Thermo Scientific Dionex UltiMate 3000 Fluorescence Detectors - Product Specifications
Brochures and specifications | 2016 | Thermo Fisher ScientificInstrumentation
Fluorescence detection is a core technique in analytical chemistry, offering high sensitivity and selectivity for trace-level analysis. Its integration with UHPLC accelerates separations and improves resolution, enabling rapid screening in pharmaceutical, environmental, and biochemical applications.
This application note introduces the Thermo Scientific Dionex UltiMate 3000 FLD-3000 series, designed for UHPLC compatibility and optimized for maximum sensitivity in high-throughput workflows. It covers key design features, performance metrics, and practical use cases.
Using PAH mixtures and fluorescent dyes, the FLD-3000 series achieved sub-second wavelength switching (<250 ms), data rates up to 200 Hz, and Raman S/N >550 ASTM (>2100 dark-referenced). Both micro and analytical flow cells maintained peak symmetry in sub-1.2 min separations. Dual-PMT configuration ensured optimal sensitivity across UV–Vis to near-IR, while thermostatted cells delivered reproducible signals despite ambient temperature fluctuations.
Future developments are expected in flow cell miniaturization, integration with multidimensional separations, AI-enabled real-time method optimization, and expansion into microfluidic platforms. Software enhancements will likely focus on automated spectral deconvolution and predictive maintenance capabilities.
The UltiMate 3000 FLD-3000 series establishes a new benchmark for fluorescence detection in UHPLC workflows. Its innovative optics, flexible software suite, and robust instrument control make it ideal for demanding trace analyses and high-speed separations across diverse industries.
HPLC
IndustriesManufacturerThermo Fisher Scientific
Summary
Importance of the Topic
Fluorescence detection is a core technique in analytical chemistry, offering high sensitivity and selectivity for trace-level analysis. Its integration with UHPLC accelerates separations and improves resolution, enabling rapid screening in pharmaceutical, environmental, and biochemical applications.
Objectives and Overview of Study
This application note introduces the Thermo Scientific Dionex UltiMate 3000 FLD-3000 series, designed for UHPLC compatibility and optimized for maximum sensitivity in high-throughput workflows. It covers key design features, performance metrics, and practical use cases.
Methodology and Instrumentation
- Detector Models: FLD-3100 (standard) and FLD-3400RS (rapid separation) with optional Dual-PMT extension up to 900 nm.
- Light Source: Xenon flash lamp with variable pulse frequencies (LongLife, Standard, HighPower).
- Optics: High-precision monochromators, Variable Emission Filter, temperature-controlled flow cell (2 µL micro and 8 µL analytical volumes).
- Software: Chromeleon 7 CDS, featuring automated instrument qualification (AutoQ), ePanels, Method Transfer Wizard, and advanced peak detection (Cobra™, SmartPeaks™).
Main Results and Discussion
Using PAH mixtures and fluorescent dyes, the FLD-3000 series achieved sub-second wavelength switching (<250 ms), data rates up to 200 Hz, and Raman S/N >550 ASTM (>2100 dark-referenced). Both micro and analytical flow cells maintained peak symmetry in sub-1.2 min separations. Dual-PMT configuration ensured optimal sensitivity across UV–Vis to near-IR, while thermostatted cells delivered reproducible signals despite ambient temperature fluctuations.
Benefits and Practical Applications of the Method
- Unmatched sensitivity for trace analysis through advanced stray-light suppression and smart filter control.
- Full UHPLC support with high-frequency data acquisition for ultrafast separations.
- Extended wavelength coverage via Dual-PMT, allowing multi-analyte detection in a single run.
- Enhanced uptime using flash lamp management modes and automated qualification routines.
- Simplified method transfer between LC formats using embedded software tools.
Future Trends and Possibilities
Future developments are expected in flow cell miniaturization, integration with multidimensional separations, AI-enabled real-time method optimization, and expansion into microfluidic platforms. Software enhancements will likely focus on automated spectral deconvolution and predictive maintenance capabilities.
Conclusion
The UltiMate 3000 FLD-3000 series establishes a new benchmark for fluorescence detection in UHPLC workflows. Its innovative optics, flexible software suite, and robust instrument control make it ideal for demanding trace analyses and high-speed separations across diverse industries.
Used Instrumentation
- Thermo Scientific Dionex UltiMate 3000 FLD-3100 and FLD-3400RS Detectors
- Xenon Flash Lamp with HighPower, Standard, and LongLife modes
- Dual-PMT option extending coverage to 900 nm
- Thermostatted 2 µL micro and 8 µL analytical flow cells
- Chromeleon 7 Chromatography Data System with AutoQ
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