The Motorola Radius M100 is a classic two-way mobile radio introduced in the late 1980s. It earned a reputation for being rugged and "built to last" due to its heavy-duty die-cast aluminum chassis, high-grade commercial internal components, and compliance-level structural toughness designed to withstand harsh industrial and vehicular environments.
Design and Durability
Tough Chassis: Built with a thick metal frame that dissipates heat effectively and protects internal logic and RF boards from physical shock and vibration.
Industrial Use: Widely deployed in commercial fleets, public safety back channels, and construction sites where equipment faced constant movement and dust.
Simple Controls: Offered a straightforward, no-nonsense interface (often 2 channels) that reduced mechanical failure points on the faceplate.
Technical Legacy and Limitations
Power Output: Typically pushed an honest 25 to 40 watts of RF power, depending on the specific VHF/UHF split.
Programming Hurdles: These vintage units rely on legacy DOS-based Radio Service Software (RSS) and a dedicated Radio Interface Box (RIB), making modern programming a notable challenge for hobbyists.
I have a Motorola Radius M100 VHF radio connected to the ZS1I AllStar HUB Node in Mossel Bay since 2016. This radio is now running full output power for 10 years as a linked radio to the HUB and is connected to world wide Echolink, AllStar and DMR networks seven days a week. This radio is being used for what it was never intended for. It was designed as a mobile radio and not as a full time simplex or repeater radio.
I am flabbergasted that this radio is still working the way it did 10 years ago without skipping a beat taking into account the heavy duty cycle it goes through, sometimes transmitting for 1 hour or longer. We need to take into account that this radio was introduced in the late 80's and is a real brick of a radio. Another important factor apart from being rugged and built to last is curtailing the heat created by the pre-driver, driver and final transistors. Heat can be the enemy of many radios. Incorrect heat distribution and high temperature can cause radios to fail. In this case I chose to install an outboard computer fan (80mm x 80mm) to the heatsink of this radio. I also installed a homebrew fan controller which was described in my article available HERE.
The fan does not run all the time but comes on when the radio is in TX Mode for longer that 30 seconds depending on the temperature in the shack an whether it is winter or summer.
I constantly monitor the radios's output power as well as SWR with an inline SWR and Power Meter combination. So far I have not detected any indication of lower output power or higher SWR than first measured when I installed the antenna. Apart from making a COS modification to the radio nothing else was modified or fixed.
The Motorola Radius M100 is an ultra-reliable, vintage analog mobile transceiver built like a tank. It is widely praised by retro radio fans and amateur operators as a classic "no-nonsense" workhorse. Housed in a heavy-duty metal chassis, the M100 takes physical abuse, high vehicle vibrations, and extreme field environments far better than modern lightweight plastic radios. Features exceptionally crisp, clear analog receive and transmit audio that easily cuts through noise Delivers a solid 25 watts of power (depending on the specific VHF/UHF band split), making it great for base stations or mobile setups. Most base M100 models support very few channels/modes (often just 2 channels) unless upgraded with specific logic boards.
Obsolete Programming - Requires an archaic DOS-based computer environment, a Radio Interface Box (RIB), and specific Radio Service Software (RSS like RADMBL) to change frequencies.
Final Verdict: If you find a working unit cheap, the Motorola Radius M100 is a fun piece of radio history and a bulletproof analog link radio to have in your shack. Let's see if this radio will last another 10 years from today forward.
Thank you Motorola for making such quality radios!!
Investigation targets alleged illegal use of amateur radio frequencies in Germiston.
An investigation led by the Independent Communications Authority of
South Africa (ICASA), is clamping down on businesses operating illegally
on amateur radio frequencies.
This is not going to be a moaning or groaning topic however I must admit that the lack of Starlink Internet is definitely felt in this fifth world country we living in. For the past three days I have experienced sporadic Internet outages for whatever reason, this does not matter. Matter of fact is there is currently no reliable Internet service from my providers and once again let me rather not mention them. What really matter is that there is really no alternative except amateur radio when the Internet fails. Lots of talk about an alternative for Starlink which they say is going to be a South African Satellite Service Provider. I can just wonder what is going on behind the scenes and how this so called "brilliant" provider is going to provide and alternative to Starlink with old satellites. I have my thoughts about this but I will keep it to myself. Time will tell what this third world service and outdated satellites will provide as opposition to Starlink. I doubt it this fifth world country is able to compete with Starlink. Enough!!
Let's see what the future holds but until then I presume we must be satisfied with a firth world Internet service in this country.
Finally: I still say we as radio amateurs need to find alternatives for the Internet and don't tell me it is HF Radio or VHF/UHF Repeaters. I am working on a few projects that if successful will be used as alternatives for the Internet. What are you doing to find alternatives?
This is very useful test instrument that every radio amateur should have in the shack and can be built for next to nothing. Let's look at this very handy instrument and its uses.
A passive RF field strength meter is a simple, un-powered device used to detect and compare relative radio frequency signal levels. It uses an antenna to capture RF energy, germanium diodes to rectify the AC signal into DC, and a sensitive analog micro ammeter to display the relative output level without requiring a battery.
Core Components
Antenna: A telescopic whip or tuned dipole to pick up local RF radiation.
Germanium Diodes: Low forward-voltage components (like 1N60 or OA47) used for RF rectification.
Analog Meter Movement: A highly sensitive zero-center or standard 50µA / 100µA panel meter.
Capacitor & Potentiometer: Optional bypass capacitors to filter RF and a variable resistor/potentiometer to attenuate strong signals.
Common Uses
Checking transmitter output and relative power.
Adjusting and comparing directional antenna radiation patterns.
Testing the efficiency of baluns, tuners, and antenna setups.
I decided to build two of these instruments. In this issue we will be looking at the passive RF Field Strength Meter version.
Diagram
Bill of Materials
2 x Germanium Doides (IN34, OA70, OA90, IN60, BAT43 or 85)
1 x 470 pF (471) Cap
1 x 10 K Potentiometer
1 x 50 uA Meter
2 x DC Power Posts (Red + Black)
1 x Piece of Veroboard (PCB)
1 x 500 mm Stiff Copper Wire (Antenna) or old FM Radio Antenna
1 x Instrument Cabinet
1 x Potentiometer Knob
Construction
I am not going to go into detail as the diagram provides more than enough information to construct the meter successfully.
1. Reminder: Do tune into the DMR-ZA Net this evening at 19h30 SAST
Herewith a list of different equipment / apps and images that cross transmit / receive the DMR-ZA Net on a Tuesday evening. (Click on images for larger view.)
1. ZS1I 49355 AllStar Hub Network which incorporates Echolink. (ZS1I-R)
2. DMR / DVSwitch /AllStar Bridge (TG 65522)
3. ZS1I MMDVM Digital Repeater (TG 65522) 1. Reminder: Do tune into the DMR-ZA Net this evening at 19h30 SAST 4. 145.550 Mhz Analogue Simplex RF Link Mossel Bay area.
5. DroidStar / VoxDMR Applications for DMR TG655
6. ASL3 to Mumble Bridge PC (Mumble Client) as well as Mobile Phone (Plumble Client)
7. BrandMeister - Hoseline Application (PC or Mobile Phone - Receive only.)
8. DVSwitch Mobile Application (PC or Mobile Phone)
9. Many Analog-Repeaters and Links are connected to the ZS1I Hub Network on a daily basis. Some of these analogue repeaters will be connected to the ZS1I Hub Network on a Tuesday evening and they might also be linked to other repeaters country- and world wide. So why not link up with your local analogue repeater. You might just be able to connect to the DMR-ZA Net on a Tuesday evening at 19h30 SAST.
Finally: There are an abundance of means illustrated above to connect to the DMR-ZA Net on a Tuesday evening at 19h30 SAST. The DMR-ZA Net is an open net and all radio amateurs are welcome to join / connect to the net. Brian ZS5BR is the net controller and I would like to thank him for professionally conducting the net each Tuesday evening. Highly appreciated!!
2. Would WSPR work on DMR?
No, WSPR (Weak Signal Propagation Reporter) will not work over a DMR (Digital Mobile Radio) voice/data channel. They use completely incompatible modulation schemes, bandwidths, and timing structures.
Why WSPR and DMR are Incompatible
Modulation Type: WSPR uses continuous phase 4-tone Frequency Shift Keying (FSK) at an ultra-slow 1.46 baud, designed for analog SSB audio passbands. DMR uses 4-level and 2-slot TDMA Time-Division Multiple Access with 4FSK phase modulation at 9600 baud, processed by proprietary voice codecs.
Bandwidth: A WSPR signal occupies a tiny 6 Hz slice of spectrum (inside a ~200 Hz to 2.5 kHz audio window). A DMR channel requires a strict 12.5 kHz channel spacing.
Transmission Length: WSPR transmissions are precisely timed and take nearly two full minutes (110.6 seconds) of uninterrupted carrier shifting per burst. DMR cuts transmissions into rigid 30-millisecond frames and timeslot bursts.
Decoding: Standard WSPR decoders (like WSJT-X) look for specific FSK tone sequences and timing relative to UTC seconds. Passing a WSPR audio tone through a DMR digital voice codec will completely distort and destroy the weak signals, turning them into noise or data errors.
3. Ham Radio Etiquette: Do's And Don'ts On Digital Modes [2026]
Amateur radio, minding the gap refers to the crucial practice of leaving a short, deliberate pause (typically 3 to 4 seconds) between transmissions (Overs). This is essential for digital voice and data networks to properly reset, synchronize, and pass traffic without causing system-wide dropouts.
Here is exactly why we mind the gap:
Network Synchronization: For digital voice modes like DMR and C4FM/Wires-X, data travels via servers, nodes, and internet gateways. The gap gives the network’s VoIP protocol time to release the digital stream, clear buffers, and allow other stations to key up.
Preventing "Clipping": If you press your Push-to-Talk (PTT) button and immediately start speaking, the first syllable or two of your transmission is often swallowed by the digital handshaking process. Waiting a second prevents your voice from being clipped.
Allowing Break-Ins: Leaving a pause between your overs gives other operators a chance to break in. This is especially vital in emergencies when another user needs to pass priority traffic.
Avoiding "Time-Out" Timers: Many digital repeaters and network nodes have strict time-out timers (e.g., 3 minutes). Taking a breather resets these timers, preventing the repeater from dropping your transmission mid-sentence.
Thanks to Chris M9UCW For The Thumbnail Image.
Thumbnail Image For Illustration Purposes Only
73 de Mark 2E1CEQ Ham Radio Gadgets YouTube Channel Please Like And Subscribe
4. The Internet Re-Invented - - - - Internet Killer?
In this video, I build a Reticulum RNode and prove that completely different radios — LoRa and Wi-Fi — can communicate through a hardware-agnostic networking stack. Reticulum routes traffic above the radio layer, automatically bridging dissimilar frequencies, interfaces, and modulation types. I then run it over Wi-Fi HaLow Haven nodes to create a long-range, encrypted IP mesh with no traditional infrastructure. Finally, I push it further by running ATAK across the network, demonstrating a fully open-source, decentralized communication stack in action.
"Ham" started as an insult — and the frequencies amateurs were handed were dismissed as useless. So how did they end up crossing oceans, building their own satellite, and talking to astronauts?
This is the strange — and completely true — history of ham (amateur) radio, told as one story: from an invisible prediction on paper to a hobbyist satellite in orbit.
You'll meet James Clerk Maxwell and Heinrich Hertz (who thought his own discovery was useless), follow Marconi's first signal across the Atlantic, and finally find out where the nickname "ham" really comes from — and why the famous "three friends" story is a myth. You'll see how the "useless" short waves turned out to bend around the world off the ionosphere, how amateurs made the first two-way transatlantic contact in 1923, built OSCAR 1 — the world's first non-governmental satellite — and went on to talk with astronauts in space. Plus India's own proud amateur-radio story: Gooptu, Bose, the Amateur Radio Society of India, and a Prime Minister with the callsign VU2RG
00:00 Ham was an insult? 00:35 The invisible waves (Maxwell & Hertz) 01:22 Marconi crosses the Atlantic 01:47 The first home radio builders 02:30 Radio's first traffic jam 02:50 Why they're called "hams" 03:30 The band the experts called useless 03:53 The ionosphere changes everything 04:15 Relay: the birth of the ARRL 04:36 First two-way Atlantic contact (1923) 05:23 Hobbyists build a satellite (OSCAR 1) 05:48 Ham radio reaches space 06:16 India's amateur radio story 07:06 The real pattern of the story
This guy (ZS1I) is getting like the YouTube video posters with his
"What's in the Box?" I received several requests to please continue
with the series "What's in the Box?" From all accounts these postings
were of great interest to some of the readers of the previous Blog. I will oblige in this regard and will from time to time post
images and information of what is in the boxes I receive. I am also
looking at providing a review of equipment, components, modules etc. I
have not yet decided in which format to publish these reviews. It will
either be done on this blog or via a YouTube channel. Now I must say I
do not regularly buy items via the Internet. So do not expect many
posts in this regard. Some of the equipment in the boxes is not new so
do not expect the latest amateur radio state of the art equipment to be
unboxed.
Lets get cracking in unboxing this item: (Click on images for larger view.)
Image: ASL3 Diagnostic Check Command (Click on image for larger view.)
I recently experienced some issues where my 49355 ASL3 HUB node went offline for some rime or reason. The following issues were diagnosed:
Configuration Conflict: The node was simultaneously running legacy IAX registration syntax and newer AllStarLink 3 (ASL3) HTTP API configuration blocks. This structural overlap threw a fatal error, preventing authentication.
Systemd Startup Crash Loop: A system update introduced an incompatible high-priority flag (-p) into the systemd configuration wrapper. The underlying version of Asterisk rejected this flag, resulting in an immediate initialization failure (status=2/INVALIDARGUMENT), forcing the Asterisk process to repeatedly crash.
HTTP Module Bypass: While ASL3 defaults to HTTP registrations, local software variables caused the Asterisk package on this specific machine to bypass the modern res_rpt_http_registrations.so engine entirely.
How was the above issues diagnosed? Looking at the three issues the task to get the node up and running look like a daunting one where I will have to write a complete new SD Card. Writing a complete new card and setting it up would have taken me several hours. No I did not make a backup - naughty, naughty me!
In my search around on how to find out what was the actual issues I found the following command to diagnose the node. I tried using Diagnostics Reports in the Cockpit but that returned - No System Reports. Well I found the following command: sudo asl-node-auth-check
What is the purpose of this command (sudo asl-node-auth-check) when using it to diagnose your AllStarLink3 Node?
The sudo asl-node-auth-check diagnostic script was introduced in AllStarLink 3 (ASL3) to address complex network environments. It automates the verification of your node's local configuration, registration, and end-to-end network path. Here is a breakdown of what the tool evaluates when executed:
1. Holistic Configuration Audit
• Node Detection: Scans the active Asterisk environment to identify every node provisioned on the local machine. • Conflict Resolution: Cross-references file parameters to detect mismatches or syntactic syntax conflicts between config files.
2. Deep Network Profile (IP & NAT Diagnostics)
• Multi-Location Testing: Performs concurrent tests over both HTTP and Inter-Asterisk eXchange (IAX) protocols against three geographically separate AllStarLink server locations. • CGNAT Identification: By verifying network reach-ability from multiple external points, it definitively establishes if your node is trapped behind a Carrier-Grade NAT (CGNAT) or a restrictive mobile hotspot firewall. • IP History Tracker: Displays information on the last time your node’s perceived public IP address changed.
3. Individual Node Authentication & Registration
• Syntax Validation: Checks that the local registration strings match the valid format mandated by the network. • Port Verification: Confirms that the local port defined in your configuration exactly matches the database port assigned to you in the central registry database. • Server Handshake: Tests actual routing and reach-ability directly to register.allstarlink.org. • Staleness Tracking: Verifies if your node registration is active and current (checking that a valid database check-in has succeeded within the last 10 minutes).
4. Inbound IAX Reachability Test
• Parrot Routing System: Uses the newer central "Parrot/Reach-ability" system to simulate an incoming connection attempt to your node. • Port Forwarding Proof: This tests if inbound traffic on your designated port can actually pierce your local router firewall and reach the node. If your node has a green status on the AllStarLink Node List but cannot accept incoming connections, this utility isolates the fault.
As can be seen from the above this command is a very convenient way to diagnose issues your node might experience. Please note that is is a very powerful diagnostic command tool and one should use it with caution.
Checking configuration: Info: Skipping evaluation of private node 1961 Info: rpt.conf has configuration for: 49355 Info: /etc/asterisk/iax.conf contains 1 registration line(s) Info: /etc/asterisk/rpt_http_registrations.conf contains no registration lines. Info: Registrations present for configured node(s): 49355 Info: IP from https://conntest-east1.allstarlink.org/ip reports: xx.xxx.xxx.xxx Info: IP from https://conntest-west1.allstarlink.org/ip reports: xx.xxx.xxx.xxx Info: IP from https://conntest-west2.allstarlink.org/ip reports: xx.xxx.xxx.xxx Info: IP from udp://conntest-east1.allstarlink.org:4570 reports: xx.xxx.xxx.xxx Info: IP from udp://conntest-west1.allstarlink.org:4569 reports: xx.xxx.xxx.xxx Info: IP from udp://conntest-west2.allstarlink.org:4569 reports: xx.xxx.xxx.xxx OK: HTTP IP probes have consensus on the same perceived IP OK: IAX IP probes have consensus on the same perceived IP
Testing node 49355: OK: Node registration config is well-formed OK: Node registration type is IAX OK: register.allstarlink.org is reachable (via HTTP) OK: IAX registration state is Registered OK: Perceived IAX IP:PORT for this node is: xx.xxx.xxx.xxx:4569 OK: Registered to aws-east1a-register1.allstarlink.org - xx.xx.xxx.xxx OK: Server-set UDP port matches bindport in iax.conf OK: Node registration within 10 minutes: 2026-07-31 14:11:50 UTC Info: Last time IP changed was 2026-07-29 09:48:32 UTC OK: Incoming connections to IAX from other nodes is successful Info: IAX ping test has a roundtrip time of 238ms OK: No problems detected with node 49355
ZS1I@49355:~ $
xx.xxx.xxx.xxx - IP Addresses removed for obvious reasons.
Errors / Warnings will be reflected in the output of the command. From thereon you can fix the errors / omissions etc. As can be seen I experience three issues which was solved and the node is now running as it should. I also ensured that I made a paper format back-up of the current 49355 node setup as well as the back-up tool in sudo asl-menu.
I trust that this article might be of use to fellow radio amateurs that experience issues with an ASL3 node. This tool really "saved my bacon"!!
In Part 1 available HERE I gave a short overview of the Next Generation Amateur Radio Beacon (s) for the Southern Cape. You can read more HERE about theZS1I 6 Meter Magic Band Project in the Southern Cape Area of South Africa.
This past few weeks I have been working on the 6m CW Beacon.
As I said before this is not an elaborate beacon but more of a modular /
practical beacon.
Update: ZS1I 6 Meter CW Beacon Project (Part 2) available HERE
This past few weeks I have been working on the 6m CW Beacon building it into a project box. As I said before this is not an elaborate beacon but more of a modular / practical beacon.
The beacon is now built into the project box and ready to be installed to the antenna and power supply.
Site: ZS1I Station Shack, Heiderand, Mossel Bay License: ZS1I Amateur Radio License Note: This beacon is NOT located on a remote site which requires a separate license. The current location allows the owner to monitor and control the beacon while it is on the air.
I still need a solar power supply for the beacon upon final installation. The Delta Loop antenna needs to be lifted higher in the air. It appears that we are now on the home run to get this beacon on the air and ready for the "magic band" season in South Africa. An update article will follow once the final installation has been done and the beacon is up and running.
Images: (Click on images for larger view.)
Videos:
Notes:
1. The broken face-plate was replaced with 2 x PVC Pipe plates that I made out of 80 mm PVC gutter down pipe. It works great and I will in a future article explain how I turned the round gutter pipe into a flat piece of PVC. I used a very old pipe that needed to be sprayed with either white or black spray paint. Personally I think it did not turn out that bad.
2. The angle at which the second video was taken did not show the complete message on the OLED. If I lifted the project box then you would be able to see the full message. Apology for the bad photography.
The ZS1I 49355 HUB Node experience a few "glitches" in the past two days. Apart from very erratic internet connections the node would not register to the AllStar Servers and therefor not allow in and outbound connections. I enlisted the services of AI as I did not feel like re-writing ASL3 to an SD Card and go through all the settings to get the node to behave as it should. NO I did not make a back-up as I await an order for SD Cards. Locally cards are way to expensive.
Well between me and AI several issues were solved and the node is now running as it should.
I apologize for any inconvenience but if you want to stay on the forefront of new technology and developments these things do happen from time to time.
1. Reminder: Do tune into the DMR-ZA Net this evening at 19h30 SAST
Herewith
a list of different equipment / apps and images that cross transmit /
receive the DMR-ZA Net on a Tuesday evening. (Click on images for larger
view.)
1. ZS1I 49355 AllStar Hub Network which incorporates Echolink. (ZS1I-R)
2. DMR / DVSwitch /AllStar Bridge (TG 65522)
3. ZS1I MMDVM Digital Repeater (TG 65522)
4. 145.550 Mhz Analogue Simplex RF Link Mossel Bay area.
5. DroidStar / VoxDMR Applications for DMR TG655
6. ASL3 to Mumble Bridge PC (Mumble Client) as well as Mobile Phone (Plumble Client)
7. BrandMeister - Hoseline Application (PC or Mobile Phone - Receive only.)
8. DVSwitch Mobile Application (PC or Mobile Phone)
9.
Many Analog-Repeaters and Links are connected to the ZS1I Hub Network
on a daily basis. Some of these analogue repeaters will be connected to
the ZS1I Hub Network on a Tuesday evening and they might also be linked
to other repeaters country- and world wide. So why not link up with
your local analogue repeater. You might just be able to connect to the
DMR-ZA Net on a Tuesday evening at 19h30 SAST.
Finally: There
are an abundance of means illustrated above to connect to the DMR-ZA Net
on a Tuesday evening at 19h30 SAST. The DMR-ZA Net is an open net and
all radio amateurs are welcome to join / connect to the net. Brian
ZS5BR is the net controller and I would like to thank him for
professionally conducting the net each Tuesday evening. Highly
appreciated!!
2. Linux Mint isn't the best Windows replacement anymore
And the replacement is ........ ?
ZorinOS is more modern and polished, making it easier for Windows/macOS users to switch.
Built-in Windows app support
installs .exe/.msi with a click; Mint requires manual WINE setup.
Ships Wayland by default:
crisper text, smooth animations, better scaling, NVIDIA and phone
integration.
ZorinOS has been getting a lot of hype ever since Microsoft dropped support for Windows 10. Turns out the hype is justified. Linux Mint has been my go-to recommendation.
3. 16-Year-Old ARRL Member Wins 2026 Student Coding Competition
ARRL The National Association for Amateur Radio® is pleased to announce that member Ben Leovy, KC3ZPQ, of Ellicott City, Maryland, has been named the winner of the 2026 ARRL Student Coding Competition. Leovy, 16, recently completed his sophomore year at Howard High School. He designed a mobile application to help users prepare for their amateur radio license examinations.
Leovy will receive a $5,000 prize awarded by ARRL. His project was selected by a panel of judges based on usability, clarity, stability, and code quality. The judges also recognized his enthusiasm for software development and creativity by awarding him a new MacBook Neo to encourage his continued exploration of programming and technology.
“The ARRL Student Coding Competition was created to encourage young radio amateurs to apply their skills to a real-world opportunity that will benefit the amateur radio community and future entrants,” said ARRL Senior Director of Marketing and Innovation Bob Inderbitzen, NQ1R. “Ben’s project demonstrated the kind of problem-solving skills and creativity that will help shape the future of amateur radio.”
The judges were also impressed with the strength of Leovy’s technical approach and the potential value of continuing its development. ARRL has offered him a consulting project this summer, to further refine and improve the application in collaboration with ARRL employees – an opportunity to gain professional experience. Upon successful completion of the project, Leovy will earn an additional $5,000. He will also be eligible for a $5,000 ARRL scholarship when he enrolls in college after high school.
“I’m excited about the opportunity to continue improving the application and working with ARRL,” said Leovy. “I hope it helps more people, particularly students my age, to get involved in amateur radio and to join ARRL.”
Leovy became interested in amateur radio through his grandfather and through friends involved with the scouts who shared an interest in the hobby. In addition to amateur radio and programming, Leovy participates in his school’s robotics club and enjoys exploring technology through hands-on projects.
The ARRL Student Coding Competition was launched in January 2026 as part of ARRL’s ongoing commitment to developing the next generation of radio amateurs. The competition encouraged ARRL Student members ages 21 and younger, who already have ham radio licenses, to combine their interests in amateur radio and software development.
“Programs like this help young people discover that amateur radio is more than a hobby — it is a pathway that inspires hands-on, practical, and technical experiences,” said ARRL CEO David Minster, NA2AA. “By investing in students and their ideas, ARRL is investing in the future of amateur radio.”
The competition is another ARRL program intended to develop student interest in future education and careers in STEM/STEAM fields. Other ongoing initiatives include the ARRL Teachers Institute on Wireless Technology, the ARRL Collegiate Amateur Radio Program, and the ARRL Foundation Scholarship Program.
The competition judges were ARRL First Vice President Kristen McIntyre, K6WX; Hudson Division Director Ed Wilson, N2XDD; previous Director of Education and Learning Steve Goodgame, K5ATA; ARRL VEC Manager Maria Somma, AB1FM; and Education & Learning Support Specialist Max Freedman, N4ML. Additional support was provided by past Pacific Division Director Anthony Marcin, W7XM.
Since 2024, ARRL Student Membership has been free for full-time students ages 21 and younger. This no-cost membership opportunity makes it easier for students to become involved in amateur radio and access ARRL resources while they explore radio, technology, and STEM-related learning opportunities.
For more information about ARRL Student Membership, visit www.arrl.org/student.
- ARRL
4. Paper Logging
As an amateur radio operator, logging and QSLing are topics that keep me busy all the time. While I recently stopped confirming my radio contacts (QSLing), it’s still very important to me to log my QSOs. I’ve tried many different options for this and most recently used Wavelog, with which I was generally satisfied. However, I’m currently trying (not just in amateur radio) to simplify things and return to the original ways. That’s why I’ve decided to switch to paper logging, even though the drawbacks are obvious: no automatic generation of statistics, no search options, and no quick way to tell if I’ve had a QSO with a station before. However, I like having the maximum freedom to enter whatever I want into the logbook, however I want. It also feels somehow more personal to log the QSOs by hand.
After testing this out for a while with an existing paper logbook, it turned out that while I like this approach, existing logbooks don’t suit my needs. I make contacts both on shortwave and via satellites. For the latter, I need fields such as the locator or the name of the satellite. That’s why I first designed my own logbook template in OpenOffice Calc, exported it as a PDF, and then had it bound into a ring binder by a professional printing service.
The following image shows the finished logbook with 100 pages, a transparent plastic cover page, and a black plastic page as the last page for less than 10 Euro:
Now all that's left is to see how long paper logging will keep me happy...
- DK1MI
5. The Technology We Killed in the 1960s Is Now Worth $3.3 Billion
In 1904, a British engineer built the first vacuum tube in a London laboratory. Within decades, it became the foundation of modern electronics. Radio, television, military radar, and the first computers all ran on vacuum tubes. Then in 1947, Bell Labs demonstrated the transistor, and by the 1960s the entire industry had moved on. Factories closed permanently, and the vacuum tube was declared dead.
But it never actually disappeared. It survived in places most people would never think to look, and in 2022 a geopolitical crisis exposed just how dependent the modern world still is on a technology it supposedly abandoned sixty years ago.
This is the full story of the vacuum tube, from the invention that started it all to the billion-dollar market nobody sees.
6. Listen to FreeSTAR SystemX Live No App Required [2026]
Stream the conversation. Anywhere. Anytime.
FreeSTAR SystemX Live Activity Feature Directly From Your Browser, No App is Required
Listen To Any FreeSTAR SystemX Talk Group Or Set Up A TG To Listen Once It becomes Active.
Z3DMR is a free, mobile push-to-talk application designed for licensed amateur radio operators to communicate over Digital Mobile Radio (DMR) networks directly from their smartphones.
Developed by the Radioamateur Club Z37CPR, it eliminates the need for physical DMR hardware, a hotspot, or an HT (handheld transceiver) to access digital ham radio networks
Key Features:
Network Support: Connects directly to major DMR networks, including BrandMeister and Homebrew
Talkgroup Management: Features network-specific talkgroup lists, alongside manual configuration options for master servers, contacts, and custom talkgroups.
Call Types: Supports both group calls and private calls.
Advanced Automation: Automatically activates Auto-Static talkgroups and allows multiple user profiles with Extended Service Set Identifier (ESSID) support.
Built-in APRS: Includes integrated Automatic Packet Reporting System (APRS) functionality for location data transmission
Accessibility: Available in 24 languages with a modern, clean, user-friendly interface.
Platform Availability:
Android: The app is fully released and can be downloaded from the Google Play Store.
iOS: An Apple iOS version is actively under development
Official Resources:
For the latest updates, configuration guides, and community support, you can visit the Official Z3DMR Website or join their support community via the Z3DMR Telegram Group.