SPEC PerkinElmer 10.13
|Articles|January 1, 2021

Compact single-frequency laser

Hübner Photonics’ Cobolt 05iE compact, single-frequency laser is designed for a range of wavelengths from 355 nm to 1064 nm. Click the title or image for more information.

Hübner Photonics’ Cobolt 05iE compact, single-frequency laser is designed for a range of wavelengths from 355 nm to 1064 nm. According to the company, the laser has few parts and a reduced system footprint, and is suitable for use of the laser for system integrators and researchers.

Cobolt AB, a part of Hübner Photonics, Solna, Sweden. www.hubner-photonics.com


Related to this article

Infrared Reimagined: How FT-IR Spectroscopy Learned to Read Molecules, ©  Luis Eduardo  -chronicles-stock.adobe.com
FT-IR spectroscopy, long treated as a mature bench technique for confirming a carbonyl stretch or fingerprinting a polymer, has quietly become one of chemistry’s most versatile discovery engines: it now infers molecular structure straight from a spectrum without a reference library, resolves chemistry tens of nanometers wide, and screens a fingerstick of blood for disease in minutes. The last five years of published research show FT-IR moving from a confirmatory tool into a predictive, autonomous, and field-ready analytical platform.
The Ongoing Decline of Spectroscopy Expertise
In this panel discussion, five SpecAcademy instructors examined why spectroscopy expertise has declined and how SpecAcademy aims to rebuild it through curated, fundamentals-based education suited to increasingly complex analytical work.