For those having a car with a USB-C charging port in the dashboard, IKEA just brought out a very cool and inexpensive product, a dimmable USB-C lamp called HÖSTULOTA. It does fit my Hyundai inster perfectly, not only when plugged into the dashboard, but also stowed away in the glove compartment.
Joachim's Ham-Radio and Radio-Frequency Blog (A Solderful of Secrets) - from Longwave to Microwaves
Tuesday, November 4, 2025
Friday, October 31, 2025
Open Fire Illegal in Germany
Well, lucky me, I got an EV with V2L capabilities. OK, I still can't but a chair outside my vehicle, however, I am able to use the V2L function of my car to prepare hot meals by means of either an electric hotplate, an Instant Pot (electric pressure cooker), a microwave or an Air Fryer.
For wet cooking, I am using Instant Pots for years by now. The 3l model requires 800W and runs perfectly from my PV island and should do great with the EV.
Monday, September 29, 2025
New mobile shack?
Dear friends,
I was silent for a while, sorry for that... some things happened in my life (too many in fact) depriving me of the energy to follow up with things.
Said things had a huge influence on my life, thereby changing my whole attitude towards life and the future. Six years ago, I decided to no longer need a personal vehicle, hence, I sold my Merc B. The idea was to move to Canada, where I could not import my car anyway.
The plan with Canada is dead after what I have seen over the last 2 years, during which I stayed almost all my legally admitted days as a guest. Canada has changed!
Anyways, that's noch the topic here. So, After a long consideration, I got myself a personal vehicle again. And it is an EV. Fighting the idea of an REEV, the thought that such things need care for a gas engine and the attention an EV asks for, I went for battery only, skipping the gasoline part.
Long story short, with a a test drive, I decided to get a Hyundai inster. In particular for reasons of practicality. And you guessed, it was not the base model, which lacks most practical features. So, I got one with adjustable rear seats and fully foldable front seats.
The car allows for Ikea's Släkt mattress to be deployed for one person to sleep on.
The sleeping option seems sorted out for me. Now come questions about using the car as a mobile shack, as the title suggests.
With the front passenger seat folded, and the rear passenger seat in a regular position, one can create a table situation. Hyundai even sells an accessory for that... not sure if I will buy it. Looks somewhat expensive for what it is.
This car offer a so called V2L connection. Meaning, the cars accumulator (the high voltage one) and the inverters can offer 230V AC. A few 10kWh in fact. In my view, this could be very interesting when running some power amplifiers. After all, an EV is just a power-bank on wheels. In this case, a power-bank in which one can sleep.
Another use came to mind immediately, in particular with the bedding setup shown above: astrophotography. As soon as things have calmed down a bit in my life, I do see myself driving to a dark place and putting my DWARF smart-telescope on top of the car, while lounging in the rolling power-bank operating the smart-telescope from my phone.
Back to radio. An EV needs charging every so often. My intention is to come up with a shortwave setup which could be deployed quickly from the car alone. So that during charge stops, one of the other QSO can take place.
In terms of aerials I have no real plan yet. Fishing rods and PVC-pipes come to mind. My car has roof railings, however, I don't want to have anything permanently fixed. Depending on the band, a wire pyramid could be a pretty funny option (should work for 2m at least).
Fun times ahead, I hope!
Sunday, August 31, 2025
Update on the PV Island Project
It has been a while since my last post... I keep saying this all the time. This time, I was held up by a tragedy in my minute family.
Between my previous post and today, I ordered and received another power storage unit, an Ecoflow Stream Pro. Gladly I went for this one, which got 3 PV input ports. This one was supposed to serve in my kitchen to provide power to 1kW kitchen appliances. And it worked fine, being charged from the PV installation via my home's power grid. It kept working fine, however, the Stream Ultra unit, which was collecting all the solar energy, decided to go to sleep forever.
A few times back and forth with Ecoflow, which took some weeks, I was sent a shipping label to return the unit. Yet some more weeks, a new Stream Ultra arrived at my doorstep last Friday evening.
So, we are back to having extra storage. The Stream Pro, on its own, did a great job meanwhile. I guess, I was just unlucky with the Ultra... Never mind!
While I intended to use the setup in island mode, since those Ecoflow units allow for that, I did hook them up to my grid. And yes, I did register the installation with the authorities. Of course I am aiming for a zero grid feed-in. I set the system to 0W base feed and installed smart-plugs for the main power drains. Of course there will still be some consumption from the grid... no problem. However, the majority of my domestic electricity is now served by the Ecoflow storage units.
As soon as I am out of the mourning period, I will start experimenting with one of the storages serving the ham radio station. This is the return of the idea of an island supply for my radio toys.
It appears important to note that the software update to the storage units were essential. When I operated both in unison, before the new firmware, one was draining very fast, while the other unit kept charging up. With the present firmware and my settings, the one unit connected to the solar panels, charges up to 80%. Once charged to this point, this unit "sends" energy to the other unit, until discharged to 78%. Thereby, slowly but surely charging the non-PV unit. I am running my system in and SOC range of 20-80%, as advised by Ecoflow.
Next test would be to actually run the system as an island. I would think that having all (or at least one od the) inverters running all the time, rather than on demand, will probably lead to some losses. I have yet to find out about that however.
Tuesday, July 22, 2025
Going Island or something
It has been a really long time, since I posted last over here. I am very very sorry, however, radio and stuff had a very low priority lately. I have not even been on QO100 for the last years.
However, here I am, having something to share.
Everyone around me, and here I am writing about my neighbours, were installing massive PV installations of their roofs. Following local politics and news, this did not make a lot of sense to me. It was something like pre-paid electricity. You pay upfront and might use said energy when you are not at home, or when you do not need light... or something. Yes, storage was out there, but when I looked that up, this was prohibitively expensive.
Over the last few years some low power Plug&Play solutions came along. Here in NL, the maximum for those is 600W. Not very appealing. OK, the internet stuff and some PC related electricity could be fed by that.
I am not paid for disclosing the following: I was made aware of the latest EcoFlow products, the STREAM series. Looking at those devices, they seem to for a perfect basis for an island solution. So, I bought myself a starter kit including an EcoFlow Stream Ultra and two 520 Wp panels for €1300. The stuff came in yesterday and today.
Having storage does make so much more sense! The Stream Ultra storage employs for PV input terminals with a total input power of 2kWp. My setup only has 1.04kWp and charged the 1.92kWh accumulator in about half a day under non-perfect Dutch weather condition. My panels, at present, are not in a perfect position, they will be in shadow for about half of a day in summer. There was direct sun hitting them. The peak was about 800W DC, if I remember correctly. Anyway, at the end of the day, the storage was filled.
The interesting bit about the EcoFlow Stream series is that, it can provide AC power up to 1.1kW from a single storage unit, without being connected to the grid. My mind went immediately: radio station! With 1kW in and 1kW out, this would be all I need (not running kW powers). Interestingly, one can hook up 2 storage units to provide 2.3kW. Maybe in the future.
Presently, I have connected the storage unit to my house, feeding in 40W of baseline power for internet, the laption and some LED bulbs. The system needs (costly) improvements, such as a smart-meter and maybe an additional storage unit.
For now, not running an island though, I will try that in the future.
73!
Saturday, October 1, 2022
IKEA HiFi
It is obvious, not only did I not post a lot lately, I am also very late in the game what IKEA electronics is concerned. After having talked about HiFi gear made from PVC-tubing, there was not much left to degrade my standards in high fidelity audio, I figure. And here I am, talking about IKEA as the next audiophile (maybe not) source of gear.
A while ago, I contemplated using JBL Flip4 speakers as improvised stereo setup. This worked all fine, one the app recognized the speakers and finally configured those into a stereo pair. Maybe that was the tech of that time, I don't know, but, it (finally) turned out that an easier way is possible.
Coming onto the scene, the IKEA Eneby gen 2 BT speakers. Not only those speakers are 60% of the price I paid for the JBLs, they also remember the (stereo) configuration they were set up in.
While the original Eneby speakers might sound equally good as the 2nd generation, stereo pairing of those was not an option. Solely for that reason, I could not be bothered with the Enebys.
However, this has all changed now. One can configure two identical Eneby gen 2 speakers to act as a stereo pair and the speakers will keep this setup, unless reset to factory settings.
What the sound is concerned, I think they sound very nice. Initially my impression was that they are a bit bass heavy, however, this might have been due to the music I tested them with in the first attempt. Listening to "Sweet Smoke" now, the speakers seem well balanced and the stereo image is very pleasing, just like I remember the record when played on vinyl on a big rig years ago.
The speakers can get surprisingly loud.
Even as a stereo pair, one can control the balance by individually adjusting the volume of the respective speaker. While this makes sense with balance, this also can be done to the bass and treble response of the individual speaker... I am not sure if that makes any sense.
The Eneby gen 2 speakers do have an analog jack input. I have not yet tested if one can run a stereo paired setup with analog input. That's a test for a future post.
Wednesday, February 10, 2021
The Bullseye LNB for QO-100
It finally arrived in the Netherlands, the most expensive LNB I ever bought. For a whopping €25 and many weeks of waiting, the Bullseye LNB was mine. Well, nothing to complain about really, I knew how long shipping will take, and, seen reviews on YouTube, the LNB seemed worth the money and the wait, in particular when compared to competing products.
So, the shipment came in, finally. Of course, I waited until after midnight before I finally got the LNB installed in the focus of my downlink dish. You can't do those things in daylight... it just would not be cool... literally, with have a winter wave with temperatures about -9C.
Anyway, the LNB is installed and was surprisingly easy to find in the spectrum. Well done! Also, for the time being, the LNB appears to be very stable. Again, well done!
If the positive experience holds true, I will be hooking up my FT-736 again. Something I really looked forward to since I first learned about QO-100.
Sunday, January 17, 2021
QO-100 Up-Link -- So Many Things Wrong
There are so many things wrong with my up-link feed:
- RG-6 75 Ohms feed line from a 50 Ohms PA
- the base of the helix is embedded in hot-glue
- the material is Zn-plated Cu-wire (Zn corroding)
- the spacing of the helix is off and narrows towards the end
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| 2.4 GHz up-link helix feed |
You are seeing the result of ignorance and tweaking, which resulted in the feature of point 4).
I hooked a nanoVNA2 up to the PA side of the RG-6, then pushed and pulled on various parts of the helix to minimize the SWR. This procedure included the 75 Ohms transmission line of course. Thereby, I improving the SWR from 4.6:1 to 2.4:1.
Next step you probably be to play with a wire-cutter again. As you can see, the helix has 3+3/4 turns, so, there might be room for improvement still.
For the time being, I am pretty happy with my up-link signal anyway.
Sunday, November 29, 2020
Ender 3 and the Black-and-White Dog
In the past, I was proud enough to fabricate every little piece of hardware from either plastic, metal of wood, with traditional tools. It's 2020 now, so the decision was made to modernize my tinkering and add 3D-printing to the arsenal.
My Black Friday choice of purchase was a Creality Ender 3. Mainly for the reason hat it is so widely spread.
The printer came semi-assembled and was easy to put together. There are some very good tutorials how to do that on YouTube. I followed one by "3D Printing Canada", which explains the alignment and bed-leveling very well.
For all you experts out there, the model I got is version 1.1.6.2 with a Melzi board.
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| before assembly |
The printer came with a small roll of white filament. With the printer all being setup and aligned, I dcided to print the dog for which a gcode file is supplied with the printer. The dog took 3h 01m 46s to print. In the process, the printer ran out of the white filament. In principle a very good thing, so I could practice changing filament in mid-print on a object of low importance. That of course created the black and white dog, as referenced in the title of this post.
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| the black and white dog |
After having changed the filament, still 2 or so layers of white came out, perfectly aligned with the first part of the print. However, the first black layer is slightly shifted in the Y-axis. Could that be due to the different filament? It is still PLA...
By now I printed several essential improvements found on thingiverse. The STL-files of those parts were slized by Sliz3r on a Raspberry Pi 400.
The first one came out a bit rough, but usable. For nozzle temperature for this print was set to 185C. The dog was printed at 200C and came out fine. So, for the next few parts, I created gcode files for a nozzle temperature of 200C and a bed temperature of of 60C.
As a design software for my own projects, I found that solvespace would serve my needs perfectly. The program is available from the Raspberry Pi OS repositories and work fine OOB. Solvespace is similar to many other CAD programs.
This is my first attempt of becoming less of a dinosaur, however, I am not sure about this yet. With a decently equipped workshop, with materials at hand, making a part from a block of metal or plastic appears to be much less time consuming. Not only do I not have to use a computer to design the piece, I also do not have to wait until the printer is done. Even worse, one has to babysit the printer, just in case something goes wrong. Further, if the printed part is not perfect, there is very little one can do to improve the part. When working with a lump of metal, I tend to make the part just a tiny little bit bigger here and there and use a file, the one from the toolbox, not the one sitting in your computer, and adjust to the proper dimensions manually.
Well, his is my first day playing with 3D-printing, however, I already feel the disadvantages.
To be honest, there is an advantage to CAD and 3D-printing, which is huge. Once a part is successfully made, it is easily shareable with others. With hand-made parts, this might be different, in particular when a single piece is made in some sort of workshop.
Concerning ham radio, one might think of driven element holders for Yagi-Uda-arrays or base plates for a variable capacitor, printed in ABS.
So, in conclusion, I look forward to becoming more efficient with 3D-printing over time. For now, there is a learning curve ahead, which might slow down my projects by some good amount of time.
Monday, November 16, 2020
QO-100 observations
Having a satellite in a geosynchronous orbit available is a great privilege for the amateur radio community. In my few months being active on the transponder of this precious satellite I observed the good, the bad and the ugly.
Writing about the ugly. I was listening to a conversation in Spanish. Si puedo comprara... At the end, the DX station was calling CQ. Well, someone else was faster than me. Fair enough, I waited. At their end, I called and was picked up by S0S in West Sahara. What a pleasant QSO, he even spoke some Dutch, respectful of my call sign. What a gentleman! Our QSO ended undisturbed.
I stayed on frequency, since I had some in shack business to conduct. Moments later, some from OE-land (aka Austria) SHOUTED his call (noted but not disclosed) at the transponder, over everybody else, of course triggering Leila. However, his signal was that strong that his call was audible the entire time. HOW RUDE! Of course he had the next QSO, so that he shut the f##k up.
Is that how we want this transponder to be for the next 15 years?!
Honestly, the behavior of our Austrian friend reminded me of the reasons for which I decided to ignore the 80m-band 40 years ago. Unfriendly, unpleasant, un-HAM-ish behavior.
Dear friend from Austria, YOU SUCK!
Tuesday, November 3, 2020
QO-100 Uplink Setup Changes
Wednesday, October 21, 2020
QO-100 LNB Comparison
My downlink (DL) is realized by using an old 35cm off-set dish on my roof deck, something I mentioned before. On recommendation of an old friend, I bought a Venton EXL-S Rocket Single LNB. So far so good, this LNB served me on many contacts. Using the beacon feature of SDR-Console made it possible to have those contacts. However, during my tests using analogue equipment, drift from this particular LNB was noticeable.
I understood the Venton LNB is primarily useful with with POTY "dual band" feed, as it keeps the centre hole to a minimum. Fair enough.
For my setup, I decided to use two separate dishes for UL and DL, hence, the size of the DL LNB is irrelevant to the UL feed geometry. As a matter of experimentation, I replaced the Venton LNB with an Octagon OSLO LNB in the 35cm DL dish setup. This LNB was purchased many years ago, when I was active on 3cm rain scatter and wanted to experiment a little bit with commodity gear. To my surprise, the Octagon LNB is a lot more stable, once at temperature. It also appears to be more sensitive than the Venton. Aperture is the name of the game here, I figure. Hmmm, maybe I should have used this LNB from the get-go and saved the few Euros by not buying the Venton LNB.
Still, there might be a use for the Venton LNB. As mentioned in my previous post, I am considering to use a single dish for DL and UL. With its smaller form-factor, the Venton Rocket might be the better choice when placed inside the UL feed helix in a single dish arrangement.
I will post my further experiment on this blog, so, stay tuned.
BTW, occasionally, you might be able to hear me on the transponder. Feel free to give my a call ;-)
Monday, October 19, 2020
QO-100 update
Not much to report, other than I shortened the RG-6 coax for the Up-Link. The length should be about 3.5m, however, I have not measured the length yet. In order to achieve the shorter transmission line, drilled a hole into a window frame relatively close to the UL dish. This allows the power amplifier to be indoors.
By now, I made contacts in side-band from Brazil to Thailand. The occasional rag chew QSO confirmed that my signal is loud enough to not be difficult to listen to.
There is a plan of using the UL dish also for reception. The added gain in the DL might make it easier to operate with a full analogue setup. Although, the LNB being placed in the center of the feed-helix might compromise the UL signal. Something to experiment with...
Further down the line, I might acquire a larger off-set dish, e.g. 1m, mainly to add some gain to the UL.
Sunday, October 11, 2020
QO-100 thoughts
The humble listener/follower of my station or posts might have experienced a certain lack of enthusiasm about operating on QO-100/ Please do not interpret much into this. The satellite is great. Probably the greatest any Oscars had ever been by this date.
However, once the setup is done, the fine tuning is somewhat frustrating.
What to look for?
Ideally, in my world, one would be going fully analogue, i.e. using only pure receivers and transmitters.
Does that justify the effort by the operators of the satellite? I don't think so!
Hence, we also should look into modern techniques, such as SDR.
Well, this is exactly the spot I am struggling with. I got the equipment for both, analogue down link and digital down link. I operated with the satellite using both. Concerning the up link, I an analogue only.
What I used so far (RX - TX):
- RSP1a - FT817
- FT290R2 - FT790R2
- FT736R (RX+TX)
Tuesday, September 22, 2020
QO-100 Analogue Ground Station
Yes, it can be done. One can use a fully analogue ground station for QO-100 operations.
My first attempt included a Yaesu FT-290R2 for reception, along a Yeasu FT-817 for transmission on 70cm. Once a TX frequency has been established, following the drift of the LNB was an OK-ish task during QSOs. Changing frequencies was an unpleasant juggle of setting the receive frequency and trying to find the transmit frequency without annoying everybody else of the transponder. This ballet is performed with VFO controls of two different radios.
Second attempt: Yaesu FT-736R, the satellite machine from the past. It was doing great, in particular when changing frequencies, using the satellite mode. However, my cheap LNB kept drifting in sunlight, while the up-link converter stayed rock-solid. Hence, using the FT-736R was a constant switching between SAT-mode and RX-QRG. Once a frequency was established, TX-QRG needed to be adjusted. I am not sure how many actuations the little SAT-switch can take. What I am concerned, it took a lot of focusing in order to not adjust the VFO in the wrong setting, thereby messing up the RX/TX-offset.
With a stabilized LNB, this might be a different story.
I liked the possibility to use the VFO-knob to scan up and down over the band, knowing that, whenever I pushed the PTT, the frequency would be at least close.
The FT-736R is back in its box for now. In terms of having contacts, the SDR-option seems a lot more convenient, in particular when locking the reception to the satellite's beacon. Transmission is stable enough, in my experience, so nothing to be bothered about.
As an added bonus of the SDR solution of the analogue way, there is signal processing available when using a computer for reception.
Further, I tried to use a Yaesu FT-790R2 as baseband up-link transmitter. It did work. However, there are two observations to share: 1) some weird spurious transmission were visible in A1A, 2) the audio in J3E was OK but not punchy at all.
Consequently, I will be using the Yaesu FT-817 as a baseband TX and the SDR receive setup, for the time being.
Saturday, August 29, 2020
QO-100 A1A up-link idea
This is something I had in mind for quite some time by now. What about an A1A only up-link for QO-100?
This is an old idea. At the time, this idea was to create a CW transmitter for 70cm based of a 2m signal. I have seen similar attempts to get something transmitting on 3cm. So, why not on 13cm?
With a factor of 25, this will result in a 2.4GHz frequency.
Now, why is that interesting? The multiplication of 25 can be achieved with 5 x 5 .... dahhhh. Yes, sounds simple enough. Here is the interesting thing, it should be easy with a square-wave oscillator to generate 480MHz. At this frequency, it is pretty easy to build a strip-line filter or cavity resonator to clean the signal. Now, we just have to multiply the signal again. So, we might want to use a non-linear amplifier again, in order to create all the wonderful harmonics. Again, a 2.4GHz resonator should not be to hard to build.
And here is the idea. What if we used a rather high powered amplifier at 480MHz, which is easy to build, and a non-linear element to generate all those harmonics at decent power.
With a VTCXO of 96MHz, slightly pulled by a few kHz, one should be easily creating a signal in the CW band of QO-100, using the above mentioned method.
QO-100 Up-link update
The last few days have seen a little bit of modification and optimization to my setup. Mainly, the shortening of the helix feed. While I was monitoring my A1A signal on the downlink, I gradually cut windings of the the uplink helix. I was not sure if I could see any difference in signal strength, to be honest. Anyway, I ended up with this:
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| Downlink (left) and Uplink (right) |
Tuesday, August 25, 2020
SDR and the DJ-Tech DJ-Mouse
Here is what you have missed, if you are not in the world of DJs.
The DJ-Tech Mouse, which employs a super-nice big wheel in the center. Have a look:
https://djtechtools.com/2009/08/20/the-dj-mouse/
QO-100 ground station update
My previous post show tons of opportunities for improvement. The more I was thinking about those, the closer I came to my initial gut feel, i.e. using a helix as a feed for the up-link dish.
In fact, the helix was sitting on my desk for quite some time by now. I had doubts how to mount the helix in the first place, also matching appeared to be a big deal, without the help of any decent GHz-capable measurement equipment.
However, seen that no matter what I did, I could not really improve the performance of the up-link. Essentially, I spent two entire night to find the best position of the dish. (Night-time, so nobody is on the satellite, avoiding to disturb more senior users)
When listening to traffic on Es'hail 2, I often heard that operators switched from patch feeds to helical feeds for their up-links and reported better results with those. Was my gut feeling correct?!
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| note the remainders of glue where the patch was |
Feel free to count the turns, which would result in a little of 6. My idea was, that I could always cut some off. It is much harder to cut wire on ;-)
The photo shows, it is night-time again. So, why not firing up the station and do some test transmissions?
And how right was my gut?!
| lower beacon at 69dBuV |
What a difference! My signal is now just 9dB weaker than the lower beacon!
Of course I had to do some side-band test. And yes, now I think I am QSO worthy.
The present setup still employs the "attenuator" made of about 10m of 70Ohm SatTV cable. So, as long as I still have not yet figured out how to build an outdoor unit (PSU,TX-converter and PA in a weather-proof box), I still will be able to do one or the other QSO.
Friday, August 21, 2020
QO-100 Es'hail-2 ground station
It has been a while since I was busy with a ground station for the geosynchronous (geostationary) satellite Es'hail-2 also known as Qatar Oscar 100 or QO-100.
The major delay in the beginning of the project was to receive an assortment of coax adapters. Finally, those were in, now, the down-link was sorted rather quickly. There was a disused 35cm dish, which I used to analog ASTRA reception. When ASTRA satellites turned digital, I lost interest in watching those, so I never upgraded the equipment. Although, I never dumped any of that stuff either.
So, here was my down-link receiver, PLL-LNB with the old 35cm dish in a FUNcube SDR dongle. That worked perfectly. I later replaced the FUNcube dingle with an SDRplay RSP1A, so that I could receive the entire bandwidth of QO-100's narrow band transponder, allowing for locking on the mid-beacon for frequency stabilization.
Concerning the up-link, I decided to go for a DXpatrol converter. I like the possibility to select the baseband, although, I will probably stick with 432MHz.
To amplify the 2.4GHz signal, I went for the omni-present chinese 8W WiFi-PA.
Then came a long struggle of what to do about the up-link hardware.
Initially, I considered an RHCP helical antenna, something in the realm of 15 to 20 turns.
Then I found a 60cm offset dish in the trash. So, what about a 4 to 6 turn LHCP feeding helix? And yes, I wound that thing. But, the mechanical details of holding the thing in place put me off again.
Finally, I decided on a K3TX LHCP patch feed for the 60cm dish.
I know, 60cm is rather small for a 13cm wavelengnth... 10 lambda upwards make the deal... I know. However, 60cm is what I got.
The dish I got had not LNB/feed mounting hardware, so this is what I came up with.
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| K3TZ LHCP patch, PCB over Al |
You may wonder what the strange structure to the left is, this will be the mount to the dish.
Something not obvious from the above picture, I am using a F-connector for this feed.
Please note that this picture was taken before I filed down the edges to of the reflector to the circle seen scratched into the aluminium sheet.
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| The patch feed added to the up-link dish |
Winds can be pretty strong over here, so I mounted the dish to a concrete parasol stand.
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| Up-link (grey) and down-link (white) |
Note that both channels are using 75Ohms satellite cable. While for the down-link this is fine, the up-link will experience this as an attenuator, in particular over the length I am using for this experimental setup (about 20m).
Having done some experiments, I could hear my signals in both CW and SSB (USB). While CW was easy, single side band was somewhat challenging. I would not count for any SSB QSO with the attenuator in place.
However, CW should be just fine. Have a look how the signal compares to the lower beacon:
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| Lower beacon and pa1gsj carrier |
This was my first day of bouncing signals from QO-100. I know what I need to do now, i.e. building an outdoors cabinet next to the up-link dish.
I hope to be QRV as an audible station on Es'hail-2 soon.
Update
After further improvements, I can now provide relative signal strengths from my receive setup:
- transponder noise about 32 dBuV
- CW beacon 58 dBuV
- my own signal 41 dBuV









