Mira P Handheld Raman Spectrometer
Brochures and specifications | 2018 | MetrohmInstrumentation
On-site verification of materials is critical in industries such as pharmaceuticals, chemicals, and manufacturing. Handheld Raman spectroscopy enables rapid, non-destructive analysis at the point of need, reducing costly delays and ensuring product integrity.
This application note introduces the Mira P handheld Raman spectrometer, designed for fast, reliable material identification and verification. It covers key features, operational workflow, regulatory compliance, and real-world performance metrics.
The Mira P employs orbital raster scan (ORS) technology to sample a larger area and improve reproducibility in heterogeneous formulations. Core components include:
The Mira P delivers pass/fail verification, material identification via spectral library search, and multicomponent mixture matching in seconds. ORS scanning enhances detection of dispersed active pharmaceutical ingredients, minimizing false negatives. A guided workflow with barcode scanning and automatic reporting streamlines user interaction and ensures data integrity.
The next generation of handheld Raman systems will integrate cloud-based spectral libraries, AI-driven chemometrics, and enhanced connectivity for real-time data sharing. Advances in miniaturized optics and multiwavelength lasers may broaden applications to new material classes and field environments.
The Mira P handheld Raman spectrometer combines ORS technology, versatile sampling attachments, and regulatory compliance to deliver fast, reliable material verification at the point of need. It addresses the growing demand for on-site quality control in regulated industries.
No references were provided in the source document.
RAMAN Spectroscopy
IndustriesMaterials Testing
ManufacturerMetrohm
Summary
Significance of the Topic
On-site verification of materials is critical in industries such as pharmaceuticals, chemicals, and manufacturing. Handheld Raman spectroscopy enables rapid, non-destructive analysis at the point of need, reducing costly delays and ensuring product integrity.
Study Objectives and Overview
This application note introduces the Mira P handheld Raman spectrometer, designed for fast, reliable material identification and verification. It covers key features, operational workflow, regulatory compliance, and real-world performance metrics.
Methodology and Instrumentation
The Mira P employs orbital raster scan (ORS) technology to sample a larger area and improve reproducibility in heterogeneous formulations. Core components include:
- Mira P handheld Raman spectrometer with ORS optics
- Barcode scanner for automatic method selection and sample logging
- Smart sampling attachments: short-wave and long-wave dispersion probes for bag or bottle measurements
- Contact Ball Probe for liquids and powders
- Tablet Holder for solid dose forms
- Vial Holder for liquid or powder vials
- Calibration/Verification Accessory (CVA) with ASTM standard and NIST-traceable sample
- Integrated software supporting customizable operating procedures and reports
Main Results and Discussion
The Mira P delivers pass/fail verification, material identification via spectral library search, and multicomponent mixture matching in seconds. ORS scanning enhances detection of dispersed active pharmaceutical ingredients, minimizing false negatives. A guided workflow with barcode scanning and automatic reporting streamlines user interaction and ensures data integrity.
Practical Benefits and Applications of the Method
- Rapid throughput: analysis completed in seconds for QC and receiving inspections
- High confidence results: discriminatory algorithms and clear spectral match metrics
- Customizable models and reports: tailored to specific materials and regulatory requirements
- Single-handed operation: compact design and intuitive interface
- Compliance with FDA 21 CFR Part 11: audit trails, electronic records, and multilevel user access
Future Trends and Potential Applications
The next generation of handheld Raman systems will integrate cloud-based spectral libraries, AI-driven chemometrics, and enhanced connectivity for real-time data sharing. Advances in miniaturized optics and multiwavelength lasers may broaden applications to new material classes and field environments.
Conclusion
The Mira P handheld Raman spectrometer combines ORS technology, versatile sampling attachments, and regulatory compliance to deliver fast, reliable material verification at the point of need. It addresses the growing demand for on-site quality control in regulated industries.
Reference
No references were provided in the source document.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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