Hot Product

Fiber Optic Cable manufacturer - Fcjoptic

FCJ OPTO TECH, a reputable member of the FCJ Group, stands as a leader in the Communication Industry with a rich history dating back to 1985. Our pioneering spirit led to the development of the first communication fiber optical cable in Zhejiang Province, and now, over three decades later, we are at the forefront of innovation in manufacturing optical fiber cables and components.

Specializing in a comprehensive range of optical communication solutions, we provide products such as Preform, optical fibers, optical fiber cables, and related components. Our impressive annual production capacity includes 600 tons of optical preforms, 30 million kilometers of optical fibers, 20 million kilometers of communication optical fiber cables, 1 million kilometers of FTTH cables, and 10 million sets of various passive devices.

Our product portfolio includes the advanced Air-Blown Fiber Optic Cable 2-48 Core Sm Waterproof Outdoor Optic Cable, the Center Tube Micro Cable G652D/G657A1/G657A2/Multimode Air Blow Fiber Cabl, and the FTTH Outdoor Fiber Drop Cable 2 Core With Strength Member KFRP GJYXFCH Aerial Fiber Optic Drop Cable. Each product is meticulously designed to deliver superior performance and reliability.

Serving an extensive global clientele, including major telecom operators such as China Mobile, China Telecom, and Telefónica, we are committed to providing high-quality Fiber Optics Cable Connectors and Fiber Optic Patch Cord Cable solutions that meet international standards. At FCJ OPTO TECH, we strive to be your most trustworthy partner for all your optical communication needs. For future cooperation, please contact us freely.

Products

  • Fiber Optical LC Upc Field Assembly/Installable Fast Connector

    Fiber Optical LC Upc Field Assembly/Installable Fast Connector

    The Fiber Optic Adapter fast connector (on-site assembly connector or on-site terminated fiber optic connector, fast assembling fiber optic connector) is a revolutionary field installable fiber optic connector that does not require epoxy or polishing. The unique design of the unique mechanical connector body includes factory-installed fiber optic heads and pre-polished ceramic ferrules. The use of such on-site assembled optical connectors can increase the flexibility of optical wiring design and reduce the time required for optical fiber termination. The quick connector series is already a popular solution for fiber optic cable wiring inside local area network and CCTV applications, as well as FTTH buildings and floors. It has good oxidation resistance and long-term stability.Different types of products can be customized according to customer requirements.


  • Simplex Flange Coupler Fiber Optical Patch Cable Adapter ST APC PC UPC

    Simplex Flange Coupler Fiber Optical Patch Cable Adapter ST APC PC UPC

    Fiber optic adapter, sometimes also called coupler, is a small device designed to terminate or link the fiber optic cables or fiber optic connectors between two fiber optic lines.
    By linking two connectors precisely, fiber optic adapters allow the light sources to be transmitted at most and lower the loss as much as possible. At the same time, fiber optic adapters have the merits of low insertion loss, good interchangeability and reproducibility. FCJ OPTO supplies a wide range of mating sleeves and hybrid adapters, including special male to female hybrid fiber optic adapter.


  • GJYXFCH(V) FRP Figure 8 Self Supporting Fiber Optic Drop Cable For FTTH

    GJYXFCH(V) FRP Figure 8 Self Supporting Fiber Optic Drop Cable For FTTH

    GJYXFCH(V) FRP,The optical fiber unit is positioned in the centre. Two parallel Fiber Reinforced Plastics (FRP/KFRP/STEEL) are placed at the two sides. A steel wire as the additional strength member is also applied. Then the cable is completed with a black or colored LSZH sheath.

    With the development of the telecommunications industry, the communications networksdevelop from theunitary voice service to the full-service integratedcommunications networkwith various digital services of voice, data, and video.The construction ofoptical networks develops from the backbone network, corenetwork to the MANand access net works. Since the fiber  withfrequencybandwidth has the strengths of high transmission capacity and lowattenuation,FTTH supports various kinds of services, the features such aswider bandwidth,convenient maintenance are the foundation for our company todesign the dropoptical cable, which is applicable to the accession of the user’send in thebroadband access network.


  • GYFFY Fcj Opto Tech Best Price Two FRP Aerial Outdoor Optical Fiber Cable

    GYFFY Fcj Opto Tech Best Price Two FRP Aerial Outdoor Optical Fiber Cable

    GYFFY Optical Fiber Cable , The cable structure is put the ф250μm colored fiber in the PBT loose tube, and two FRP as strengthen member, Cable surface is extruded with a PE outer sheath.


  • Outdoor Armored Cable GYFTA53 48B1.3 Outdoor Armored Cable For Direct Burial

    Outdoor Armored Cable GYFTA53 48B1.3 Outdoor Armored Cable For Direct Burial

    Outdoor Armored Cable GYFTA53 ,The fibers, 250μm, are positioned in a loose tube made of a high modulus plastic. The tubes are filled with a water-resistant filling compound. A Fiber Reinforced Plastic (FRP) locates in the center of core as a non-metallic strength member. The tubes (and fillers) are stranded around the strength member into a compact and circular core. An Aluminum Polyethylene Laminate (APL) is applied around the cable core. Then the cable core is covered with a thin polyethylene (PE) inner sheath, which is filled with jelly to protect it from water ingress.  After a corrugated steel tape armor is applied, the cable is completed with a PE outer sheath.


  • GYFTC8S Aerial High Quality Outdoor Fig-8 Fiber Optic Cable With Layer Filling Loose Tube

    GYFTC8S Aerial High Quality Outdoor Fig-8 Fiber Optic Cable With Layer Filling Loose Tube

    The GYFTC8S Aerial fibers,  The fibers,  250μm , are positioned in a loose tube made of a high modulus plastic. The tubes are filled with a water-resistant filling compound. FRP locates in the center of core as a non-metallic strength member. The tubes (and fillers) are stranded around the strength member into a compact and circular cable core. After an Steel tape (SPS) moisture barrier is applied around the cable core, this part of cable accompanied with the stranded wires as the supporting part are completed with a polyethylene (PE) sheath to be figure 8 structure.


  • GYTA53 Outdoor Double Armored Double Jackets Stranded Loose Tube Fiber Optic Cable

    GYTA53 Outdoor Double Armored Double Jackets Stranded Loose Tube Fiber Optic Cable

    GYTA53 Armored ,The fibers, 250μm, are positioned in a loose tube made of a high modulus plastic. The tubes are filled with a water-resistant filling compound. A steel wire, sometimes sheathed with polyethylene (PE) for cable with high fiber count, locates in the center of core as a metallic strength member. Tubes (and fillers) are stranded around the strength member into a compact and circular cable core. The cable core is filled with the filling compound to protect it from water ingress, over which a thin PE inner sheath is applied. After the PSP is longitudinally applied over the inner sheath, the cable is completed with a PE outer sheath.


  • GYTC8A Outdoor Figure-8 Aerial Fiber Optic Cable With Aluminium Corrugated Tape

    GYTC8A Outdoor Figure-8 Aerial Fiber Optic Cable With Aluminium Corrugated Tape

    GYTC8A is a typical self supporting outdoor fiber optic cable with features of moisture resistance and crush resistance suitable for aerial application.The  stranded wires as the supporting part are completed with a polyethylene(PE) sheath to be figure 8 structure. Aluminum tape armored and PE outer sheath provide crush resistance and gun shot resistance features. The steel-wire as the central strength improves the tensile strength and it is surrounded by the loose tube and water blocking system. The impact structure ensures excellent mechanical and environmental performance.Both single mode type and multimode types are available. Various lengths and fiber number can be customized according to customers’ requirements.


  • GYTC8S Figure 8 FTTH Fibra Optica Cable With Steel Messenger GYTC8S

    GYTC8S Figure 8 FTTH Fibra Optica Cable With Steel Messenger GYTC8S

    Cable Specification: 

    Item Name:Fiber optical cable GYTC8S
    Optical Mode:Singlemode/Multimode
    Fiber Diameters:G652, G655, 50/125μm, 62.5/125μm
    Total Fiber Count:2-144
    Bend Radius(Static/Dynamic):10D/20D
    Working Life:More than 25 years

    Application:Aerial self-supporting,Local network,Local network,Long distance network communication.


  • GYTS Light-Armored Outdoor Stranded Loose Tube Optical Fiber Cable

    GYTS Light-Armored Outdoor Stranded Loose Tube Optical Fiber Cable

    GYTS Light-armored ,as been designed for long haul / backbone application. Our stranded loose tube design provides stable performance over a wide temperature range and is compatible with any telecommunication grade optical fiber. GYTS Light-Armored Outdoor Stranded Loose Tube Optical Fiber Cable are designed for easy and economical installation.

    Excellent optical, mechanical & environmental performance
    High strength-to-weight ratio
    High tensile strength
    High crush strength
    Corrosion resistance
    Very light weight
    Very flexible  bending radius


  • GYTY53 Double Sheathed Outdoor Armored Loose Cable

    GYTY53 Double Sheathed Outdoor Armored Loose Cable

    GYTY53 Armored Loose Tube Double Jacket/Double Armor fiber optic cables are designed to provide high fiber counts with the flexibility and versatility required for today’s most demanding installations, including direct buried. With fiber counts up to 288 and S-Z strand designs.


  • GYXTW Outdoor Duct Aerial Uni-Tube Light-Armored Cable

    GYXTW Outdoor Duct Aerial Uni-Tube Light-Armored Cable

    The fibers, 250μm, are positioned in a loose tube made of a high modulus plastic. The tubes are filled with a water-resistant filling compound. A steel wire, sometimes sheathed with polyethylene (PE) for cable with high fiber count, locates in the center of core as a metallic strength member. Tubes (and fillers) are stranded around the strength member into a compact and circular cable core. The cable core is filled with the filling compound to protect it from water ingress, over which a thin PE inner sheath is applied. After the PSP is longitudinally applied over the inner sheath, the cable is completed with a PE outer sheath.


108 Total

What Is Fiber Optic Cable

Fiber optic cables represent a significant advancement in telecommunications and data transmission technology, offering high-speed, reliable connectivity for various applications. At their core, these cables utilize thin strands of glass or plastic fibers to transmit data as light signals, enabling faster and more efficient data transfer over longer distances compared to traditional copper cables.

Understanding Fiber Optic Technology



● Composition and Function


Fiber optic cables consist of three main components: the core, the cladding, and the buffer coating. The core is the innermost part, made of glass or plastic, through which light signals travel. Surrounding the core is the cladding, a layer with a lower refractive index that helps contain the light within the core by reflecting it inward. The buffer coating, which encases the cladding, offers protection against physical damage and environmental factors.

● Types of Fiber Optic Cables


Fiber optic cables are broadly categorized into singlemode and multimode fibers. Singlemode fibers, identified as OS2, have a smaller core diameter of about 9 micrometers, allowing the propagation of light in a single path. This minimizes signal attenuation and makes them ideal for long-distance communication. Multimode fibers, distinguished by types such as OM1, OM2, OM3, OM4, and OM5, feature larger core diameters (typically 50 or 62.5 micrometers) and support multiple light paths. Although multimode fibers are suitable for shorter distances due to higher modal dispersion, advancements like OM4 and OM5 enable high-speed data transfer over moderate distances, supporting bandwidths up to 100Gbps.

Applications and Benefits



● Versatile Usage


Fiber optic cables are integral to numerous sectors, including telecommunications, data centers, medical imaging, and military communications. Their ability to support high-bandwidth applications makes them essential in the development of emerging technologies such as 5G networks, cloud computing, and Internet of Things (IoT) devices. Additionally, they are used in various indoor and outdoor environments, supported by riser-rated and plenum-rated options that meet specific installation requirements.

● Advantages Over Traditional Cables


The superiority of fiber optic cables over traditional copper cables lies in several key areas:

1. Higher Bandwidth : Fiber optic cables offer significantly higher bandwidth, enabling the transmission of vast amounts of data at exceptionally high speeds, which is critical for modern communication needs.
2. Longer Distances : Unlike copper cables, which suffer from significant signal loss over long distances, fiber optic cables maintain signal integrity over much longer spans, reducing the need for repeaters.
3. Immunity to Electromagnetic Interference : Fiber optic cables are immune to electromagnetic interference (EMI) and radiofrequency interference (RFI), making them ideal for environments with high electrical noise.
4. Security : The nature of fiber optic technology makes it difficult to tap into the signal without causing noticeable disruptions, thus offering enhanced security for data transmissions.
5. Durability and Longevity : Fiber optic cables are less susceptible to environmental damage and signal degradation over time, ensuring long-term reliability and performance.

Implementation Considerations



● Installation and Maintenance


While the installation of fiber optic cables can be more complex and costly compared to copper cables, the long-term benefits often outweigh the initial investment. Proper installation requires specialized knowledge and tools to ensure optimal performance and minimize potential issues such as bending losses and connector misalignments.

● Future-Proofing Infrastructure


Investing in fiber optic technology is a strategic move for future-proofing communication infrastructure. As demand for higher data rates and more robust connectivity continues to grow, fiber optic cables provide a scalable solution that can accommodate future advancements without the need for frequent upgrades.

In conclusion, fiber optic cables stand at the forefront of modern communication technology, offering unparalleled speed, reliability, and efficiency. Their ability to meet the ever-increasing demands for data transmission positions them as a critical component in the ongoing evolution of global connectivity.

FAQ about Fiber Optic Cable

What is a fiber optic cable used for?

Fiber Optic Cables: An Overview

Fiber optic cables are a crucial element in modern communication and technological systems. Comprised of extremely pure glass fibers, these cables utilize light from lasers or LEDs to transmit information. They are designed with several thousand fibers, each insulated by a protective jacket and internal cladding to prevent signal loss. This meticulous construction ensures high performance and reliability, making fiber optic cables indispensable in numerous applications.

Primary Applications of Fiber Optic Cables

● Communication Systems



Cable Television: One of the most widespread uses of fiber optic cables is in cable television. The high bandwidth and faster speeds offered by these cables make them a superior choice over traditional coaxial cable systems. This technology ensures high-quality signal transmission, enhancing the overall viewing experience.

Internet Systems: Fiber optic cables have revolutionized internet connectivity, significantly improving bandwidth and speed. These cables are now the preferred choice for internet systems, replacing older copper wires and coaxial cables. Their ability to handle vast amounts of data at high speeds is unmatched, providing users with seamless and rapid internet access.

Telephone Networks: Fiber optic cables have largely replaced copper undersea cables in telephone networks. Their extensive use in 5G networks is particularly noteworthy, contributing to the development of small cell networks and enhancing overall communication infrastructure.

Computer Networking: In the realm of computer networking, speed is paramount. Fiber optic cables facilitate quick data transmission, be it storing files in remote locations or sending emails. Their superior speed and reliability make them a preferred choice over copper cables in this domain.

● Industrial and Automotive Applications



Automobiles: Fiber optic cables are increasingly integrated into modern vehicles for various purposes, including interior and exterior lighting and signal transmission between sensors and computing devices. These systems are critical for functions like airbag deployment, where speed and reliability are essential.

Mechanical Inspections: Drawing a parallel to their medical usage, fiber optic cables are also employed in mechanical inspections. Their small size allows them to navigate tight spaces, and their low-loss characteristics ensure that even lengthy cables perform effectively.

● Medical and Military Applications



Medical Applications: Fiber optic cables play a pivotal role in medical settings, particularly in endoscopic surgery, where they provide lighting and site viewing. Dentists also use these cables to direct high-power light, aiding in the identification of cracks and cavities.

Military Applications: The military leverages fiber optic cables for their low weight, immunity to electromagnetic interference, and security against interception. These cables are utilized in teleoperated weapon systems, underwater sensor systems, and command and communication networks.

● Aerospace and Lighting Applications



Aerospace Applications: Fiber optic cables are well-suited for aerospace applications due to their ability to withstand extreme conditions, including cryogenic temperatures. They are used as sensors, communication cables, and lighting systems. Ongoing experiments are even exploring manufacturing these cables in space to achieve better specifications in a zero-gravity environment.

Lighting: Beyond data transmission, fiber optic cables are used in lighting applications. Their high light transmission capabilities, durability, and ease of installation make them ideal for directing light precisely where needed.

● Growing Demand for Fiber Optic Cables



The increasing demand for fiber optic cables is evident across various industries. The global market for these cables has seen substantial growth, driven by their versatile applications and superior performance. This trend underscores the importance of reliable fiber optic cable manufacturers who can provide high-quality products to meet this rising demand.

In conclusion, the uses of fiber optic cables span an impressive array of fields, from communication and medical applications to industrial and military uses. Their unparalleled speed, reliability, and capability to handle vast amounts of data make them a cornerstone of modern technology. As demand continues to grow, partnering with a reputable fiber optic cable manufacturer ensures access to the best possible solutions for your specific needs.

---

Is there a difference between fiber and fiber-optic?

When discussing modern telecommunications and high-speed data transmission, one might encounter terms like "fiber" and "fiber-optic." At first glance, these terms may appear interchangeable, but they refer to distinct aspects of the same technology. Understanding the difference between fiber and fiber-optic is crucial for grasping the full scope of this advanced field.

● Understanding Fiber



Fiber, in the context of telecommunications, refers to the thin strands of glass or plastic that form the core of cables used for data transmission. These fibers are designed to carry light signals over long distances with minimal loss of quality. Each strand of fiber is incredibly fine, often only a fraction of the thickness of a human hair. The primary advantage of fiber is its capacity to handle a vast amount of data at very high speeds. This makes it an ideal medium for applications requiring reliable, high-bandwidth communication, such as internet services, video streaming, and cloud computing.

● The Role of Fiber-Optic Technology



Fiber-optic, on the other hand, refers to the technology and overall system that utilizes these fibers for data transmission. This technology encompasses everything from the design and manufacturing of the fiber cables to the integration of systems that convert electrical signals into light signals and vice versa. Fiber-optic communication leverages the properties of light to transmit data, which results in several advantages over traditional copper-based systems. These advantages include higher speed, greater bandwidth, and immunity to electromagnetic interference.

● The Synergy between Fiber and Fiber-Optic



While fiber represents the physical medium, fiber-optic describes the technology that transforms and utilizes it. For instance, a Fiber Optic Patch Cord Cable is an essential component used to connect various segments of a fiber-optic network. These cables are designed to provide reliable and high-speed connections with low loss, serving as vital links in the chain of data transmission.

● Advantages of Fiber-Optic Systems



One of the key benefits of fiber-optic systems is their ability to transmit data over long distances without significant signal degradation. At its core, this advantage stems from the physical properties of fiber. Light signals can travel much farther in fiber than electrical signals can in copper, reducing the need for signal boosters and repeaters. Additionally, fiber-optic systems are highly secure. Unlike copper cables, which emit electromagnetic signals that can be tapped, fiber-optic cables do not radiate energy, making them less susceptible to interception and eavesdropping.

● Applications and Future Prospects



The applications of fiber-optic technology are vast and continually expanding. In telecommunications, it forms the backbone of internet infrastructure, ensuring fast and reliable connectivity. Beyond telecommunications, fiber-optic technology is also making significant inroads into industries such as healthcare, where it is used for high-resolution imaging, and in defense, for secure and high-speed data transmission.

Moreover, the increasing demand for high-speed internet and data-intensive applications, such as virtual reality and the Internet of Things (IoT), underscores the growing importance of fiber-optic technology. Fiber Optic Patch Cord Cables play a critical role in meeting these demands by facilitating robust and high-performance network connections.

● Conclusion



In conclusion, while fiber refers to the physical strands used in data transmission, fiber-optic encompasses the technology and systems that utilize these strands to transmit data at high speeds and over long distances. The integration of fiber into fiber-optic technology has revolutionized modern telecommunications and continues to pave the way for future advancements. As the demand for high-speed, reliable communication grows, the role of fiber-optic systems, supported by components like Fiber Optic Patch Cord Cables, will become increasingly vital in shaping the landscape of global connectivity.

What are the two types of fiber optic cables?

Fiber optic cables have revolutionized the way information is transmitted, offering high-speed data transfer over long distances with minimal signal loss. They come in two primary types: single-mode and multi-mode. Each type is engineered for specific applications, dictated by the requirements of data transmission distance, bandwidth, and overall efficiency.

● Single-Mode Fiber Optic Cables



Single-mode fiber optic cables are designed to carry light directly down the fiber, minimizing the number of reflections within the core. These cables have a small core diameter, typically around 9 micrometers, which allows only one mode of light to propagate. This singular pathway results in lower attenuation and less signal loss over extended distances, making single-mode fibers ideal for long-haul communication links, such as those used in telecommunications networks and cable television infrastructure.

Due to their ability to maintain signal integrity over long distances, single-mode cables are commonly used in applications requiring high bandwidth and data rates. Their construction supports wavelengths in the 1310 nm and 1550 nm range, enabling efficient data transfer without the risk of modal dispersion. However, single-mode fibers require more precise alignment when it comes to fiber optics cable connectors, which can increase installation and maintenance costs.

● Multi-Mode Fiber Optic Cables



In contrast, multi-mode fiber optic cables feature a larger core diameter, typically around 50 or 62.5 micrometers, enabling multiple modes of light to propagate through the cable. These multiple pathways allow for higher data throughput over shorter distances. Multi-mode fibers are generally used in local area networks (LANs), data centers, and other shorter-range communication systems where cost efficiency and ease of installation are paramount.

Multi-mode fibers can operate at wavelengths of 850 nm and 1300 nm. The larger core size and the capacity to handle many modes of light simplify the process of aligning fiber optics cable connectors, making installation and maintenance more straightforward and less costly. However, the presence of multiple pathways can lead to modal dispersion, which limits the effective transmission distance and bandwidth compared to single-mode fibers.

● Fiber Optics Cable Connectors



Regardless of the type of fiber optic cable, the choice and quality of fiber optics cable connectors are critical to the performance and reliability of the network. Connectors such as SC, LC, and ST types are commonly used, each with specific characteristics suited to different applications. High-quality connectors ensure minimal signal loss and reflectance, facilitating efficient and reliable data transmission.

● Conclusion



In summary, understanding the two types of fiber optic cables—single-mode and multi-mode—is essential for designing and deploying effective communication networks. Single-mode cables are suited for long-distance, high-bandwidth requirements, while multi-mode cables are best for shorter-distance applications where cost and ease of installation are more critical. Regardless of the type, the role of fiber optics cable connectors cannot be overstated, as they ensure the integrity and performance of the fiber optic network. By carefully selecting the appropriate type of cable and connectors, organizations can achieve optimal data transmission efficiency and reliability.

Knowledges From Fiber Optic Cable

Closed Loop For 96 Hours, What They Went .

Closed Loop For 96 Hours, What They Went .

On Auqust 24, the sudden new crown epidemic in Fuyang Dongzhou disruptedour production and life rhythm. The whole island was silent and the whole areawas tested for nucleic acid ...... According to the requi...
Good news! The Group has won several heavyweight list honors one after another!

Good news! The Group has won several heavyweight list honors one after another!

 On September 7, 2022 China Top 500 Private Enterprises Summit was held. The meeting was held in a combination of online and offline mode, and Wu Bin, director and vice president of the Group, attended the meeting in Zhejiang Province sub-council.FCJ Grou
The second phase of the optical communication industrial park is expected to be completed by the end of the year

The second phase of the optical communication industrial park is expected to be completed by the end of the year

Since the reform and opening up, optical communication has been the traditional advantageous industry of Fuyang. (hereinafter referred to as “Fuchunjiang Photoelectricity”), which is a subsidiary of Fuchunjiang Group, has given birth to the first HYYV mun
Hangzhou Mayor Investigates Fuchunjiang Group’s Optical Communication Segment

Hangzhou Mayor Investigates Fuchunjiang Group’s Optical Communication Segment

Zhejiang Fuchunjiang Photoelectric Technology Co., Ltd. is the core subsidiary of "information and communication" industry of Fuchunjiang Group, one of the top 500 private enterprises in China, and the birthplace of "Zhejiang Optics Valley". Over the past
Technology and market analysis of PLC optical splitter

Technology and market analysis of PLC optical splitter

The optical splitter is the core of FTTH optical devices. It contains great growth potential and will become the main driver of the growth of the FTTX market. It will undoubtedly bring vitality and challenges to the optical communications manufacturing in
How do fiber optic cables meet today's connectivity needs?

How do fiber optic cables meet today's connectivity needs?

Fiber optic and cable connection arrangements are the background technologies for modern communications systems to achieve high speed, wide coverage and increased bandwidth. Individual components such as fiber optics, cables, connectors, and end-to-end fi
Leave Your Message