Precision thin-walled motor canisters and end-caps. We maintain strict concentricity requirements between bearing seats and stator mounting surfaces to eliminate motor noise and vibration.
Ruggedized, high-stability brackets for LiDAR and Radar arrays. Engineered for thermal resistance and calibrated alignment to ensure sensing accuracy in harsh road environments.
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Machining complex liquid-cooling plates and heat sinks with optimized internal fin geometries. We ensure maximum surface area for heat dissipation in high-density power electronics.
Expert machining of engineering plastics like Ultem and PEEK for electrical insulators and busbar supports. We maintain zero-burr quality to prevent dielectric breakdown.
Creating high-stiffness, weight-optimized chassis and suspension mounts from aerospace-grade aluminum. We help you extend EV range through aggressive material removal and structural DFM.
High-efficiency liquid cooling manifolds for battery packs and inverters. Features complex internal channels machined with high-accuracy to ensure uniform temperature gradient control.
State-of-the-art centers optimized for heavy material removal in large aluminum battery frames and motor housings with high dimensional stability.
Our engineers review CAD files for cooling path optimization and localized hotspots, ensuring housings support peak EV performance.
Optimizing toolpaths for maximum throughput without compromising on the tight tolerances required for high-speed motor bores.
Procuring high-conductivity aluminum alloys from automotive-vetted mills, ensuring consistent heat transfer and material purity.
Custom heavy-duty fixtures developed specifically for large prismatic battery parts, preventing dimensional drift during material removal.
Executing sub-micron features using high-frequency spindles and oil-free MQL systems to ensure chemical purity in cooling paths.
Parts are delivered kits in batches, deburred and ultrasonically cleaned, with full documentation of dimensional audits and material compliance.
100% verification of mounting datums. We utilize automated CMM sequences to ensure axiality and flatness meet automotive standards.
Coordination of structural finishes: Hard-coat anodizing or specialized E-coating to maximize environmental and corrosion resistance.
Coordination of hard-coat anodizing, electrolytic plating, and specialized thermal interface coatings to meet automotive durability standards.
Machining of complex internal cooling circuits and heat exchangers with integrated O-ring grooves designed for high-pressure reliability.
We specialize in manufacturing electric motor housings, autonomous sensor mounts, liquid-cooling plates, lightweight structural chassis components, and high-voltage electrical insulators using advanced polymers like PEEK and Ultem.
We maintain strict concentricity requirements between bearing seats and stator mounting surfaces through precision alignment setups. We also perform a 100% rigorous metrology audit utilizing automated CMM sequences to verify mounting datums and flatness.
Yes, we machine complex internal cooling channels and fluidic pathing with high-accuracy O-ring grooves. Every cooling manifold undergoes strict leak-proof pressure testing to guarantee high-pressure reliability.
We are an ISO 9001:2015 certified manufacturer. Our quality control system covers everything from certified alloy sourcing (from automotive-vetted mills) to final dimensional metrology audits.
We coordinate a wide range of specialized treatments to meet automotive durability standards, including hard-coat anodizing, electrolytic plating, specialized E-coating, and thermal interface coatings.
Yes. All parts are delivered as assembly-ready kits, thoroughly deburred and ultrasonically cleaned, complete with full documentation of dimensional audits and material compliance certifications.