A First Antenna For HF Use

OCF Dipole And Ground Plane Antennas On A Push-Up Mast

OCF Dipole And Ground Plane Antennas On A Push-Up Mast

I am often asked, “what is a good first antenna for use on the HF bands”. This is a difficult question to answer and there is no one answer which is best for everyone who asks this question. For example, a HAM in a restricted HOA situation will have a much more limited set of choices than a HAM with a small lot and some trees. The restricted HOA situation is often a very difficult one and is usually best solved with an HF antenna such as a Buddipole that can be put and taken down easily. For this post, I am going to concentrate on some choices for HAMs with a small lot and perhaps a few trees. The picture above shows my first real HF antenna system (it also included a VHF/UHF ground plane antenna for 2m and 70cm repeater access).

In my mind, the best HF antenna for a new HAM should have the following characteristics:

  • It should be inexpensive
  • It should be relatively easy to put up
  • It should be somewhat stealthy so as to be neighbor and XYL/OM friendly
  • It should handle at least 100w of continuous power (I think the new HAM does best with this level of power as it provides more breathing room while the operating technique is being learned)
  • At a minimum, it should cover the 20m band and ideally should also cover 40m as well as some of the higher frequency HF bands (I consider 20m to be the most important HF band for the beginning HAM as it allows working both DX and domestic contacts, has many big guns which will be easier for the little pistol HAM to work and is of a manageable size)
  • It should be reliable and stay up year-round without a lot of maintenance

*** DISCLAIMER – The author assumes no liability, warranty or responsibility for the safety, possible injury, reliability or function of the antenna installation methods, materials, techniques and systems discussed in this post or anywhere else in this Blog or for any injury or consequential losses, injury or damages resulting from or incurred in connection with the use of the information presented here. Antenna work is potentially dangerous and can result in serious injury or even death. These ideas worked for me but may not work for you. You decide to use the ideas suggested here you do so entirely at your own risk. ***

I am going to talk about two different antenna systems that will meet these goals – an Off-Center Fed (OCF) Dipole and a Vertical Dipole. Some might say that vertical antennas should be on this list as well but I find them to be more complex to install properly and therefore are not, in my estimation, the best first antenna for a new HF operator.

My first antenna was an OCF Dipole from Buckmaster which covers 80m – 10m (15m excepted). This antenna is a good performer and I was able to work and confirm about 125 countries on multiple bands with it. This antenna is very well made and I still use it for domestic contacts and some DX at my QTH. The OCF dipole is a multi-band wire antenna that does not use traps and is a relatively simple install.

Buckmaster OCF Dipole Installation Diagram (Courtesy Buckmaster)

Buckmaster OCF Dipole Installation Diagram (Courtesy Buckmaster)

The OCF dipole is usually installed in an inverted-V configuration so the ends do not need to be very high off the ground (~10 ft is good). The center should be 35 – 45 ft up and must have a reasonably solid mounting point to support the weight of the center matching balun and feedline. The best approach is to suspend the balun/feedline combination from a tree limb if one is available in the right location.

Guying Arrangement Looking Up The Mast

Guying Arrangement Looking Up The Mast

In my situation, I did not have a suitable tree in the correct location so I installed a 50 ft heavy-duty fiberglass push-up mast (only extended to 42 ft – see below for details) on the side of my house to provide the needed center support. The push-up mast came from Max-Gain Systems, Inc.

Mast Guy Anchor On Ground

Mast Guy Anchor On Ground

As you can see from the photo above, the mast is guyed at two levels with a 3-point guying system made from 0.188″ synthetic rope from DX Engineering. One pair of the guy ropes is anchored on the ground using a large, screw-in earth anchor from DX Engineering.

Mast Guy Anchor On House

Mast Guy Anchor On House

The other two sets of guy ropes are attached under the eves of my house using sturdy anchors built from 2″x6″ and 2″x4″ pressure-treated lumber. NOTE THAT ALL OF THE ANCHORS MUST BE SOLIDLY MOUNTED IN THE GROUND OR ATTACHED TO STUDS IN THE HOUSE STRUCTURE. I cannot stress enough how important it is to ensure that guy attaching points are solid and will hold up. A mast of the type shown here will not be stable without proper guy ropes and anchors and it will collapse if the guy system is inadequate or if it fails. I used a 50 ft mast but did not extend the top section very much (only a foot or so to mount the balun for a total height of about 42 ft) to ensure that there was a sold mount for my antennas (note that the top guy attaching ring from MGS is just below the point there the OCF dipole’s balun attaches to the mast with two stainless steel hose clamps – this ensures a stable mounting point for the balun).

Push-Up Mast Anchor To House

Push-Up Mast Anchor To House

The mast is fastened to the house about 18 ft up from the ground with a block and a piece of galvanized strapping material that is securely fastened to the framing of the house with lag bolts. Once the antenna’s balun and feedline are installed on the top of the mast and the guy ropes are in place, the mast can be pushed up into position with the help of three helpers – one on each pair of guy lines. The helpers are essential to ensure that the guy ropes can be maintained with enough tension to provide support for the mast and to keep it stable as it is pushed up. The feedlines (I used LMR-400 UltraFlex coax) are taped to the mast every few feet as the mast is pushed up.

Mast Section Locking Clamp

Mast Section Locking Clamp

The MGS mast has plastic clamps to lock each section of the mast in place as it is pushed up. I have found that after continuous exposure to the sun and the elements, these clamps can break if they are made tight enough to hold the mast locked over long periods of time. To solve this problem, I install a stainless steel hose clamp at each mast section joint after the section is pushed up to its extended position. This locks the section securely without requiring excessive tension on the plastic locking collars.

Feedline Conduit At Base Of Mast

Mast Base And Feedline Conduit

It’s also important that the base of the mast has a solid point to rest on and not be able to move around. To accomplish this, I made a base out of several heavy 2″x8″ sections of pressure-treated lumber. The upper piece of 2″x8″ lumber is drilled with a hole saw to provide a hole for the mast to sit firmly in and the blocks are held in place on the ground with several large galvanized 18″ spikes. I also opted to install plastic conduits in the ground to route my feedline from the base of the antenna to the entrance of my shack. The feedline is also connected to a well-built earth ground via an Alpha-Delta surge projector prior to entering the shack. I also strongly suggest disconnecting your feedlines prior to them entering your house during times of potential lightning activity or when your station is not in use.

Antenna Feed Point Connection Details

Antenna Feed Point Connection Details

The last area to note is the proper way to install the feedline where it attaches to the antenna. You are trying to accomplish two things here – first, to provide a drip loop so that water does not run down your coax and second to provide a means to create a high impedance choke to block any RF that might flow on the outside of your feedline. The later is not a big problem with the Buckmaster OCF dipole as it uses a high-quality balun for matching and decoupling at the feed-point. It’s also important to seal the connections between the antenna and the feedline at the connectors. To do this, I use a combination of CoaxWrap and Super 88 Electrical Tape (wrap the connection and connector shell with one layer of electrical tape first, then a layer of CoaxWrap, then a final layer of electrical tape for protection). The upper antenna in the picture is a Diamond X-300NA ground plane vertical antenna that I have installed on my mast for accessing local 2m and 70cm repeaters.

Dipole Antenna End Anchor

Dipole Antenna End Anchor

Once the center of the OCF Dipole is up and the feedline supported, one needs to anchor the two ends. I used a couple of pulley’s attached to two sturdy trees near the ends of my antenna. I used the same synthetic rope attached to the insulators on the ends of the OCF Dipole to provide support for the ends of the antenna. Note the use of rubber tarp stretchers to provide tension on the support ropes. I have found that this system works quite well and keeps the antenna supported without breaking or excessive sagging as the trees sway with the wind. You do not need to make the end supports extremely taut – a little bit of sag in the antenna wire is OK and a slight amount of slack will reduce the stress on your antenna in the wind.

The only maintenance required with this sort of antenna is to inspect the coax and adjust the tension on the guy ropes and end supports periodically. I do this simple maintenance twice a year in the fall and in the spring.

20M Vertical Dipole - A Stealth Antenna For DX Work

20m Vertical Dipole – A Stealth Antenna For DX Work

Can you find the antenna in this picture? It’s a 20m vertical dipole located just to the right of the tree at the center of the picture. This is one of the simplest and least expensive HF antennas to install, is stealthy and it works very well. Its radiation pattern exhibits a low takeoff angle which makes it an excellent choice for DX work and it will exhibit a reasonably low SWR across the entire 20m band. All you need to build this antenna is an inexpensive 20m dipole antenna, some rope and a tree limb that is about 38 feet or so from the ground.

Vertical Dipole Anchors At Base

Vertical Dipole Anchors At Base

Instead of installing the dipole horizontally, you install it vertically with one end about 2-3 ft off the ground using a rope (ideally with a pulley) to support the other end from a tree limb. about 40′ up. Note the use of the rubber tarp stretchers to maintain a modest amount of tension on the ropes attached to the ends of the dipole.

Vertical Dipole Anchor At Antenna Feedpoint

Vertical Dipole Anchor At Antenna Feed-point

Before pulling the antenna up, attach a suitable length of lightweight feedline (RG8X coax cable works well) to the feed-point of the dipole. Don’t forget to seal the connection with a combination of CoaxWrap and Electrical Tape. You will also want to attach a piece of synthetic rope at the feed-point at well. Once the antenna is pulled up into position, anchor the feedline to the ground so that it slopes away from the antenna’s vertical section at approximately 45 degrees. Then fasten the feed-point rope to the ground opposite the feedline so that it pulls the vertical section of the antenna straight (without the feed-point rope, the weight of the feedline and the 1:1 balun at the feed-point will prevent the antenna from being a straight, vertical radiator). As explained with the OCF Dipole previously, it is important to properly ground the feedline before it enters your house and to disconnect the feedline when lightning might be present and when your station is not in use.

As with the OCF dipole, this antenna’s feedlines and support ropes should be checked and adjusted twice a year. Given this is such an effective and simple antenna, you might ask “why not always use a vertical dipole”? The biggest drawback is that it only will work on a single band. It’s also difficult to put up one of these for 40m (you’d need a tree limb about 70 ft high and a safe way to get a rope over it). Some hams do put several vertical dipoles up at different spots on their property and this makes an excellent and simple multi-band antenna system.

I hope that this post provides some useful ideas for HAMs contemplating the installation of their first HF antenna. As noted by Rick (W1RAG), a combination of an 80m – 10m OCF Dipole and a 15m Vertical Dipole would cover almost all of the HAM bands including the WARC bands (Rick uses this combination of antennas at his QTH).

My final advice is to be very careful when installing antennas to keep yourself, ladders, antennas, and feedlines away from power lines and take extra care when using ladders and when working at heights above the ground. It is usually best to rent the services and expertise of a bucket truck and operator to install the supports on trees rather than trying to use a ladder or climb yourself. This has the added advantage that proper attachments and pulleys can be easily and properly installed safely. I have used the services of a professional bucket truck and operator several times on projects like these and I have never been sorry about the modest cost involved.

– Fred (AB1OC)

Displaying QSL Cards

QSL Card Picture Frame

QSL Card Picture Frame

We send and receive quite a few paper QSL cards. Some HAMs create some stunning QSL cards and we really enjoy looking at our cards from time to time. It’s nice to be able to display your favorite cards in your shack and to include those from rare DX Stations and memorable QSOs. The classic way to do this is to create a display of your favorite QSL cards on the wall of your shack and many HAMs do this. DX Engineering recently began providing a more contemporary way to display QSL cards – a QSL Display Kit which includes a Digital Picture Frame and a scanner optimized for this purpose.

QSL Card Scanner

QSL Card Scanner

The kit from DX Engineering includes a card scanner that is optimized for scanning QSL cards. It scans one card at a time and it will handle QSL cards in formats up to 4″x6″. This size will accommodate all but the occasional super-size QSL card. The scanner may be used standalone or with a PC. In the standalone configuration, it scans QSL cards directly to an SD Flash Memory Card which is then plugged directly into the Digital Frame that comes with the kit. The scanner does automatic cropping of the cards to eliminate black edges and is very fast – scanning a cards takes only a few seconds. I connected my scanner to a PC which allows me to keep a copy of my scanned cards there. The scanner handles single sheet cards only – those that come as “books” with multiple pages must be scanned in a standard sheet scanner (cards scanned this way display just fine when added to the frame’s SD card). I also find that the scanner’s automatic cropping will occasionally get a little aggressive and cut off a bit of the callsign on a card if the callsign is printed close to the edge of a cards. I personally do not find this to be much of an issue with the kit’s scanner.

Display Of A Favorite QSL

Display Of A Favorite QSL

The included 7″ diagonal picture frame is a basic one that is 16:9 formatted. It has a nice, crisp display and it has programmable on and off times and display transitions but does not handle randomizing the order in which the QSL images are displayed. I personally prefer a random ordering so I found a utility called RandomNames that can randomize the filenames of all files in a directory. I make a copy of all of my scanned images in a separate directory and run this utility from inside that directory to randomize all of the filenames which store my QSL cards. The files are then copied to the frame’s SD Flash Memory card and the result is that the frame displays the cards in random order.

All in all, I am happy with the QSL Display Kit from DX Engineering. It provides a quick way to scan and display my favorite QSL cards as I receive them. It is a nice addition to our shack.

– Fred (AB1OC)

A Visit From Fred Lloyd, President And Founder of QRZ.com

Fred Lloyd AA7BQ, Founder Of QRZ.com

Fred Lloyd AA7BQ, President And Founder Of QRZ.com

We recently had the pleasure of a visit from Fred Lloyd, AA7BQ, the President and Founder of QRZ.com. Fred is doing a series articles titled “QRZ Featured Shacks” and he visited us to take photographs and gather background information on our station for a future Featured Shack article on QRZ.com.

Fred is very well-connected in the International Amateur Radio community and he shared a great deal of very interesting information about QRZ.com and Amateur Radio in general. The story around how QRZ.com came to be and the scope of its user community is a very interesting one! QRZ.com has approximately 500,000 registered users of which about 300,000 are active on the site a regular basis. The QRZ.com user community averages approximately 60,000 visits to the site a day. The QRZ.com website is currently hosted on Amazon Web Services S3 and serves approximately 600,000 pages a day or 18 million pages per month – quite a high-scale website! Fred has a number of interesting projects going to enhance the QRZ.com services including some pretty major enhancements to the QRZ.com logbook and related services.

George W9EVT's Shack

George W9EVT’s Shack

One of the interesting stories that Fred shared with us was his experiences visiting George’s (W9EVT) station on Washington Island, WI. George has a collection of just about every Ham Radio ever made in his shack! You can read more about George’s station in Fred’s article titled “Washington Island’s HAM Radio Treasure” on QRZ.com.

Fred took many photographs and spent quite a bit of time learning about Anita’s (AB1QB) and my background, our Amateur Radio projects and experiences, and the design and construction of our station. He also took quite a few pictures as background for his upcoming article. Some of my favorites include a nice panoramic view of our shack:

Our Shack

Our Shack

and a great shot of our tower and antennas.

Our Tower And Antennas

Our Tower And Antennas

He also took quite a few pictures of some of the details of our station including this one of me (AB1OC) standing at the base of our tower next to the hard-line coax cables used to feed our antennas.

AB1OC By The Tower

AB1OC By The Tower

Anita and I really appreciate all of the time that Fred spent with us and the opportunity to have our shack be included in one of his upcoming articles on QRZ.com. I believe that the internet and websites like QRZ.com will continue to play an increasing important role in the evolution and growth of the Amateur Radio hobby.

– Fred (AB1OC)

AB1OC Results For 2013 CQ Worldwide WPX SSB Contest

2013 CQ Worldwide WPX SSB Certificate

2013 CQ Worldwide WPX SSB Certificate

I recently received my final results for the 2013 CQ Worldwide WPX SSB Contest and was presently surprised. With a final score of 1,883,448, I won the Rookie overlay category in North America and Finished #2 in the World in this category. I was also #2 in the Single Operator High Power Assisted category in the United States Call Area 1.

AB1OC In Our Shack

AB1OC In Our Shack

I do not have much experience as a contest  operator. The 2013 CQ Worldwide WPX SSB Contest was one of my first serious efforts in a major contest and I am very pleased with the results of my efforts. I used a good bit of recently added equipment and software in this contest (see related post on this blog) and the investments in these areas seemed to pay off nicely. I am very much looking forward to being part of this contest again in 2014.

– Fred (AB1OC)

AB1OC Completes The DXCC Challenge Award

DXCC Challenge Award

DXCC Challenge Award

I have been working on a number of operating awards with the goals of both improving my operating skills and verifying the performance of our station against our original design goals. I am happy to say that I’ve achieved my first major goal in this area by completing a DXCC Challenge Award. This award requires working and confirming at least 1,000 DXCC band-enties on any of the Amateur bands, 160 through 6 meters (except 60 meters). This award is a good one to confirm the performance of our station across all of the HF Bands. It took me about 1 year after finishing our new station and starting to work towards this award to complete it. I hope some day to achieve the 1,500 and other endorsements for this award.

– Fred (AB1OC)

Mobile HF Installation – Part 2/4 (Bonding and Choking)

Transceiver Ground

Transceiver Ground

This article will cover the second phase of our Mobile HF project – bonding and grounding.The following is a summary of the phases of the project:

We have been having fun with our new Mobile HF installation in our 2009 Ford F-150 Pickup Truck. We are currently using a simple HAMStick antennas to operate on the 20m and 40m bands. The initial installation focused on getting the radio installed in the truck and working and while this was successful, we have had to work around quite a bit of electrical noise when the vehicle is running. The noise was S9 without the Icom IC-7000 Transceiver’s Noise Blanker turned on and about S3-S4 with the Noise Blanker on. Most of the noise sounded like ignition or fuel injector spikes (it was engine speed dependent) and I understand that this is quite common with the Ford F-150 Truck. This past weekend, I set about solving the noise problems via a combination of Bonding and Choking techniques. An excellent source on how to approach this can be found on the K0BG Mobile HF website.

The first step in the process was to ground my radio to a solid point on the truck’s body. I used 3/4″ wide ground braid from DX Engineering (picture above) for this purpose. I was fortunate that my F-150 had Truck had good ground straps installed between the body and the frame at the factory (although I do plan to supplement these with heavier straps in the future).

Power Connection Choke

Power Connection Choke

Next, I added Type 31 choking material to the transceiver’s power and antenna leads. I added a total of three beads on the power leads (one in the engine bay close to the firewall and two on the interior side of the firewall). I also installed choking material on the antenna coax near the radio. The correct way to install these beads is to coil the cables through them as many times as possible to form an effective RF choke. With these initial steps, my noise fell from S9 to about S6-S7 without the Noise Blanker.

Hood Bonding

Hood Bonding

The next step was to bond the hood of the vehicle to the rest of the body via 1″ wide ground braid. These were made from material that I purchased from DX Engineering and they were installed on both hood hinges.

Body Bonding

Body Bonding

I also installed two bonding straps between the cab and the bed of the truck (one on each side).

Exhaust Bonding

Exhaust Bonding

Finally, I used kits from DX Engineering to bond my exhaust system to the frame of the truck. This needs to be done in three places – at the exhaust pipe section which is connected to the engine, on the mid-pipe which leads to the front of the muffler (shown above) and at the tail-pipe which leads from the rear of the muffler to the rear of the truck. Exhaust system bonding is probably the most effective technique for reducing electrical noise in most installation and mine was no exception.

With these additional steps, I my noise level was reduced to S0! While I still have a faint amount of engine electrical noise, I can operate without the Noise Blanker on and with a lower level of Noise Reduction than before the steps outlined here. My installation is much quieter overall and I find that I am hearing many more stations than I did before. There is still more work that I plan to do in the future including bonding the truck’s bed to the frame at all four corners, improving the existing factory grounding between the body and the truck’s frame, and bonding the four doors to the body. For now, my Mobile HF operating experience has been improved considerably.

The next stage of our Mobile HF project will be the installation of a Screwdriver Antenna. We also plan to install a mobile HF amplifier for high-power operation as well as other upgrades.

– Fred (AB1OC)

2013 Thirteen Colonies Special Event – QSL!

2013 Thirteen Colonies Special Event - K2K NH QSL

2013 Thirteen Colonies Special Event – K2K NH QSL

Our updated QSL cards for this year’s Thirteen Colonies Special Event came back from the printer last week. This let us get about the business of responding to all of the QSL requests to the K2K New Hampshire Station. This project took the better part of two days to complete. We replied to approximately 450 direct QSL requests as well as 180 Buro QSL requests from previous years. The net was that I filled out about 630 cards in about two days. We expect that this batch of QSLs will represent about 2/3 of the QSL requests that we will receive for the 2013 Event.

New K2K New Hampshire QSL Card

New K2K New Hampshire QSL Card

Richie (W1STT), Anita (AB1QB) and I (AB1OC) redesigned the K2K New Hampshire QSL Card this year. The logo in the center of the card was used in various forms early in our history (ex. the Fugio Cent) to signify the unity among the Thirteen Original Colonies which formed the United States of America. It also appeared on the Flag of the 2nd New Hampshire Regiment which fought in the American Revolutionary War. The symbol in the upper left of the card is used on the current New Hampshire State flag and Seal.

Thank you to everyone who participated in the 2013 Thirteen Colonies Special Event. We certainly enjoyed doing it and we hope that everyone enjoys the new QSL cards.

– Fred (AB1OC)

Mobile HF Installation – Part 1/4 (Initial Installation)

Mobile Installation In Ford F-150

Mobile Installation In Ford F-150

We have been planning to install a mobile HF setup in one of our vehicles for some time now. Our car and truck currently have an Icom IC-2820h 2m/70cm DSTAR transceivers installed in them, providing access to our local repeaters. We also purchased a backup Icom IC-7000 Transceiver some time ago with the intention of installing it in one of our vehicles. Our planning for our Mobile HF setup involved talking to Ron Douglass at Scorpion Antennas and studying the excellent K0BG Mobile HF website. I’ve settled on the following components for our Mobile HF installation in our 2009 Ford F-150 truck:

This is quite a complex mobile installation – especially the amplifier plan. Given that I have limited experience with mobile HF, I am planning to complete the project in phases:

This past weekend, we completed Phase 1 of the project – installing the IC-7000 Transceiver and a HAMStick Antenna in our F-150 Ford Truck.

Icom IC-7000 Control Head

Icom IC-7000 Control Head

The first step in the installation was to determine a good location for the IC-7000’s Control Head. It’s important to read the radio’s display and access its controls without taking one’s eye off the road. It’s also important to mount the unit so that it will not block the view of the road. After trying several locations while seated in the vehicle, I settled on a mounting location just below the top of the dash and just to the right of the steering wheel. This put the control head right in front of the driver in an easy-to-read and reach location.

Icom IC-7000 Head Unit Mounting Bracket

Icom IC-7000 Control Head Mounting Bracket

I made a small bracket from some sheet aluminum which was attached to the underside of the dash pad with three screws. The bracket provides a secure mount for the Icom MB-105 Mobile Mounting Bracket for the IC-7000’s Control Head.

Icom IC-7000 Radio Mounting

Icom IC-7000 Main Unit Mounting

The next step was to mount the IC-7000 Main Unit. I mounted it on the right side of the front passenger area on the lower kick panel. I mounted the radio with the rear panel facing the passenger so that we could connect control and data cables to allow the passenger to operate using digital modes or connect a PC for automatic logging. This approach also makes working on the antenna, power, and other radio connections possible without removing the radio from its MB-62 Mounting Bracket. I removed the feet and handle on the radio, which allowed me to mount it closer to the kick panel, which helped keep the unit out of the passenger’s feet. At this point, I ran the radio’s power cable through a wire grommet in the firewall and connected the fused power leads directly to the battery. I also used Icom’s OPC-1443 Separation Cable to connect the radio to the control head mounted on the dash. The final part of mounting the radio was to run an audio cable from the radio to the auxiliary audio input on my truck’s sound system, allowing me to use the truck’s audio system and speakers to amplify to radio’s audio.

Mobile Antenna Farm

Mobile Antenna Farm (HAMStick Is Center Antenna)

The final step of the installation was to install the MFJ HAMStick Antenna and mount. As you can see from the picture above, I choose to install the HAMStick on the roof of the truck. This approach works well because it allows the metal surface of the truck to act as the best possible ground plane for the mobile HF antenna.

HAMStick Magnetic Mount

HAMStick Magnetic Mount

I used an MFJ-336T Tri-magnet Base to mount the HAMStick. This base is solid and does not allow the antenna to move around on the vehicle. It was also a good choice as I plan to replace the HAMStick with the Scorpion Screwdriver Antenna later in the project. It was easy to route the antenna’s coax feedline through the corner of the door and then conceal it behind the trim panels in the interior of the truck as it was routed to the IC-7000’s base unit. The HAMStick antenna uses a spiral-loaded fiberglass section which includes a loading coil and a stainless steel whip on top.

20m HAMStick SWR

20m HAMStick SWR

The resonant frequency of a HAMStick is adjusted by changing the length of the stainless whip at the top of the antenna. As you can see from the picture above, I used our RigExpert AA-54 Antenna Analyzer to adjust our 20m HAMStick to favor the phone side of the 20m band. This tune-up will also allow operation in the 20m digital sub-band as well as in all but the very bottom of the 20m CW sub-band. We also purchased a 40m HAMStick. The bandwidth of the 40m HAMStick is limited due to its short length on 40m, so I tuned it to work best in the 40m DX window and the lower part of the US phone sub-band on 40m.

Mobile HF Log

Mobile HF Log

The last step in the installation was to secure a paper log and band plan to the truck’s center console using some large rubber bands. I use the paper log along with a small spiral-bound notepad to note information about my QSOs when operating mobile. The information on the notepad is transferred to the paper log when I am stationary.

With the installation complete and the 20m HAMStick installed, I made my first QSO with Ken (G0KEN) in the U.K.! The signal reports were 57 both ways, and we had a nice QSO on 20m. I do have some ignition noise when my truck is running, but the combination of the IC-7000’s excellent Noise Blanker and DSP Noise Reduction features reduced the noise level to S3 or less. I took my truck for a test drive with the new radio and worked a Special Event Station (OO7VA) in Belgium and several United States stations. All in all, our initial Mobile HF installation seems to be working quite well. The next step is to work on grounding the various parts of my truck and add some RF choking material to the power and other radio connections to try to lower the noise levels. This will be the topic of Part 2 of this series of posts.

– Fred (AB1OC)

One Year Anniversary Of Our Blog

Our Readers Around The World After 1 Year

Our Readers Around The World After 1 Year

This month marks the one year anniversary of our Blog. We have been very pleased with the worldwide interest in the information and articles that we have posted during our first year. To date, we have enjoyed readers from 145 countries around the world with  over 38,000 views of the 90+ articles that he have written during our first year.

Our top three most widely read posts are:

Some of our most popular videos include (these videos take a few seconds to load and begin to play):

Our busiest day every was on Saturday, June 1st 2013 when he had over 1,000 views of our Blog in a single day. This occurred shortly after Anita (AB1QB) published her article on the 2013 Contest University At The Dayton Hamvention.

We’d like to thank everyone for your interest in our Blog and we plan to continue publishing articles that we hope will interest our readers and help the Amateur Radio Community in general.

– Fred (AB1OC)

2013 Thirteen Colonies Special Event Operating Award

2013 Thirteen Colonies Top Operator Award

2013 Thirteen Colonies Top Operator Award

I believe that operating awards serve several important purposes within the Amateur Radio community. First, they encourage operators to get on the air and operate. Each award is different in this respect – some encourage DX’ing (ex. ARRL DXCC awards) while others encourage specific types of contacts (ex. the RSGB IOTA awards) and others are designed to encourage operators to provide the best possible experience in on the air events. At a personal level, operating awards several two important functions – they give us a means to test the performance of our stations and our skills as operators and they provide us with motivation and encouragement to improve both. Occasionally, an operating award comes along that really means a lot and I am happy and proud to say that I’ve recently achieved one of these. I’ve been active in the Thirteen Colonies Special Event for three years now and I’ve been working to improve our station and my skills as a pileup operator throughout this period. The 2011 event was my first experience operating a special event station (K2K New Hampshire) and I made several hundred digital contacts that year. In 2012, we used the Thirteen Colonies Special Event to prove in our new shack and made over 1,000 contacts using a mix of digital modes and SSB phone. This year, I set out to achieve the Top Operator Award in the high-power, single op category using our recently completed station including our tower-based antenna system and high-power setup. As you can see from the photo above, this effort was successful and provided an award that I will always be very proud to display in our shack.

2013 Thirteen Colonies Top Operator Certificate

2013 Thirteen Colonies Top Operator Certificate

I was able to make 5,812 contacts over the 6 1/2 days of the 2013 Thirteen Colonies Special Event. These contacts were made across all of the non-WARC bands from 160m – 2m. You can see more of the details of the contacts that Anita (AB1QB) and I made this year here. I’d like to thank Ken Villone (KU2US) who runs the Thirteen Colonies Special Event and Richie Feola (W1STT) who is the New Hampshire coordinator for the event for providing us with the opportunity to be part of something very special.

New K2K New Hampshire QSL Card

New K2K New Hampshire QSL Card

Richie (W1STT), Anita (AB1QB) and I have been working on a new QSL card for the Thirteen Colonies K2K New Hampshire station. I think it has turned out quite nicely. The new cards are in the process of being printed and we’ll be sending out the new cards to those who have QSL’ed contacts with K2K this year as soon as we receive them.

Thanks so much to everyone who participated in the 2013 Thirteen Colonies Special Event. I hope that we created some good memories for everyone. This is certainly the case for me.

– Fred (AB1OC)