2,165 karma · joined August 24, 2009
www.ifixit.com
How and why do things fail? What are the cultures that lead to long-lasting products?
The undercurrent here is that Brand is behind the 10,000 year clock and has a vested interest in making things last a long time.
This book is an exploration of the world of things, how they break, and how people fix them. It's a huge effort, and Part One is right. He's been posting further work on Twitter from Part Two.
He included some sword fighting manuals that I sent that we think are the earliest written instruction guide.
I'm working on fixing the letter now.
We built this tech when having five or six states with bills was exciting. Now, 50 states times two chambers times sometimes two or three bills has become a whole thing to keep track of it all.
Keeping all of these bills up to date across 50 states that change every year is quite the project. It's a pretty manual process right now, alas. I'd love to automate it.
Everyone else: please thread any bill year mismatch / other issues you find here, and I'll fix them!
Yes, we really love the cap. It instantly safes the iron when you're done.
We'll post more documentation on the serial interface, it's pretty straightforward. A temperature control program would be no problem.
In our testing, we rarely need to change temperatures. I think our algorithm does a better job of responding to the power load and flowing heat into the material than other irons. Of course, if you're changing solder then you'll need to change the temperature setting.
We built the web interface with mobile in mind. We just need a mobile browser that supports web serial. Someone else posted a WebUSB polyfill, and I'm going to check that out tomorrow.
The Power Station has a 55 Watt Hour battery, which is where most of the cost comes from. It doubles as a battery bank for your phone or laptop, or any other USB-C devices in your life.
We tried so many avenues to persuade them, from proposing 18650s with built-in safety circuitry to showing the safety system that we designed into the pack. No dice.
There are a variety of safety standards to blame, but the primary one is UL 1642. It needs to change. I'm planning to join the standards body to see if I can shift things.
Our pack is a set of six 18650s welded together with a standard connector. https://valkyrie.cdn.ifixit.com/media/2024/09/10113528/iFixi...
We'll sell replacement battery packs. Or you can make your own.
Preorders start today and will ship on October 15.
Tips we'll have at launch: Cone, Bevel 1.5, Wedge 1.5, Point, Bevel 2.6, Knife 2.5, Knife 1.4.
They'll be on sale in our store on October 15. https://www.ifixit.com/Tools/Soldering_and_Wiring
We will also be selling a complete line of replacement parts.
I'm working right now on our distribution partners, but we'll have a variety of local and online distributors who you can also buy the system through.
Rather than designing it to change tips on the fly, we set up the Power Station to handle two irons, with two USB ports and a mounting socket on both sides.
With 100 Watts of power and an ultra-fast response time, you can flow the joules that you actually need into the material at the temperature you set.
Give it a try! If you still feel like you need a temperature knob, we'll refund your purchase.
https://www.pcmag.com/news/ifixit-new-soldering-iron-power-s...
https://www.tomshardware.com/maker-stem/ifixit-fixhub-portab...
https://www.theverge.com/2024/9/12/24242497/ifixit-fixhub-us...
All of the settings, including the temperature setting, are available in the web interface for free. The settings persist permanently on the iron so you can use it with any USB-C PD power source that you've already got. We worked hard to make sure that the iron works well standalone from the power station. https://www.ifixit.com/fixhub/console
Phone configuration: I agree, that would be nice. If we can find a way to do it from a web browser on a phone, that's our preference. Otherwise we'll take a look at a native wrapper.
A sharp knife is also quite a bit safer than a dull knife. By heating to operating temperature in 5 seconds and rapidly pouring heat into the material, you don't have to hold the hot iron as long. As soon as you're done, pop on the safety cap and instantly shield the hot metal.
Soldering isn't remotely mainstream, and part of that is the quality of tools. We set out to streamline the entire process to make soldering as accessible as possible.
It's amazing how versatile a well designed analog connector can be.
If you just buy the iron, you have access to all the settings in our web console: https://www.ifixit.com/fixhub/console
The iron persists settings when you unplug it. You can change the sleep timer and timeout, set target temperatures, calibrate the accelerometer, and more.
The Power Station is nice to have, but you don't lose any functionality without it.
We really pushed the envelope on every aspect of the hardware to max out the joules we could push into the material. The trick is being really responsive to the load so that you don't overshoot the target temperature too much.
With the Power Station plugged into the wall and a full charge on the batteries, you can get about 104 Watts into the iron.
We're posting full service information and schematics here: https://www.ifixit.com/Device/iFixit_Soldering
We'll be selling spare parts starting October 15.
And yes, if it seems like mobile browsers don't plan to add support then we'll have to look at wrapping it in a native app.
I'm hopeful that smartphones will start supporting higher power output from their USB-C ports. The iPhone does 4.5W right now, which is (barely) enough to melt solder, but not enough to do anything with.
Our cap is just a game changer there. You handle it more like a Sharpie than a soldering iron. Put the cap on and stick it back in your bag. https://pbs.twimg.com/media/GXR8kMVbgAEeRgd?format=jpg&name=...
I set the motion timer on mine to 5 seconds. It heats up so quickly when you pick it back up that there's no reason to bother with the power switch. By the time I have it back at the joint, it's at temperature ready to go.
Once you set the temperature, the iron remembers it and you can use any power source.
We've spent a lot of time talking to engineers and makers who solder all day, and it turns out that most people rarely change the temperature. Pick a temperature you like and leave it there.
Our heating algorithm detects and dynamically responds to load, so you don't need to turn the temperature up for larger thermal masses: it'll add as many joules as required to get it to temperature.
The instant that the iron detects that it's under load, it pours power into the heating element. That makes it feel and perform like a much more powerful iron. We're dynamically responding to the power load and flowing heat into the material.