UTC Freq Call DXCC Comment Spotter
01:16 14036.0 N5RZ United States   United States CW WW5L
01:16 14032.6 WX0B United States   United States CW NN6U
01:16 14037.6 W1RH United States   United States VA2WA
01:16 10136.0 3G9S Chile   Chile 73 TU CE2EC
01:16 14057.7 ZP5A Paraguay   Paraguay NE6I
01:16 3528.3 W8ZDT United States   United States AC3RA
01:15 7018.0 WD9CIR United States   United States CW K0ACP
01:15 14036.8 W7JET United States   United States CW WW5L
01:15 7038.7 WT2P United States   United States NAQP CW NF0T
01:15 14282.0 KE5AQD United States   United States WA7TT
01:15 3525.5 WV4AM United States   United States WV4AM
01:15 7028.7 K3CCR United States   United States NAQP MD N6DW
01:15 7047.5 8A1A Indonesia   Indonesia ft4 World Wide Award YD7AMO
01:15 1821.7 W4TG United States   United States CW W4TG
01:15 3523.7 W8FJ United States   United States NAQP WB2PJH
01:15 7053.3 AA2ZW United States   United States CW KD2KW
01:15 7003.0 K4RUM United States   United States K4RUM
01:15 3540.4 K3UA United States   United States PA K1LHO
01:15 14037.1 KM7W United States   United States CW WW5L
01:14 1821.2 K1ZZ United States   United States CW CT KB2URI

What is this page?

The DX Cluster is a tool used by radio amateurs to share real-time information about radio links (DX) and active stations in frequency. It is a network of interconnected servers that allows radio operators to post and receive reports (called "spots") on active DX stations in the band, indicating frequency, callsign, mode and other useful information.

A DX Cluster node is a server or access point that offers service to other hams, allowing them to connect via specific software, via packet radio, or via telnet terminal.

Radio operators publish "spots" to report DX stations they have heard or connected to, specifying the frequency and other information.

The spots are shared in real time with all users connected to the DX Cluster's worldwide network.

Radio amateurs and SWLs can use this information to search for new DX stations to connect (or listen to), following the frequency and mode directions.