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3d lasers - Import export

Russia

Russia

Simultaneous / Multifunctional Analysis: - Raman - Luminescence - Laser Reflection & Transmission - Spectral and Polarization measurements The pinhole aperture rejects the residual scattered rays originating from any out-of-focus points on a sample. Spatial resolution less than 500 nm (Z), 200 nm (XY) Spectral resolution ~0.25 cm-1 Wavelength accuracy in spectrum with CCD detector 0.005 nm (1800 l/mm) Specially designed imaging spectrometer incorporates many features that make it ideal for confocal Raman measurements. The image of the pinhole is projected to a multichannel detector without any aberrations. People with little or no experience in Raman spectroscopy can use RAMOS N500. The system is highly modular and fully automated. Up to 5 lasers can be used. The lasers can be switched from one to another with just one click. Motorized control for laser power, beam diameter, polarization orientation, pinhole size, and grating is provided.

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Russia

Using the laser module Nd YAG Dynamic LASEST, it is possible to carry out more than 20 procedures for various directions in the field of aesthetic medicine and cosmetology. A large number of handpieces are used for this module, in which the latest latest technologies are implemented, such as Flat Spot, Gauss Beam, 3d Pixel. Highenergy laser radiation with a wavelength of 1064 nm, realized in unique time modes (from ultrashort to ultralong pulses) provides a selective effect on deep targets without thermal damage to the skin. For maximum comfort and convenience of the procedure, LASEST users can use the contactless system of dynamic skin cooling CoolFlash. When working with LASEST laser modules, you can control the temperature and flow rate of cold air in the treatment area, which guarantees an excellent result during the procedure.

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Russia

RAMOS CARS is the multifunctional multi-channel 3D scanning laser microscope-spectrometer. RAMOS CARS is intended for simultaneous and multifunctional analysis: high-speed imaging by CARS signal; confocal Raman imaging; confocal fluorescence imaging; confocal imaging in the reflected laser radiation; high-contrast imaging in the transmitted laser radiation; as well as visualization of a surface profile by means of the second harmonics generation signal. Microscope RAMOS CARS combines in one system: - CARS scanning microscope - Raman/luminescent scanning confocal microscope - Conventional scanning confocal laser microscope Applications: - Nanobiotechnology: real-time noninvasive analysis of biological samples (cells and components of living cells) with high spatial resolution. - Micro- and nanotechnology investigations of properties of non-biological microstructures: semiconductors, liquid crystals, polymers, pharmaceutical components, micro- and nanoparticles.

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Russia

RAMOS E/M series Raman spectrometers are designed on the basis of research-grade optical microscopes allowing the realization of the following light microscopy methods: - Raman measurements - Transmitted light - Reflected light (bright field and dark field illumination) - Confocal microscopy - Fluorescence measurements - Polarization contrast and phase-contrast imaging - Differential interference contrast 3D scanning laser Raman microscopes provide rapid, high sensitivity analysis. The innovative approach to system design of Raman spectrometers ensures extremely high temperature and temporal stability of spectral measurements. All RAMOS E200 system components are fully integrated within an optical microscope providing compactness and mobility of the system. In RAMOS M350, M520, M750 systems external imaging spectrographs are connected via optical fibers. Raman measurements with the RAMOS E/M Series systems can be started in several minutes by turning a system key.

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Russia

Application of quasicrystalline powder Al-Cu-Fe: Filler for polymers and elastomers to improve physical, mechanical and antifriction characteristics, wear resistance, hydrophobicity and adhesion. Significant increase in wear resistance in Teflon (PTFE), in Polyphenylene sulfide (PPS); Filler for polymer powders used in 3D printing, Selective Laser Sintering (SLS) additive manufacturing; Development of new composite materials and alloys with improved characteristics in comparison with the original; Reducing friction losses, increasing the service life of units and assemblies, increasing energy efficiency and reducing energy consumption of equipment as an additive in the lubrication systems of mechanisms; Creation of coatings: anti-friction, non-stick, anti-stick, hydrophobic, reducing the level of deposits and slagging of pipes and containers; We propose to test a quasicrystalline powder of the AlCuFe system and its variations doped with boron or silicon.

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