AiCadGen
Summary
CAD software punishes you for changing your mind — move one dimension and the sketch breaks, the mate fails, and you spend twenty minutes chasing the tree instead of iterating on the design. AiCadGen skips that loop: describe the part in plain English, get real exportable geometry, refine by chat.
The core workflow is prompt-in, parametric-geometry-out: the vendor states the AI writes parametric code, runs it in a sandbox, and produces STEP, STL, DXF, OBJ, or PDF output — not a mesh render pretending to be CAD. Chat refinement handles incremental edits without reopening a feature tree. The system covers parts, multi-part assemblies with per-part STEP files and a mate-intent manifest, and floor plans with MEP overlays to AS1100, ISO, and ASME standards. The free tier runs on a credit pool, so complex or repeated generations will exhaust credits before a project is production-ready. Teams with high iteration volume hit the credit ceiling and move to a paid tier or reconsider the workflow entirely.
Bottom line: AiCadGen earns its place on a maker's bench for going from a one-line prompt to a printable STL in under a minute — it breaks down when a mechanical engineer needs to validate tolerances, run FEA, or work inside an existing parametric assembly that lives in SolidWorks or Fusion.
Pricing Plans
Usage-Based- Price
- from $12/mo
- Free Tier
- Free monthly credits; failed generations cost nothing on free plan
Free
Free monthly credits, no card required
- Evaluate the tool
- Printable STL on free plan
Starter
200 credits per month, commercial license, email support
- Commercial use
Pro
700 credits per month, high-tier model, priority queue
- Priority generation
Business
2,500 credits per month, team seats, API access
- API access
- Team collaboration
View full pricing on aicadgen.com →
Pricing may have changed since last verified. Check the official site for current plans.
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Pros
Sign in to edit- Five export formats (STEP, STL, DXF, OBJ, PDF) from a single generation, so a maker can send the STL to a slicer and the STEP to a machine shop without a conversion step in between.
- Chat-based iteration updates geometry in plain English rather than requiring feature-tree edits, which means a design revision that previously cost thirty minutes of sketch debugging resolves in seconds.
- Multi-part assembly output includes a mate-intent manifest alongside per-part STEP files, so the exported package carries structural intent rather than forcing the receiving engineer to reconstruct relationships manually.
- MEP overlay generation works from an uploaded PDF or photo of an existing plan, which means architects and drafters can layer HVAC, electrical, or structural services onto a scanned drawing instead of redrawing from scratch.
- A free credit tier with no card requirement lets students and makers validate the tool against a real design brief before committing, which avoids the common trap of paying for a seat to discover the output quality doesn't match the use case.
Cons
Sign in to edit- The free tier runs on a shared credit pool: iterating on a mechanical assembly across multiple refinement rounds consumes credits fast, and a hardware startup prototyping several variants of a bracket in one session will hit the ceiling before the design is final — the path forward is a paid tier or rationing generations.
- Exported STEP geometry arrives as a dumb solid inside SolidWorks, Fusion 360, or Creo — the parametric code that generated it stays inside AiCadGen's sandbox and does not export, so any team that needs an editable feature tree in their existing CAD environment rebuilds the part from scratch; at that point AiCadGen is a sketch reference, not a workflow accelerator.
- The platform is cloud-only with no self-hosted option, which disqualifies it for any team under a data residency policy, a defense contract with export-control requirements, or an enterprise IT policy that prohibits sending proprietary geometry to third-party cloud services — those teams route to self-hosted open-source CAD generation alternatives instead.
- Standards-aware drawing output targets AS1100, ISO, and ASME, but the vendor page does not describe a drawing validation or tolerance checking step — a mechanical engineer submitting to a contract manufacturer needs to audit every generated drawing before it becomes a purchase order, adding a manual review gate that the tool's speed advantage does not eliminate.
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About
- Platforms
- Web
- API Available
- Yes
- Self-Hosted
- No
- Last Updated
- 2026-07-23T03:05:50.724Z
Best For
Who it's for
- Makers needing quick printable STL files
- Engineers requiring parametric STEP/DXF exports
- Students learning CAD through intent description
- Teams iterating on assemblies and drawings
What it does well
- 3D printing makers creating functional parts and mounts
- Mechanical engineers generating brackets, enclosures, and CAM-ready components
- Robotics and drone builders producing frames and chassis
- Hardware startups moving from idea to prototype
- Architects and drafters producing floor plans and MEP overlays to standards
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Frequently Asked Questions
- Is AiCadGen free?
- AiCadGen has a permanent free tier alongside paid upgrades (paid plans from from $12/mo). You can keep using a baseline version indefinitely without paying.
- Is AiCadGen open source?
- No — AiCadGen is a closed-source tool. Source code is not publicly available.
- Does AiCadGen have an API?
- Yes. AiCadGen exposes a developer API. See the official documentation at https://aicadgen.com for details.
- What platforms does AiCadGen support?
- AiCadGen is available on: Web.
Hours Saved & ROI Stories Community
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Curated lists that include this category
Getting from a verbal design intent to a CAD file has always required either years of software fluency or a consultant willing to bill hourly for sketch constraints. AiCadGen removes that gate: type a description — a planetary sun gear, a drone chassis, a bracket with specific hole patterns — and the system generates real parametric geometry in a sandbox, returning downloadable STEP, STL, DXF, OBJ, or PDF drawing files. The whole loop from description to first export is described by the vendor as taking under a minute.
The differentiating feature is chat-driven refinement on top of generated geometry. Instead of reopening a feature tree, you type ‘make the holes 8 mm’ or ‘move the kitchen wall 600 mm east’ and the model updates. For assemblies, the export includes a STEP assembly file, per-part files, and a mate-intent manifest — which means the output is structured for import into downstream CAD tools rather than a flat mesh that loses assembly context. Floor plan and MEP overlay generation works from a brief or from an uploaded PDF, photo, or scan, and the vendor states standards-aware drawing output targeting AS1100, ISO, and ASME.
AiCadGen fits early-stage design cycles: makers who need a printable part today, hardware founders generating prototype geometry before committing to a CAD seat, or mechanical engineers who want a parametric starting point to refine in their preferred tool. The wall appears when that downstream tool has its own history tree and expects associative geometry that wasn’t built there — imported STEP geometry is dumb solid at that point, and the parametric intent the AI generated does not survive the handoff. Teams doing tolerance stack-ups, FEA, or design-for-manufacturability validation inside an existing PLM workflow will exhaust what AiCadGen can do before the part reaches a drawing review.
