I joined this team a few months ago, and honestly it's been one of the craziest stretches of my career.
Rewind three or four years before this AI era really hit, writing code was the hard part. Slow, painful, every feature a grind. You measured progress in weeks.
Now I watch how in Autonomyware three/four words and it comes back with the entire product: the requirements, the 3D model, the risk analysis, the whole chain. The first time I saw it run end to end, I just kind of sat there. The speed still doesn't feel real, even building it from the inside.
Autonomyware
Hi Product Hunt 👋
I’m Theo, a 3D generalist with eight years in asset creation, rendering and technical art. I've spent a lot of that time learning how to turn ideas into digital objects. With Autonomyware, we want more people to be able to create physical products without having to spend years learning the tools first.
💬 Prompt → ⚙️ Create → 🛠️ Build.
You describe what you want to make, and autonomous AI works through the design and engineering. You can inspect the 3D model, refine it and export it for printing or fabrication.
A figurine for a desk or a mechanical tool is a good place to start. For more involved projects, the workspace also covers requirements, architecture, risk analysis, bills of materials, code, verification and manufacturing preparation. The models, files and engineering decisions stay connected, so you can look into how the design came together. 🔍
We're opening access now 🚀 The demo walks through a few builds and shows more of what happens inside the app.
We'd love for you to try it. Let us know what you liked, what was confusing and where you got stuck. And if there's something you've been wanting to make, we'd be curious to hear about it. 👇
Toone
I like a lot the niche you guys went for! It would be interesting to know what platforms you guys are targetting! Blender could also be a natural expansion. Congratulations on your launch! 🚀
Autonomyware
@matheus_paranhos1 thank you 😁! Our CAD outputs including STEP roundtrips can be used in all mainstream platforms (Blender, Autodesk, Siemens NX etc.). We've build an LLM-native geometry kernel (like Parasolid, ACIS, but designed for AI models as authors) and viewports so that users, especially non-engineering folks, don't need other tools to view/process our outputs.
Toone
@vt_vlad Pretty impressive, congratz on your work!
Autonomyware
@matheus_paranhos1 ❤️
@theo_gzd What kind of physical products can i try making first?
Autonomyware
@rohit62661 Hi Rohit, good question. I`d start with something simple and familiar, like day-to-day objects or hobby builds. With the sculpt workflow you can make things like figurines, desk sculptures or printable assets. For instance I enjoyed crafting myself a bookshelf support. On the mechanical side, something like an enclousre, a tool or a part of an object is a good start. Once you get comfortable with the flow, I`d recommend to start pushing into more complex assemblies and ambitious builds.
Autonomyware
Hi Product Hunt ✌️
I'm Vlad and I've spent the last 7 years helping companies develop physical systems and design engineering processes.
Physical product creation and innovation has historically been reserved for organizations with vast engineering resources and capital. Even designing a toy for 3D-printing is something that for most people used to started with research and calling a friend.
Autonomyware is changing this 😁. From figurines for 3D-printing, to screwdrivers and everyday objects, robot arms, complex mechatronics assemblies and first of their kind systems - you imagine it, prompt it, Autonomyware creates, engineers and provides the manufacturing output, autonomously.
⚡️ Create Physical Products. Imagination Engineered. ⚡️
That toy or object your friends or loved ❤️ ones always wanted, the product idea💡you believed was too complex or impossible, save time and get new trains of thought 🗯️ in your professional engineering or just have fun and try combining a crane 🏗️ with a unicorn 🦄 shaped robot head 🤖.
You can go for just the 3D creation and the manufacturing outputs or follow a market grade engineering process end-to-end (definition, decomposition, implementation).
Open beta started and we'd love for you to create your first product. Let us know how you get along, if you're stuck and what we can improve. 👇
Thank you!
Autonomyware
Hi Product Hunt 👋
I'm Yannick. For the last 7 years I have been designing engineering processes for organizations in regulated industries, the kind of places where a part has not only to be well designed but also buildable, documented, and traceable.
This experience led to Autonomyware.
Engineering for everyone 🛠️
Autonomyware makes engineering more accessible than ever before. Describe any product, from a quick 3D-printable prototype to a complex multi-part system. Let the AI take the initiative, or scope it iteratively step by step to realize your idea.
Products that can actually be manufactured 🖨️
Most AI design tools stop at something that looks good on screen. Autonomyware builds products that can actually be made. Export your models and 3D print them: from idea to printer in minutes.
Built for complex systems too ⚙️
For larger projects, Autonomyware provides CAD data, system architectures, and end-to-end system decompositions. The same artifacts a real engineering team would produce.
This is just the start 🚀
This first version focuses on the fundamentals of engineering, and there is a lot more coming. Try it today and make your ideas real.
I will be here in the comments all day. Ask me anything about the product, the tech, or what is next. 💬
What types of tests or checks can the AI prepare before a product reaches production?
Autonomyware
@austinphillips great question!
We have 2 operating modes:
1. Forge - physical product layer (exact b-rep CAD, ECAD, mesh). The checks here are assembly, fitting, clash, motion, wall thickness and visual coherence oriented.
2. Autonomous engineering - product definition > design decomposition > formal verification, validation and unit test creation > realization for all disciplines. The tests here are actual engineering V&Vs (system integration testing, subsystem testing, component and unit testing), traceability checks and second party reviews (the main engineering model is reviewed by a second model).
I have been manually managing hardware risk logs and BOMs across separate spreadsheets so having an integrated workspace for every step saves so much time.
Autonomyware
@jack_hayes83 - absolutely! Not to mention the risk of rework and reengineering that comes from gaps in traceability coverage or not being able to understand how a part change impacts the risk analysis. Every engineered prototype product run in Autonomyware is connected end-to-end in traceability - from assumptions, to specs, operating contexts, design, BOM and verification.