Genic
Develops AI-driven generative design software for conformal cooling channel optimization in injection molding, enabling metal 3D-printed (L-PBF) conformal cooling inserts that reduce cycle times by 60-65% compared to conventional cooling.
- CEO / Founder
- Piotr Jerzy Domeracki
- Team Size
- 1-10
- Stage
- Active
- Latest Round
- Bootstrapped
Technology & Products
Key Products
Conformal Cooling Channel (CCC) optimization software — AI-driven layout generation for injection molding tools
Technological Advantage
CLAIMED: AI-generated conformal cooling outperforms human-designed conformal cooling on measurable metrics (-65% cooling time, -20% volumetric shrinkage). VERIFIED: Case studies on two real industrial parts (automotive brake fluid reservoir, electronics EV charging plug) with quantified results published on company website. ADVANTAGE TYPE: Technology moat — proprietary algorithmic optimization methodology combining thermal simulation with AM manufacturability constraints. DEFENSIBILITY: Replicable in principle but requires deep domain expertise in both CFD simulation and L-PBF process constraints.
Differentiation
Value Proposition
AI-optimized conformal cooling channel layouts reduce injection molding cycle times by 60-65% (e.g., brake fluid reservoir: -60% cooling time; EV charging plug: -65% cooling time, -20% volumetric shrinkage) while ensuring L-PBF manufacturability of the cooling inserts — a seamless simulation-and-design loop that eliminates manual iteration.
How They Differentiate
Unlike general-purpose generative design tools (Altair Inspire, nTopology), Genic focuses narrowly on conformal cooling channel optimization with built-in L-PBF manufacturability constraints — the software specifically ensures that generated cooling channel geometries are physically printable via metal 3D printing, which general-purpose topology optimizers often fail to guarantee.
Market & Competition
Target Customers
Injection molding companies and tooling manufacturers seeking to reduce cycle times through conformal cooling inserts produced via metal additive manufacturing (L-PBF).
Industry Verticals
Automotive; Electronics; Plastic Injection Molding
Competitors
Altair (Inspire/Cooling optimization); Autodesk (Netfabb generative design); nTopology (now part of Altair); Moldflow (Autodesk — simulation-driven cooling design)
Growth & Milestones
Growth Metrics
AI-generated conformal cooling designs achieve 60-65% cooling time reduction in injection molding (brake fluid reservoir: -60%; EV charging plug: -65% cooling time, -20% volumetric shrinkage)
Major Milestones
2021-06-08: Company founded (Gesellschaftsvertrag signed); 2021-07-18: Registered in Handelsregister (HRB 231610 B, Amtsgericht Charlottenburg); 2023: Launched AI-driven Conformal Cooling Channel (CCC) optimization product; 2025: Exhibited at Formnext 2025; 2025-06-12: Updated Gesellschaftsvertrag