Photothermal Spectroscopy Corp. Released stRAMos Microscope

The new system utilizes advanced photothermal detection to enhance imaging sensitivity and resolution.

Updated on Sept. 22, 2026 in Materials Science

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Photothermal Spectroscopy Corp. has launched its new stRAMos Raman microscope, designed to improve imaging sensitivity and resolution for research in life sciences and material analysis. AI Illustration. Upload story photo >

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Photothermal Spectroscopy Corp. has released the stRAMos Raman microscope, a platform designed to advance imaging capabilities in life science and materials research. The system utilizes photothermal detection of Stimulated Raman scattering to achieve higher performance metrics.

Why it matters

The system was designed to provide sensitivity, spatial resolution, and multimodal imaging for complex research applications. This technology enables researchers to conduct high-speed analyses across biological and synthetic samples.

The stRAMos system achieves a spatial resolution of 300 nm or less and features laser tuning speeds of 25 ms per wavenumber. The platform integrates O-PTIR, fluorescence microscopy, and spontaneous Raman spectroscopy.

The players

Photothermal Spectroscopy Corp.

This company develops advanced spectroscopic instrumentation for scientific research and imaging.

The details

The platform employs PhotoThermalSRS technology to capture photothermal signals generated during stimulated Raman scattering. By combining multiple microscopy modalities, the system allows for more comprehensive observation of chemical and biological structures.

Timeline

  1. September 22, 2026: The stRAMos Raman microscope was officially released by Photothermal Spectroscopy Corp.

The Big Picture

This release follows the advancement of the technology pioneered by the Boston University PT-SRS technique development lab. The commercialization of these methods marks a shift in how high-resolution spectroscopy is applied in academic and industrial settings.

The increased sensitivity and speed of this instrument allow researchers to capture data from samples that were previously too complex to image effectively. These capabilities may accelerate the development of new materials and contribute to faster findings in life science laboratories.

The takeaway

The stRAMos microscope underscores the industry trend toward integrating multiple microscopy modalities for greater diagnostic range. Researchers looking to modernize their labs should evaluate how multimodal systems can consolidate equipment and improve analytical throughput.

Further reading

For more on evolving research technologies, visit the Materials Science section.

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