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Raman Spectrometers

RMS3000 Raman spectrometer

Compact size low power high resolution

RMS3000 (Raman Minimal System) is a miniature 785 nm coaxial confocal Raman spectrometer with full spatial light design, optimized thermal interface, and N.A0.11 numerical aperture excitation acquisition optical path. It supports Windows, Linux and Windows operating platforms and host systems, and comes with mobile (Andorid) and PC-based acquisition and analysis software. Provides exceptional resolution, sensitivity, penetration and fluorescence interference suppression. It can be used alone or integrated into Raman automation system as a core component to meet the needs of scientific research institutes, related regulatory agencies and enterprises in inorganic/organic materials, biological life, chemistry/chemicals, drug analysis, food safety, criminal investigation and identification, and environmental pollution detection and other research needs.

Mars Raman Spectrometer

Spectral range can be configured according to 785nm, 532nm Suitable laser wavelength: 785nm and 532nm Spectral resolution ≤0.1nm

Multi-channel micro confocal Raman spectrometer is used to analyze the composition and structure of molecular substances. Combining the micro-imaging technology and Raman spectroscopy technology, it can provide high resolution and high sensitivity Raman spectroscopy images. Scalable two-dimensional automatic displacement platform to realize the scanning imaging of Raman spectra. Confocal Raman spectroscopy technology is now widely used in cancer, tumor Raman spectroscopy research, graphene and other materials characterization, electrochemical reaction processes and other material composition identification and characterization.

In situ microelectrochemical Raman spectrometer

Electrochemical Raman detection capability Ability to detect low concentration samples High stability technology

The in-situ microscopic electrochemical Raman spectrometer mainly consists of a Raman spectrometer, a potentiostat, a microscopic system, and a laptop. This product integrates the potentiostat with the Raman spectrometer, combining the power button and power supply, and packages the Raman spectrometer, potentiostat, and microscopic system together. All cables, optical fibers, and power lines are cleverly hidden inside the device or routed along carefully designed paths. This integrated design significantly enhances experimental efficiency by ensuring stable signal transmission while avoiding the clutter and complexity of external wiring, which could otherwise lead to errors.

The microscope module's stage is designed as a U-shaped movable platform with a wiring switch, optimizing the loading process of the Raman electrochemical cell and reducing the cumbersome task of wire clamping.

The in-situ microscopic electrochemical Raman spectrometer combines the advantages of electrochemical testing and Raman spectroscopy analysis. It enables real-time, in-situ monitoring of structural and property changes in materials during electrochemical processes without damaging the sample. This technology not only improves experimental accuracy and sensitivity but also broadens the scope of research, providing strong support for scientific research and technical applications across multiple fields.

Oceanhood’s self-developed Raman three-channel module supports Raman spectroscopy measurements at any three different excitation wavelengths, such as 532 nm, 633 nm, 785 nm, 830 nm, and 1064 nm. The module is equipped with an optical path switching system, allowing rapid switching between different wavelengths via software. It also supports overlay and comparative analysis of the collected Raman spectra. The probe on the module is plug-and-play, making it convenient for testing samples in unconventional forms.

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