2015 Nashua Area Radio Club Field Day Recap

We had the opportunity to be part of the Nashua Area Radio Club’s 2015 Field Day Operation. Ed, K2TE was our incident commander and he helped to club to put together a great Field Day Operation. We operated under our club callsign, N1FD as 8A. John, W1MBG put together the video above which is a really nice recap of our operation.

Field Day Tower and Beams

Field Day Tower and Beams

The club was very active in WRTC 2014 and, as a result, was able to purchase several of the tower and station kits from the WRTC operation. The heart of our Field Day antenna system was built around two of these towers. One was used for CW and 6m and the other was used for SSB. Both towers had tri-band beams and we used Triplexers and Filters to allow our stations on 20m, 15m and 10m to share the beams on each tower. The towers got us a long way towards our status as an 8A operation.

Wire Antenna Construction

Wire Antenna Construction

My role in the setup part of our Field Day operation was to build our wire antennas. We began with a class covering how to build and tune Delta Loop antennas and we used the newly gained information from our class to build 40m and 80m delta loops at our Field Day site. We also put up a 75m inverted-V antenna in one of the tall trees at our site.

Operating Tents

Operating Tents

We made good use of our WRTC station kits and other gear that our members brought to setup comfortable tents to operate from as well as a public information tent and a food tent.

Operators For The Nashua Area Radio Club

Some Of Our Operators For The Nashua Area Radio Club

Despite the rainy weather on Saturday evening and Sunday, we all stayed comfortable and dry. Shown above is Dave, N1RF, Mike, K1WVO and Mike, K1HIF in our 40m SSB tent.

Field Day 20m SSB Station

Field Day 20m SSB Station

John, W1MBG and I shared a tent which we used for both 10m and 20m SSB operations. The picture above shows our 20m station which was built around an Elecraft KX3 with a PX3 Panadapter and 100w outboard amplifier.

Young Person Operating During field Day

Mikayla Operating With Her Dad During Field Day

Our club has been doing a great deal of work on bringing young people and other new HAMs into the hobby via license classes, outreach to schools and other activities. We carried this work into our Field Day operations with a GOTA station and lots of opportunities for new HAMs and young people to get on the air. Shown above is Wayne, AA9DY helping his daughter Mikayla to make some contacts on 20m SSB phone.

Field Day Feast

Field Day Feast

Anita, AB1QB made great meals and snacks during our Field Day operation. The food provided us a great opportunity to take a break from operating and enjoy each other’s company. Anita and John, W1SMN organized our public information and outreach activities which were very successful. we had over 30 visitors from the general public during our operation this year.

We all had a great time during Field Day this year, and we’re looking forward to doing it again next year.

– Fred, AB1OC

2015 Field Day Station Test

Field Day QTH

Field Day QTH

It’s almost time for the 2015 Field Day Event and we’ve been in high gear getting ready. Anita, AB1QB and I will be operating with the Nashua Area Radio Club, N1FD this year. The club was very active in WRT2014 and we were able to purchase several of the WRTC station and tower kits from that effort. I will be operating the 20m SSB station for Field Day and Anita and I decided to setup our station kit in our backyard last weekend to verify that all of our equipment was ready and in good working order. The first step was to pitch the wall tent from the WRTC kit. The tent and the associated tables/chairs can comfortably hold 3 – 4 people.

Field Data SSB Station Test

Field Data SSB Station Test

I will be using our Elecraft KX3 Transceiver again this year. We’ve added an outboard KXPA100 100w Amplifier to bring the station up to 100w and Elecraft’s very nice PX3 Panadapter. The combination makes a great 100W Field Day Station.

Elecraft KX3 Field Day Station

Elecraft KX3 Field Day Station

The picture above is a closer view of the setup. The KXPA100 Amplifier and the PX3 Panadapter are fully integrated with the KX3 and the combination creates a 100W transceiver with a useful Panadapter. The Panadapter should be helpful for Search and Pounce operation during Field Day. I’ve also added a Behringer HA400 four channel headphone amplifier (the unit on the right on top of the power supply) to the setup. This enables connection of a total of 4 sets of headphones to the station – one for the operator, one for a logger and two more pairs for folks to listen in on the fun. Our club has been doing a great deal of outreach to encourage new HAMs to join the hobby and I built this setup so that some of the new folks can listen in on our operation more easily. I will be using a Heil Pro 7 headset to operate and we will have 3 sets of Heil Pro Set 3 headphones for others to use. The Heil gear is very comfortable, light weight and sounds great over the air.

N1MM+ Logger

N1MM+ Logger

I will be using the excellent N1MM+ Logger for Field Day this year. It was very easy to setup N1MM+ to work with the KX3. I was also able to use it to trigger the KX3’s voice message memories for calling CQ and for calling in Search and Pounce mode. I am doing an N1MM+ clinic at our final Field Day prep meeting tonight to help others in our club to get going on the N1MM+ logger.

Generator Test

Generator Test

One of the many great aspects of Field Day is that it results in a test of one’s emergency equipment and operating skills each year. Our club has a large generator and power distribution system that we all share for Field Day so I used our station test session as a reason to get my smaller generators out for a test run. We have a pair of Honda EU2000 generators which can be used together to generate quite a bit of power. Here’s one of them in use during our station test.

Our club has quite a bit of antenna equipment, and we will be putting up two 40 ft towers and tri-band beams with Triplexes and Filters for our 20m, 15m, and 10m SSB and CW stations. I’ve built a 40m Delta Loop for our club to use for 40m SSB, and we’ll be putting up 40m and 80m inverted-V and dipole antennas to cover those bands. I plan to do another post after Field Day is done on the setup of our antennas and the N1FD operation. I hope to work some of our readers on the air during Field Day this year.

– Fred, AB1OC

World Radiosport Team Championship 2014 Experiences

Hollis Site Support Team And Referee

Hollis Site Competitors, Referee And Support Team

Anita (AB1QB), Scott (NE1RD) and I had the opportunity to serve as site managers for the WRTC 2014 competition site in Hollis, NH. Our site was one of 65 sites in New England USA (and the only on in the state of New Hampshire). This gave us a chance to be part of the WRTC 2014 event and to meet some of the competitors, referees and the event organizers. WRTC has been called the “Olympics of Amateur Radio” because it brings together the very best Amateur Radio Contesters in the world to see who is the “best of the best”. Here’s a summary of what WRTC is all about from the WRTC 2014 Website:

“The World Radiosport Team Championship (WRTC) is held every four years and consists of 50+ two-person teams of amateur radio operators from around the world competing in a test of operating skill.  Unlike most on-the-air competitions, all stations are required to use identical antennas from the same geographic region, eliminating all variables except operating ability.”

Each competitor must qualify based upon results in selected contests over a period of 3 years. There were a total of 63 teams which participated in the event. It is a tremendous achievement just to qualify for WRTC. Each qualifying competitor selects a second person to make up their team. The competitors at our site were Julio Henriquez, AD4Z and Dan Thompson, W4UH. Our referee was Alex Orlov, RW4WR from Russia. We really enjoyed getting to know Julio, Dan and Alex. The stories that they shared and the information and tips they gave us a relatively inexperienced contesters will stick with us forever.

 

WRTC 2014 Competition Sites

WRTC 2014 Competition Sites

The WRTC 2014 competition was held on July 12-13, 2014 as part of the IARU HF World Championship contest. A great deal of effort was put into selecting and building 65 competition sites for WRTC to ensure that they were as equal in terms of propagation, antennas and configuration as possible. WRTC provided all of the antennas/feedlines, generator power and a tent for each site and each team of competitors supplied their own radios and supporting station equipment.

WRTC Station Kit In Transit

WRTC Station Kit In Transit

Preparations for WRTC 2014 have been in progress for several years now including planning sessions, station and site tests, team formation and training. All in all, the event is a tremendous planning and logistical effort. Doug Grant, K1DG was the leader and chief evangelist for WRTC 2014. Doug and his team did a tremendous job in making WRTC 2014 happen.

Our part of the WRTC experience began with the pickup of the station kit for the Hollis, NH site on the Wednesday before the event. The station kit consists of a 40 ft Rohn 25G tower, beam/wire antennas, feedlines, generator, tent and miscellaneous equipment.

TX38 Tri-Band Beam Assembly

TX38 Tri-Band Beam Assembly

Ed, K2TE and our “beam team” were at the Hollis, NH site bright and early on Thursday morning to put up the tower and antennas. The heart of the WRTC 2014 antenna system is the TX38 Tri-Band Beam which was designed for WRTC 2014.

TX38 Yagi Installation On Tower

TX38 Yagi Installation On Tower

Here’s a picture of the assembled beam and tower ready to be pulled up and into place at our site.

Tower Going Up!

Tower Going Up!

The picture above shows the tower going up. The Falling Derrick System that was developed for WRTC is quite ingenious and it raises the 40 ft tower and beam antenna with very little effort. Each beam team was specially trained in the use of this system to ensure safe setup and takedown of the tower and antennas at each site.

WRTC Site In Hollis, NH USA

WRTC 2014 Site In Hollis, NH USA

While Ed and the team took care of the tower and antennas, Scott, Anita and I setup the tent, generator, feedlines and “crew tent” at our site. The picture above shows the completed site ready for our competitors.

WRTC Station Radios And Equipment

WRTC Station Radios And Equipment

Julio, Dan and Alex arrived at our site after the site drawing at WRTC headquarters on Friday and proceeded to setup and test their station. As you can see, they brought quite a sophisticated setup! They used Ten-Tec Orion II radios, a microHAM band decoder and antenna switching system and PCs running the N1MM Logger to create a modern, state of the art multi-two contesting station at our site. WRTC competitors used a variety of different radios to compete in the event. You can find a summary of the radios and software used by the competitors here. The Elecraft K3 was the most popular transceiver and a combination of the Wintest and N1MM loggers were used most of the competitors.

WRTC Monitoring System

WRTC Monitoring System

The WRTC 2014 organizers did some custom design work to facilitate the event. Shown above is the WRTC monitoring system. This system is used by the referee to monitor the power levels of each operator’s radio to ensure that the 100W WRTC power limit is not exceeded. The referees can also monitor the audio from each operator simultaneously and a recording of these audio streams for the entire contest period is also made. All of this is done in the interest of ensuring a fair contest and for judging purposes as needed when the event is complete. A device also monitors the logging streams from the competitors computers to create a live, real-time scoreboard on the web. The scoreboard uses an innovative data collection method developed by Dave Pascoe, KM3T and Bob Raymond, WA1Z to “sniff” the logging information being exchanged by the competitors computers. The data extracted in this way is fed via cellphone data connections to the WRTC headquarters to update the teams scores on the web in real-time during the contest.

The Big Moment - Our Station's Callsign

The Big Moment – Our Station’s Callsign

On Saturday, just before the competition began, Alex our referee opened the sealed envelope which contained our site’s callsign which was W1T. As with all things about the event, the callsigns were not disclosed to the operators until just before the contest began to ensure that none of the operators specific callsigns were known to others.

Julio (AD4Z) Operating

Julio (AD4Z) Operating

Once the contest began, our team was all business. Julio is shown above operating CW. He is an amazing operator and can easily operate at 40+ WPM speeds!

Our site was one of the public access sites for the event and we had quite a few visitors from the press and local HAMs who were interested in seeing what WRTC 2014 was about. The event also received quite a bit of media coverage, some of which can be viewed here.

2014 WRTC Medal Winners

2014 WRTC Medal Winners

An award ceremony was held at WRTC HQ the following Monday to announce and recognize the winners:

Medal winners

Gold K1A 7,184,844 points

Daniel Craig, N6MJ – United States
Chris Hurlbut, KL9A – United States

Silver W1L 6,816,144 points

Rastislav Hrnko, OM3BH – Slovakia
Jozef Lang, OM3GI – Slovakia

Bronze W1P 6,421,383 points

Manfred Wolf DJ5MW – Germany
Stefan von Baltz DL1IAO – Germany

Award winners

Highest SSB (with >35% QSOs on CW)

K1M (IK1HJS/I4UFH) SSB – 2063 CW – 1233

Highest CW (with >35% QSOs on SSB)

N1S (LX2A/YO3JR) CW – 2391 SSB – 1302

Highest Multiplier

K1A (N6MJ/KL9A) 436

Best Accuracy

W1P (DJ5MW/DL1IAO) 1.0% error rate

The final results were very close with only 118,425 points separating the 3rd through 5th place teams. To give you an idea of how close this really was – only 6/10 of a multiplier or about one minute of operating time separated the 3rd and 4th place teams! Some of the operators achieved peak rates of over 300 contacts per hour. This is very impressive considering that Field Day style stations with 100W output were used by the competitors.

WRTC Tower And Antennas At Sunset

WRTC Tower And Antennas At Sunset

Our  WRTC 2014 experience was a very memorable one. It was a great combination of amazing people, the best contesters in the world, great application of Amateur Radio technology and some of the best logistics and organization of a large event we’ve ever seen. Truly an Amateur Radio experience of a lifetime!

– Fred (AB1OC)

2013 Field Day

CW Station Operations

CW Station Operations

Our club, PART of Westford, MA USA, held our 2013 Field Day event at the Concord Rod & Gun Club again this year. We operated three HF Stations (SSB Phone, CW, and Digital) as well as a VHF and a Satellite Station this year. All of our operations were QRP 5 watts and used solar/battery power. The photo above shows Bob (W1IS) and Bill (AA1O) operating the CW station. Our day began with the setup of our antennas and the four stations.

Field Day Tri-Bander

Field Day Tri-Bander

Anita (AB1QB) and I handled the HF beam antennas for our Field Day Operation. This included a Hy-Gain TH-3JRS Tri-Bander loaned to the club by Allison (KB1GMX) which was installed 20 ft up on a guyed military push-up mast.

15m Buddi-Beam

15m Buddi-Beam

We also brought our 15m and 10m 3 element budi-beam mono band yagis which we designed for portable operations. These antennas plus a G5RV and a 40m wire beam made up our HF antenna farm for Field Day. All of these antennas were brought to a common interconnect panel where they could be connected to any of the three HF stations. We setup all of these antennas at home the week before to confirm that they worked as expected and to ensure that they could be erected safely and quickly at our Field Day site.

VHF Tower

VHF Tower

Another part of our team spent time to put up a Rohn 25G tower for our VHF Station. Allison, (KB1GMX) led this effort and supplied yagis for 6m and 2m. Operating on these bands QRP 5 watts is quite challenging and Allison was able to make a fair number of contacts by utilizing her considerable VHF operating experience.

Digital Station Battery Power

Digital Station Battery Power

With the antennas up, we turned our attention to the setup of the digital station and its associated battery and solar power. The digital station is the most challenging in terms of off-grid power because we need to power both the Transceiver and a Personal Computer as the latter is integral to generating and decoding digital mode signals over the air. The power system for the digital station consisted of two 65 Ah dry cell deep cycle batteries and a solar charging system. The batteries were sized to allow operation of the digital station for the full field day period of 24 hours in the event that we had limited sunshine due to clouds or rain.

Solar Panels

Solar Panels

The battery system used SunSaver MPPT charging system setup in a 30 Vdc configuration along with two PowerFilm 90W folding portable solar panels wired in series. We had good sunlight during the daytime and the solar panels were able to keep our batteries fully charged. The CW and SSB phone station used a few sets of smaller batteries and a solar panel to recharge them.

SSB Phone Station Operations

SSB Phone Station Operations

All three of our HF stations used Elecraft KX3 Transceivers. The KX3s turned out to be an excellent choice for our Field Day operations as they have low power consumption, a good receiver and provide excellent usability and external interfacing capabilities for automated logging, CW and digital operation. The photo above shows Scott (NE1RD) and Lyman (W1LKS) operating the SSB phone station. We used PCs on all three station to automate logging. We used Andy’s (KB1OIQ) xlog logger for the Phone and CW stations and the N1MM logger for the Digital Station.

Digital Station Equipment

Digital Station Equipment

Anita and I were the coordinators for the Digital Station and we decided to update the configuration of the digital station this year. In addition to the Elecraft KX3, we used a Windows 8 PC running N1MM/MMTTY/2Tone/FLdigi to handle the logging and digital mode processing.

Digital Station Software

Digital Station Software – RTTY Mode

N1MM provided a more contest-oriented logging setup as well as the ability to run multiple digital decoders to give us the best possible chance of receiving digital transmissions without error. For RTTY signals, we used a combination of the MMTTY and 2Tone encoder/decoders. For PSK signals, we used FLdigi. After some initial tuning, we got good results with this combination of software.

Satellite Station

Satellite Station

Bob (KB1SWZ) put together a very competent Satellite station to complete our Field Day setup. Working LEO birds QRP 5 watts on Field Day provided to be quite a challenge as its hard to compete with the many higher power stations contending for the birds on Field Day.

Toolbox Talk

Toolbox Talk

With all of the stations setup and ready to go, we provided a series of “Toolbox Talks” to help members of our club understand our field day stations and how to use them. Shown above is Scott (NE1RD) explain how to use the Elecraft KX3 which was central to all three of our HF stations.

Digital Station Operations

Digital Station Operations

One of the best parts of Field Day is that it provides the opportunity to spend time with newer operators and young people to introduce them to many aspects of Amateur Radio and to provide them with opportunities to get on the air and try new things. Shown above is Fred (AB1OC) explaining the operation of the Digital Station.

Field Day Feast

Field Day Feast

We are fortunate to have our club sponsor a nice meal as part of our Field Day event. Charlie (W1ADL) and Rick (W1RAG) did a great job with food for our event this year. In addition to a great meal, this provides all of the club members participating in our Field Day event a chance to socialize and have fun.

We operated for the full 24 hour period again this year and managed to make a good number of contacts with our QRP setups. The totals for our effort were 722 QSOs (up from 587 in 2012) with a final score (including bonus points) of 7,355. A special thanks to everyone who contributed to or was part of making our 2013 Field Day event a success. We also very much appreciate Joe’s (KB1SSA) efforts to help us secure the excellent facilities at the Concord Rod and Gun Club for our Field Day event.

– Fred (AB1OC)

Setting Up A Digital HF Station

Portable Digital HF Station

Portable Digital HF Station

I was looking back through a reader poll that I did some time back and noticed that a post on how to set up a Digital HF Station was pretty high on the interest list so I plan to cover that topic here. I have done quite a lot of digital HF operating over the past couple of years (approximately 4,000 Digital QSOs) and have had a lot of fun doing so. I hope to encourage others to give digital modes a try. I am going to break this post into four parts:

  • Why do digital HF?
  • What’s needed?
  • Digital HF Station setup
  • Digital HF operation

My goal for this post will be to introduce you to the digital modes and give a flavor of what is involved in getting set up to use them on the air in the HF bands. For those who decide to set up a Digital HF Station, I would recommend that you obtain a simple text such as the ARRL’s “Get on the Air with HF Digital” which gives a more in-depth explanation of what’s required to get on the air using the digital modes than I can provide here.

Why do digital HF?

Probably the biggest single reason to consider using the digital modes on the HF bands is that they can increase a station’s range without building new antennas and/or increasing output power. The more modern digital modes use narrowband signals along with error management techniques to increase the Signal to Noise (S/N) and error performance of a radio channel. In the extreme, modes like JT65 can be used to receive digital transmissions where the signal is at or below the noise floor! The digital modes on the HF bands present many good DX opportunities for modest digital HF stations. Early in my Amateur Radio career, I completed a DXCC Award using a simple Off-Center Fed Dipole antenna and a 100W transceiver over a period of about 6 months using the digital modes.

DXCC Award (Courtesy ARRL)
DXCC Award (Courtesy ARRL)

Some other reasons to try the digital modes include access to additional stations, a chance to work QSOs for operators who are hearing and/or speech impaired, and the opportunity to try a new mode of operation.

There are many different digital modes and discussing all of them is beyond the scope of this post (a good overview of the more common digital modes may be found here). The good news is that one simple hardware and software arrangement will put you on the air with a station that can do virtually all digital modes. For the beginning operator, I would recommend a focus on the Phase Shift Keyed (PSK) and Radio Teletype (RTTY) modes to begin with. These modes are by far the most commonly used and both provide good performance with a modest station. PSK is a modern mode and is probably the best performing of the digital modes for general purpose 2-way digital communications. RTTY is an older digital mode (one of the first to be used in Amateur Radio) and is still widely used by DXpeditions and in contests as well as for general digital communications.

What is needed?

The first step is to setup a simple SSB phone HF station. One does not need to build a big or complex station for digital HF operations – a 100W transceiver and a dipole or vertical antenna will provide plenty of fun for the digital HF operator. Most digital communications take place using only 25 – 75 watts of power so a 100W transceiver is more than adequate. Digital HF modes also work well using QRP power levels. In addition to a basic SSB HF Station, you will need a Personal Computer (PC) that will run a software program to decode the information in digital signals received by your transceiver and to generate the properly modulated audio signals and key your transceiver to enable you to transmit digital information on the HF bands. Those of you who have used HF modems over dial-up telephone lines to access the internet has already used essentially the same techniques that are used to transmit and receive information using the digital HF modes.

Dial-up Modem (Courtesy Wikipedia)

Dial-up Modem (Courtesy Wikipedia)

The only differences are 1) an Amateur Radio HF SSB transceiver is used to create the audio path instead of a telephone line, 2) the PC plus a sound card is doing what the dial-up modem did, and 3) you are communicating directly with another Amateur Radio Operator with a similar setup to yours instead of an Internet Service Provider.

A basic laptop or desktop PC running Windows or Mac OS X is all that is required to run a Digital HF station. The PC should be modern enough to run Windows XP or Windows 7/8 or the recent versions of Apple’s Mac OS X. The Linux OS is also a possibility.

PC For Digital HF Station

PC For Digital HF Station

Most PCs sold within the last 5 years or so have plenty of computing and storage capacity for this purpose. I would also recommend a PC that has at least two USB ports and some sort of connection to the internet for call sign information lookup and possible spotting network access. You should also ensure that your PC is stable and in good working order before you try to use it to operate your digital station. While the digital modes and the associated software are not particularly demanding of your PC, it will be an essential part of completing digital QSOs and you do not want to begin with an unstable PC that locks up or crashes frequently.

To complete your Digital HF Station, I would recommend the use of an external sound card and a rig control interface cable. While these latter two items are not essential (you can get by with the PC’s internal sound card and no rig control interface), I recommend an external sound card and a rig control interface for several reasons. First, an external sound card makes it easier to set up and adjust audio levels for proper operation (more on this later) and it generally provides a little better performance than a PC’s internal sound card. While not essential, a rig control interface cable will automate important aspects of logging, changing bands, and tuning through the digital sub-bands and is not particularly expensive or complex. I have found both of these additions to be very useful enhancements to a Digital HF Station.

There are many different choices for sound card setups for Amateur Radio use ranging from basic radio interfaces which use the PC’s internal sound card all the way to some very high-end units that support radios with dual receivers and have built-in rig control interfaces. Manufacturers and devices to look at include West Mountain Radio’s RigBlasters, Tigertronics SignaLink USB, US Interface’s Navigator as well as others. For the beginning digital operator, I would recommend the SignaLink USB from Tigertronics.

SignaLink USB (courtesy of Tigertronics, Inc.)

SignaLink USB (Courtesy of Tigertronics, Inc.)

The SignaLink USB is inexpensive and is available in kits that include the proper radio cable and configuration jumper blocks for many different radios. It is compatible with all of the popular digital software packages and performs well. It is widely available from distributors like Ham Radio Outlet and many digital operators are familiar with it and can provide help in getting you on the air.

For rig control, I would recommend a USB to radio control cable from RT Systems if one is available for your transceiver (this is the same cable that is used to program the radio using RT System’s software) .

RT Systems Radio Cable (Courtesy RT Systems, Inc.)

RT Systems Radio Cable (Courtesy RT Systems, Inc.)

These cables provide a connection between your radio and your PC that allows the digital software to read the radio’s frequency, tune the radio within a digital sub-band or change bands. While these features are not strictly necessary for digital operation, I find that they make the operating experience for the beginning Digital Operator simpler and more enjoyable and are well worth the small added expense and effort.

Finally, there is the question of Software. Again there are many choices here. I have used two and can recommend both of them:

Both of these packages can support all of the popular digital modes, logging of QSOs and Rig Control for digital operations. HRD is a more complete package that includes a full set of logging capabilities, award tracking, spotting cluster access and integration, rotator controls, etc. Fldigi is more of a digital modem program with basic logging capabilities. There is also a native version of Fldigi for Mac OS X and for Linux (although you can run HRD on a Mac using VMware Fusion or Parallels. Personally, I have mostly used Ham Radio Deluxe/DM780.

Digital HF Station Setup

The first step in setting up your Digital Station is to connect your radio to your PC. The figure below shows the connections which are required (this is the configuration we use for our portable Digital Station)

Digital HF Station Configuration

Digital HF Station Configuration

The exact set of steps required to set up and configure a Digital Station will depend on the specific combination of radio, sound card, PC, and software used. How-to books like ARRL’s “Get on the Air with  HF Digital” are good sources of information on how to perform these steps as are the equipment manufacturers’ websites and manuals. The steps required are not complex or difficult but a little help the first time that you do them can be helpful and seeking assistance from an Elmer who has experience with Digital HF is a good idea. Here are a few general suggestions to keep in mind as you set up your Digital Station:

  • If your radio has dedicated “DATA” or “ACC” jacks to connect audio to a sound card, these are usually the best way to go. If you use the microphone and speaker/headphones connections, be sure you disable the speech compressor and audio equalization when operating using the digital modes.
  • Pay close attention to the instructions related to the installation of drivers for your sound card and rig control cables as the order of doing these steps can be important. Also, be sure that the sound card associated with your radio is NOT your default sound card for your PC or you may put unintended audio over the air.
  • Be sure to adjust you transmit and receive audio levels properly so that your digital station performs well and does not emit spurious signals or splatter on the air when you transmit. Your sound card and digital mode software manuals will explain how to do this.

Digital HF Operation

Digital QSO In Progress

Digital QSO In Progress USing HRD/DM780

With the setup steps complete, the fun of Digital HF Operation can begin. Both Ham Radio Deluxe and Fldigi provide many features that make digital mode operation easier. These programs include macro capability that will automate many aspects of most QSOs such as calling CQ, responding to a CQ call from another station, providing station and other information, and closing and logging a completed QSO. It is a good idea to take some time to understand the use of your software’s macro capability and to customize your macros with your call sign, station information, etc.

I would recommend that you begin with the PSK digital mode as it is easy to use, very popular on the HF bands, and will generally perform best. Also, take some time and review the applicable band plan for your country as there are specific sub-bands allocated for digital mode operations. An example of the United States may be found here. The most active areas for PSK traffic in the United States will generally be in these frequency ranges:

HF Band Frequency Range
160 m 1.838 – 1.848 MHz
80 m 3.580 – 3.590 MHz
40 m 7.035 – 7.045 MHz
7.070 – 7.080 MHz
30 m 10.140 – 10.150 MHz
20 m 14.070 – 14.080 MHz
17 m 18.100 – 18.110 MHz
15 m 21.070 – 21.080 MHz
12 m 24.920 – 24.930 MHz
10 m 28.120 – 28.130 MHz

Common Frequencies for PSK Operation

Finally, take some time and experiment with the IF/Roofing filters and Noise Reduction features on your transceiver if you have them. These features, when used properly, will often reduce errors in receiving weak digital signals or help you to better deal with the negative effects of strong digital signals near your operating frequency.

I am considering a future post to cover digital operations using JT65 and WSPR on the HF bands. These modes operate and very low power and in marginal conditions and can be used to complete QSOs over marginal paths and to measure your station’s performance in real time. Please post a comment on this blog or drop me an email if you are interested in these modes. If there is enough interest, I will provide a post on these topics in the near future.

I hope that this post has helped to spark your interest in operating using the Digital Modes on the HF bands. I hope to work you on the HF bands using a digital mode soon!

– Fred (AB1OC)

Site Of The Day – 100 Pound DXpedition

100 Pound DXpedition

100 Pound DXpedition

I want to share a Blog that we have relied heavily upon to plan our portable operations in Bora Bora, French Polynesia as well as many aspects of our portable station and antennas. This Blog, the 100 Pound DXpedition, is authored by B. Scott Andersen (NE1RD) and contains a wealth of information on HF portable operating based upon Scott’s extensive experience in this area. If you have an interest in portable HF, I am sure that you will enjoy the 100 Pound DXpedition.

– Fred (AB1OC)

Bora Bora Island DXpedition

Our QSL Card from Bora Bora

Our QSL Card from Bora Bora Island, French Polynesia

In February of this year, we had the opportunity to travel to Bora Bora Island in French Polynesia. This South Pacific destination is absolutely beautiful! When Anita (AB1QB) suggested that we take a portable HF radio with us, we had no idea what sort of experience we were going to have! We put together a portable HF station and antenna system and obtained licenses from the officials in French Polynesia. I also tested our portable HF setup on business trips to Arizona and Florida in advance of our trip.

Bora Bora Station

Bora Bora Station

Our location in Bora Bora was about 400 yards from the beach and 8 ft above saltwater. Needless to say, this made for some exceptionally good antenna performance and our station worked very well there.

Our Shack in Bora Bora

Our “Shack” in Bora Bora

We took a TransWorld Antennas Vertical dipole (all bands 20m thru 10m) and a two element Buddipole 10m beam with us to Bora Bora. Both of these antennas are good performers and are very portable (especially the Buddipole system which literally fit in the bottom of our suitcase).

Bora Bora Antennas

Bora Bora Antennas

Anita and I had only very limited experience operating a pileup prior to this trip from our participation in the 13 Colonies Special Event as K2K, the New Hampshire, USA digital station. It was quite an experience when we went on the air in Bora Bora for the first time using SSB phone and had at least 50 stations trying to call us at once! Anita (FO/AB1QB) and I (FO/AB1OC) did a little over 1,500 QSOs while on this trip. We earned a Worked All States (WAS) and a Worked All Japan Districts awards based upon our operations there. This trip allowed us to learn a great deal about DXpedition’ing, pileup operations, propagation, portable station design, and QSL’ing for a DXpedition. We are going to be sharing our experience via a presentation at the upcoming Boxboro 2012 Hamfest in Boxboro, MA USA later this month. If you are in the MA/NH USA area, please join us for our presentation at Boxboro 2012 on Saturday, August 25th.

– Fred (FO/AB1OC)