Showing posts with label SSB. Show all posts

Final Integraton And On-Air Test of the LBS Transceiver (Video) (FB!)



Very nice.  A beautiful and educational project from Pete and Ben.   I have to start putting "tune switches" in my rigs and ammeters in the bias circuits of my finals. 

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Patrick, F6AWY, The SSB Carpenter (Homebrew Hero)

 
There he is:  Patrick, F6AWY, the builder of the beautiful wooden-case SSB transceiver featured here two days ago.   Born in 1945, Patrick has been melting solder since age 15. This picture made me think that there must be some connection between string instruments and homebrew genius:  Farhan plays guitar.   So does Pete Juliano.  I think it was Rick Campbell who was strumming the banjo at FDIM...  More about Patrick here:  http://www.araccma.com/f6awy-p821004 

 
 
Here is another of Patrick's projects.   He completely rebuilt an old Geloso AM transmitter.   Note the  markings on the front panel.  Signed with a dash of F6AWY panache! 
More about this project here:
http://www.araccma.com/emetteur-am-pas-a-pas-avec-f6awy-p820986

Translation tip:  Open these pages in Google Chrome.  Then, simply RIGHT CLICK on the page and select TRANSLATE TO ENGLISH.  


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F6AWY's Beautiful, Colorful, Wooden Box Transceiver



I was beginning to fear that I might be the only radio amateur in the world operating a wooden-box SSB transceiver.  But no!  Patrick F6AWY built this MAGNIFICENT rig.   Wow, I really like this one.  Note the Heathkit S-meter and main tuning knob (I suspect an HW-?? carcass lies somewhere nearby).   Note the colorful analog dial and speaker cover, and the classy lime-colored Dymo tape knob labels. This is really an amazing and inspirational piece of work. 

The construction details are all here:  
http://www.araccma.com/le-tranceiver-en-bois-de-f6awy-p820968
Yes, it is in French, but even if you can't get Google or Google Chrome to translate it (and that should be possible) you can see what he did through the great pictures and schematic diagrams. 

Congratulations Patrick! 

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N6ORS's Long-Delayed SSB Rig


We've heard of a few of these "long-delayed" projects.  My own 38 year pause in the Herring Aid Five receiver project comes to mind.   I like Keith's idea of a "homebrewers home frequency" but I strongly suspect it would be a very lonely place!  Thanks for sending us the pictures of your rig Keith.  

Bill:

This project started out about 20 years ago as
a 2 meter FM handheld, then sat in boxes for decades.
Thanks to you and Pete and your podcasts keeping
me company, it morphed into a homebrew 2 meter SSB
rig.   It saw 'firstlight' last weekend. Of course
I had to operate it without the covers but I made
a short QSO, about 1 mile across town with the wife (kg6oeo).
Homebrewers should pick a "Homebrew home frequency" on
various bands to facilitate homebrew to homebrew contacts.

73,

Keith N6ORS


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Pete and Ben's "Let's Build Something" Reference Page


Lots of tribal knowledge here!  That's the direct conversion receiver that forms phase 1 of Pete and Ben's "Let's Build Something" project.  Arduinos!  Si5351s!   AD9850s!  And it will morph into an SSB transceiver.  Check it out: 

http://www.jessystems.com/LBS_Detail.html

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Kiwi Lunchbox Sideband: The Tucker Tin Two

Pete Eaton sent us links to an old article from the New Zealand magazine "Break-In."   So many good, simple rigs come to us from New Zealand!  Who can forget ZL2BMI's DSB rig?  This one is the work of Fred Johnson ZL2AMJ.  It is especially interesting and is in some ways similar to Peter Parker's "Knobless Wonder."

It uses the phasing method of sideband generation.  No crystal filters in this one.  You need TWO balanced modulators.  You have a 90 degree phase shift network for the RF (from the carrier oscillator) and a second 90 degree phase shift network for the AF from the mic amplifier.  When you combine the signals from the two balanced modulators -- viola! -- one of the sidebands disappears.  The balanced modulators take care of the carrier, and an SSB signal is launched.  That is how my old HT-37 works, and similar ideas seem to be at work in modern SDR rigs.  

G3TXQ has the complete set of Break-In articles (it includes a VFO): 
http://www.karinya.net/g3txq/temp/tucker_tin/   

Here is a Canadian article on the rig.   A "Tucker Tin" is apparently what the Kiwis call a lunch boxes (shades of Benton Harbor...).  


Thanks Pete!

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SSB with Just Two Tubes


Here is the two tube SSB transmitter that Pete was telling me about.  This would be a nice companion to the "Mate for the Mighty Midget" receiver that I built a long time ago.  Another Benton Harbor Lunchbox may have to be sacrificed... 


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A New Look at BITX Carrier Suppression; N6QW IN EMRFD!

Bert, WF7I, was recently struggling to get his BITX 20 going and he asked some good questions about carrier suppression.  I realized that I hadn't really paid much attention to this.  Perhaps as a result of my long experience with DSB, I was happy as long as I was able to null out MOST of the carrier. 

I fired up the scope and took a look at the output from the BITX 2040 on 40 meters.  Here's the test setup:  Coax from the antenna terminal to a 50 ohm resistive load at the Rigol O'scope probe.  Just keying the transmitter (no mic connected),  carrier was at 980 millivolts rms or about 19 milliwatts.  I then connected an AF sig generator into the mic in connector and pumped in some 1000 Hz sine wave. Peak output was 20.7 volts rms, or about 8.6 watts.   That puts the carrier about 27 db down.  I felt I should be doing better. 

I took a look at the shape of my crystal filter and the frequency placement of my carrier oscillator.  I noticed that the carrier oscillator freq was fairly close to the bandpass portion of the crystal filter -- fairly high up the skirt, only about 9 db below the passband level.   I figured that if I just moved that carrier oscillator up around 300 Hz, I would get around 10 db of additional carrier suppression. 

Sure enough,  with the carrier moved a mere 300 Hz further away from the passband,  the residual carrier dropped to 346 millivolts rms, or about 2.4 milliwatts.    Now peak output was 20.9 volts rms, or 8.7 watts.  36 db of carrier suppression. 

I guess I could do better if I moved the carrier up another little bit, but I like the sound of it now.  I may have been able to better if I'd fiddled with the balanced modulator diodes a bit more.  But what do you guys think?  Should I worry about 2 milliwatts of residual carrier?  Heck I once ran a CW rig (W1VD' VXO 6 watter) that kept the oscillator running on key up, producing about 15 mw of "backwave." No damage was done, few noticed, no one complained.

Oh yea, is this the way to measure carrier suppression? 

----

While doing all this, I pulled out my trusty copy of EMRFD.  The index led me to the balanced modulator section on page 6.56.  There I spotted a familiar call:  W6JFR!!!  That's Pete Juliano, N6QW!  Pete is credited with a mod to the SBL-1 mixer that adds a balance control pot to the device.   Wow, actually being IN EMRFD fully confirms Pete's homebrew guru status.


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SolderSmoke Podcast #162: Part II with Pete Juliano, N6QW

 
SolderSmoke 162 is now available at  http://soldersmoke.com/soldersmoke162.mp3
 
June 21, 2014
Part II of our interview with Pete Juliano, N6QW
 
-- Bill's Moxon Monstrosity
-- Amplifiers and Exorcisms (See slideshow link below)
-- Varactor tuning
-- Polivaricon capacitors
-- The challenge of building small rigs
-- Heat, layout, components and VFO stability
-- "No frills" as a building philosophy
-- The future of Bill's Heathkit HW-101    
 
We still have a lot more to talk about.  Stay tuned for Part III!


Slideshow of Pete's RF Amplifiers: 
https://onedrive.live.com/?cid=4f1e8c71e0d4f1dc&id=4F1E8C71E0D4F1DC%212640&Bsrc=Photomail&Bpub=SDX.Photos&sff=1&authkey=!AGq3hc4UajARH1s




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El Peregrino (The Pilgrim) from Spain



Eduardo, EA3GHS, sent this to me.  It looks like a wonderful bilateral SSB rig for 17 meters.
They said they wanted a "daylight" rig (for a daytime band) because in Spain the religious pilgrims walk all day and are tired at night.  Hence 17 for Los Peregrinos!


http://ea3ghs.qrp.cat/peregrino.html



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Harv's Minima

Good Evening Bill & fellow Solder-smoke friends,
 
Well, I’m following the pack. I began gathering items for the Minima Transceiver back in March 14. There had been a good bit of strong back-N-forth discussions on the Minima Blog about what works and what doesn’t work. Some circuit refinements had been agreed upon while other were left to individual preferences. So, I decided to just be silent an learn from the experts. As a result, I did several months of observing before I took the plunge. While my efforts are not nearly as aggressive as others, I decided to forge a much slower path to success.
In my own quirky way of doing things, I kitted each module, measured all the parts statically, laid out the components, and finally built & tested each assembly before going to the next.
As a result, the learning’s were great and the performance of each section equal or better than my expectations.
 
I went the Manhattan Style this time but,  I have purchased several sets of Minima PCBs to use in the future. As I see it, there is a lot more solder melting ahead.
 
Bill, building radios is NOT DEAD yet. That desire to get back to the golden days of home-brewing still lives on.
 
At the end of the Memorial Weekend, this is my current Minima progress…
 
·         Construction of all 3 Audio Stages now complete (see photos)
·         The Microphone Pre-Amp is now awaiting voice testing
·         Audio Amplifier and Final Amplifier have been tested together
·         The results of audio testing has been superb for all stages thus far
·         3 complete sets of Micro Relays have been order and I’m now awaiting their arrival
·         24 – various ferrite and powered iron cores arrived several weeks ago, these are the heart of the front-end RX/TX stages
·         100 - 20 Mhz. crystals have arrived and await characterization
·         25 - 8” Male to Male SMA Cables have arrived this weekend, will need to order 15 – 4” Male to Male SMA Cable Assemblies next
·         5 – 12” X 15” Copper Clad Boards have arrived this weekend
·         25 –J310 N-channel J RF Power FETs were ordered and arrived this weekend, these are used in the Mixer Stage
 
 
Final Audio Stage
 
 
Audio Amplifier Stage
 
 
Microphone Pre-Amplifier Stage (see microphone connector mounted at rear)
 
I’m ready to begin kitting the Side Tone Oscillator and RX/TX Relay Stages.
The largest and most intense modules are yet to be tackled.
The Bi-Directional Amplifier has 34 parts alone.  So far I have installed over 40 parts in the three modules I’ve completed…
I realize it is just a start but, I’m motivated to see this one project through to completion.
 
73’s & Happy Soldering
 
Harv -=WA3EIB=-
Albuquerque, NM.


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SolderSmoke Podcast #161: Homebrew SSB: An Interview with Pete Juliano, N6QW


 
SolderSmoke Podcast #161 is available:

http://soldersmoke.com/soldersmoke161.mp3

26 May 2013

Homebrew Single Sideband -- An Interview with Pete Juliano, N6QW

-- Pete's background:  55 years in radio.  Boatanchors AND Arduinos. 40673 Mosfets.  Guitar!
-- A personal transition from CW to phone.
-- The importance of passing on "tribal knowledge."
-- What you need:  A library, tools, test gear and a junque box.
-- A new word in the homebrew lexicon:  Pete explains "noodling."
-- One stage at a time!
-- The attractiveness of standard circuit blocks (that work!)  
-- The importance of IF selection.
-- Building your own crystal filters is easier than ever.
-- Thinking (early) about the enclosure.
--VFOs, VXOs, and (gasp) Direct Digital Synthesis

Thanks Pete! 

Pete's Web Site:  http://www.jessystems.com/

Pete's YouTube Channel: 
 https://www.youtube.com/channel/UC4_ft4-oTdCMlWlL4XXHScg/videos


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BITX 17 Build Update: More Filter Maintenance

 
 
 
Having had great success in straightening out the 11 MHz filter in my BITX 2040 (scroll down for details),  today I decided to see what I could do with the filter in my 17 meter BITX (four 5 MHz crystals in Cohn MIN LOSS configuration, with 40 pf caps all around).  The key to my success in all this has been the filter programs that came with EMRFD.  After characterizing my crystals with the G3UUR method, I plugged the values into LADBUILD 8, then took a look at the expected results.  As you can see from the image above the predictions were not pretty.  Yuck.  Lots of ripple and lots of insertion loss.

I went into the rig and using my DDS sig generator and my RIGOL 'scope, measured actual performance.  It looked worse than the prediction (part of the worsening is a difference in vertical scale):


LADBUILD lets you play around with the values of the components in the filters.  I know that ripple is usually related to an impedance mismatch.  So in LADBUILD I experimented (virtually) with different impedance values at the end.   I noticed that at about 1000 ohms, the ripple and insertion loss got better:


So I went and built two broadband toroidal transformers.   4 turns primary with 12 turns secondary (1:9 Z).  I'm assuming that the BITX has around 150 ohms at either end of the filter.  That would put about 1350 ohms at the ends of the filter.

Here are the results:


Much better.



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BITX 2040 Build Update #10 : Fixing my Filter


That dip on the high side of the passband was bothering me.  The GPLA crystal design program predicted it, and indeed, when I measured the performance of the actual filter, there it was.   The rig was working fine -- the receiver sounded fine and everyone tells me that it sounds great on transmit.  But still, it bothered me.

So I started working out with the various crystal filter software packages.  

This filter was -- sort of -- a Cohn Min-loss filter, but I had built it with four crystals and three shunt caps (80 pf each) and no series caps at the input/output.  This morning I decided to see what would happen if I put the series caps in there.  Here is what Wes's GPLA predicted:


Wow, that looked a lot nicer.  And the 150 ohm terminations seemed to be just about perfect for the BITX design -- no need for impedance transformation.  I heated up the soldering iron and searched the junkbox for suitable caps (I found 2 82 pf caps -- close enough).

Here is what the results looked like (I didn't measure insertion loss so the top of the curve is just the peak of the response curve).


Exactly as predicted!  Thanks Wes! And thanks to Farhan for encouraging me to characterize my crystals and to use the available software

Now I have to go back and de-ripple the 5 MHz filter in my BITX 17.

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BITX 2040 Build Update #9: On-the-air Observations


The BITX 2040 has moved from the bench to the operating position and is producing a steady stream of contacts on 20 and 40 meters.  In the picture above it is the rig with the copper-clad front panel (the BITX 17 is below it).  It has already crossed the pond on both bands.

Some observations:

I get significantly more power out on 40 than on 20:  about 7.2 watts PEP on 40 and about 4.4 watts PEP on 20.  I saw a QST article that showed similar frequency/power out variations from IRF510 amps.   But I notice I get more power out from my 17 meter rig.  On that rig I am using trifilar (9:1 Z) transformer instead of the standard BITX bifilars. 

My 40 meter receiver is LOUD.   Too much AF out.  I am not used to having this problem!  On this rig I am using the same discrete component 2n3904 2n3906 transformer-less circuit that I used in the BITX 17.  But AF out on 40 was so loud that I had to go back and add 20 k ohms to the top of the volume control pot.   I didn't have this problem with the 17 meter rig, and I didn't have it on 20 with this rig.  Any ideas why this rig would be so loud on 40?

I still want to go in and fine tune the crystal filters in both rigs.  I am studying the various software packages out there (especially Wes's LADPAC).  I hope to get rid of the ripple.   

In most of my contacts with these rigs, I end up describing the circuit and its Indian origins.  Most people are really fascinated.  Yesterday W1IDL in Michigan suggested that I contact my Indian friends and get some assistance in making some Hindi or Urdu labels for the rig and the controls.   I think that is a very cool idea. 

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Farhan's New Design: A General Coverage Transceiver: The Minima!


The homebrew phone QRP community has been waiting anxiously for the unveiling of Farhan's new design:  The Minima.  It is a general coverage transceiver with many innovative circuit features.  It has an Arduino in it and an Si570. Farhan's write up of the design process and the construction of the prototypes is really interesting.

http://www.phonestack.com/farhan/minima.html

I've built FOUR JBOTs and TWO BITXs.  I even built Farhan's Subway Sandwich Straw signal generator.   So even though I've been trying to keep my rigs all discrete,  I know I will build this one too. 

Three cheers for Ashhar Farhan!  Viva La Minima!

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SolderSmoke Podcast #157: Peter Parker on Phasing Rigs


SolderSmoke Podcast #157 is available for download.
http://soldersmoke.com/soldersmoke157.mp3

December 27, 2013

-- Santa Report:  Rigol Scope at SolderSmoke HQ.  Kites at VK3YE.
-- Project updates:   Bill's BITX 40/20 build. 
-- Peter finishing up BITX40  (in a big box)
-- BITX 17 (5 watts SSB) works JA, ZD7, ZS!
-- The mystery, elegance, and gentleness of phasing SSB
-- Phasing explained in 1970 ARRL SSB book
-- Phasing SSB: From Hallicrafters HT-37 to SDR
-- The SP5AHT Phasing Rig
-- I & Q for you:  The Binaural Experience
-- Direct Conversion receivers and Software Defined Radios
-- Simple DC receivers plugging into sound cards 
-- The joy of receiver building
-- 144 MHz aircraft bounce (Melbourne to Sydney)
-- VHF Across The Great Australian Bight  

HAPPY NEW YEAR TO ALL!




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11 MHz IF for new BITX 20/40 Dual Bander? Also: Cabinetry and Socketry

I am gathering parts and ideas for a BITX dual bander (20 and 40 meters).  I know Farhan used a 10 MHz filter for his "Simple SSB Transceiver."  But I was thinking of going a bit higher, to 11 MHz. This would allow me to run the VFO from 3.175 to 3.355 for 20 meters, and 3.695 to 3.875 for 40 meters. I'm hoping that I can do this with one single VFO (Farhan used two VFOs), perhaps with a reed relay switching in some additional capacitance for the other band. I'll also follow Farhan's lead and switch the Low-Pass and Band-Pass filters with DPDT relays.

I set up a simple spread sheet and looked at the VFO harmonics to see if any fell within the desired tuning ranges.  That looks OK. I have not looked at mixing products between VFO and BFO.  What do you folks think?   Would the 11 MHz IF for these bands work?  Or are there evil birdies lurking in my future?

I've gone ahead and bought another wood box for the new rig (I didn't even have to suffer through a second visit to the crafts store -- they are available on Amazon).  I also got a roll of copper sheeting at Home Depot.  This time I will prepare the box first, lining the inside with copper and preparing all the "socketry" (George Dobbs' word) before putting the PC board in.
 
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Standard Computer Crystals for 17 Meter SSB VXO and IF Filter


Pete Juliano, N6QW, is an electronic  genius.  The ideas in his SPRAT article will be of great use to all those who share in Doug DeMaw's devotion to VXOs and reluctance to spend money.  I'm really tempted to go back and re-do my BITX using Pete's 11.52 MHz computer crystal super-VXO and 4.9152 IF (I could then take my expensive 23.1 MHz crystals and put them back in my Doug DeMaw Barebones Superhet).  I also like Pete's DPDT reed relay crystal switcher too.  Three cheers for Pete Juliano, Doug DeMaw, and SPRAT!  And thanks to WB9FLW for reminding us of Pete's articles.

Hi Bill,
 
Your BITX17 really has me fired up! I came across an interested Super VXO by Pete N6QW for use on 17 Meters.

He uses standard computer xtals (4.9152 MHz for the IF) and (3 - 11.520 MHz freq doubled in the VXO)

This gets you on 18.120 to 18.150 using these two standard xtals.

See Link Below:
 
http://www.jessystems.com/SPRAT%20Article.pdf

http://www.jessystems.com/Images/23%20MHz%20VXO.jpg



Thanks for all your efforts they are much appreciated!!

Best Wishes,
Pete WB9FLW
 


Our book: "SolderSmoke -- Global Adventures in Wireless Electronics" http://soldersmoke.com/book.htmOur coffee mugs, T-Shirts, bumper stickers: http://www.cafepress.com/SolderSmokeOur Book Store: http://astore.amazon.com/contracross-20

SolderSmoke Podcast #156 -- Special Echolink Interview

 
Podcast #156 is available: 
http://soldersmoke.com/soldersmoke156.mp3

Special hour-long interview with Peter Parker, VK3YE
-- Early experiences with radio
-- CW
-- DSB Gear
-- Simple gear, and gear that is TOO simple
-- VXOs, Super VXOs and Ceramic Resonators
-- Building receivers
-- Chips vs. Discrete
-- Making the leap to SSB
-- The Knob-less wonder and the BITX
-- No need for a sophisticated workshop
-- Advice for new phone QRPers


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