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NMR spectrometers

Nuclear Magnetic Resonance (NMR) is a spectroscopy technique that is commonly used to determine the chemical composition of substances.

Thermo Fisher Scientific Evolution 350 UV-VIS Photospectrometer-cover
Thermo Fisher Scientific Evolution 350 UV-VIS Photospectrometer

This listing is for a Thermo Fisher Scientific Evolution 350 UV-VIS Visible Photospectrometer. The  (more)unit is in full working condition and is ready for immidate realese. For routine, complex research and advanced applications, including current compliance, the Thermo Scientific Evolution Pro UV-Vis Spectrophotometer series brings together reliable, versatile hardware, a broad range of accessories, with easy-to-use, easy-to-learn Thermo Scientific Insight Pro Software. Easily go from sample to final report - with intuitive INSIGHT Pro Software guiding you every step of the way. Obtain results you need for quantitative analysis, scanning and kinetics applications with comprehensive software tools for data collection, processing, and reporting. Customize even complex methods with ease using workflow-oriented application modules. Enforce data security with optional INSIGHT Pro Security Software tools to assist with achieving current 21 CFR Part 11 compliance in your pharmaceutical lab. Baseline Flatness:±0.0015 A (200 to 800 nm), 2.0 nm SBW, smoothed Beam Center Height:8.5 mm Description:Evolution 350 Spectrophotometer Detector Type:Dual Matched Silicon Photodiodes Dimensions (L x W x H):53 x 61 x 38 cm (20.8 x 24 x 14.9 in.) Light Source:Xenon Flash Spectral Bandwidth:0.5, 1.0, 1.5, 2.0, 4.0 nm Selectable Wavelength Range:190 to 1100 nm Drift:<0.0005 A/hr., 500 nm, 2.0 nm SBW, 2 hr. warmup Electrical Requirements:100/240 V, 50/60 Hz For Use With (Application):Academic, Chemicals, Food & Beverage, Chemicals Environmental,Industrial QA/QC, Material Science, Pharmaceuticals Lamp Life:>5 years or longer if not using live signal Noise:Photometric0A: <0.00018 A,1A: <0.00022 A,2A: <0.00050 A,500 nm, 2.0 nm SBW, RMS Optical Design:Modified Ebert; Double beam with sample and reference cuvette/accessory positions Pharmacopoeia Compliance Testing:Wavelength Accuracy: ±0.3 nm 190–900 nm Wavelength Repeatability: SD 10 meas. <0.1 nm Absorbance Accuracy: <±0.010A at 1A, <±0.010A at 2A Absorbance Repeatability: ±0.0025A @ 1A Stray Light: 198 nm with KCl >2A, 220 nm with NaI >3A, 300 nm with acetone >3A, 340 nm with NaNO2 >3A Resolution: Peak/trough ratio >1.8 @ 1 nm SBW setting Photometric Accuracy:1 A: ±0.004 A, 2 A: ±0.004 A,3 A: ±0.006 A Photometric Display:±6 A Photometric Range:>4 A Photometric Repeatability:1 A: ±0.0025 A Scan Ordinate Modes:Absorbance, % Transmittance, % Reflectance, Kubelka-Munk, Log(1/R), Log(Abs), ABS × Factor, Intensity, 1st–4th Derivative Scan Speed:Variable, up to 6000 nm/min. Stray Light:198 nm: 2.4 A KCl 220 nm: 3.5 A NaI 340 nm: 4.0 A NaNO2 Wavelength Accuracy: ±0.20 nm (546.11 nm Hg emission line), ±0.30 nm, 190 to 900 nm Wavelength Data Interval: 10, 5, 2, 1, 0.5, 0.2, 0.1, 0.05 nm Wavelength Repeatability:Standard deviation of 10 measurements <0.05 nm Weight (English):48.5 lb. Weight (Metric):22 kg

£1,500.00 ex VAT
United Kingdom
nmr spectrometers
Horiba Duetta Fluorescence and Absorbance Spectrometer NIR / UV-Vis-NIR / CCD-cover
Horiba Duetta Fluorescence and Absorbance Spectrometer NIR / UV-Vis-NIR / CCD

Hersteller: Horiba Modell: Duetta Beschreibung: Duetta™ ist ein 3-in-1-Spektrofluorometer, das die F (more)unktionen von Fluoreszenz- und Absorptionsspektrometern gleichzeitig vereint. Dank des eingebauten Hochgeschwindigkeits-CCD-Detektors kann das Duetta ein komplettes Spektrum von 250 nm bis 1.100 nm in weniger als einer Sekunde aufnehmen und ist damit das schnellste Fluoreszenzspektrometer auf dem Markt. Kernmerkmale: - Drei-in-Eins-Fluoreszenz- und Absorptionsspektrometer - UV-Vis-NIR Fluoreszenzdetektion Wellenlängenbereich von 250 bis 1.100 nm - Vollständige 3-D-Fluoreszenz-EEM-Akquisition in weniger als einer Sekunde - Klassenbeste Fluoreszenz-Empfindlichkeitsspezifikation von 6.000:1 RMS für Wasser-Raman - Automatische Korrektur für primäre und sekundäre Innenfiltereffekte (IFE) - High Fidelity Molecular Fingerprinting mit der einzigartigen A-TEEM™ (Absorbance-Transmittance Excitation Emission Matrix) Technologie - Millisekunden-CCD-Detektion des gesamten Fluoreszenzspektrums Sonstige Daten: Erfassungsmodi: Absorptions- und Fluoreszenzspektrometer Fluoreszenz-Empfindlichkeit: Wasser-Raman SNR >6.000:1 RMS, 350 nm Anregung, 5 nm Schlitze Spektrale Erfassungsrate: 510.000 nm/min EEM-Akquisitionsrate: Bis zu 1 Sekunde (proben- und wellenlängenabhängig) A-TEEM-Akquisitionsrate: Bis zu 30 Sekunden (proben- und wellenlängenabhängig) Fluoreszenz-Detektor: CCD/Spektrograf Fluoreszenz-Detektorbereich: 250 bis 1.100 nm Fluoreszenzbandbreite: 1, 2, 3, 5, 10, 20 nm (Anregung und Emission) Lichtquelle: 75 W Xenon-Bogenlampe. Spezielle Kassette für Snap-in-Austausch Wellenlängenbereich Anregung/Absorption: 250 bis 1.000 nm Absorptionsdetektor: Silizium-Photodiode Absorptionsdetektorbereich: 250 bis 1.000 nm Absorptionsbandbreite: 1, 2, 3, 5, 10, 20 nm Absorptionsbereich: 0 bis 2 A Absorptionsgenauigkeit: +/- 0.02 A Wellenlängen-Genauigkeit: +/- 1 nm Computer-Anforderungen: Windows 10 oder 11 64-bit OS, Laptop oder PC mit mindestens 1 USB-Anschluss (mehr für zusätzliches Zubehör) Software: EzSpec™ Abmessungen: (B x T x H) 17 x 20,4 x 14,4 Zoll; 43,18 x 51,816 x 36,576 cm Gewicht: 45 Pfund; 20,4 kg Das hier angebotene Gerät/System wurde getestet und ist voll funktionsfähig und einsatzbereit.

€18,000.00 ex VAT
€21,420.00 incl. VAT if applicable
Germany
nmr spectrometers
Bruker LC-NMR-MS Interface-cover
Bruker LC-NMR-MS Interface

The LC-NMR-MS Interface is designed to sit between an HPLC system, an NMR spectroscopy probehead and (more) an MS unit. It would normally be mounted on top of the MS table immediately in front of the MS input connector. The BNMI-HP consists of 3 medium pressure (> 60Bar) syringe pumps, a 1:20 splitter, an 8-Port valve, 3 mixing chambers (T-Pieces) and associated control and interface electronics. The flow of the HPLC separations to the MS unit can be modified by pumping additional solvent from the syringe pumps. This improves the MS peak detection and shortens the time needed for the split separation to reach the MS. Separations can also be stored as a result of an MS peak detection as well as through UV absorption peak detection. The splitter splits the fluid flow from the HPLC in a 1:20 ratio. i.e. ca. 5% of the fluid is directed to the MS and the remainder to either the NMR probehead for immediate analysis or to the BPSU36 storage cassette for storage and later analysis.  The fluid directed to the MS is mixed in the mixing chamber (T-Piece) with the solvent pumped from the syringe pumps. The two left hand syringe pumps pump alternatively to guarantee a constant ’makeup’ flow. The 3rd pump at the right hand side is used to pump a calibration fluid into the flow path to allow the MS to be calibrated (or simply synchronized) at the start and end of each measurement cycle. The 8-Port valve is used to direct the fluid flow. Control of the BNMI Unit is performed using the HyStar program via an ethernet interface. Commands received from HyStar are interpreted in the BNMI Control Board. The control board then sets up the BNMI unit accordingly e.g.: Starts the pumps, changes the flow rate, turns the 8-Port valve. The splitter has a fixed mechanical function and cannot be controlled or adjusted. It simply accepts a fluid flow and splits it into 2 paths in a 1:20 ratio. However, other split ratios are available (for example 1:100 may be preferred if you have very high sample concentrations).

€1,499.00 ex VAT
Netherlands
nmr spectrometers
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