2030PV PRO™ UV-Visible-NIR Microspectrophotometer From CRAIC Technologies

The most potent micro-analysis tool offered by CRAIC Technologies is the 2030PV PROTM microspectrophotometer. Constructed to fulfill your needs, it integrates the most recent technological advancements in electronics, software, spectroscopy, and optics to provide exceptional performance at an unmatched pace and with special capabilities.

At the forefront of UV-visible-NIR microspectroscopy, this instrument has the user-friendliness and reliability that makes CRAIC equipment popular.

The 2030PV PRO™ microspectrophotometer combines the latest technologies to allow the user to measure UV-visible-NIR range transmission, absorbance, reflectance, polarization, fluorescence and photoluminescent microspectra™ of sample areas smaller than a micron across.

Even the thickness of thin films and color spaces may be determined. While microspectra™ is being acquired, the sample may be viewed with high-resolution digital imaging in the deep UV, color, or near-infrared.

The 2030PV PROTM system's ease of use features, which range from software to automation to ergonomic instrument upgrades, increase its power.

The spectral data from the 2030PV PROTM microspectrophotometer is unequaled, the measurements are non-destructive, and it is easy to use.

2030PV Microspectrophotometer Introduction

Video Credit: CRAIC Technologies

Key Features

The 2030PV PRO™: superior UV-visible-NIR spectra and images of microscopic samples.

  • Range of Spectrum: 200–2500 nm
  • Microspectroscopy of absorbance
  • Imaging through transmission
  • Microspectroscopy of reflectance
  • Imaging using reflection
  • Fluorescence microscopy in action
  • Fluorescent microscopy
  • Raman spectroscopy
  • Magnesium-luminescence microscopy
  • Imaging with photoluminescence
  • Microspectroscopy of polarization
  • Microscale imaging of polarization
  • Measurements of thin film thickness
  • Colorimetry in small-scale specimens
  • Measurements of tiny particle refractive indices
  • Operation: completely automated or manual
  • Featuring Lightblades™ technology
  • Scorpii™ Advanced Illumination System
  • Exact control of sample temperature
  • Micron-scale calibrated and changeable sample measurement areas
  • Color, NIR, and UV digital imaging
  • Software for imaging control and analysis and spectroscopy called LambdafireTM
  • Specialized software modules for image processing, spectral databasing, statistical analysis, spectra mapping, and more
  • Simple to operate and keep up
  • From the microspectroscopy specialists

UV-vis-NIR Microspectroscopy

Cutting Edge Microspectroscopy From the Leaders

A microspectrometer that is fully integrated and has a spectral range that extends from near-infrared to deep ultraviolet. Quick and precise measurements can be obtained by photographing the sample and the sampling aperture simultaneously.

With the 2030PV, PROTM can measure transmission, reflectance, Raman, polarization, fluorescence, and PL spectra of even sub-micron samples with its SampleSafeTM, LightbladesTM, and ScorpiiTM technologies.

The only authorized supplier of NIST traceable micro spectrometer standards is CRAIC Technologies.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies

Raman Microspectroscopy

The Power of Raman Microspectroscopy

The 2030PV PROTM can perform Raman spectroscopy on microscopic samples when equipped with the CRAIC ApolloTM Raman spectrometer module. The system has an extensive selection of lasers, LightbladesTM Raman spectrometers, and interface optics to obtain high-quality Raman spectra of materials.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies


High-Sensitivity Emission Microspectroscopy and Imaging

Images of microscopic samples and fluorescence and luminescence spectra can be set up for the 2030PV PROTM. The 2030PV PROTM, equipped with LightbladesTM technology, is an effective instrument for microfluorometry in materials sciences, biology, geology, and more. Its excitation ranges from the deep UV to the near-infrared, and it can measure the emission in the same range.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies


Microspectroscopy and Imaging of UV-Visible-NIR Polarization

The 2030PV PRO™ can be configured to acquire the polarization spectra and images of even the smallest samples. Featuring Lightblades™ technology and a spectral range from the UV to the NIR, the 2030PV PRO™ polarization microspectroscopy capabilities are unparalleled. The spectra and images of birefringent and other types of samples with polarization characteristics can be acquired quickly and easily with this sophisticated system.

Spectral Surface Mapping

5D Spectral Surface Mapping™

Combines technology and software to enable microscopic spatial resolution, 5D mapping of samples, and automated spectrum analysis. Creating 5D maps of a sample's absorbance, transmission, reflectance, fluorescence, emission, time-resolved, and Raman spectra is possible.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies

UV-vis-NIR Microimaging

Superior Image Quality from the UV to the NIR

A special UV-visible-NIR microscope with research-grade optics is included with the 2030PV PROTM. The 2030PV PROTM boasts advanced imaging software and high-resolution digital imaging for color, UV, and NIR areas. This enables users to rapidly collect images and real-time data of samples using transmission, reflectance, polarization, and fluorescence microscopy.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies

2030XL PRO™ for Large Samples

Spectra of Large Samples With Micro Spatial Resolution

The 2030XL PROTM microspectrophotometer may measure the film thickness, obtain pictures, and obtain spectra of small-scale sample characteristics.  "Extra large" stands for "XL", and this instrument was designed to handle these samples.

2030PV PRO™ Microspectrophotometer From CRAIC Technologies

Image Credit: CRAIC Technologies


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