XploRA ONE™

Simply better Raman Spectrometer

The XploRA ONE™ is the highly versatile, yet easy to use, Raman microscope targeted at the industrial and routine analytical sector.  It combines optical microscopy, with sensitive Raman analysis in a “ONE shot “ analysis concept.  Raman has never been so easy and yet so powerful in the Analytical Lab.

The XploRA ONE™ offers simplicity in design and operation so that the analyst can focus on the sample measurements and routine analysis that is important, obtaining results not just spectra.

It provides class leading sensitivity and confocal detail, full optical microscopy and even has options for HORIBA’s innovative SWIFT™ Raman chemical imaging, yet requires minimal operator training and maintenance. The XploRA ONE™ philosophy ensures that Raman has become an even more accessible analytical technique.

Ideal for applications driven measurements:

  • QA/QC analysis
  • Raw material validation
  • Forensic routine analysis
  • Pharmaceutical testing
  • Routine inspection
Segment: Scientific
Fabricant: HORIBA France SAS

The XploRA ONE™ is the highly versatile Raman microscope that combines ease of use with functionality and performance for the analytical lab:

  • Non-destructive testing and analysis
  • No sample preparation
  • Ideal for chemical analysis and identification
  • Spectral databases – for simple interpretation of results
  • Automate your Raman analysis– with user defined measurement methods
  • Auto-calibration software– ensures your data is always accurate
  • Affordable entry into full confocal performance– up to 1µm XY resolution
  • Upgradeable to SWIFT fast confocal Raman Imaging
  • 532nm or 785nm high brightness CLS lasers for optimal results
  • Higher sensitivity for speed and improved limits of detection
  • Single “one-shot” data acquisition for the full Raman range
  • Automated particle location and chemical ID with ParticleFinder
  • Suitable for high throughput screening measurements with MultiWell module.

 

 

Laser options:Integrated internally - 532nm or 785nm CLS high brightness lasers optimised for micron resolved measurements
Spectral range:100cm-1 to 3500cm-1 minimum range in  ONE-shot  operation  (depending upon laser)
Spectrograph:Imaging flat field spectrometer for use with large area CCD detector
High throughput/sensitivity
Laser power control:6 position ND filter module - PC controlled
Detector:1024x256 TE air-cooled scientific CCD, USB control, no maintenance vacuum, 16 bit and up to 1.48 MHz readout speed.  Offering improved sensitivity and fast Raman acquisition.
Microscope:Materials/clinical light microscope. Optimised for stability with high quality optics and ergonomic design. Includes Kohler illumination for transmission and reflection illumination, abbe condenser, 10x and 50x objectives (100x objective optional)
Confocal sampling:Rugged confocal spatial filtering, offering maximum 1µm x1µm lateral resolution for micron scale Raman analysis and imaging (where 100x objective used).
Computer:Desktop PC with monitor, keyboard and mouse, pre-loaded with Windows 7TM 32-bit and LabSpec 6 spectral software suite

Environment / Dimensions

Weight:35Kg (77lbs)
Size (WxHxD):449mm x 626mm x 352mm
Operating temperature:15oC -28oC optimal environmental temperature range
Voltage:110/240 VAC  standard mains supply
Other:#no water cooling or LN2 supply required
Raman Spectroscopy Applied to the Lithium-ion Battery Analysis
Raman Spectroscopy Applied to the Lithium-ion Battery Analysis
The application note explains how the Raman Spectroscopy can be helpful in the analysis of cathodes and anodes in Li-ion batteries. Today’s state of art of technology requires more reliable, more efficient and powerful energy sources. Lithium-ion batteries are thus of high interest. Raman spectroscopy adapts to the different stages of life of these batteries, such as the characterization of new materials for more flexible systems, failure analysis; but also more standard analysis of used material during charge/discharge process, including structural and electronic properties, and even robust, automated QC tests.
Microscopic Measurement of Diffusion
Microscopic Measurement of Diffusion
In order to engineer materials with controlled diffusive properties, we need to be able to measure the diffusive process in situ. Ideally, we would like a technique that provides molecular information with resolution on a microscopic scale, that is non destructive of the samples, and can be set up and used on a laboratory bench top with a minimum of time and effort involved in sample preparation. Raman microprobe spectroscopy is an ideal candidate for this type of studies. Use of visible light combined with a confocal microscope provides a probe with spatial resolution of a micron or better, and coupling of such a microscope to a modern Raman spectrometer equipped with holographic notch filters and CCD multi channel detectors allows rapid acquisition of Raman spectra which can be correlated with the chemical state of the species and its physical environment.

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