Mystery For Joy !

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Broadcast guide

Broadcast frequencies and listening access

Here are the main frequencies used by Mystery For Joy depending on region and transmission mode. This page can be updated quickly whenever a new broadcast is planned.

(To see more information about each broadcaster, click on their summary.)

Radio Channel292 Germany • Licensed international relayer 6070 kHz • 9670 kHz

Radio Channel292 is one of the most recognizable independent broadcasters on shortwave in Europe. What began as a pirate-era broadcaster has evolved into a modern licensed transmission platform serving radio hobbyists and station operators across the continent.

Its operations are built around an international audience that values variety, historical radio culture, and studio-quality service. The station remains active in the relay ecosystem and has space for station hosting, programme rentals, and commercial support.

Channel292 is especially important for Mystery For Joy because it carries the station on two of the most dependable frequencies in the present broadcast table, linking a listener base in Europe and beyond with an AM signal that is both accessible and distinct.

6070 kHz 9670 kHz
Encompass / Woofferton United Kingdom • Woofferton Teleport 9915 kHz • 11805 kHz

The United Kingdom signal used by Mystery For Joy is linked to the Woofferton Teleport, part of Encompass Digital Media’s global broadcast infrastructure. Woofferton is a substantial broadcast facility in Shropshire, built around HF transmission, remote automation, and secure broadcast services.

Encompass operates a highly capable shortwave environment with multiple antenna systems, studio connectivity, and system automation that supports both relay services and international distribution. The site has a long heritage of HF transmission capability and continues to serve radio broadcasters worldwide.

For Mystery For Joy, the UK route is an important supplementary path, giving the station a route into the British Isles and beyond while maintaining a flexible international auxiliary broadcast profile.

9915 kHz 11805 kHz
WRMI - Radio Miami International United States • Florida shortwave service 5850 kHz • 15770 kHz

WRMI, Radio Miami International, is a US-based shortwave broadcaster with a globally known identity among shortwave listeners. It has long served as a platform for international, religious, political, educational, and cultural programming across the Americas and around the world.

Operating from Florida, WRMI is a commercial shortwave station with a strong transmitter infrastructure and a position deeply connected to the international radio relay market. Its ability to carry programming from many broadcasters is part of the reason it remains such an important part of the global AM ecosystem.

WRMI’s current role for Mystery For Joy is practical and strategic: it gives the station an international feed path from the North American side of the globe, while also aligning with one of the strongest shortwave relay communities in the world.

5850 kHz 15770 kHz

Live listening

Stay tuned whenever the signal is active to follow the show live.

Also find us on Radio60 at https://radio60.jimdofree.com on webstream 1 and 2.

Live Stream

Former broadcasters

  • Mystery21 - The Spirit of Music (M21) — Germany, former independent internet and shortwave station associated with the early Mystery For Joy transmission story.
  • Radio Contikenzo — Netherlands, former relay path associated with 3940 and 5800 kHz transmissions.

Broadcast network

Listening points map

The map below shows the main transmitter and listening points used by Mystery For Joy.

Schedules

Station schedules

Click on a schedule to enlarge it. The latest A26 sheets are grouped by relay and frequency.

Mystery For Joy A26 Schedule

Mystery For Joy August 2026 schedule
RC 292 — 6070 kHz schedule for week from August 10 to August 23
RC292 6070 S33 RC292 6070 S34
RC 292 — 9670 kHz schedule for week from August 10 to August 23
RC292 9670 S33 RC292 9670 S34
WRMI — System F & H
WRMI system F WRMI system H