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China Suppliers Factory for Precision Fiber Lens Devices: Tapered, Cylindrical, Spherical, and More
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China Suppliers Factory for Precision Fiber Lens Devices: Tapered, Cylindrical, Spherical, and More

Our factory in China offers a diverse range of high-quality lensed fiber products designed to meet various optical needs. Our product lineup includes Tapered Lensed Fiber, Cylindrical Lensed Fiber, Spherical Lensed Fiber, 45Deg Spherical Lensed Fiber, Cleave Lensed Fiber, and Blade Lensed Fiber. Additionally, we provide optional Lensed Fiber Arrays to enhance versatility. All our fibers are manufactured with precision, maintaining a height tolerance of +/-10um. As a leading supplier in the industry, we ensure that our lensed fibers meet the highest standards for performance and reliability

    Product Introduction

    A lens fiber is a new type of optical fiber device that features a microlens structure fabricated on the end face of a conventional optical fiber through special processes (such as grinding, photolithography, and laser processing). Its core function is to optimize the efficiency of optical signal transmission and reception, solve the loss problem of traditional optical fibers in optical coupling, and is widely used in fields such as optical communication, sensing, and lidar.

    Its core advantage lies in its optical control capability: the microlens can precisely adjust the spot size and divergence angle, compressing the divergence angle of the light emitted by the fiber from tens of degrees (typical of conventional optical fibers) to within a few degrees. This concentrates the optical signal, enabling an insertion loss as low as 0.1dB or less when coupling with devices like optical chips, detectors, and lens arrays—far outperforming the coupling effect of traditional optical fibers. Additionally, lens fibers support single-mode and multi-mode optical fiber substrates, and can be customized into different microlens shapes (such as spherical, aspherical, and cylindrical) to adapt to various packaging spaces and optical field requirements.

    In application scenarios, lens fibers serve as the "coupling bridge" for high-speed optical modules, facilitating efficient connection between optical fibers and silicon photonic chips in 100G/400G silicon photonic modules; in the lidar field, their low-loss and small-size characteristics make them suitable for compact spaces like vehicle-mounted systems; in optical fiber sensing, they can enhance the sensitivity of weak optical signal collection. With their high coupling efficiency and flexible customizability, lens fibers have become a key enabler for promoting the miniaturization and high-performance development of optoelectronic devices.

    Applications

    • High Speed Transceiver PSM4
    • Data Center
    • Communications

    Characteristics

    • Monolithic Integrated Structure
    • Low Loss
    • Optical Beam Customized

    Frequently Asked Questions

    What is a lens fiber and how is it made?
    A lens fiber is a new type of optical fiber device featuring a microlens structure fabricated directly on the end face of a conventional optical fiber. It is manufactured using specialized processes such as grinding, photolithography, and laser processing.
    What are the core advantages of using lens fibers over traditional optical fibers?
    The core advantage is its precise optical control capability. The microlens adjusts the spot size and divergence angle, compressing the light divergence angle from tens of degrees to within a few degrees. This minimizes insertion loss to as low as 0.1dB or less during optical coupling.
    Which applications benefit most from lens fibers?
    They are widely used in high-speed transceivers (like PSM4), data centers, communications, optical fiber sensing, lidar systems, and silicon photonic modules (100G/400G).
    What customization options are available for lens fibers?
    Lens fibers support both single-mode and multi-mode optical fiber substrates. The microlens can be customized into various shapes, including spherical, aspherical, and cylindrical, to suit specific packaging spaces and optical field requirements.
    What are the main characteristics of this product?
    The main characteristics include a monolithic integrated structure, exceptionally low loss, and customizable optical beam parameters.
    How do lens fibers optimize performance in silicon photonics and lidar?
    They act as an efficient coupling bridge to connect optical fibers with silicon photonic chips in high-speed modules. For lidar, their low-loss and compact size allow them to fit easily into tight vehicle-mounted packaging spaces.