PolyView2000
Manuals | 2002 | Agilent TechnologiesInstrumentation
Diode array detectors generate three-dimensional data (time, absorbance, wavelength), offering richer qualitative and quantitative insights compared to single-wavelength UV detectors. Effective post-run processing and spectral analysis are crucial for peak identification, purity assessment, co-elution resolution and reliable quantitative results in HPLC workflows.
This operation manual describes the PolyView2000™ Spectral Processing application for Varian Star Workstations, covering:
PolyView2000 integrates with the Varian Star Workstation and the DAD 330 or 9065 detectors. Key software components include the Plot, Spectra Manager, Library Manager, Reports, Peak Sense, and MCA windows. Method Builder defines time-programmed parameters (wavelength, peak width, S/N threshold) for non-interactive operations. System Control/Automation invokes peak sensing and report production in batch sequences.
PolyView2000 enables:
PolyView2000 streamlines complex DAD data interpretation and reporting for quality control, method development and regulatory compliance. Its flexibility supports both interactive exploration and unattended batch processing. Spectral library searches aid compound confirmation; PuP and MCA algorithms enable impurity detection and accurate quantitation even in co-eluting scenarios.
Emerging directions include integration with laboratory information management systems, cloud-based spectral databases, machine learning for automated spectral classification, and enhanced support for high-resolution spectrophotometric data. Improved connectivity with modern LC systems and expanded chemometric modules will further extend the value of diode array processing.
PolyView2000 provides a comprehensive, user-friendly toolkit for post-run diode array data analysis on Varian Star Workstations. By combining advanced plotting, spectral processing, library management, purity evaluation and automated reporting, it elevates chromatographic workflows through greater spectral insight and operational efficiency.
Varian, Inc. PolyView2000™ Operation Manual, Rev. 4 (2002)
Agilent Technologies. www.agilent.com/chem
Software
IndustriesManufacturerAgilent Technologies
Summary
Significance of Topic
Diode array detectors generate three-dimensional data (time, absorbance, wavelength), offering richer qualitative and quantitative insights compared to single-wavelength UV detectors. Effective post-run processing and spectral analysis are crucial for peak identification, purity assessment, co-elution resolution and reliable quantitative results in HPLC workflows.
Objectives and Overview of the Document
This operation manual describes the PolyView2000™ Spectral Processing application for Varian Star Workstations, covering:
- Interactive and automated processing of 330 and 9065 diode array raw data (.RUN files)
- Plotting absorbance, Purity Parameter, ratio and wavelength-max profiles
- Spectrum extraction, overlay, arithmetic operations, and Purity Parameter optimization
- Spectral library construction, editing, search and reporting
- Peak purity evaluation by spectral plots and multicomponent analysis (MCA)
- Automated report generation and peak sensing recalculation
- Creation of reduced data files and workstation channels
Methodology and Instrumentation
PolyView2000 integrates with the Varian Star Workstation and the DAD 330 or 9065 detectors. Key software components include the Plot, Spectra Manager, Library Manager, Reports, Peak Sense, and MCA windows. Method Builder defines time-programmed parameters (wavelength, peak width, S/N threshold) for non-interactive operations. System Control/Automation invokes peak sensing and report production in batch sequences.
Main Results and Discussion
PolyView2000 enables:
- Chromatogram plotting at any wavelength or wavelength range, with autoscaling, zoom, and selectable peak events
- Spectrum extraction at selected time points, normalized or raw, with Purity Parameter calculations and statistical analysis
- Spectral arithmetic (sum, difference, averaging) and PuP range optimization
- Library management: creation of .LBR files, record editing, keyword indexing, and spectral searches with retention time, PuP and dissimilarity filters
- Purity Parameter, absorbance-ratio and wavelength-max plots to detect co-elution and impurities
- MCA for quantitative analysis of overlapping peaks and purity evaluation under interactive and automated modes
- Automated report generation (.SRP files) covering chromatograms, peak lists, library searches, PuP surveys and MCA results
- Peak sensing recalculation with user-defined noise monitors and time-programmed thresholds
- Reduction of raw data into selected absorbance channels and preservation of full spectra for events
Advantages and Practical Applications
PolyView2000 streamlines complex DAD data interpretation and reporting for quality control, method development and regulatory compliance. Its flexibility supports both interactive exploration and unattended batch processing. Spectral library searches aid compound confirmation; PuP and MCA algorithms enable impurity detection and accurate quantitation even in co-eluting scenarios.
Future Trends and Applications
Emerging directions include integration with laboratory information management systems, cloud-based spectral databases, machine learning for automated spectral classification, and enhanced support for high-resolution spectrophotometric data. Improved connectivity with modern LC systems and expanded chemometric modules will further extend the value of diode array processing.
Conclusion
PolyView2000 provides a comprehensive, user-friendly toolkit for post-run diode array data analysis on Varian Star Workstations. By combining advanced plotting, spectral processing, library management, purity evaluation and automated reporting, it elevates chromatographic workflows through greater spectral insight and operational efficiency.
References
Varian, Inc. PolyView2000™ Operation Manual, Rev. 4 (2002)
Agilent Technologies. www.agilent.com/chem
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