | 桐泾公园 | 59 | 20:21 |
| 16 | BI4XFM | PD780 | 原装 | 满功 | 澹台湖大桥 | 59 | 20:23 |
| 17 | BD4QZJ | 宝峰UV5R | 拉杆 | 5 | 金阊新城20F | 59 | 20:24 |
| 18 | BD4QGN | 宝峰UV5R | 原装 | 5 | 三香路友谊宾馆 | 59 | 20:26 |
| 19 | BI4SQJ | MD380 | 原装 | 5 | 园区徐家浜 | 59 | 20:27 |
| 20 | BH7MZM | 亚索6R | 加长 | 满功 | 金门路 | 59 | 20:30 |
| 21 | BD4QHR | GP338 | 原装 | 4 | 60M招商小石城 | 59 | 20:31 |
| 22 | BH4QXY | IC2720 | 老鹰车载 | 4 | 苏州中心大道 | 59 | 20:33 |
| 23 | BH4DXF | GP328 | 八木 | 5 | 上海宝山15M | 59 | 20:34 |
| 24 | BI4TEV | 欧讯9D | 原装 | 满功 | 吴江江陵大道 | 59 | 20:36 |
| 25 | BI4TSH | 欧讯9D | 拉杆 | 满功 | 灵岩山脚下 | 59 | 20:37 |
| 26 | BG4UQI | 威泰克斯5400 | 4米 | 15 | 120M海门 | 59 | 20:38 |
| 27 | BD4QCQ | 欧讯UVD1P | 原装 | 满功 | 养育巷 | 59 | 20:40 |
| 28 | BH4QNP | 1807 | 钻石 | 5 | 城南 | 59 | 20:42 |
| 29 | BI4SQX | MD780G | 车载 | 25 | 312国道 | 59 | 20:43 |
| 30 | BI4VNM | MD780 | 4M玻璃钢 | 45 | 江阴80M | 59 | 20:46 |
| 31 | BH4QVA | PD980 | 原装 | 1 | 平江新城26F | 59 | 20:47 |
| 32 | BH4ECI | 400XD | X520 | 25 | 浦星公路 | 59 | 20:51 |
| 33 | BH4EGJ | 40 | 宝山 | 59 | 20:53 | ||
| 34 | BH4EBS | 400XD | 老鹰830 | 中功 | 上海 | 59 | 20:55 |
| 35 | BI4SQP | 小米 | 原装 | 2 | 东吴塔 | 59 | 20:56 |
| 36 | BH4EGP | 400XD | X300 | 50 | 上海杨浦 | 59 | 21:00 |
| 37 | BH4QYW | PD980 | 原装 | 低功 | 蠡墅镇 | 59 | 21:02 |
| 38 | BH4SPN | IC2720 | 4M玻璃钢 | 满功 | 太仓港15M | 59 | 21:03 |
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Views: 4
| 苏州数字中继应急点名演练438.090 -5 色码1 时序1 接收组1 发射全呼 ID不限 | |||||||
| 编号 | 呼号 | 设备 | 天线 | 功率(W) | QTH | 信号报告 | 确认时间 |
| 1 | BG4UQI | 威泰克斯5400 | 4米玻璃钢 | 25 | 海门120M | 59 | 21:32 |
| 2 | BI4QZW | PD780 | 原装 | 5 | 体育场路 | 59 | 21:34 |
| 3 | BG4QZU | PD780 | 原装 | 5 | 宝带东路 | 59 | 21:36 |
| 4 | BH4QNP | TD580 | 原装 | 低功 | 吴中区城南 | 59 | 21:37 |
| 5 | BD4QHR | TD370 | 原装 | 3 | 招商小石城 | 59 | 21:38 |
| 6 | BG4SCX | 8668 | 原装 | 4 | 石湖东路地面 | 59 | 21:40 |
| 7 | BH4QXY | TD360 | 原装 | 满功率 | 园区南施街 | 59 | 21:41 |
| 8 | BD4QGN | TYT380 | 原装 | 5 | 何山花园6F | 59 | 21:42 |
| 9 | BI4WTW | TYT | 原装 | 低功 | 体育场路 | 59 | 21:46 |
| 10 | BI4QMU | MD780G | 11单元八木 | 45 | 水香街21米 | 59 | 22:06 |
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| 13 | OP:BI4XZT | ||||||
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Views: 40