High-performance components designed to drive long-reach connectivity. Engineered for rugged environments, telecom infrastructure, and high-speed data transmission.
A trusted, export-focused manufacturer with over a decade of domain expertise in engineering, developing, and producing advanced optical connectivity and Ethernet interface hardware.
Transolix specializes in engineering high-performance fiber optic and copper communication interfaces for global data centers, telecom operators, and heavy-duty industrial network integrators. With an annual export revenue of USD 8 to 15 million, we bridge the gap between complex network designs and commercial reality.
Adhering to ISO 9001 and demanding internal reliability protocols, we execute 100% rigorous verification procedures. Our quality team ensures every product exceeds field requirements before leaving our facility.
We work hand-in-hand with hardware innovators. Supported by 860 certified upstream vendors (including industry-leading chipset designers and optical sub-assembly providers), we released 86 new product models in the last fiscal year alone.
In modern industrial and enterprise networking, the 100-meter limitation of standard copper Ethernet (UTP cabling) poses a significant challenge. As IoT systems, security surveillance, and automation expand across expansive physical areas, the demand for high-reliability, long-reach extension technology has grown exponentially.
Ethernet extenders bridge this gap by converting standard Ethernet signals into forms suitable for longer transmission mediums—such as single-mode or multi-mode fiber optics, legacy coaxial cables, or industrial twisted pair wiring. The modern OEM landscape is shifting from simple media converters toward integrated, multi-gigabit intelligent units capable of managing data flow, providing power (PoE/PoE+/PoE++), and maintaining low-latency signal integrity over several kilometers.
This technological shift demands components that can withstand extreme environments while delivering reliable throughput. Modern Ethernet extenders require shielded housings, rugged RJ45 connectors with integrated transformers for galvanic isolation, and high-performance optical transceiver modules like SFP and SFP+ to handle high bandwidth over extended distances.
For network engineers, municipal planners, and system integrators, selecting an OEM manufacturing partner goes beyond basic pricing. Enterprise procurement requires strict compliance with performance, interoperability, and long-term durability metrics:
An Ethernet extender is only as reliable as its physical interface and transceiver modules. Using substandard RJ45 jacks or low-quality optical transceivers leads to packet loss, high latency, and frequent field failures. By sourcing premium EMI-shielded SFP cages and magnetic RJ45 connectors, system builders ensure their extenders achieve optimal mean time between failures (MTBF).
Transolix products serve as critical building blocks for macro-level network extension projects across various sectors:
1. Smart Cities and Traffic Monitoring (ITS): High-definition CCTV cameras along highways require high-speed data transmission over miles of highway. Utilizing custom fiber optic transceivers (such as our 10G CWDM SFP+ or 25G BiDi modules) paired with rugged media converters allows video feeds to be sent back to traffic control centers with virtually zero latency.
2. Industrial Automation & Intelligent Factories: In large-scale manufacturing facilities, heavy machinery generates severe electrical noise. Using shielded RJ45 female connectors with integrated LAN transformers prevents ground loops and voltage spikes from damaging sensitive network switches.
3. Telecommunications and FTTH Rollouts: As telecom operators upgrade their infrastructure to support 5G and gigabit broadband, high-density optical distribution is essential. High-speed transceivers like our 100G QSFP28 and 400G QSFP-DD modules enable high-throughput backhaul connections, ensuring fast data transmission over long distances.
Inside the Transolix facilities: Precision SMT assembly, optical alignment, cleanroom manufacturing, and comprehensive quality assurance testing.
The networking landscape is moving toward higher integration, lower power consumption, and smarter diagnostic features. As 400G and 800G optical standards become common in data centers, long-distance extenders are adopting advanced modulation schemes like PAM4 (Pulse Amplitude Modulation 4-Level) and coherent optics to push the limits of fiber cables.
Transolix is actively developing the next generation of transceiver and connector components. This includes optical modules designed to operate in extreme outdoor temperatures without active cooling, and ultra-compact RJ45 connectors with integrated micro-transformers. These developments help keep our customers ahead in a rapidly changing industry.
While the terms are often used interchangeably, an Ethernet extender specifically aims to extend the reach of Ethernet signals past the 100m limit using existing media like coaxial, phone line, or twisted pair. A media converter shifts the signal from one media type to another, typically copper to fiber optic cabling, allowing transmission over distances up to 80-120km.
A LAN transformer (often called magnetics) provides galvanic isolation, shielding the network switch or device from voltage spikes, static charges, and ground loops that can occur on copper Ethernet cables, especially in long outdoor runs.
Typically, no. Single-mode SFP modules (like those operating at 1310nm or CWDM wavelengths) require single-mode fiber (SMF) due to its narrow core. Using them with multi-mode fiber (MMF) leads to high signal attenuation and data errors. It is best to match the SFP transceiver type to the installed cable plant.
We offer customization for wavelengths, transmission distances (up to 80km+), custom EEPROM firmware coding for compatibility with major switch brands, specialized pin configurations, and shielding adaptations on SFP cages and RJ45 jacks.
We conduct automated optical testing, eye diagram analysis, and real-system interoperability checks. Every high-speed module goes through temperature chambers and stress tests under load to verify long-term performance under demanding network conditions.
Explore our selection of SFP cages, multi-port RJ45 jacks, and high-bandwidth transceiver modules designed to support robust Ethernet systems.