Nederlands

STL's new 160 micron fiber optic can meet emerging network and pipeline capacity requirements

239
2023-11-01 14:46:45
Bekijk vertaling

STL unveiled its new 160 micron fiber optic for the first time at the 2023 India Mobile Conference Trade Show.
The company claims that its 160 micron fiber optic was conceptualized and developed at its Center of Excellence in Maharashtra, India, and its cable capacity is three times that of traditional 250 micron fiber optic. STL Company.

After the launch of 160 micron fiber at the 2023 India Mobile Conference Trade Show, Ashwini Vaishnaw, Minister of Communications, Electronics, and Information Technology, and Railways, spliced two strands of fiber - a height calibration process that connects two hairlike fiber cores.

This new cable was originally targeted at India, which has become one of the fastest growing digital economies in the world. In particular, the size of the new fiber optic will help service providers increase the amount of fiber they can carry in pipelines. At present, the laying of fiber optic pipelines accounts for over 60% of the deployment of fiber optic cables. Network builders around the world are constantly searching for ways to reduce the size of optical fibers in order to accommodate more and more capacity in the available pipeline space.

STL's 160 micron fiber optic encapsulates larger capacity in limited pipeline space through reduced cables with a diameter of 6.4 millimeters, meeting the emerging demand for bandwidth capacity and green business.

STL's innovation may have a significant impact on India's broadband landscape. In large-scale projects such as Bharatnet, India needs to deploy over 20 million kilometers of fiber optic cables by 2025, and using 160 micron fiber optic instead of standard 250 micron fiber optic can shorten deployment time by more than 15%. This allows the use of smaller diameter pipes, thereby reducing plastic footprints on the ground by more than 30%.

Gradually reducing the size of optical fibers is a highly challenging feat, and optical experts around the world have been working hard to solve this problem. However, reducing the fiber size to below 250 microns poses various challenges, including increasing sensitivity to micro bending and increasing complexity of the fiber stretching process.

Dr. Badri Gomatam, Chief Technology Officer of STL Group, stated, "Through highly calibrated processes and material engineering, we have achieved breakthroughs in manufacturing processes and glass composition, achieving micro bending insensitivity.

This product meets the telecommunications grade optical performance standards and meets the ITU G.657A2 standard. This news was released after a series of innovations by STL R&D experts, including multi-core fiber with 4x capacity and 180 micron fiber.

Source: Laser Network

Gerelateerde aanbevelingen
  • Japan and Germany jointly develop ultra high speed laser material deposition technology

    Makino Machine Tool Company, headquartered in Tokyo, Japan, and Fraunhofer Institute for Laser Technology (ILT), headquartered in Aachen, Germany, have collaborated to combine ultra-high speed laser material deposition (EHLA) and near net shape additive manufacturing (EHLA3D) with a five axis CNC platform. The new system developed can efficiently produce, coat, or repair complex geometric shapes o...

    2024-10-25
    Bekijk vertaling
  • Breakthrough in optical quantum simulation using long-lived polariton droplets

    Abstract: A groundbreaking discovery by CNR Nanotec and scientists from the University of Warsaw has revealed a robust method for creating long-lived quantum fluids using semiconductor photonic gratings. This study, published in the journal Nature Physics, marks a significant step forward in simulating complex systems through unique polariton droplets that demonstrate stability in lifespan and rec...

    2024-03-27
    Bekijk vertaling
  • New research on achieving femtosecond laser machining of multi joint micromachines

    The team of Wu Dong, professor of the Micro/Nano Engineering Laboratory of University of Science and Technology of China, proposed a processing strategy of femtosecond laser two in one writing into multiple materials, manufactured a micromechanical joint composed of temperature sensitive hydrogel and metal nanoparticles, and then developed a multi joint humanoid micromachine with multiple deformat...

    2023-09-15
    Bekijk vertaling
  • Additive Manufacturing Software Market 2025: Analysis, Data, and Forecasting

    In March 2025, Additive Manufacturing Research (AMR) released its latest 3D printing market research report, "AM Software Markets 2025: Analysis, Data, and Forecast," which provides a comprehensive and in-depth analysis of the 3D printing software industry. The latest research findings indicate that global revenue from additive manufacturing (AM) software is expected to grow from $2.44 billion in ...

    03-17
    Bekijk vertaling
  • Significant progress has been made in the research on the detection of microwave electric fields in the Rydberg area of Shanghai Institute of Optics and Technology

    Recently, the Aerospace Laser Technology and System Department of the Shanghai Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, and the East China Research Team of the Key Laboratory of Quantum Optics, Chinese Academy of Sciences, together with the research team of Professor Chen Liqing of East China Normal University, demonstrated a Rydberg microwave sensor with high sens...

    2024-05-08
    Bekijk vertaling