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Re: Homebrew spectral analyzer
¿ªÔÆÌåÓýLooks great! ?Not using the modules allows much more layout flexibility. Did you find a 30MHz TCXO? ?Looking forward to hearing how it performs. Nice you have an oven for soldering, that attenuator was tricky by hand.?What encoder do you plan to use?
Will you share this design?
Thanks
On 31 Dec 2022, at 9:29 pm, blackberryer <593799546myl@...> wrote:
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Re: SimpleSA component selection
Hi
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I was looking at the parameter calculation of this LPF recently, and I found the results of your initial design parameters.(https://rf-tools.com/lc-filter/)
However, as mentioned above, the calculation parameters are quite different from the actual components. Therefore, I use ADS to simulate. It can use the device model of murata, so that the calculation should be closer to the reality. I ran into trouble in the simulation, because I don't know which important parameters should be concerned except the S parameter at the cut-off frequency? Like Passband Ripple? Stopband Atten£¿----These parameters are mentioned in this calculation tool() And the performance of this filter should be directly related to the bandwidth in the software? This is the result of my current simulation. I have not replaced the capacitor with the murata model. Because the selection range of inductance is relatively small, I first fixed the inductance value, and then tuned the capacitor |
Re: Homebrew spectral analyzer
Hello
M0wid, you wrote:???At some point very early on I has a problem with a mixer that did not work properly unless DC isolated, so I added dc isolating caps on all mixer ports. So need to add also a capacitor on output 13 of U8?? We? have also a mixer? U11, it's the same schematic that the RF switche. RF SWITCHE? ?with added capacitor The second mixer. Need to add a capacitor?? cdt |
Re: Homebrew spectral analyzer
Well,I see. It seems that C40 cannot be used to replace the additional DC isolation capacitor you mentioned, because there are 3db components in the middle, and the DC component may cause abnormal operation. In addition, I see your positive reply to using a TCXO to drive the four SI4432s. I am sure I will do this.
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Re: Homebrew spectral analyzer
Hi.
A response to various posts in multiple threads, which might confuse! The RF switch must not have a DC path on any of its ports, hence the need for the additional capacitor.? At some point very early on I has a problem with a mixer that did not work properly unless DC isolated, so I added dc isolating caps on all mixer ports.? In hindsight I think that may have been a faulty part but have not checked again.? I just chose a value that I had lots of.? It could be much lower here as the frequency will always be high.? Something to experiment with to see if it makes any difference in practice. If not using the SI4432 module then make sure a capacitor is present between the RF switch that would be on the SI4432 module (for RX/TX) and other parts outside of the module such as attenuators or other RF switches. I used a separate SMA port for the HF and reference as I did not want to load the High frequency range with the resistor network for the reference output, I have a bag of SMA PCB connectors, and am only making one or two.? I think it better to keep them separate. Good to avoid using the pre-made Si4432 modules if you can, but then I would have one resonator or ideally TCXO clocking all four SI4432 rather than four. Interesting to see how your BPF design works out in reality. |
Re: Homebrew spectral analyzer
I hope to see your results as soon as possible. It is worth mentioning that when I measured some other modules in WIFI, I found that the current peak value was only 200~400mA. Therefore, I do not plan to put such a large electrolytic capacitor, which makes it difficult for me to miniaturize the assembly. I replaced it with 47uf or smaller MLCC, and replaced it with DCDC+TypeC. In addition, I'm interested in 4inch LCD, and I don't know whether the code is compatible
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Re: Homebrew spectral analyzer
Be aware that there is a mistake in my schematic, which I really must fix.? The RF switch U9 needs to have a capacitor between the output RF2 on pin 3 and R36.? I used 100nF but its is not at all critical.
-----The added capacitance between PIN3 and R36 needs to be repaired. Is it a DC isolated capacitor? Can C40 replace it |
Re: SimpleSA component selection
Hello Blackberryer,
If you are in China, you will have no problem getting your components, because for me, everything comes from China regardless of the reseller.
Can you tell me which part of the diagram (and therefore on the pcb) should be in 0.34mm. this before doing the PCB at JLCPCB which is also in China and which has attractive prices.
cdt |
Re: SimpleSA component selection
Another problem is TinySA. It seems that the output of GPIO2 is connected to the output of RF switch and connected to HF-INOUT. I guess that it connects the_ OUT and HF_ INOUT shares a SMA interface. This design requires the software to consider the timely switching operation.
The advantage is that you can save an SMA interface, so I don't know why you should consider adding an SMA separately in your design. I wonder if it is feasible to modify your original schematic diagram in this way? |
Re: SimpleSA component selection
Thank you for your answer. In fact, I first noticed SimpleSA when I found your article. Looking at the dialogue in the article, it seems that you are almost finished?
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In addition, I understand that the signal lines on the RF path should match 50 ¦¸. I wonder if you have noticed that there is a very thick line on the TinySA. Look at this figure, the line width is very wide, which should be the line width calculated by the lamination of the double-layer board. If it is a 4-layer board, the structure of the JLC 7826 should be about 0.34mm
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Re: SimpleSA component selection
TinySA and the latest TinySA Ultra are not open source. Like you, I like to make things and learn something on the way. In fact, complete replication has no fun and no useful knowledge.
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Indeed, as you said, Erik Kaashoek is more familiar with its design and understands its concerns. For LPF, I have seen his explanation:
#1845
The original description is as follows: Normal design process for this type of LPF is to first calculate the filter and ensure no capacitor is smaller than 0.5pF Than make a prototype using the calculated capacitors and find the performance is terrible. Next step is to reduce capacitors and increase inductor to compensate for the PCB parasitic capacitance till you have a acceptable performance. With the rather low value shunt capacitors at the extremes of the filter one often experimentally determines that no capacitor fitted is the best solution For a 350MHz low pass filter variable capacitors will be a challenge as anything large size (e.g. above 0603 components) will increase leakage and reduce performance. Only those that have access to 3D field solvers and all S-models of the used components can calculate the components with some chance to be approximate correct. Maybe we should consider using HFSS to simulate the parasitic capacitance of the wiring, so that we can match more accurately, because the parameters in the schematic diagram are biased or have no such value at all.
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For the si4432, I consider placing it directly on the RF board instead of buying the module you are designing. Because it is not easy to buy that module, and even if you buy it, you need to manually modify it. That is very troublesome for me. Moreover, it may be better to re layout according to the reference layout of the datasheet. You can also learn some knowledge from it, but I may have to do more work.
I'm from China. |
Re: SimpleSA component selection
All very good observations.
First of all the credit for the original design goes to Erik Kaashoek.? He developed it much further and much more polished than this project, producing the TinySA and recently the TinySA Ultra.? This was started before the TinySA became commercial, several of us took on the task of making our own version of Eriks original using the ESP32.? John WA2FZW contributed a lot of time improving the software, and Glen VK3PE created his own PCB design.? Unless you particularly want to make your own you would be better off buying a TinySA or TinySA Ultra from a reputable source.? Personally I like making things and on the way learning something.? It is rather boring if something just works first time! I am not an electronic engineer and not trained in RF design - so all suggestions, improvements and even criticism are very welcome.?? The LPF in practice is closer to your second trace with real components, actually a bit worse.? It does affect results at those higher frequencies.? I don't use mine above 150MHz so I am OK with it.? If you can come up with a better design I would really appreciate the input.? The LPF is mainly there to suppress the LO leaking through the mixer when the port is used as signal generator as well as possible alias effects.? No doubt smaller parts would help, but then harder to solder.? I had the idea that this could become a club project so ease of soldering was important.? Even 1206 parts would be too too difficult for many unfortunately. I have not come across RFSim99 before - will take a look at it - thanks. The other limitation was using four of the pre-made Si4432 boards.? If starting from scratch it would be far better to not use these modules and fit the SI4432 directly to the PCB, saving space and allowing the use of one clock source as you suggest.? This would also remove the need to modify the modules with the removal of their filtering.? The separate resonators on each module is far from ideal as they all drift slightly differently to each other. It should be understood however that the frequency resolution of the SI4432 is not that good, and the smallest RBW is 2.8kHz so it is not that critical in most circumstances. I would say the software of this project is usable but still could do with some work.? For example there are no markers on the web page (they are there on the local display), it would be handy to be able to easily use the two outputs as independent signal generators, amplitude modulation of the signal generator would be nice, but it is useable especially with the encoder and sees frequent use on my test bench.? The hardware allows for these improvements but time available for coding does not. I do seem to recall using the impedance calculator on the JLPCB web site for the four layer PCB to get the track width but may not have been consistent in applying it. Which country are you in? Dave M0WID |
Re: SimpleSA component selection
Hello,
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For the components, I found it on E...Y, except the transistor, capacitor and resistor. (Ali....s)
I switched everything in 1206 (Easier to weld) except the inductors that can only be found in 0805.
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I was going to start manufacturing the PCB, but what you¡¯re saying is interesting, and maybe we need to change the width of the tracks in some places for 50ohm?
Thanks for clarifying, then. (May? Highlight on the schematics and put it on this forum) For the filters: filters are made as on the sch¨¦matics? (inductances and capacitors) and?as specified on the topic, the ground? plane is deleted on the 4 layers at this point
This is the first thing that will be welded to test with a nanovna cdt
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SimpleSA component selection
Recently, I saw the open source design of SimpleSA, and I thought it was great.Thank you very much for such an excellent design, which benefits most people. |
Re: What does Reference Generator Out do
#tinysa
/g/HBTE/files/WA2FZW%20-%20M0WID%20ESP32%20-%20ILI9341%20Version%20of%20the%20TinySA/Tiny%20SA%20Operator%27s%20Manual%20%28V2.8%29.pdf
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