Fiber Optic Connectors

Fiber optic connectors must maintain the integrity of optical signals across various lengths and conditions. Our connectors have high-precision alignment mechanisms that ensure low insertion and return loss. The precise mating of connector ferrules reduces the potential for signal degradation, ensuring that optical power is efficiently transmitted with minimal reflection. This is achieved through using zirconia or ceramic ferrules, which maintain high alignment accuracy during mating, and advanced polishing techniques that minimize insertion loss over time. 

Material Options

High-performance ceramics, stainless steel, brass, aluminum, and polymer-based materials

Cable Diameter Range

Typically 0.9mm to 10mm diameter; customizable for specific applications

Temperature Range

Operates from -40°C to +85°C; high-temperature variants available

Load Capacity

Designed to handle up to 500N axial load depending on the connector type

Vibration Resistance

Vibration tested for up to 10g at frequencies from 10Hz to 2kHz

Product Description

Compatibility between fiber types, connector standards, and network configurations is critical in complex network environments. Our fiber optic connectors are engineered to accommodate single-mode and multi-mode fibers with varying core sizes, including 9/125 µm for single-mode and 50/125 µm or 62.5/125 µm for multi-mode cables. They also support the widely used LC, SC, ST, MTP/MPO, and E2000 standards, providing flexible integration into existing and emerging optical networks. This broad compatibility ensures that system designers and network engineers can select the right connectors for specific applications without requiring extensive modifications. 

Corrosion Resistance

Salt spray tested for up to 500 hours; IP67 or higher protection available

EMI Shielding

Integrated EMI/RFI shielding with conductive metal or shielded ferrules

Mounting Options

Available in panel mount, flush mount, and bulkhead mount configurations

Compliance Standards

Meets IEC 61754, Telcordia GR-326-CORE, and RoHS compliance

Custom Features

Customisable connector design, ferrule material, and boot length

UV Resistance

UV-resistant polymers ensure durability in outdoor or exposed environments

Fire Resistance Rating

UL94-V0 fire rating; connectors available with flame-retardant materials

Chemical Resistance

Resistant to a wide range of chemicals including acids, bases, and solvents

Thermal Expansion Tolerance

Materials engineered to have minimal thermal expansion for consistent performance across temperature fluctuations

Dynamic Load Testing

Passed dynamic load tests with continuous operation at up to 50N in various orientations

Precision Tolerances

±0.002mm tolerance for ferrule alignment and connector precision to ensure minimal insertion loss

Technical Advantages

Fiber optic connectors must withstand physical and environmental stress, particularly in industrial, outdoor, and data center applications. Our connectors are designed with rugged housings made of temperature-resistant materials such as high-strength thermoplastics or metal alloys to resist wear and tear. These materials are also UV-resistant and capable of enduring harsh weather conditions. The seal integrity of our connectors is further enhanced through gasket and O-ring systems, ensuring reliable performance even in extreme temperatures, moisture, and dust-laden environments. 

Crosstalk between adjacent fiber cores can lead to signal interference, reduced bandwidth, and performance instability. To mitigate this, our connectors incorporate advanced precision alignment systems that ensure the accurate alignment of fiber cores within the connector. This minimizes the risk of misalignment and reduces the potential for signal cross-talk. Our designs feature low-profile ferrule arrangements that maintain optimal signal isolation across multiple channels for high-density applications where multiple fibers are used nearby, such as MTP/MPO connectors. 

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Industry Applications

Broadcasting

Ensures reliable, high-quality signal transmission for live video and audio feeds over long distances in broadcasting systems. 

Optical Test Equipment

Used in precision measurement tools for evaluating fiber networks and optical components, ensuring accurate diagnostics. 

Submarine Cable Systems

Integral to undersea communications infrastructure, providing long-distance, high-bandwidth connectivity between continents. 

Scientific Research

Connects instrumentation in research facilities for precise, high-speed data transfer in fields such as physics and biology. 

Automated Test Systems

Utilized in testing environments for rapid, accurate communication between equipment, reducing error rates and downtime. 

Smart Grids

This technology facilitates reliable, high-speed communication for managing electrical grid infrastructure and supporting real-time data analysis. 

Precision Termination and Splicing for Reduced Signal Loss

If not executed correctly, terminating or splicing fiber optic cables can introduce additional loss and performance issues. Our connectors feature pre-polished or terminable ferrules designed to support precise terminations that reduce the need for external splicing. For splicing applications, we provide fusion splice-friendly designs that facilitate low-loss transitions between fiber types, ensuring that signal degradation is kept to a minimum and that the splice is secure for long-term reliability. 

Our fiber optic connectors adhere to international standards such as Telcordia GR-326-CORE, IEC 61754, and RoHS compliance, ensuring that they meet the stringent requirements of the telecommunications and networking industries. 

fiber optic connectors

Having Doubts? Our FAQ

Check all our Frequently Asked Question

How does Frigate’s fiber optic connector design minimize attenuation in long-distance applications?

Frigate’s fiber optic connectors use high-precision ceramic ferrules and low-loss materials to minimize attenuation over long distances. The accurate fiber alignment ensures minimal signal degradation, critical for extended-range applications like telecom backhaul and submarine cable systems. 

How do Frigate’s connectors ensure compliance with industry standards for data centers?

Frigate’s connectors meet rigorous standards such as Telcordia GR-326-CORE and IEC 61754, ensuring that they meet or exceed performance requirements for low insertion loss and high return loss. This makes them ideal for high-density, high-speed data center environments. 

What features in Frigate connectors improve reliability under extreme temperature conditions?

Frigate’s connectors are built with temperature-resistant materials such as high-performance thermoplastics and ceramics, ensuring stable performance from -40°C to +85°C. This makes them suitable for industrial applications in harsh environments like aerospace and military systems. 

How does Frigate address crosstalk in high-density fiber optic applications?

Frigate’s connectors use low-profile ferrule designs with advanced alignment systems to prevent crosstalk and ensure signal isolation. This is especially critical in MTP/MPO configurations where high-density multi-fiber connections are required, like in 5G and data center networks. 

What is the role of Frigate’s fiber optic connectors in ensuring seamless integration with multi-mode fibers?

Frigate’s connectors are designed to handle multi-mode fiber with core diameters ranging from 50/125 µm to 62.5/125 µm, ensuring minimal modal dispersion and providing high-quality signal transmission for local area networks and data transfer within short to medium distances. 

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LOCATIONS

Global Sales Office

818, Preakness lane, Coppell, Texas, USA – 75019

Registered Office

23, 6th West Street, Balaji Nagar, Kattur,  Pappakuruchi, Tiruchirappalli-620019, Tamil Nadu, India.

Operations Office

9/1, Poonthottam Nagar, Ramanandha Nagar, Saravanampatti, Coimbatore-641035, Tamil Nadu, India. ㅤ

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Fiber Optic Connectors

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