Home > Press > Premium Glass Refractive Index Measurements with CRAIC Technologies
![]() |
Abstract:
rIQ™ from CRAIC Technologies is designed to help the forensic scientist measure the refractive index of glass quickly, accurately and easily using the ASTM E1967 methodology.
CRAIC Technologies, Inc., the world's leading innovator of UV-visible-NIR microscopy solutions, joins with Laboratory Imaging, s.r.o., a leading specialist in imaging software solutions for microscopy, to introduce rIQ™ : the intelligent solution for the analysis of glass trace evidence. rIQ™, which stands for Refractive Index Quantification, is the result of a collaboration between CRAIC Technologies and Laboratory Imaging. rIQ™ combines sophisticated image analysis software, advanced optical design and standard reference materials to enable criminalists in modern forensic laboratories to measure the refractive index of multiple glass fragments simultaneously, quickly and with the highest accuracy.
"The partnership between CRAIC Technologies and Laboratory Imaging is yielding great success. CRAIC Technologies expertise in optics combined with Laboratory Imaging's decades of experience with microscope imaging software is advancing the state-of-the-art in several fields. rIQ™ is the result of this partnership and it promises to take the technique of forensic refractive index determination to the next level" states Dr. Paul Martin, President of CRAIC Technologies. "Glass fragments are common at crimes scenes. rIQ™ enables the forensic scientist to measure and compare the refractive index of the smallest fragments of glass with an incredibly high degree of accuracy. And when combined with CRAIC Technologies microscope spectrophotometers and microcolorimeters, the transmission and fluorescence spectral characteristics of glass evidence can also be determined quickly and accurately and all with the same instrument."
rIQ™ is an automated system that uses the thermal immersion method, as defined by the standard ASTM E1967, to measure the refractive index of microscopic glass fragments. The system, which incorporates many years of experience with the analysis of glass, allows the user to analyze the refractive index of multiple glass fragments simultaneously and with sophisticated analytical techniques. Statistical analysis methods can also be applied to the data and the instrument is also designed to be user friendly with a short learning curve.
rIQ™ is offered as a standalone package, as an add-on package to CRAIC Technologies microspectrophotometers or as an upgrade package for older units already in the field. A standalone package consists of a phase contrast microscope, a high resolution digital camera, the optical interface, a thermal stage, the controlling electronics and the rIQ™ software. The add-on package can be integrated with many CRAIC Technologies microspectrophotometers models, both past and present, to allow them to measure the color, absorbance microspectra™, fluorescence microspectra™ and the refractive index of the smallest of glass fragments.
For more information about rIQ™ for the analysis of the refractive index of glass, visit microspectra.com/products/riq .
####
About CRAIC Technologies, Inc.
CRAIC Technologies, Inc. is a global technology leader focused on innovations for microscopy and microspectroscopy in the ultraviolet, visible and near-infrared regions. CRAIC Technologies creates cutting-edge solutions, with the very best in customer support, by listening to our customers and implementing solutions that integrate operational excellence and technology expertise. CRAIC Technologies provides answers for customers in forensic sciences, biotechnology, semiconductor, geology, nanotechnology and materials science markets who demand quality, accuracy, precision, speed and the best in customer support.
For more information, please click here
Contacts:
CRAIC Technologies, Inc.
+1-310-573-8180
Copyright © CRAIC Technologies, Inc.
If you have a comment, please Contact us.Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
Related News Press |
News and information
Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025
Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025
Lab to industry: InSe wafer-scale breakthrough for future electronics August 8th, 2025
Imaging
ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025
Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025
First real-time observation of two-dimensional melting process: Researchers at Mainz University unveil new insights into magnetic vortex structures August 8th, 2025
Announcements
Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025
Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025
Japan launches fully domestically produced quantum computer: Expo visitors to experience quantum computing firsthand August 8th, 2025
ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025
Tools
Japan launches fully domestically produced quantum computer: Expo visitors to experience quantum computing firsthand August 8th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
New 2D multifractal tools delve into Pollock's expressionism January 17th, 2025
![]() |
||
![]() |
||
The latest news from around the world, FREE | ||
![]() |
![]() |
||
Premium Products | ||
![]() |
||
Only the news you want to read!
Learn More |
||
![]() |
||
Full-service, expert consulting
Learn More |
||
![]() |