Launch HN: ProvenMetal (YC S26) delivers circuit boards in days instead of weeks (provenmetal.com)
The US produced 30% of PCBs globally in 2000, now they produce 4%. Chinese manufacturers have completely dominated this space at 55% of global production.
Now, the need for a domestic PCB supply chain is higher than ever before, yet the infrastructure has been dissolving over the last 2 decades. What is left is mostly small family run manufacturers (CMs) that have been operating in largely the same, labor intensive way since the early 2000’s.
When you place an order through a CM it typically takes several days to receive a quote and complete design for manufacture review, and then you have to source all of the components (the hardest part) and bare boards yourself, then wait anywhere from a few days to several weeks for the assembly and testing of those boards.
We started off assembling circuit boards out of a garage with prosumer grade equipment (NeoDen YY1, Glenbrook X-ray, solder paste stencils, and manual rework stations). We believed that by owning the manufacturing process, we could turn all the front of house automations inwards. But here’s the thing… manufacturing circuit boards with prosumer grade equipment out of a garage takes a huge amount of time. Suddenly we were spending 90% of our time assembling circuit boards instead of growing the business. We were completely capacity constrained, with fancy software automations that are not the binding constraint at low volumes.
Then we got our heads out of the weeds, took a step back, and realized that we were trying to solve the wrong bottlenecks.
These manufacturers are good at manufacturing and terrible at the front of house (quoting, DFM review, and part procurement). When you look at the full process, you realize that assembly is not the bottleneck. So we stopped trying to solve the problem that we can’t solve at this stage.
We measured the bottlenecks and nailed down the ones that we are best positioned to solve right now.
When a customer wants a domestically manufactured circuit board, it is not a straight forward process. We are making that process easy through front of house automation. A customer gives us their design files, and we automatically procure components, and co-ordinate bare board fabs and assembly houses to get quotes, design review, and manufacturing completed in a very tight loop.
How we solve part procurement (you can’t assemble boards with no parts!): When a user places an order with us, our system automatically sources their bill of materials across US and overseas distributors. However, when we work with customers during the design process, our plug-ins interact with KiCAD and Altium, sending the BOM to our ordering platform, which allows us to automatically procure components before layout is finalized.
KiCAD plugin: (https://github.com/proven-metal/provenmetal-kicad)
Altium plugin: (https://github.com/proven-metal/provenmetal-altium)
This enables us to order long lead time parts in advance, suggest alternatives if parts are out of stock, and solve the biggest bottleneck in the process. We store parts in our hq in SF, and then kit the boards and route them through our network. We also do long term storage of parts for long lead time items.
How we solve endless emails: Every manufacturer wants the same information in a different shape. There’s usually a few days of back and forth emailing to achieve clarity. We’re building a profile per manufacturer and sending the order to fit their requirements. This may sound trivial but it removes a multi-day round trip on most orders, which on a quick-turn build is a meaningful share of the time.
How t...
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[ 0.38 ms ] story [ 65.6 ms ] threadThis is something that takes real expertise though, kind of a moonshot for an inexperienced team unfortunately. Would be cool if had mission driven backers otherwise will just end up being hobbyist material. Relying on defense (bubble?) gives at least some breathing room as not actually competing against china for better prices.
Anything available in the EU?
The only domestic drivers for board fab and assembly are autmotive and defense. They already have their supply chains running.
I noticed your KiCAD plugin there too. I am super curious to see what your workflow and pricing looks like. There are definitely times when the 7-day turnaround will be a game changer for us.
I guess one gate there: do you ship to Canada? We do have a US branch that could do the export-import for us, but way easier if we don’t have to route it through them as far as end-to-end delivery time goes.
I recently priced out getting a PCB done in China and its insanely cheap. My design isnt complicated, a few ICs, a few connectors, an a dozen or so passives. PCB manufacturing, parts, and soldering/assembly is on the order of $10-20 total per board and that is with zero volume discounts. The parts alone would cost that much in the US, and I suspect the sort of companies that you contract out to also aren't really interested in tiny orders so they would probably quote huge setup fees (looks like your average order so far is ~$7000).
2) What they already are good at they'll continue to improve at, because of domain knowledge & ecosystem
3) The reason they are ahead in the first place is labor cost & the QOL workers will tolerate (and intentional government investment)
4) The only way around this is for the US to invest into robotics (labor) & subsidize american manufacturing (ecosystem)
Oh
> When you look at the full process, you realize that assembly is not the bottleneck.
I’m confused, which one is it?
I assume the growth story isn’t great when you factor in the non-automatable tasks and big capital outlays, so your product leaves that to existing CMs and scales the software stack instead?
Do you see this product as being beneficial to subcontractors (presumably still doing the 90% manual work), or does this legitimately reduce the actual workload/costs at the production level?
The bottleneck in assembling a PCB is usually component sourcing. My product was not the most complicated, and even then, to assemble in Shenzhen, China, it often took a few weeks to get all the components.
The core issue here is that latency is determined by the outliers. Assembly can't start until you have all units, and the hardest to source one is the bottleneck!
To me, the core innovation here is to plug into the design software to source these long tail items ahead of time.
It's pretty interesting that usually when the PCB is being designed, the designer has no awareness of supply chain. They'll bake in a chip that has a 4 week lead time without even realizing it, when a similar component might be one cent more expensive with much faster lead time.
It was a reason years ago Maxim's ICs were almost always on a "never design in" list since obtaining them was near impossible in reasonable time frames.
Most "seasoned" HW engineers who are working lower volumes verify availability with distributors and for high-volume (i.e. 100K units+/yr) work with sourcing people internal to company to get commitments for key ICs.
When my pal’s raw PCB company went out of business, you could buy a finished PCB from China for less than the cost of FR4, which also came from China. How do you intend to address this supply chain risk? Once China raises your cost of raw PCBs your price argument no longer works.
Also, are you sourcing components from US sources or using China? Recently I stopped purchasing from Digikey and Mouser because their services are much slower than they used to be, and I now get components much faster and for lower cost in China.
- Sunstone
- Advanced Assembly
- Sierra Circuits
- Osh Park
They all have ~7 day lead time or shorter. It all comes down to choosing simple processes with generic parts.
Do you have your own machines or just outsource these orders and ensure the supply chain stuff moves along quickly?
I like the idea, more heads in the game makes it cheaper for everyone, but this seems like another hat in the ring.
Your timing could not have been better. Yesterday I was talking to a friend about starting a company to tap into the domestic solar inverter market that is about to have a healthy growth due to FCC banning foreign made inverters with radios.
We are planning to build it around STM32 or ESP32 with US parts sourcing and manufacturing.
We are in the project scoping phase. Hopefully we can get something going soon.