I hate soldering
user8.bearblog.dev
user8.bearblog.dev
For anyone reading, the key is to invest in a proper stereo microscope and a decent fume extractor.
I recommend this one: https://www.strangeparts.com/a-boy-and-his-microscope-a-love...
If you're up for a bit of a bonus round, I absolutely love my Pixel Pump. https://shop.robins-tools.com/products/pixel-pump
I picked up a used Ninja toaster oven and hacked a https://reflowmasterpro.com/ to it. I also modified the plans for Stencil Fix to make it substantially bigger: https://www.youtube.com/watch?v=Am3ztQIkss0
So, I do a fair bit of both reflow and hand SMD soldering at this point, depending on what the situation calls for. It's great fun.
Edit: For a specific recommendation, look for the Geeboon TC22 on AliExpress or Amazon. Don’t forget the tips, you may need to get them separately.
Im a rank amateur so take what I said with a grain of salt. With that said, I have made several cool things in my life that many people've said I could charge money for. I guess you can't really see the mess I made when you can't look inside the housing :)
I've purchased it from the GEEBOON Store on Aliexpress (no affiliate or anything just looked up my order history):
https://geeboontools.aliexpress.com/store/1103439446
All being said you might not be comfortable with supporting the Chinese clone industry, and I can understand that.
(My bullshit detector is making some rather profound gurgling sounds.)
edit: Seriously, my dudes. Links, or it never happened. Anecdotes are just anecdotes. Anecdotally, my soldering iron heats up very quickly as well and I'm very pleased with this, but I'm not making a claim that it heats to an exact, unspecified user-selected temperature in 3 seconds. If you want to present a benchmark, then please present the bench -- with the mark.
It has a 240W power supply, so it's not just marketing.
Metcal Fixed Temperature Induction soldering irons. Still the gold standard after decades because instead of using PID with a heating element and sensor, it exploits the curie effect. The tips are made of a special alloy that is only magnetic until a certain temperature after which it doesn’t absorb any more energy from the PSU, which just dumps a constant 25Mhz signal into the tip keeping it at the fixed temperature.
When their patents expired a couple of Metcal engineers left to found Thermaltronics, which makes the same soldering iron (they’re even tip compatible!) for 2-3x cheaper. They’re still more expensive than hobbyist soldering irons but well worth the cost for anyone doing a lot of soldering. The Metcal power supplies are beasts though so you can easily pick up a 20 year old unit for a couple hundred bucks on ebay and it’ll run till the apocalypse comes home to roost. I have an old unit made in the late 90s that is still going strong.
Though from looking at some of the chatter about it online, this is only one specific tip they make under ideal conditions, and it seems like often they overshoot the temperature by more than a little on warmup (though this will be the slowest to recover with the tip just held in air as opposed to when actually soldering). Either way, I've used similar products and this kind of speed isn't a crazy suggestion to me.
My TS101 heats up in like 3-4 seconds (330c) on a 100W laptop PD USB C. It doesn't have a lot of mass but it's perfect for microcontroller related stuff. Just not power electronics.
Live demonstration: https://youtu.be/BepVEStPmJk
I have a Hakko FX-888D. It's pretty good, although I wish there was some way to switch tips that didn't involve letting it cool down to a safe handling temperature.
I am curious what you mean by rework tweezers. Link please!
Another link for folks: https://www.amazon.ca/dp/B077BQWMTY
I go through these for solder flux removal like crazy, in combination with an aerosol can of MG Chemicals 4140-400G. Sadly, I think that stuff is unobtainium now.
Hakko FM2023-05 Mini Hot Tweezers Kit or Hakko FX8804-02 Hot Tweezer for Hakko FX-888 for example.
>> I wish there was some way to switch tips that didn't involve letting it cool down
I replace tips while hot: the sleeve is not hot.
I don't know. I've got my station, not a bad one: bought it with the help of a buddy who's very good at soldering. He tried to show me. I've got no choice: I own an old vintage arcade cab from the mid 80s and it's located in the middle of nowhere, in a rural area. So I have to fix it myself.
And oh boy do I suck at it. I watched vids, countless Youtube vids. It's been 10 years and everytime I need to solder something, I still suck at it.
I've come to terms with the fact that there are some things I'm good at and that soldering is never ever going to be one of these. And it's okay.
And I'm amazed by people who can solder properly.
I have never used sandpaper on electronics, but I perhaps similarly use a fiberglass pen. Total game changer for getting old cartridge pins to read again for SNES and GBA games and such. Highly recommend picking one up.
I used to watch people with fancy-looking soldering irons working quickly on stuff in repair shops. Some of that was technique ("it is a poor craftsman who blames his tools"), but some of it was definitely the irons they were using.
And yet: My first soldering experiences were not very good.
The first soldering irons I had, starting 30 years ago or so, were resolutely terrible. I eventually gained a whole assortment of them -- big, medium, small, and ginormous. They were all awful in their own unique ways, and they all lacked a thermostatic temperature control.
I got better solder (I've become a big fan of Kester 44 in a eutectic 63/37 mix) fairly early on, which helped a ton.
Later, I got better soldering irons.
A dozen years ago I bought a Hakko clone temperature-controlled soldering station from an American distributor. It took genuine Hakko tips just fine, and it was better.
5 or 6 years ago, I got a Pinecil v1. I now own two of them: I bought one as a spare in case one broke somehow (it's hard to fix a soldering iron without a soldering iron), but they've both been reliable. It's miles ahead of what I've used before. The v2 should be a bit better yet, but I do not own one of those. They're rather inexpensive.
These Pinecil irons weren't available a decade ago. I wish they had been.
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Anyway: With the tools decently in-check, my technique got a lot better in a big hurry. I thought I'd learned to be pretty OK at soldering before with my lackluster tools, but the Pinecil iron (and its consistent temperature, sleep modes, and very quick heat-up) helps me get much better results -- faster.
And it's hackable, which (to me) scores some geek points.
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I've come to think that anybody can learn to solder electronics with reasonable proficiency. I've taught people to solder who were sure they couldn't do it, including people who started off by being surprised by how hot the hot-bits are and walking them back from the ledge.
As with many other skills, it mostly just takes practice. But that practice should be inconsequential -- it's a lot easier to learn when the result is completely unimportant and inconsequential than on a dear 40-year-old arcade board.
To that end: There's ridiculously-inexpensive kits these days that primarily exist just to teach soldering. I learned through-hole the old-fashioned way (by failing), but back then cheap kits didn't exist at the level they do today. :)
If you can tell me more about the specific problems you're having with soldering, I can provide links to specific, specific soldering kits that may help.
(I can provide hands-on help, too, if you're not too far away. No big deal.)
Arcade cab would be located in France, on the french riviera, 45 minutes from the closest highway, in a sea-side but rural (lots of vineyards) area.
But I want to thank you very much for the explanation and offer to help!
Nothing in particular: typically it's the wiring around the joysticks and buttons that gives me the most trouble for the wire harness kinda "weighs" on it, then kid play like maniacs, and eventually a solder fails and has to be redone.
Now on the plus side I did buy a chinese JAMMA harness and did manage to solder everything but the result is fuglier than fugly: that's why I say I'm really bad at it. Basically I can do "gross" soldering, but not nice looking, precise ones.
I'll practice a bit though after the kind words from everybody.
So... joysticks, and buttons. Don't those have microswitches? With connectors on each switch?
Crimping the correct mating terminals can be more reliable than soldering. (Crimp-on connectors are what keeps airplanes up in the sky.)
Perhaps the right answer to soldering arcade controls is to stop soldering altogether. :)
Solder does have a big advantage, though, in that it is very universal. Any random copper wire can be glued onto any random terminal with molten metal, and that's pretty neat because it doesn't take any specialized parts or tools to make this work.
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Anyway, I promised to help. For that kind of soldering, my usual workflow goes like something like this:
1. Cut off the end of the wire (for nice clean copper) and strip back the insulation a bit.
2. Heat up the iron and prep it (apply solder, wipe it off along with oxides, maybe apply more solder; it should be shiny and wet, but not with globs of stuff on it)
3. Tin the exposed copper wire. Heat it up while applying solder, until the solder flows through the strands freely. Too hot/too long means that a bunch of solder flows down past the insulation, which isn't ideal. Too cold/not long enough means that it kind of globs instead of flows. Perfect is somewhere in the middle. Set it aside to cool down.
4. Tin the terminal. Just heat it up with solder applied, until there's a neat little easily-flowing pool of it, and then let it cool down some. If the solder's flux core starts to burn, you're taking too long. If it blobs, it's not hot enough or not clean enough. Somewhere in the middle is, again, perfect.
5. Stick them together. Place the tinned wire on the tinned terminal so they "want" to rest together naturally (there's jigs that help with this kind of fixturing). And then, heat up the combination of the two with the iron. The solder that's mixed up with the wire will become one with the pool of solder on the terminal, and that's good. Often, there's no additional solder required for this step (but sometimes it's useful to add more). Again: Too hot and the solder flows away and the flux burns. Too cold, and it looks weird and instead of glassy. In the middle is good.
6. Remove heat. Don't move anything but the iron; just let the temperature drop until things turn solid.
Anyway, wire is easy to find. And a bag of cheap switches shouldn't cost too much. :)
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Now, that said: I live in the States, where we never adopted RoHS. It's very simple for me to get solder with lead in it and that's the usual thing to see on any repair bench.
Lead-free solder is relatively unusual, and is not something I care to work with any more than I have to. I do not enjoy encountering it during repairs, mostly because it seems like it takes an astounding amount of heat to get it to do anything but laugh at me.
And really, for occasional hobbyist use, lead isn't a problem: Wash your hands afterwards, keep your work area clean, and don't let kids play with it. :)
What kind of solder are you using?
I cannot stress enough that this is not a trivial detail. I spent my whole life thinking that I was simply terrible at soldering. Then I got a proper stereo microscope and now I feel like a freaking ninja.
Seriously, you do not know if you're bad at soldering until you've spent an hour with a proper STEREO microscope. All of the folks saying "just get a 10x magnifier loupe for $5" are completely missing the point.
If you give your brain a stereo view, you will suddenly be like Neo in the Matrix. Thank me later.
Higher magnification variants (8x etc) are not nearly as comfy. They get quite long, heavy and expensive. I tried them and did not like them nearly as much. Also beware of short viewing distance, ultra-cheap products that are just a single lens element per eye.
Hopefully it'll bring my soldering to the next level.
Can you recommend something for "helping hands"?
And thank you! I've been looking for a recommendation of a stereo microscope for a long time!
There is a similar vibe with TIG welding as well.
# Soldering iron
I'd recommend the Pinecil V2 with IronOS. https://github.com/Ralim/IronOS
# Solder fume extraction
I've built a simple fume extraction with an old plastic case, a 120mm fan and a sheet of carbon filter attached to a 120mm dryer / air conditioning hose. Around 15$ and good enough for soldering from time to time.
# "Microscope"
I simply use a strong (10x) magnifier glass with a LED ring (around 15$ on Amazon). I can't tell you how often I also used this thing for other purposes.
# Desoldering Pump
Because I needed it (beginners won't) I bought a ZD-8965 for 100 bucks and I'm very happy with this thing.
I have whole list of cheap beginner to intermediate equipment, that'll do until you solder (semi) professionally.
In general, the danger with soldering fumes is not the average concentration in the room in which you're working over the duration of a session, it's inhaling the very high concentration of fumes right as the soldering happens.
We could debate how much damage this is going to do and whether it's worth worrying about, but there isn't really room to debate that ventilation alone is going to do absolutely nothing.
Well ventilated area + fan is probably okay, but you need the fan right next to your soldering iron or it needs to be a gigantic fan otherwise, again, you are just going to inhale most of those fumes.
They also contain a 120mm fans, a carbon filter and NO way to lead the fumes out oft the window.
However, you may be right that professional tools are the better choice in this case
The issue is that you've concluded that a $50 fume extractor qualifies as spending real money, when in fact you're still well into the realm of cheap and crappy. What you're describing is quite literally a PC fan blowing into some foam. It's better than nothing, but you'd still be better off with a [real] fan and an open window.
Good fume extractors cost real money yet will seem very cheap if you are running the numbers while waiting for a chemotherapy appointment. JBC makes several, and they are FAR from the most expensive available:
https://www.jbctools.com/fume-extractor.html
Its your life, but IMO you really don't want to fuck around on this detail if you plan to do a lot of soldering. You might not care, but there could be people who love and rely on you to not try and to save a few hundred bucks on the thing that keeps you from premature death.
They even come with these compatibility wikis of what PSU or bank to buy.
I rarely desolder, but I can easily justify a hundred bucks if I can avoid all that hours of work, where I'm also risking damaging an IC, lifting a pad, or something else...
Small, silent and reliable for cheap money.
I did some minor mods and use these de-makeup cotton pads because they are cheaper but so far a great experience.
Another important note: don't go cheaper here. These manual desoldering pumps (<30 bucks) are pretty bad and the other zd-... Arent worth the money.
I went and bought the "proper" Hakko FR-301 and it's an improvement in every way. Well worth the extra $100, and made me wonder why I ever wasted my time with the cheap versions. For whatever reason, the 100V Japan voltage one is about $50 cheaper than the 120V American one, so that's the one I got, but I already happened to have a source of 100VAC handy.
The hakko is way better quality but beneath the price (i have no idea where you got one <300 bucks) there is another disadvantage: there is no Station and the hakko is heavy, so if you need to desolder for more than 30 mins I found it getting uncomfortable pretty quick.
Besides that the hakko is a good device. Too expensive for me though
https://www.amazon.com/Hakko-FR-301-Desoldering-Tool/dp/B07B...
I think the one I had was the ZD-917, which I don't even think anyone makes anymore. Assuming the ZD-8965 made some material improvements, it looks like it has the same style of reservoir with the internal spring, which is one of the main issues I had with it. I found that the spring would become eventually become trapped inside a large solder blob, making cleaning difficult. Then, you have to line up the filter and keep everything together while reinstalling it. For whatever reason, the tolerancing on mine made this especially difficult, and I eventually broke the glass tube when trying to reinstall it (replaced with an aluminium tube). Hakko version has no internal spring, and has enough tolerance to easily remove the reservoir.
The rubber grommet on the front also eventually lost its grip around the small brass tube that comes out from the iron, so it would leak and not suck as hard. The hakko version presses its grommet against a flat plate instead, so that doesn't happen.
Still, both are much better than the "squeeze bulb" style desoldering iron I had before them.
JBCs stations are expensive though, but you should be able to use just the heat deflectors and a pair of tweezers, rather than a vacuum pump as long as you already have a hot air station.
If you need a reflow oven, that's a different thing altogether, and you should probably repurpose an old toaster oven.
I delivered production boards (small run) that looked and worked great using a non-adjustable $10 30w iron (interchangeble tips, though) and a desklamp with the builtin magnifying glass.
You can't really tell the difference between a cheap setup and the expensive solder station I used in a previous employment.
"Can't tell the difference?" is not true, once you're dealing with small enough parts.
Can I use a magnifier to solder 0.4mm pitch parts? Sure. Would I prefer a binocular microscope? 100%, every time. Both usable, not the same.
Yeah, but that's the qualifier - "small enough parts". Go small enough and even an expensive iron isn't going to help you.
Effectively impossible without a stereo microscope.
I'm not trying to proof you wrong but sometimes good enough will do. However, good tools are worth the money most of the time.
1: https://www.computerbase.de/forum/threads/t480s-backlight-si...
Edit: Apologies, in my head I was replying to a different thread. I would still say that if you're working at that scale you should deploy appropriate tools to make the job simple, fast and repeatable.
Doing work on extremely small parts without a stereo microscope offers extremely small returns once you've finished proving your point to nobody watching.
I design and prototype devices for a living. I use a combination of reflow and hand soldering depending on which stage of the process I'm working through, and/or how much trouble I might be having with some aspect or another.
For example, there have been times where I've successfully dead-bugged QFN-24 to a PCB, allowing me to verify a fix and save myself several weeks and several hundred dollars.
All of these tools are only expensive in a vacuum. The moment you're relying on them to create products, and assuming you value your time correctly, you can see them for what they are: usually one-time fixed expenses that end up saving you thousands of dollars in board revisions that you never had to order.
Meanwhile, lots of people use cars as part of their job. Even a shit car costs many times what my soldering tools cost, and nobody would show up on HN to imply that they don't need a car.
Funny you mention that, because I just instructed someone how to solder for the first time and on probably their 4th joint they needed the desoldering pump because they added too much solder. I think it's easier to teach a beginner how to use a desoldering pump than how to use desoldering braid.
However, this is also something where it might pay of to buy a good one (ENGINEER SS-03) instead of a cheap knock-off in the long term.
Too much or too little heat/time/solder/whatever? No worries; just move on to the next joint and try to get it a little bit better than the ones before.
This tends to mean working with practice materials instead of with real boards that actually have some future value, and that's quite OK. The practice has value in and of itself.
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I can't imagine having to stop all forward progress and learn how to fix a thing after so few tries of something new.
We don't throw kids straight into the batting box and watch them strike out ("Sorry kid, maybe you can try again next weekend!"); we instead provide time and materials for them practice with first, let them make mistakes over and over again, and focus on encouraging the successes.
And then -- after enough practice that a good amount of familiarity is instilled -- they eventually get to go play a game of baseball.
Soldering should not be different in this way.
I should have bought my Hakko fr301 way earlier than I did.
I can absolutely see how someone would hate soldering without good equipment.
You need a Pinecil to repair your Pinecil and don't forget plenty of spare parts.
Any modern or new stuff (i.e. the smallest components) has the whole supply chain designed around lead-free. Lead free boards, using lead free chips, which are meant to take the heating profiles for lead free solder. If working in industry, you'll need to learn lead free eventually, so you had better do it from the beginning.
I save my leaded solder for old radios and retrocomputing, but as I would rather not spread lead dust around my work area, I only ever use lead-free solder paste for modern work.
Leaded work is easier, a little, but not so much so that I wouldn't consider not learning lead-free.
Dios mio, what an absolute pain soldering is without something holding everything in place. It's literally a night and day purchase.
The biggest challenge I've had in welding aluminum as a hobbyist is that I rarely know what aluminum alloy I'm working with. Most things don't say what type so we're left guessing what filler is appropriate. If you use the wrong filler it could be prone to cracking again in the future.
Also for thicker aluminum preheating is very important. The aluminum transfers heat away very quickly so you get cold lumpy welds if you don't have both parts pretty hot at the start.
But strength is important for bicycles. And aluminum bike frames are already built down to a given weight -- they don't have much in the way of extra strength to lend.
The heat of welding permanently changes the way the surrounding metal works. That's not ideal for safety devices like a bike.
Heat treatment can be done later (and is done when aluminum frames are built), but that's a different process to learn and it's pretty far beyond the gamut of what most welders are willing to deal with. Most welders don't have the bike-sized oven that's needed, let alone the training and experience to get it right, and with a sample size of exactly 1 it's a risky operation. It's easy to get things like warped tubes out of this process and turn a beautiful piece of wall art into scrap metal.
(for SMD).
I prefer my Hakko,
(and THD).
However, unless you're making simple circuits, avoiding SMD means that you are effectively constraining yourself to about 20% of the ICs being produced today.
It's also simply a fact that producing a product using THD components is a massive headache. It takes far more manual effort, most contract manufacturers will charge a pound of flesh, and the components are significantly bigger.
If none of those resemble problems you have to deal with, then THD is likely going to be great fun for you.
Instead, I have been testing the waters my SMT PCBs having them also assembled now when I order them. It kind of saddens me though.
https://hackaday.io/project/197868-sub-surface-simon
using no magnification, and only cheap soldering tools.
You can and should be able to solder SMD with only an iron and tweezers. Not everything; not the smallest stuff, but you don't start there. My sweet spot is 0805 or 0603 size components and 1.27mm pitch SOIC parts, which I actually find easier to solder than through hole, because you never have to flip the board over.
My recommendations for most useful tools are a Pinecil, a few packs of cheap flush cutters from Amazon (even expensive ones get dull or break), a cheap pair of sharp tweezers [1], and a tube of flux [2]. You don't always need extra flux if using flux-core solder, but enough flux can turn even the crappiest solder joints into good ones.
Most of the rest of the skill comes from being able to brace your hands against things to get fine control, while being far enough away to not burn yourself.
Magnification unfortunately comes down to how good your eyes are. If you can see your fingerprints clearly at arm's length, your vision is already good enough. If not, no big deal, get a cheap microscope like this one first [3], or a loupe, or some strong reading glasses, or one of those headband visor things with lenses in them.
[1] https://www.digikey.com/en/products/detail/seeed-technology-...
[2] https://www.digikey.com/en/products/detail/chip-quik-inc/SMD...
People are so quick to get upset when they learn that other folks prioritize different things than they do.
As I wrote about it in my comment, I started to list some tools that I have come to appreciate. I didn't even mention my pick and place or my CNC. Does it upset you that I have these, too?
Quite simply, you don't need to buy anything to practice this skill, but a stereo microscope is strongly recommended to anyone doing this multiple times a week.
A couple years back, I bought a low end no-name temp controlled iron, and it worked ok. A little better than the wood burner, but nothing great. Then about three years ago I bought a used Metcal SP200 Smartheat off of eBay for about $120. The tips are pricey (although Thermaltronics makes clone tips that cost less than genuine Metcal tips) but the difference in soldering performance is like night and day, even when one already knows how, but has just never used the really good systems.
Over the last 30 years or so I have very (very) occasionaly soldered some basic stuff to build simple IoTs. Everytime this was (and is) a struggle (with a cheap equipment, no practice etc.)
And then someday I discovered on Youtube a video of someone resoldering some elements (chips, flat resistors, ...) using some kind of gel and a heat gun (?) and it was mermerizing. So clean, so fluid -- seriously a relaxing experience
The cheapest Hakko iron (888?) and a flat fine tip works great. I have a stereo microscope but I only use it for checking defects afterwards. A 10x magnifier works just fine.
Everything is lead-free surface mount now. Solder paste, stencils, reflow ovens. Hand soldering is precision temperature controlled irons, hot air rework stations, magnifiers, cameras, and exhaust fans. The tools are more complicated, more expensive, and better.
One of the lessons of surface mount work is that you really can move your fingers a thousandth of an inch. But you need magnification to see what you're doing.
I'm encouraged to see more hobbyists going surface mount. In my TechShop days, I was the only one doing surface mount. Everybody else was using 1980s 0.1 inch spacing DIP components. That's a US thing. If you learn to solder in Shenzhen, you start with surface mount.
But yeah, everything's smd now and stencils and PCBs are cheap enough there is little reson to not go that way
I paid like 40€ last week for 5 smaller PCBAs, 0402s all nice and correct, jumpers, all my ICs. Don't have to worry about diode orientation or solder bridges. Just complete boards shipped to me. Easily beats my own labour rates.
The annoying part is getting the bom and component placement files correct. I use kicad since it's free, and there's solid instructions from most houses on what they need.
There's also a suspicion that JLBPCB may be encouraged to do this by the Party, to discourage other countries from maintaining an independent prototyping capability.
It's usually an options at the assembly house you use, bundled with the pick and place and soldering process.
Honestly it might just be worth doing it yourself if it's a few and you only need something like acrylic. Use a good flux off and degreaser, get the board spotless, and use something like this https://no.rs-online.com/web/c/facilities-cleaning-maintenan...
Leaded solder is easier to work with for personal projects. Careful hand washing and handling is required, but it's easy.
I also recommend people go to surface mount, but I don't recommend beginners immediately go for expensive microscopes and reflow ovens. Stick to 0806 components or larger to start and you can populate a board without any binocular microscope or magnification as long as your eyesight isn't too bad. I can populate 0402 components without magnification all day long.
For small boards, reflow on one of those cheap hot plates. They're small enough to back in the drawer when you're done.
Surface mount doesn't have to be hard or expensive, unless you're doing designs with ICs that come in very fine pitch packages.
it really isn't if you use a nice modern lead-free solder. you'll need your iron to be about 20c hotter, but it's not like the early days of lead-free where it'd flow all weird.
In general the formulation is more important than the brand, and the formulation isn't /that/ important either. If it's lead free, has a rosin core, and comes on a spool, you can probably use it.
A lot of initial soldering mistakes are from using incorrect temperature, not cleaning the surfaces with flux, or from using wrong tips.
You do get better rather quickly, especially if you ask for help!
I mean, a smell is temporary unpleasant but what happened to my health here? I am a former smoker, so I guess damage was previously done there.
This specific iron is a portable one (I had it hooked up on a powerbank), with temperature control and FOSS firmware. It was lead-free soldering tin with flux included. I held the item with my hands, so maybe it did get greased by skin oil, who knows. I had a lot of help from other more experienced people. They guided me through it, with a lot of patience. Without them, I'd been stuck way before. But even they were like... maybe this isn't for you.
My motor skills are just not that good (possibly related to my ASD or father having MS), and I notice that with everything where I gotta use my hands. From elementary school handwriting (learning to write) or even before with tasks like eating, putting clothes on, etc. That is as far back as I can remember. Ever onwards, things like sports. I am simply physically clumsy, and it requires a lot of effort and practice to get on a decent level. Can I do it? Can I hand write? Yes, I can. But it requires a lot of practice to get to a decent level. I can satisfy my wife with my hands though, probably my most important skill I am grateful for. No joke, btw. Although the fact I can, say, give myself food (eat) is probably more important, survival wise.
The one skill I would love to be able to achieve throughout my life, would be programming, not soldering. I mean, something like soldering is awesome, I am a sucker for right to repair, second hand, reusable hardware, etc something like programming comes close to, say, Lego. Though programming wise I am not sure nowadays, given AI. And there too, I tried VB, TCL, C, Java, Python. Multiple Python courses, too, from MOOC, books, to a professional teacher in a classroom. I've been (and am) able to make small adjustments to code, and do some shell scripting (and mIRC scripting, but that was roughly 30 years ago). That's it. That is without AI, I haven't bothered with that. I like to run LLMs locally.
Thermal mass is important, please have a look at my other post for a recommended tutorial set. Silver based solders like SAC305 will also stick to most plated pin types.
Sometimes people are given a BS fools errand, and convince themselves there is some hidden secret to workmanship. You would have been better off with a $25 30W Weller iron and $7 flux+Wick kit off Amazon for through-hole style PCB kits. =3
Flux core solder is crap. It doesn’t contain enough flux to begin with and since it’s inside the solder, it can’t actually do the work it’s supposed to. You need to apply flux separately before soldering, and lead-free solder used to be harder to work with. That’s the leading mistake I’ve seen frustrate beginners.
Steady hands aren’t a requirement unless you’re doing very complex repairs like threading wire through a BGA grid. You’re supposed to use the surface tension of the solder to snap the component’s pins to the PCB pads. After you snap two corners to the pads, you can just glide a tip with some solder over the rest of the pins and the heat and flux do the rest of the work (the flux’s main job is actually changing the solder’s surface tension to make this easier and more predictable).
I remember I was in college when I tried to solder some jump points on my xbox to enable me to mod it. I went in expecting electronics to look like what they did when I was growing up (I used to take everything apart, but I usually was able to put it back together). I open it up to find the jump points are smaller than grains of sand. It left me very much wanting some sort of mechanical aide to help. I occasionally watch videos of people repairing gpus or mbs and I cannot imagine how they do it.
Custom PCBs are even cheaper here than in North America, and longer workdays meant I had less time for hobbies. That probably made me double down on my choice.
I don't own much fancy equipment, just a cheap hot air rework station. I've found that mixing in fresh gel flux into my solder paste to get the right consistency made a big difference, enough that I never really needed more tools.
After doing that, I just sort of smear some near-ish the pads (perversely, often using a THT resistor), drop the parts in approximately the correct position with tweezers, and heat it up gently. Surface tension handles the rest. Once in a while, an 0402 resistor shifts out of position, but otherwise it just works. I'd probably need better tools for BGA.
What I love best is that SMT microcontrollers can be very, very cheap. I like the attiny10 (36$ for 100 computers! What a wonder!). There are plenty that are under 10 cents each, but I rather like AVR assembler, and their datasheets are very good.
Level 1 is just being able to take two wires and connect them, reliably and cleanly. That's already immensely useful and requires very little skill and equipment. $50 gets you a nice soldering pen, another $50 gets you some tweezers, some flux and a roll of solder and you're set. Work near an open window and have a desk fan blow the fumes away from you, and you're already being more responsible than most people.
Level 2 is something like through-hole soldering, soldering wires to pads, the kind of stuff you'd do working with ESP32, building RC cars, FPV drones or custom IoT devices. Still easy to learn, just a few simple rules. Work quickly, know when to give up and let things cool down. Avoid touching the expensive e-ink display with your soldering iron. Get something better for fume extraction, spend 10 hours soldering and bam, you're better at soldering than literally 99% people out there, you can build and repair all kinds of stuff. This is where most of the cool YouTube stuff happens, your rctestflight and Tom Stanton and Stuff Made Here and Styropyro. You can do most of that with $300-$800 worth of gear, depending on how brave you are.
And then you can worry about SMDs and reflowing and other arcane stuff, or decide that you probably won't need it.
Beyond the soldering iron, my recommendations that are not too obvious at first sight:
* solder paste (verrrry useful, just get it, and use it)
* something to purify air that _pulls_ it (a reverse fan) with a carbon filter (~30 USD)
* magnifying glass, hopefully attached to a ring of LEDs + a stand so you can see what you are doing (30-60 USD)
* solder sucker, hopefully automated (5 USD non-automated, 80 USD+ automated)
A random frayed power cord, well, you can dump a ton of heat in it and start 6 times over and it won’t really matter. Worst case you replace some isolation or a warped connector.
Proper order of operations:
(1) soldering iron to metal first to heat up the wire / pad / pin
(2) apply solder at junction of soldering iron and wire / pad / pin
(3) remove solder
(4) remove iron
And the most important basic tip is to make sure you have the appropriate soldering iron tip for the job. Pointy tips intended for precision work don't provide enough heat transfer for soldering larger pads or wires.
When I first tried my hand at soldering I was using the "butter knife" method: apply solder to the iron, then try to smear it onto the wire like spreading butter with a butter knife. Of course the solder would never stick to where I wanted it to go. I had to learn that solder goes to where the heat is, so I instead had to heat the components or wires instead and then feed the solder onto the hot components. I also had to learn that a soldering iron is not a pencil, sometimes even when doing small parts you want to use the large tip. Don't try to tell the solder where to go, instead apply a big blog and watch it snap into place on its own.
Last year I installed an HDMI mod[1] into my Wii, this has been so far the hardest project. It took me many attempts to get it right, mainly because I was working against the solder instead of with it. But now that I have succeeded I could easily do it over and over again (not keen on the disassembly and reassembly of the console though).
EDIT: while I'm at it I might as well mention the iron I was using: the Pinecil[2]. It's a really neat and fast soldering iron at a very cheap price. Great for people like me who don't want hardware store cheap garbage, but also cannot justify buying an entire soldering station.
[1] https://electron-shepherd.com/collections/kits-mods/products... [2] https://pine64.com/product/pinecil-smart-mini-portable-solde...
It (a good proper flux) is what most people are missing when they struggle with SMD, the flux makes the solder almost magnetic and it jumps perfectly to the pad and the component. Mess up, make a bridge or bad connection? Add more and wave the tip through like a magic wand. Poof. Fixed.
Thanks for coming to my Church of Flux presentation.
Switching from a Weller to a Pinecil was also pretty nice although I'm sure everything I do, I could do with my analog weller.
Use this, stop complaining: https://www.cnx-software.com/2022/07/29/pinecil-v2-soldering...
Pinecil RISC-V soldering iron with the Pinecil V2 featuring a new Bouffalo Lab BL706 RISC-V microcontroller with Bluetooth LE connectivity, optimizations for higher power levels, as well as tentative support for the new USB PD EPR standard (Extended Power Range) working at up to 28V.
It runs IronOS - Open Source Flexible Firmware for Soldering Hardware
Of course a lot of electronics were compliant before 2006, but that point in time marked the moment when even the most suspicious dropshipped Chinese items had to use it and suddenly you needed way more heat to do the same things.
It's OK to have fun with tools.
Still wash your hands after using lead-free solder by the way. You don't want to be eating rosin or copper either.
And copper plumbing is super common for potable water?
And plenty of spirits are distilled in copper stills?
I mean, encouraging handwashing is fine but copper isn't what you need to worry about.
Lead is nothing like that. We don't need lead to survive, we shouldn't put lead in our bodies. Lead is also known to accumulate in your body (especially your brain). Avoid lead exposure as much as you can.
Unleaded solder and a decent fume extractor make the process cleaner. A decent soldering iron and solder wire with good-quality flux (e.g. Kester) makes it faster.
If you'd rather not deal with the iron, you can manually apply solder paste and use a hot air rework tool or even a heat gun (careful!) to melt it. (A proper reflow oven is better, of course, but that's pricey.) This makes working with surface-mount components much easier.
If you'd rather not deal with it at all, have a PCB assembled somewhere else. JLC is pretty cheap, especially on simpler boards.
You can do a lot worse than a $55 temperature controlled hot plate. Plus you can watch the magic happen. Of course that only works for single sided boards. I've been very impressed with the results.
https://www.amazon.com/Soiiw-Microcomputer-Soldering-Preheat...
If you're impatient, plenty of fab houses (like JLCPCB) will do all the soldering for you, for about 0.1 cents per SMD joint or 2 cents per THT joint...
As long as you are not directly inhaling in the flux smoke while hovering over the project, it's not that unhealthy. If you are a hobbyist doing an hour of soldering a week, you probably get more smoke particle inhalation making toast. Or pizza. Or frying literally anything.
(If I was soldering for a living, yes I'd want a really good fume extractor on the bench, though.)
But my first day there, after dusting and throwing cardboard, he asked me "Hey kid, wanna learn on how to solder?" and we spent a good hour going through the basics. That sparked my interest in electronics, and put me on my path the electrical engineering.
I still do a lot of soldering, as I build guitars, and repair audio equipment. I enjoy the tranquility soldering gives me...the things that usually suck, is not the soldering itself, but the environment you work in. You don't always get the circuit boards out. Sometimes you're working in a rats nest. Sometimes you don't helping hands.
Also apparently the word solder comes from Middle English 'soudure' which doesn't even have an L in it.
What you're proposing appears to be some kind of conspiracy of silence where we all notice differences in speech but are forbidden to enquire about them, and I think that's utter hogwash.
> I can see the case where someone is so ignorant that they don't know the basics of how language dialects work
Having a degree in linguistics I would hazard a guess that I probably know more than the average person about how dialects work. I wholeheartedly endorse asking others about how they speak. People absolutely love talking about themselves and their culture, and good-natured interest in others engenders genuine human connection. (Not to mention better appreciation of the dialects themselves, which is a worthy goal unto itself!)
No need to get defensive - I wasn't talking about you personally, in fact you'd be the EXACT person that is the exception to this rule! But asking random people "why do you pronounce words this way" is bound to be (a) fruitless (do your non-linguist friends generally know the origin stories of every dialect difference between them and whatever the "standard" version of the language is?) and (b) possibly a microaggression/microinsult because it implies that their dialect is somehow "lesser" than the one you're comparing it to.
For example, if you have Indian colleagues, in India or in your country, would you ask them "why do you pronounce (insert word here) differently than we in (insert your home country here) do?"
It might come from a place of genuine cultural interest, but I wouldn't expect anyone to assume that.
So that's where I leave this discussion. I've made my point, people are free to choose to absorb it and think it over and incorporate it into their beliefs if they want. If not, not my loss.
I would gently discourage you from assuming bad faith, which is what you're doing when you flag the whole question as rude.
> possibly a microaggression/microinsult because it implies that their dialect is somehow "lesser" than the one you're comparing it to.
I think with these assumptions you're implicitly reinforcing the negative self-perception that many people who speak dialects have, whereby their dialects are something to be reduced beyond perceptibility, and if ever they are noticed, it is an embarrassing social failure.
Silence is not the way to elevate dialects. There is no way to deconstruct the negative baggage around dialects unless smart, self-confident people take pride in their dialects. "Don't Ask Don't Tell" is hardly the way to achieve this. :)
If someone is asked about their dialect, it is generally in good faith. I would not expect them to talk about L-vocalisation around back vowels, but it is a wonderful invitation for reminiscences about their hometown, an anecdote about how their mammy used to talk, etc. This is good. This allows the two parties to bond over some shared human experiences, but it importantly also humanises the dialect.
Assuming the question is an attack, on the other hand, is a highway to responding as though it were an attack, which is guaranteed to result in confrontation. This is bad. The only stereotypes this could possibly reinforce are negative ones.
Honestly 90% as good as my genuine JBC CDB and only costs something like $65 USD.
My 50Euro hardware store solder iron was garbage. Bought one of these pencil type solders for 100 Euro years later and that small thing was 10x better than the heavey shitty hardware store solder iron.
I'm sure a good station makes it even nicer but if your normal iron doesn't get hot fast and doesn't keep it properly hot, you can play lots of guessing games why your stuff doesn't do what that person on youtube is showing you how it should work
Isopropyl alcohol removes all the soldering residue. Personally, all it took is decent equipment and some practice to make soldering enjoyable. It can be frustrating at times, but usually the problem is (lack of) heat, flux or patience.
You can not suddenly be able to replace your PS5 HDMI port if you've never soldered before. Also you need the right tool, a $20 solder is never enough.
Soldering is a skill, you need to practice.
It was a true splurge, but I love it. Warm-up in 15 seconds, and the tips are integrated with the heaters so there's no thermal contact to worry about. Tiny and big tips both work great. You can change tips while they're hot.
At home I have a typical Weller station, and it's OK for the electronics side business that I run, but nothing like that Hakko.
... and I love soldering.
Connectors tho... PITA
[0] https://en.wikipedia.org/wiki/Schlieren_photography [1] https://en.wikipedia.org/wiki/Solid_Air
https://youtu.be/0LSG5uIdqJc?t=190s https://www.youtube.com/watch?v=wUyetZ5RtPs&t=40s
Soldering with an iron:
https://www.youtube.com/watch?v=wvl_KYif9zA
https://www.youtube.com/watch?v=_RXugDd0xik
Drag soldering with a hoof tip iron:
https://www.youtube.com/watch?v=wUyetZ5RtPs
https://www.youtube.com/watch?v=nyele3CIs-U
Hot air techniques (mid size QFN, soic, and other SMD):
https://www.youtube.com/watch?v=v58m-S35s24
Recommended equipment:
WE1010EDU for fine and medium work (remember the 3 second fillet rule)
https://www.amazon.com/Weller-WE1010EDU-Soldering-Education-...
A set of hoof and screwdriver tips:
https://www.amazon.com/Genuine-Weller-WE1010-Soldering-ETSET...
Flux and solder wick for cleaning pad areas on PCB:
https://www.amazon.com/Lesnow-Desoldering-Electronics-Disass...
CREWORKS 858D cheap hot air tool for basic SMD rework:
https://www.amazon.com/CO-Z-Soldering-Temperature-Desolderin...
1. never use metal wool to clean the iron tip coating
2. Before use, clean by dragging a hot iron across water dampened sponge (or paper) to smear off oxidized material.
3. Never use Bismuth solder, it was invented by fools for fools. Also, indium contamination can make you go bald.
4. Your iron should choose one (and only one) of the following
i. Sn63/Pb37 No-Clean eutectic solder for low temperature industrial machinery
ii. RoHS compliant SAC305 Lead-Free No-Clean Solder
5. No Clean means the flux core in the solder may be left on the work. However, it is recommended to clean it off with 99% IPA.
6. Fume extraction blows crud outdoors, and charcoal filters just makes crud smell nice.
7. Practice PCB kits are cheap, and getting 2 in case you cook something by inserting it backwards may be wise.
https://www.digikey.com/en/products/detail/soldered-electron...
Best of luck =3
https://www.eevblog.com/forum/beginners/brass-sponge-has-rui...
Anecdotally, all wool seems to accumulate abrasive crud, various amalgamated solder waste, melted plastics, and trimmed bits of steel etc.
Best of luck =3
The stuff that came with my (apparently genuine) Hakko 599B is non-ferrous (and is therefore not steel). Refills are Hakko part 599-029.
Soldering iron tips are usually made from copper with a thick iron plating. On Moh's hardness scale, iron doesn't care much about what brass thinks. :)
In situations where PCB ground pours removed thermal-reliefs for power handling reasons, mini-cartridge-heaters often simply don't have enough thermal mass to heat an area fast enough without the control-loop missing temperature ranges and or time limits.
Anecdotally, same reason good portable butane catalytic iron units are often superior to USB-C/battery operated units.
Note Zinc contact is restricted in some places, and that ban includes zinc-brass sources. Best of luck =3
The tip on my soldering iron is perfectly fine though.
AFAICT, it works well with all soldering irons. I certainly haven't noticed any detriment to my soldering irons over the >decade I've used it. It really seems to be fine and it sure is simple to use.
(I really have needed to buy new brass wool for a few years now, though. It works, but it is not nearly as slick-and-clean to use as it once was. Sourcing this from Hakko directly seems like a safe route and it's probably cheap-enough -- maybe I'll buy a few refills and have some for the rest of my life.)
There is no such thing as "too much flux" (Actually there is, when doing BGA reflow, but that's advance topic)
(as of 11:10pm PST 2026-05-11, I hasten to add)
I've gotten to 56 without knowing how. It's unclear if that will change now.
But then I had a hardware startup and learnt something about myself.
I enjoy building one or two of something. I absolutely hate building anything more than that.
Hacked the physical: pentastic!
Got the pump-wickin' stickin',
Who didn't turn off the bench?
Where's the 100x lens Gibson?
IC damage and bits of French
Master fine STM RPI ATM 329
Fuckin' A to the Zed
Fill your lungs with lead
Y'all shit's funded by
Venture rebrands for A&I.