Contact Us
Phone: 0512-65696066
Email: sisily.liu@agix.net.cn
Address: No. 53, Liufeng Road, Hedong Industrial Park, Wuzhong Economic Development Zone, Suzhou
Micro-Optical Devices
Fiber Optic Coupler/Splitter – PLC
Agix's PLC splitters utilize silicon dioxide waveguide technology to uniformly distribute optical signals, making them ideal for PON, FTTx, and high-density applications. Multiple configurations are available for seamless integration.
Fused optical couplers provide precise signal separation or combination with low excess loss. Designed for telecom, data center, and industrial applications, they are available in standard, WDM, PM, and high-power versions.
CWDM Coarse Wavelength Division Multiplexer
Agix's Coarse Wavelength Division Multiplexing (CWDM) utilizes laser signals with a wavelength spacing of 20nm. Through multiplexers and demultiplexers, it achieves bidirectional transmission of multi-wavelength optical signals in a single optical fiber, supporting 8-18 channels. It is suitable for applications where extremely high channel density is not required. Advantages include low cost, low power consumption, small size, low insertion loss, and high isolation.
DWDM (TFF/AWG) Dense Wavelength Division Multiplexer
Agix's low insertion loss, compact DWDMs offer a C/L band range with low insertion loss and consistent performance.
RoHS compliant and GR-1221-CORE compliant. Micro-optical designs are available to meet specific application requirements.
Free-space dense wavelength division multiplexing (DWDM) system devices are supported for DWDM systems of varying rates and bandwidths. A variety of DWDM optical devices are available, including 200GHz and 100GHz models.
Agix optical isolators are suitable for various high-power laser source protection systems. They utilize an external magnetic field to unidirectionally rotate the polarization direction of linearly polarized light, achieving efficient isolation and reflection suppression of optical signals.
They provide stable high isolation, preventing backlight damage to the laser source and eliminating other potential hazards, ensuring long-term laser stability under optimal operating conditions.
Agix's free-space optical isolators do not require fiber optic interfaces and can be directly embedded in free-space optical paths. Through the Faraday magneto-optical effect and polarization control, they allow light to propagate in a single direction while isolating reverse light. They feature high isolation, low insertion loss, compact structure, and good stability.
Agix's fiber optic Z-Block module design integrates various micro-optical components, including fiber optic receptacles, optical collimators or lenses, and wavelength division multiplexers (WDMs). It achieves optical signal multiplexing and demultiplexing by depositing a high-reflectivity film on an orthographic prism and attaching WDM filters of different wavelengths.
The adoption of high-precision Z-Block modules significantly optimizes the design and performance of downstream optical modules and products.
Agix's fiber optic circulator is designed for high power and low loss performance. It enables seamless light circulation between ports while maintaining signal integrity. This circulator is ideal for industrial, medical, and high-power laser applications, precisely supporting both bulk-core and heterogeneous fiber splices.
High-Performance Optical Fiber Circulator With Connectors
Agix's custom-designed circulators with integrated optical connectors utilize the Faraday effect, employing an external magnetic field to unidirectionally rotate the polarization direction of linearly polarized light, thus achieving unidirectional optical signal transmission. They are applied in various large-core/high-throughput optical transmission systems, enabling high-efficiency optical signal transmission through circumferential port connections. This significantly improves ease of use in the field.
Agix offers a series of high-precision fiber optic capillaries made of quartz or specialty glass, featuring smooth inner walls and an aperture that closely matches the outer diameter of the optical fiber (typically with micron-level precision). These capillaries fix the fiber using a matching fluid or adhesive and are widely used in micro-optical devices and products requiring precise alignment and coupling.
The products are commercially mature, cost-effective, and highly reliable, having passed rigorous environmental testing within the industry.
Agix's collimation device series covers various solutions for collimating fiber optic point sources into parallel light. The core components consist of optical fibers, precision lenses (such as GRIN lenses and ball lenses), and sleeves, meeting the optical signal conversion requirements within micro-optical systems. These mature and highly reliable products are ideal for realizing the collimation of laser point sources into collimated light in micro-optical devices.
Agix offers customized, high-precision Receptacle to various fiber optic connector interface designs. Its products feature low insertion loss, high return loss, and reliable performance, proven in various customer application scenarios and trusted by customers both domestically and internationally.