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We engineer and manufacture ruggedized polymer and metal components built to withstand the severe UV exposure, extreme thermal cycling, and high-voltage loads of modern solar environments. Utilizing advanced injection molding and precision stamping, we deliver critical sub-assemblies for utility-scale inverters, combiners, and tracking systems. Our IATF 16949-certified quality framework directly addresses dielectric breakdown and mechanical fatigue, ensuring field stability across continuous outdoor operational lifespans.

Scalable production of high-voltage components and renewable energy infrastructure through precision metal stamping and technical injection molding.
Heavy-duty stamped and forged components designed for the rigid load-bearing requirements of utility-scale solar arrays and tracking mechanisms. Engineered to maintain mechanical stability under high wind and snow loads while mitigating dynamic structural fatigue over long outdoor lifetimes.
Solar mounting rails, mid-clamps, end-clamps, roof hooks, torque tubes, pivot pins, structural gussets, cross-bracing struts, ground screw assemblies.

Precision-engineered enclosures protecting sensitive power electronics from harsh atmospheric elements while optimizing heat dissipation and electromagnetic compatibility. Designed to prevent environmental ingress in demanding high-voltage environments.
Inverter chassis, DC combiner boxes, battery module casings, transformer housings, smart meter covers, heat sink assemblies, EMI shields.

Multi-material assemblies integrating high-conductivity metal circuitry with advanced polymer insulation layers. Engineered specifically for elevated voltage and high-current solar distribution environments to eliminate arc tracking and dielectric breakdown.
High-voltage solar connectors, copper and aluminum busbar assemblies, terminal block headers, multi-pin plug inserts, switchgear mechanisms, fuse holders, internal isolation shields.

Critical outdoor operational components directly exposed to prolonged environmental stress. Formulated to resist UV radiation, extreme temperature fluctuations, and environmental degradation, preventing material brittleness over the full operational lifecycle of the solar site.
Insulator housings, cable entry glands, weather-proof gaskets, disconnect switch handles, surge arrester caps, junction box lids, grounding rods, mast clamps.

Don’t see your specific component here? From complex interior trims to rugged structural parts, we provide custom mold development and production for any automotive geometry. Send us your CAD files for a professional DFM review and a production-ready quote.
Apply advanced technical injection molding and precision progressive die stamping to produce high-reliability sub-assemblies for photovoltaic arrays, utility-scale inverters, and tracking systems. We deliver scalable manufacturing optimized for continuous outdoor exposure, high-voltage DC dielectric containment, and severe structural load profiles.

Custom polymer molding optimized for high-voltage DC combiner boxes, inverter housings, tracking sensor enclosures, and insulating structural elements. Formulated to ensure prolonged UV stability, strict flame retardancy, and high dielectric retention under rapid environmental thermal cycling.

High-tonnage progressive die stamping for structural solar mounting brackets, high-conductivity interconnect busbars, tracking mechanism linkages, and outdoor enclosure panels. Dynamically optimized to withstand heavy mechanical wind/snow loads and long-term atmospheric corrosion.
We process specialized engineering resins and high-conductivity alloys engineered for multi-decade stability under continuous solar radiation, high-voltage DC loads, and severe environmental stress. Our material selection framework prioritizes precise dielectric strength, UV retention, mechanical yield strength, and long-term thermal dissipation.
Polymers engineered with elevated dielectric strength and high comparative tracking index (CTI) ratings to eliminate electrical leakage and arc tracking in 1500V DC solar systems. These materials maintain critical isolation for electronics while demonstrating high dimensional stability and creep resistance under elevated operational temperatures.
PA66-GF30, PBT-GF30, Polyphenylene Sulfide (PPS), Liquid Crystal Polymer (LCP), High-Performance Epoxy Resins.
Outdoor-grade resins formulated to resist prolonged photo-degradation, delta E color shifting, and micro-cracking caused by concentrated solar radiation. These substrates ensure physical property retention and impact strength under constant ultraviolet exposure and cyclic moisture ingress.
UV-Stabilized ASA, Weatherable Polycarbonate (PC), PVDF-Coated Alloys, PMMA, Acrylic-Modified Polymers.
High-strength alloys and coated steels selected to support utility-scale solar arrays under dynamic wind and snow loads. Optimized for mechanical integrity and zero structural degradation in saline, coastal, or high-humidity desert environments to secure the specified operational lifespan of racking assemblies.
Aluminum 6061/6063-T5, Stainless Steel 304/316L, Hot-Dip Galvanized Steel, Zinc-Aluminum-Magnesium (ZAM) Alloy.
Engineered composites featuring high thermal conductivity (W/m·K) paired with strict adherence to UL94 V-0 flammability standards. Developed to facilitate rapid heat dissipation away from high-density power electronics in solar inverters and combiners, mitigating the risk of localized thermal accumulation.
UL94 V-0 Flame-Retardant PC, FR-PA66, Thermally Conductive Plastics, Copper C1100, Aluminum 1100/3003.
Require a specialized polymer blend not listed above? Kravzik processes a vast spectrum of engineering-grade resins, advanced composites, and custom color-matched compounds to meet exact OEM specifications. Consult with our material experts to identify the optimal resin for your specific application, or explore our complete database.
Delivering uncompromising precision, accelerated speed-to-market, and fully integrated manufacturing solutions for the most demanding technical applications.
We compress your development cycles. By integrating agile manufacturing processes with advanced in-house capabilities, we deliver functional, test-ready components in days—helping you hit tight launch deadlines without sacrificing quality.
Quality is non-negotiable for medical, aviation, and advanced robotics applications. We achieve strict dimensional tolerances backed by comprehensive in-house metrology, including CMM vision systems, complete FAI reporting, and ISO-compliant workflows.
We don’t just execute prints; we optimize them. Our engineering team provides rigorous Design for Manufacturability (DFM) reviews upfront. By identifying potential defects early, we significantly reduce tooling risks and overall unit costs.
Grow your volume seamlessly without switching suppliers. We transition your projects from low-volume prototypes to high-yield mass production under one roof. All proprietary CAD designs are strictly protected under legally binding NDAs.

Modern construction requires durable components resisting fire and environmental corrosion. We integrate metal stamping and injection molding for high-volume consistent assembly.

Component weight dropped by 35%. We replaced heavy welded steel assemblies with precision single-piece aluminum stamping.

Critical network hardware requires effective thermal management and signal shielding. We provide integrated metal stamping and molding for durable infrastructure.

Flight systems demand extreme thermal resistance for long-term mechanical durability. Our integrated molding and stamping ensure consistency plus mass scalability.
Yes, all manufacturing processes follow IATF 16949 standards to ensure zero-defect quality and full traceability for critical grid and renewable energy systems.
We utilize glass-filled PA66, PBT, and PPS resins specifically selected for their superior dielectric properties, thermal stability, and long-term resistance to electrical arcing.
We utilize UV-stabilized resins and corrosion-resistant alloys like ZAM or stainless steel, validated through rigorous accelerated weathering and salt spray testing protocols.
Yes, our integrated manufacturing capability combines precision metal stamping and insert molding to deliver fully integrated, multi-material assemblies ready for immediate system installation.
Absolutely. We process a wide range of flame-retardant thermoplastics that strictly adhere to UL94 V-0 and UL9540A safety requirements for global energy storage systems.
Our progressive die stamping lines consistently maintain tolerances within ±0.02mm, ensuring perfect alignment and low contact resistance for high-current power distribution components.
Our engineering team provides comprehensive DFM audits to optimize part geometry and material selection, effectively reducing production costs and mitigating mechanical failure risks.
We operate high-tonnage stamping presses and automated injection units designed to handle high-volume monthly demands for regional and international utility-scale infrastructure deployments.
Our engineering team loves solving complex problems. Chat with us or send your drawing for a review.
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