Here’s the latest status of the ARISS #HamRadio gear on the International Space Station. Plan ahead for radio outages the next three Fridays due to planned US spacewalks (EVA’s).

Here’s the latest status of the ARISS #HamRadio gear on the International Space Station. Plan ahead for radio outages the next three Fridays due to planned US spacewalks (EVA’s).

Amateur Radio on the International Space Station (ARISS) has received schedule confirmation for an ARISS radio contact between an astronaut aboard the International Space Station (ISS) and Youth Members of the Maitland Air Cadet Squadron located in Goderich, Ontario.
The ARISS radio contact is scheduled for December 16, 2022 at 12:25 pm EST (Goderich) (17:25 UTC, 11:25 am CST, 10:25 am MST, 9:25 am PST).
ARISS conducts 60-80 of these special Amateur Radio contacts each year between students around the globe and crew members with Amateur Radio licenses aboard the ISS.
The Maitland Air Cadet Association supports the activities of the local air cadet squadron and provides enhanced support to the Air Cadet squadron. Maitland Air Cadet Squadron is a joint effort by the Department of National Defence, the Air Cadet League of Canada and the Royal Canadian Legion branch 109 in Goderich, Ontario. The aims of the Air Cadet program are: to develop in youth the attributes of good citizenship and leadership; to promote physical fitness; to stimulate an interest in the air element of Canadian Forces. Educational activities in preparation for this ARISS contact involves cadets designing/building VHF antennas, tracking the ISS and decoding ISS-APRS messages. Basic Qualification Amateur Radio courses for all cadet levels are being offered, giving them the opportunity to become a certified amateur radio operator.
This will be a direct contact via Amateur Radio allowing cadets to ask their questions of Astronaut Josh Cassada, KI5CRH. Local Covid-19 protocols are adhered to as applicable for each ARISS contact. The downlink frequency for this contact is 145.800 MHZ and may be heard by listeners that are within the ISS-footprint that also encompasses the relay ground station.
The Amateur Radio ground station for this contact is in Goderich, Ontario. Amateur Radio operators using call sign VA3SQN will operate the ground station to establish and maintain the ISS connection.

Next EVA for the ISS planed on November 25. Outage for both ISS radios (repeater and digipeater) planned to begin Thu. 11/24 at 16:45 UTC / 11:45 AM Eastern and last about 48 hours.
See the latest status at https://www.ariss.org/current-status-of-iss-stations.html
as of November 18, 2022
Columbus Module radios:
Service Module radios:
08/15/2022
ARISS, Amateur Radio on the International Space Station, announced that simultaneous operations of the ARISS Voice Repeater and digital APRS communications on the Space Station is now a reality. Current ARISS operations include voice repeater transmissions with the JVC Kenwood D710GA in the Columbus module and APRS packet operation from an identical radio in the Service Module (Zvezda). Packet operations are on 145.825 MHz.
The ARISS Russia and USA teams have been working for several weeks to prepare the Service Module radio for APRS operations. ARISS Russia team member Sergey Samburov, RV3DR, led the effort, working with Russian mission controllers and the on-board ISS cosmonauts to configure the Service Module radio for APRS ops. On August 11, final checkouts were completed and the APRS packet mode was switched on for amateur radio use.
ARISS-International Chair Frank Bauer, KA3HDO, said, “Simultaneous operation of APRS and the voice repeater on ISS is transformative for ARISS and represents a key element of our ARISS 2.0 initiative, providing interactive capabilities 24/7 that inspire, engage and educate youth and lifelong learners—especially life-long learning in ham radio operations. … Our heartfelt thanks to Sergey Samburov, RV3DR, for making this crucial ARISS 2.0 initiative become a reality.”
The Columbus Module radio uses the call sign NA1SS and the new Service Module radio uses RS0ISS. Aside from the call signs, the radios are identical and packet operations are the same as before. Hams can use RS0ISS, ARISS, or APRSAT as the packet path. Also, both radios are expected to be on full time, except during educational contacts, EVAs, and dockings or undockings.
You can find operational status and expected downtimes of the ISS radios at https://www.ariss.org/current-status-of-iss-stations.
About ARISS:
Amateur Radio on the International Space Station (ARISS) is a cooperative venture of international amateur radio societies and the space agencies that support the International Space Station (ISS). In the United States, sponsors are ARRL The National Association for Amateur Radio®, the Radio Amateur Satellite Corporation (AMSAT), the ISS National Lab-Space Station Explorers, Amateur Radio Digital Communications (ARDC), and NASA’s Space communications and Navigation program. The primary goal of ARISS is to promote exploration of science, technology, engineering, the arts, and mathematics topics. ARISS does this by organizing scheduled contacts via amateur radio between crew members aboard the ISS and students. Before and during these radio contacts, students, educators, parents, and communities take part in hands-on learning activities tied to space, space technologies, and amateur radio. For more information, see www.ariss.org.
— Thanks to ARISS for the information in this news release.
Youth at the Public Library and Idea Exchange in Cambridge, Ontario will have their chance to speak to astronaut Kjell Lindgren, KO5MOS, onboard the International Space Station.
On Thursday, August 18 at 1:45 EDT, as the station passes over Cambridge, the local Amateur Radio club will connect directly to the ISS and give the youngsters the chance to ask their 18 questions.
Amateur Radio on the International Space Station (ARISS) has received schedule confirmation for an ARISS radio contact between astronauts aboard the International Space Station (ISS) and Canadian students at the Cambridge Public Library located in Cambridge, ON.
ARISS conducts 60-80 of these special Amateur Radio contacts each year between students around the globe and crew members with Amateur Radio licenses aboard the ISS.
The Cambridge Public Library through Idea Exchange is dedicated to creating an environment of curiosity and discovery, inspiring lifelong learning, reading and creativity for the community at six locations across the City of Cambridge. Prior to this ARISS contact the library has provided a variety of STEAM activities centred around space, science and engineering geared toward children in kindergarten – grade six. Members of the Cambridge Amateur Radio Club are supporting the library during this ARISS contact.
This will be a direct contact via Amateur Radio allowing students to ask their questions of Astronaut Kjell Lindgren, KO5MOS.
Local Covid-19 protocols are adhered to as applicable for each ARISS contact. The downlink frequency for this contact is 145.800 MHz and may be heard by listeners that are within the ISS-footprint that also encompasses the relay ground station.
The Amateur Radio ground station for this contact is in Cambridge, Ontario, Canada. Amateur Radio operators using call sign VE3SWA will operate the ground station to establish and maintain the ISS connection.
The ARISS radio contact is scheduled for August 18, 2022 at 1:45 pm EDT (ON, CAN) (17:45 UTC, 12:45 pm CDT, 11:45 am MDT, 10:45 am PDT).
The public is invited to watch the live stream at:
https://www.youtube.com/c/CambridgeIdeaExchange
As time allows, students will ask these questions:
1) How long does it take an astronaut to go to space?
2) Is space fun?
3) Has anybody been to Pluto yet?
4) How fast does a rocket go?
5) How does the spaceship not hit asteroids in space?
6) Is the sun yellow or white?
7) What is your favourite planet?
8) How do you sleep in space?
9) Do you like the food here or in space better?
10) How do you stay happy?
11) Do you miss your family?
12) Is there candy in space?
13) What do you do if you are feeling bored?
14) What is your favourite thing you have seen in space?
15) How do you go to the washroom in space?
16) How long are you in space for?
17) How do you eat? Does it just float away?
18) How big is the engine of a spaceship?
as of Feb 23, 2022
Columbus Module radios:
Service Module radios:
The status has been updated on the ISS page.
The creator of the Automatic Packet Reporting System (APRS), Bob Bruninga, WB4APR, of Glen Burnie, Maryland, died on February 7. An ARRL Life Member, Bruninga was 73. According to his daughter, Bruninga succumbed to cancer and the effects of COVID-19. Bruninga had announced his cancer diagnosis in 2020. Over the years, he readily shared his broad knowledge of and experience with APRS, among other topics in the amateur radio and electronics fields.
While best known for APRS, Bruninga was also a retired US Naval Academy (USNA) senior research engineer who had an abiding interest in alternative power sources, such as solar power. In 2018, he authored Energy Choices for the Radio Amateur, published by ARRL, which explores developing changes in the area of power and energy, and examines the choices radio amateurs and others can make regarding home solar power, heat pumps, and hybrid and electric vehicles. Bruninga drove an all-electric car and had experimented with a variety of electric-powered vehicles over the years.
APRS originated in 1982, when Bruninga wrote his first data map program that plotted the positions of US Navy ships for the Apple II platform. A couple of years later, he developed what he called the Connectionless Emergency Traffic System (CETS) on the VIC-20 and C64 platforms for digital packet communications to support an endurance race. The program was ported to the IBM PC platform in 1988, and was renamed APRS in 1992. The recognized North American APRS frequency is 144.39 MHz, and APRS is globally linked via the internet. Bruninga founded the Appalachian Trail Golden Packet (ATPG) event, which fields APRS nodes from Stone Mountain in Georgia to Mount Katahdin in Maine each July.
ARRL Contributing Editor Ward Silver, N0AX, remembered Bruninga this way: “Bob kept pushing APRS beyond its origins as a position reporting system. He developed and helped implement numerous other uses of APRS in support of what has become the ‘Ham Radio of Things,’ with great potential for future amateur radio applications. Bob’s far-reaching vision and imagination were as good as it gets.”
Bruninga mentored USNA midshipmen in building and launching amateur radio satellites and CubeSats, beginning with PCsat in 2001. PCsat was the first satellite to directly report its precise position to users via its onboard GPS module. Subsequent USNA spacecraft included PSK31 capability (HF to UHF) and other innovations.
Amateur Radio on the International Space Station (ARISS) ARRL liaison Rosalie White, K1STO, recalled that Bruninga attended many ARISS-International meetings and contributed “enormously” to ARISS APRS activities, leading a team in developing protocols and software for rapid message exchange via a packet “robot.”
White said APRS remains a key staple in the new ARISS InterOperable Radio System (IORS) that’s now on board the ISS. She added that Bruninga offered input for future NASA Lunar and Gateway opportunities in which ARISS hopes to take part.
Last year, ARRL CEO David Minster, NA2AA, on behalf of ARRL, honored Bruninga with a brick in the ARRL Diamond Club Terrace at ARRL Headquarters. ARRL sent him a letter of appreciation along with a replica of the brick.
Bruninga held a bachelor’s degree in electrical engineering from Georgia Tech (Georgia Institute of Technology) and a master’s degree in electrical engineering from the Naval Postgraduate School. Bruninga was a 20-year US Navy veteran. Dayton Hamvention® honored him in 1998 with its Technical Excellence Award.
Bruninga authored and co-authored numerous academic papers over the years, and was frequently in demand as a speaker and presenter at amateur radio gatherings.
Survivors include his wife, Elise Albert; daughter, Bethanne Bruninga-Socolar, WE4APR, and son A.J. Bruninga, WA4APR. Arrangements are pending, although his daughter said that a celebratory memorial service will be held this summer in Annapolis, Maryland.
Russia tested an anti-satellite weapon on November 15, destroying one of its own old and defunct satellites, Kosmos 1408. Launched in 1982, Kosmos 1408 was some 300 miles above Earth. Its destruction generated a debris field in Earth orbit that prompted the seven International Space Station crew members, including one Russian cosmonaut, to take cover in their crew capsules for several hours, in case they had to abandon the station. Occupants of the Chinese space station are reported to have taken similar action. The incident also has generated criticism from many corners and a grave discussion on the possible impact of any future such tests, by Russia or anyone else.
The danger of damage to the ISS or an orbiting satellite aside, tracking a debris field that could include thousands of pieces, in order to head off collisions, is a concern all its own. Very small debris in space is essentially impossible to track reliably, if at all. The incident also comes at a time when the number of spacecraft in Earth orbit continues to grow. AMSAT President Robert Bankston, KE4AL, said that Russia’s action will pose a threat to all activities in low Earth orbit for years to come, placing satellites and human spaceflight missions at risk.
“Space is already crowded, but now there are at least 1,500 trackable fragments and, possibly, hundreds of thousands of smaller yet still-threatening pieces of debris in low Earth orbit,” Bankston said. “While space stations have the capability to move out of the way, with sufficient notice, most satellites in low Earth orbit, including those designed, built, launched, and operated by AMSAT, do not. As such, they face greater risk of catastrophic destruction or degraded mission functionality, if struck by fragments from Russia’s destruction of Kosmos-1408.”
Bankston said AMSAT is closely monitoring the situation and hoping for the best.
NASA Chief Bill Nelson echoed Secretary of State Antony Blinken in expressing his own outrage at Russia’s action. “Their actions are reckless and dangerous threatening as well the Chinese space station at the taikonauts on board,” he said. “The [ISS] is passing through or near the cloud every 90 minutes, but the need to shelter for only the second and third passes of the event was based on a risk assessment made by the debris office and ballistics specialists at NASA’s Johnson Space Center in Houston,” Nelson explained.
FCC Commissioner Nathan Simington condemned the incident as “irresponsible” and noting that orbital debris fields pose a threat to hopes for the peaceful use of space and “make the work of using space complicated and difficult,” he said in a statement. “For decades to come, they stifle scientific research, inhibit communications, and pose threats to the lives of explorers. And in the here and now, they pose a great threat to [existing] satellites of all nations” deployed for peaceful purposes.
“No one owns space,” Simington said. “And no one should intentionally make it more difficult to use.”
The FCC’s orbital debris rules date back to 2004, when the FCC adopted requirements affecting not only Part 97 Amateur Service rules but Parts 5 (experimental) and 25 (communications satellites) The FCC has made it clear that orbital debris rules apply to amateur satellites, in general requiring submission of an orbital debris mitigation plan with each license application.
as of 07/28/2021
Columbus Module radios:
Service Module radios: