Fluorescence Fiber Optic Probe

Main features:

  • Ultra-Slim Probe Tips: Featuring a minimal 0.5 mm diameter
  • Fiber Optic Multi-Leg or Y-Design: For versatile Reflection Probing
  • Reduced Cross Talk: Achieved through metal-coated fiber implementation
  • Tip Variations: Options for flat or 38-degree angled designs
  • Design Flexibility: Available in both Round-to-Round and Round-to-Line configurations

The advancements in biophysics, molecular, and cellular biology are largely attributed to innovative fluorescence-based measurement methods. For biophysicists, the use of fluorescence has become a crucial and efficient technique for investigating the structure, dynamics, and functionalities of biological macromolecules such as nucleic acids and proteins. This approach offers sensitivity and rapidity in analysis, enhancing the understanding of complex biological systems.

Our range of Fluorescence Fiber Optic Probes is specifically engineered to facilitate the fluorescence measurement of various sample types, including solids, liquids, and powders. These probes are designed to offer precision and versatility in fluorescence detection.

To enhance performance and reduce signal interference, these probes can be fitted with metal-coated fibers in the Illuminating channel upon request. This feature significantly minimizes cross-talk, ensuring clearer and more accurate measurements.

The probes are available in diverse configurations, accommodating two, three, or four fiber legs. Moreover, they are offered in various construction styles such as Round-to-Round (R/R) and Round-to-Line (R/L), catering to a broad spectrum of analytical requirements in the field of biophysics and related disciplines. This flexibility allows for tailored solutions to meet specific research needs in fluorescence studies.

We offer customizable lengths and fiber diameters to suit your specific requirements. Our standard configuration consists of a (7 + 1) fiber arrangement, with the central channel composed of metal-coated fiber to effectively reduce cross-talk. This design ensures enhanced performance and accuracy in measurements.

Monitoring Reactions in Real Time

Process Analytical Technologies (PAT)

Development and Screening of Crystallization

In-depth Analytical Characterization

Analyzing Biopharmaceutical Processes

Overseeing Biofuel Development and Production