Sleekly-designed, high-sensitivity spectrograph to complement your lab's needs

1 Aug 2019
Georgina Wynne Hughes
Editorial Assistant

Product news

HORIBA Scientific, a global leader in fluorescence instrumentation and other spectroscopy solutions, has announced a new look for its recently introduced Lumetta fixed grating spectrograph. This revolutionary, high-sensitivity, fixed-grating spectrograph aims to deliver affordability and superior performance in one compact instrument.

Lumetta’s new design houses an F/2 spectrograph with a large area sensor, enabling optimal light gathering, and boasts a high optical throughput in the compact spectrograph class. It is designed to optimally gather light from most fibers and high angle scattering phenomena. As an imaging spectrograph, it also enables advanced techniques such as multitrack spectroscopy and fast hyperspectral imaging. With multitrack spectroscopy, multiple independent spectroscopy channels can be measured with Lumetta, either vastly improving sample measurement throughput for similar measurements on different samples, or simultaneous measurement of different but complementary spectra such as photoluminescence and absorbance from the same sample.

With its scientific grade I CCD deep cooled to -50oC, together with extremely low noise 16-bit electronics, Lumetta offers a high sensitivity in its class for low light applications. At 1200:1, the Signal-to-Noise of the Lumetta is well above its peers and its deep cooling allows signal integration for hours – a feature that is not readily available on other instruments in the compact class.

Lumetta also offers a flexible signal input interface, accommodating free-space as well as FC, SMA and ferrule fiber interfaces. Spectral resolution can be controlled from a selection of interchangeable slits. Other highlights include a low stray light for its class (<0.1%), a small CCD non linearity for computational accuracy (<0.4%), and top of the range speed – up to 278 spectra/second.

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Mass SpectrometryMass spectrometry (MS) is a powerful analytical technique used to identify and quantify molecules based on the mass-to-charge ratio of gas-phase ions. It provides detailed information about the structure, composition, and properties of compounds and is widely used across fields such as environmental monitoring, materials science, drug discovery and development, food and beverage testing, and wider chemical research. Key MS techniques include tandem mass spectrometry (MS/MS), liquid chromatography–mass spectrometry (LS-MS) and inductively coupled plasma (ICP-MS). Choosing from these wide range of techniques and technologies can be a daunting task, so keep up to date with scientific applications, performance expectations, and customer reviews here all in one place. Visit our product directory to receive quotes direct from the manufacturer. FluorescenceThe emission of fluorescence occurs when a photon of energy is supplied to a fluorescent chemical compound by an external source, causing it to become excited. Fluorescence can be detected and measured for different purposes using microplate readers, fluorescence microscopes, fluorescence scanners, and flow cytometers.SpectroscopySpectroscopy is a technique that analyzes the interaction of light with matter to study molecular properties, concentrations, and structural information. Widely used in chemical, pharmaceutical, and environmental analysis, spectroscopy offers insights into molecular composition and helps identify unknown compounds. It plays a key role in quality control, research, and diagnostics. Browse our peer-reviewed product directory to compare spectroscopy tools, read reviews, and get prices directly from manufacturers.
Sleekly-designed, high-sensitivity spectrograph to complement your lab's needs