Atomfair-AFIS-739 Fiber Optic Information Experiment System
Product Overview
The Atomfair-AFIS-739 Fiber Optic Information Experiment System is a high-performance experimental platform dedicated to the field of fiber optic sensing and communication. It integrates advanced optical components and precise control systems, designed to meet the needs of teaching experiments, basic principle verification, and research on sensing technologies related to fiber optics. With its standardized configuration and reliable performance, this system serves as an essential tool for professionals, researchers, and students engaged in fiber optic technology studies.
Key Specifications & Technical Parameters
| No. | Component Name | International Standard Specifications |
|---|---|---|
| 1 | Main Unit | Equipped with a 633nm single-mode beam splitter, integrated temperature control system, pressure control system, and fiber coupling frame |
| 2 | He-Ne Laser | Wavelength: 632.8nm; Output Power: >1.5mW |
| 3 | Optical Power Meter | Measurement Range: 2μW, 20μW, 200μW, 2mW, 20mW, 200mW (6 adjustable ranges); Equipped with a 3.5-digit digital display |
| 4 | Single-Mode Fiber | Operating Wavelength: 633nm; Equipped with an FC/PC standard connector on one end |
| 5 | Multi-Mode Fiber | Operating Wavelength: 633nm; Length: 1km; Compliant with general communication fiber standards |
| 6 | Beam Expander | Focal Length: f=6.2mm |
Note: The above configurations and parameters are for reference only. Actual specifications are subject to the product packing list. Minor adjustments may be made without prior notice.
Applicable Experiments & Uses
This experimental system supports a wide range of professional experiments, covering core knowledge and key technologies in fiber optics:
- Fiber Optics Basic Knowledge Demonstration Experiment
- Fiber-Light Source Coupling Method Experiment
- Multi-Mode Fiber Numerical Aperture (NA) Measurement Experiment
- Fiber Transmission Loss Characteristics and Measurement Experiment
- Mach-Zehnder (M-Z) Fiber Interferometer Experiment
- Fiber Optic Temperature Sensing and Pressure Sensing Principle Experiment
Target Users & Application Scenarios
- Educational Institutions: Universities, colleges, and technical schools offering courses in optical engineering, communication engineering, and electronic information engineering. It is ideal for laboratory teaching to help students grasp practical operation skills and theoretical principles.
- Research Institutions: Suitable for scientific research teams engaged in fiber optic sensing, optical communication, and related fields to conduct basic principle verification, technical prototype testing, and innovative technology research.
- Technical Training Centers: Used for professional skill training of engineers and technical personnel in the optical communication industry, enabling them to enhance their practical operation capabilities and technical understanding.
Product Advantages
- Comprehensive Configuration: Integrates all necessary components for fiber optic experiments, eliminating the need for additional purchases of core accessories.
- Standardized Parameters: All components comply with international technical standards, ensuring stable performance and high compatibility.
- Versatile Functions: Covers core experimental content of fiber optic technology, meeting the needs of teaching, research, and training.
- Reliable Performance: Adopts high-quality optical components and precise control systems, ensuring accurate experimental results and long-term stable operation.
If you’re interested, have any questions, or have specific customization requirements, please feel free to contact us at inquiry@atomfair.com.
Can the AFIS-739's optical power meter accurately measure the output of the 632.8nm He-Ne laser?
Yes, the optical power meter has six adjustable measurement ranges from 2µW to 200mW, and the He-Ne laser output is >1.5mW, which falls within the 2mW range. The meter is equipped with a 3.5-digit digital display for precise readings.
Does the AFIS-739 system support standard FC/PC connector-based fiber optic components?
Yes, the included single-mode fiber is terminated with an FC/PC standard connector on one end. The multi-mode fiber complies with general communication fiber standards, though its connector type is not explicitly specified. The system is designed for flexible experimentation and coupling.
The Atomfair-AFIS-739 integrates a 632.8nm He-Ne laser, a six-range optical power meter, and both single-mode and 1km multi-mode fibers into a single platform, enabling direct execution of core fiber optic experiments including M-Z interferometry and NA measurement. Its standardized component set and integrated temperature/pressure controls support reproducible teaching and research applications, though the 633nm operating wavelength and FC/PC connector requirement impose specific handling and compatibility constraints.
Positive
- Integrated all-in-one experimental platform: Combines a 632.8nm He-Ne laser, six-range optical power meter, single-mode and 1km multi-mode fibers, beam expander, and temperature/pressure control systems in one unit, eliminating the need for separate component purchases and simplifying experimental setup.
- Broad experiment coverage: Supports six core fiber optic experiments including M-Z interferometry, NA measurement, and transmission loss characterization, making it suitable for both educational curricula and research validation of sensing principles.
Trade-offs
- Wavelength-specific fiber compatibility: The system operates at 633nm, requiring single-mode fiber with FC/PC connectors and a 633nm-optimized beam splitter; use of other wavelengths or connector types would require additional adapters or fiber replacements.
- Sensitive optical alignment required: The integrated fiber coupling frame and beam expander demand precise manual alignment for optimal coupling efficiency, which may require operator training and careful handling to maintain measurement accuracy.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).






