Metal Enclosures

Metal enclosures are constructed from thermally conductive alloys such as 5052-H32 aluminum or cold-rolled steel with optional zinc coatings, allowing for efficient heat dissipation across the enclosure body. These are compatible with both passive and forced-air thermal paths. Integrated thermal interface provisions, such as mounting surfaces for heat sinks or cold plates, enable direct coupling to internal heat sources like power converters or motor drives. 

metal enclosures

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Our Metal Enclosures Products

Explore our range of high-quality Metal Enclosures today.

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Wörter von Kunden

Sehen Sie, wie Globale OEMs und sourcing-Köpfe beschreiben Sie Ihre Erfahrung mit unseren skalierbaren Ausführung.

Wir exportieren in 10+ Ländern

Fregatte Globale Präsenz

Fregatte ist stolz darauf, Erleichterung “Machen in Indien für die Welt“. Als unser globales Netzwerk von Frigaters bietet praktisch unbegrenzte Kapazität, und durch unsere IoT-fähige Plattform, die Sie Ihre Teile direkt in der Produktion. Durch digitale und technologisch aktivieren "die stillen Säulen der Wirtschaft" KKMU-und KMU-Branchen der verarbeitenden Industrie, wir sind in der Lage, Tippen Sie auf die riesige Potenzial für die Fertigung zu bringen die besten Ergebnisse für unsere Kunden.

metal enclosures

100,000+

Teile Hergestellt

250+

Frigaters

2000+

Maschinen

450+

Materialien

25+

Herstellung Prozess

Industry Applications

Industrial Automation

Houses PLCs, HMIs, and motor controllers with shielding against EMI and protection from particulate ingress (IP65+ rated).

Telecommunications

Encloses network switches and RF components, ensuring signal integrity and shielding from ambient electromagnetic interference.

Power Distribution

Contains breakers, transformers, and busbars while maintaining arc flash boundaries and supporting thermal dissipation.

Defense Electronics

Shields mission-critical avionics and tactical systems against vibration, EMI, and environmental stress per MIL-STD-810.

Medical Devices

Encloses imaging systems and diagnostic equipment with attention to electrical isolation and low-leakage current design.

Renewable Energy Systems

Protects inverters, MPPT controllers, and combiner boxes in solar and wind installations under wide thermal swings.

metal enclosures

Ingress Protection in Harsh Environments

Sealed Gasket Interfaces

Continuous EPDM or silicone gaskets maintain IP66/NEMA 4X protection against dust, water jets, and chemical ingress.

Precision Cable Entry Design

Supports sealed conduit or gland fittings without breaching enclosure integrity during dynamic cable movement.

Standards-Based Material Construction

Meets ISO 20653 and UL 50E for corrosion resistance and environmental durability in industrial and outdoor use.

metal enclosures

Having Doubts? Our FAQ

Check all our Frequently Asked Questions

How does Frigate ensure uniform gasket compression in large panel doors under repeated operation?

Fregatte uses multi-point latch systems calibrated to pflegen equal pressure across the entire gasket perimeter. Each door undergoes mechanical cycle testing to verify compression set resistance of EPDM or silicone seals. Hinge alignment and door flatness are checked using digital calipers during QC. This ensures long-term ingress protection even after frequent opening and closing.

How are Frigate enclosures validated for thermal expansion in multi-metal assemblies?

Frigate uses Finite Element Analysis (FEA) to simulate thermal gradients across dissimilar metals like aluminum and stainless steel. Mounting points are slotted or isolated to allow for expansion without structural deformation. All fasteners are selected based on differential thermal coefficients. This prevents stress buildup and ensures mechanical reliability under fluctuating ambient conditions.

What design steps does Frigate take to minimize conducted EMI through cable entry systems?

Cable entry zones are electrically bonded to the enclosure wall using conductive gland fittings. Frigate applies ferrite cores or filtered bulkhead connectors for high-frequency suppression. Entry panels are configured with isolated zones for power, signal, and control wiring. These steps reduce coupling paths for common-mode and differential-mode noise.

How does Frigate support separation of high-voltage and low-voltage circuits within the same enclosure?

Frigate uses internal partition plates made of conductive or non-conductive materials depending on insulation class. These partitions are installed with IEC 60204-1 compliant clearances and creepage distances. Signal wiring routes are physically segregated using cable trays and grommeted pass-throughs. This reduces the risk of dielectric breakdown and signal interference.

How are Frigate enclosures prepared for high-altitude or low-pressure applications?

Frigate accounts for derated cooling efficiency and pressure differentials by integrating pressure relief valves or breather vents. Seals and gaskets are selected to pflegen compression even under low atmospheric pressure. Components are secured with vibration-rated fasteners per MIL-STD-810F for airborne platforms. Design simulations consider altitude-induced mechanical and thermal stress profiles.

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LOCATIONS

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