The Endress+Hauser Raman bIO-Optics are a specialized type of immersion optic designed specifically for bioprocess analysis. Here’s a breakdown of their key features:
- Biocompatible Design: Made from proprietary materials optimized for bioprocesses, ensuring compatibility with biological samples and minimizing potential contamination risks.
- Sterilization Methods: The bIO-Optics are autoclave and gamma sterilizable, allowing for sterile operation within bioreactors and adhering to strict bioprocessing protocols.
- Non-Contact Measurement: Utilizes a fixed-focus design for long-term stability and reliable spectral data acquisition without physically contacting the sample, minimizing disruption to cell cultures or sensitive bioprocesses.
- Multi-Component Analysis: Capable of measuring multiple bioprocess components simultaneously, providing valuable insights into cell viability, nutrient concentrations, and overall bioreactor performance.
- Integration with Rxn-10 Probe: Designed to work seamlessly with the Endress+Hauser Rxn-10 Raman probe, offering a complete and compatible solution for bioprocess Raman spectroscopy.
Benefits:
- Reliable Bioprocess Monitoring: Enables real-time, non-invasive monitoring of critical bioprocess parameters, allowing for optimized process control and improved product quality.
- Enhanced Sterility: Biocompatible materials and sterilization options ensure minimal risk of contamination within bioreactors, crucial for maintaining aseptic conditions.
- Streamlined Workflow: The fixed-focus design and compatibility with the Rxn-10 probe simplify the measurement setup and data acquisition process.
- Reduced Maintenance Needs: The non-contact design minimizes the need for probe cleaning or maintenance within the bioreactor, minimizing disruption to ongoing processes.
In essence, the Endress+Hauser Raman bIO-Optics are a valuable tool for bioprocess engineers and researchers seeking a reliable and sterile method for real-time bioprocess analysis. They offer a combination of biocompatibility, sterilizability, non-contact measurement, and multi-component analysis capabilities, making them a key component for optimizing bioreactor performance and ensuring product quality.
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