Motorlager, chassis Teile und bearbeitete Teile für die Montage Linien.
Thrust reverser latches, bolt carrier assemblies, and fasteners for aircraft and defense sector.
Connector housings, EMI shielding brackets and lightweight chassis for industrial electronics parts.
Präzisions-Gehäuse, Antrieb Rahmen und Anker-Verknüpfungen für die Automatisierungstechnik.
Metallrahmen, Halterungen und Baugruppen für Geräte und Ausrüstung zu Hause.
Orthopedic implant screws, surgical drill guides and enclosures for sterile environments.
Solar Montage Teile, wind turbine Klammern, und Batterie-Gehäuse.
Ventilgehäuse, Flansch Blöcke, und Bohrloch bohren-Komponenten.
Rudders, propellers and corrosion-resistant components for offshore and deck-side systems.
CNC-Bearbeitung, liefert Mikron Präzision und engen Toleranzen für komplexe Geometrien.
Optimized for mass production, high-volume machining utilizes advanced automation and process control to ensure consistent quality, tight tolerances, and superior cost efficiency at scale.
Designed for precision-driven applications, low-volume machining supports prototype development and limited production runs with high accuracy, rapid iteration, and reduced tooling requirements.
Night Vision Scope Mount faces thermal differentials between weapon discharge heat and ambient temperature drops during night operations. Bimetallic material interfaces are eliminated to prevent expansion mismatch. Mount geometry is compensated using matched coefficient-of-expansion alloys to pflegen optical axis within tolerance across -40°C to +55°C.
Night Vision Scope Mount employs zero-backlash locking levers with spring-preloaded clamping to maintain return-to-zero within ±0.1 MOA across multiple cycles. Mating surfaces are treated with DLC or TiN coatings to reduce surface wear during frequent scope removal under field servicing conditions.
Night Vision Scope Mount is machined using 5-axis CNC centers with metrology referencing via CMM probing. Angular deviation between optical centerline and barrel axis is controlled under 0.03°, ensuring minimal parallax error for long-range target engagement systems.
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Used to mount image intensifier scopes, maintaining optical zero under high-recoil dynamics and thermal cycling during extended night operations.
Supports rapid optic interchangeability with zero-retention locking for modular targeting systems across diverse mission profiles and environments.
Enables sub-MOA alignment stability for high-magnification night optics requiring consistent bore-axis referencing across variable ambient temperatures.
Mounts stabilized low-light sensors on remote weapon stations, ensuring vibration-resilient optic positioning under mobile or autonomous operations.
Withstands high-frequency vibration and shock loads from rotary-wing platforms while retaining optic calibration during rapid deployment.
Maintains scope alignment in high-humidity, corrosive saltwater environments with enhanced material coatings and rigid mounting under fluctuating pressure conditions.
Night Vision Scope Mount is validated through resonance frequency mapping and MIL-STD-810H vibration testing. Retention mechanisms are subjected to random spectrum vibration up to 20 g RMS without fastener loosening or harmonic fatigue, ensuring operational integrity on vehicular and rotary-wing platforms.
Night Vision Scope Mount integrates self-centering recoil lugs designed for tolerances in both MIL-STD-1913 and STANAG 4694 rails. Lateral play is minimized using dual wedge interface geometry, allowing consistent mounting on cross-compatible weapon platforms without rail modification.
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Frigate uses 5-axis CNC machines with real-time metrology feedback to achieve sub-10 micron dimensional accuracy. Mounting surfaces are inspected using CMM with angular deviation controlled below 0.03°. This ensures optic-to-bore alignment stability across weapon systems. Every mount undergoes fixture-based validation for co-axial referencing.
Fregatte applies MIL-A-8625 Type III Class 2 hard anodizing, followed by duplex sealing to resist marine corrosion. Salt spray resistance is tested for over 1000 hours per ASTM B117 standards. Surface treatments also include low-IR signature coatings for tactical concealment. These layers protect both material integrity and optical zero retention.
Frigate conducts harmonic response analysis during design using FEA to locate structural resonance points. Mounts are validated under MIL-STD-810H random vibration up to 20 g RMS. Critical fasteners are torque-tested post-cycling to confirm retention strength. This ensures mounts remain secure on armored and rotary-wing platforms.
Each design is simulated under static and cyclic loads using FEM to check stress concentration zones. Frigate verifies that deflection remains under 40 microns for 1.5 kg payloads. Real-world testing includes thermal cycling and live-fire shock loads. This confirms long-term rigidity without optic drift.
Frigate mounts are engineered to fit MIL-STD-1913, STANAG 4694, and hybrid NATO rails using floating clamp geometry. Self-centering lugs minimize lateral tolerance stack-up. Fitment is verified with rail master gauges during production. Cross-platform compatibility is achieved without modifying host weapon geometry.
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10-A, First Floor, V. V Komplex, Prakash Nagar, Thiruverumbur, Trichy-620013, Tamil Nadu, Indien.
9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti Coimbatore-641035, Tamil Nadu, Indien. ㅤ
FREGATTE ist eine B2B-produzierende Unternehmen, die es erleichtert, Neue Produkt Entwicklung, Auftragsfertigung, parallel-Fertigung, und mehr, und nutzt seine umfangreichen partner-Netzwerke.
Need reliable Machining for your next project? Get in touch with us today, and we’ll help you find exactly what you need!
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