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Product categories linked on LabFinder with further independent product knowledge.
Cryostats create stable cryogenic environments for low-temperature experiments, superconducting technology, and cooling sensitive sensors such as infrared detectors. Key selection factors include minimum temperature, stability, cooling power, sample access, and cooling method, which also determines maintenance and infrastructure needs.
View product category →Fluorescence microscopes visualize labeled cells, tissues, morphological structures, and molecular processes by detecting light emitted from fluorophores after wavelength-specific excitation. They support applications from disease diagnosis to drug and molecular biology research. Selection should consider light source, filter sets, detectors, objective quality, and fluorophore compatibility.
View product category →Super-resolution microscopes enable optical imaging beyond the classical diffraction limit for detailed visualization of cellular and molecular structures. Used in life-science, medical, and nanotechnology research, they can be selected by measurement principle, sample compatibility, resolution, multicolor channels, and image reconstruction capabilities.
View product category →Microtomes prepare thin, precise sections of biological tissue for histological microscopy and detailed morphological assessment. Choose according to required section thickness, cutting method, and specimen type, such as paraffin-embedded or frozen tissue. Reliable section quality requires precise adjustment, blade sharpening, and regular cleaning.
View product category →Smear/staining systems automate the preparation of microscope-ready, mainly blood-smear samples for hematological and microscopic analysis. They reduce manual workload and support reproducible, uniformly stained preparations. Selection may depend on slide and sample-volume compatibility, supported staining methods, automation level, throughput, laboratory information system integration, and maintenance needs.
View product category →Microtomes prepare thin, precise sections of biological tissue for histological microscopy and detailed morphological assessment. Choose according to required section thickness, cutting method, and specimen type, such as paraffin-embedded or frozen tissue. Reliable section quality requires precise adjustment, blade sharpening, and regular cleaning.
View product category →Cryostats create stable cryogenic environments for low-temperature experiments, superconducting technology, and cooling sensitive sensors such as infrared detectors. Key selection factors include minimum temperature, stability, cooling power, sample access, and cooling method, which also determines maintenance and infrastructure needs.
View product category →Systems for clinical pathology process and analyse tissue samples for histological and cytological diagnostics, from sectioning and staining to imaging analysis. Select devices according to tissue type, examination method, workflow integration and automation needs; reliable results depend on proper preparation, maintenance, calibration and trained interpretation.
View product category →Leveling instruments are optical devices for determining height differences by establishing a horizontal line of sight. They support construction, spatial laboratory measurements, and equipment calibration. Choose based on required accuracy, readout type, and compensator technology; reliable results depend on stable setup and regular calibration.
View product category →Laboratory cameras capture still images and video for visual analysis, quality assurance, research, and traceable documentation of samples and microscopic structures. Selection can consider resolution, low-light sensitivity, interfaces, microscope compatibility, supported formats, mounting, and needs for color, monochrome, or high-frame-rate imaging.
View product category →Digital slide scanners digitize fixed, prepared microscopy slides into high-resolution images for analysis, documentation, archiving, and location-independent workflows in pathology, research, and quality control. Selection may depend on optical resolution, image quality, slide compatibility, scanning speed, automation, and software capabilities.
View product category →Cell imaging microscopes support gentle live-cell visualization for time-lapse and real-time studies, helping observe structures and processes without toxic dyes or intense illumination. Selection can consider imaging modality, detector sensitivity and resolution, imaging speed, environmental controls, and quantitative image-analysis capabilities.
View product category →Confocal microscopes create sharp optical sections for high-resolution fluorescence imaging and 3D visualization of cells, tissues, and other specimens. Point-by-point laser scanning and a pinhole suppress out-of-focus light, improving contrast. Select systems by laser wavelengths, scan speed, detection options, reconstruction capability, and sample compatibility.
View product category →Digital microscopes capture visible-light images with CCD or CMOS sensors for on-screen viewing, saving, analysis, and measurement in research, quality assurance, and production. Select according to magnification, sensor resolution and sensitivity, illumination, connectivity, and optional 3D imaging; they are not suited to ultrastructural analysis.
View product category →Inverse microscopes observe specimens from below, making them well suited to live-cell and tissue examination in biomedical research and cell culture. Their objective placement leaves space above the stage for micromanipulators or injection systems. Consider illumination mode, magnification, accessory compatibility, optical quality, and stand stability.
View product category →Light optical microscopes magnify specimens with light and glass lenses for microbiology, cell culture, materials testing, chemistry, and environmental analysis. Choose based on magnification, illumination mode, image quality, and ergonomics; bright-field and dark-field methods provide different contrast. Resolution is typically limited to about 200 nm.
View product category →Microscope cameras integrate with light microscopes to capture images and video for documentation, measurements, analysis, and presentations in applications such as microbiology, materials science, and quality control. Select for sensor resolution, microscope and interface compatibility, frame rate, and software integration; image quality also depends on optics, illumination, and focus.
View product category →Microscopes visualize and analyse structures invisible to the naked eye in biology, medicine, and materials science. Choose among light, electron, scanning probe, or digital systems based on required magnification, resolution, depth of field, sample compatibility, image quality, and documentation needs.
View product category →Multiphoton microscopes enable high-depth-resolution 3D imaging of living specimens for biological and biomedical research. Using multiphoton fluorescence or SHG/THG, they support imaging of cellular structures, tissues, and dynamic processes with lower phototoxicity and improved tissue penetration. Select according to laser wavelength, excitation modes, detectors, and scan system.
View product category →Polarization microscopes use linearly polarized light to examine transparent, optically anisotropic materials, particularly minerals in thin sections or powders. They support petrographic analysis by revealing birefringence, refractive indices, optical activity, and mineral orientation. Select adjustable polarizers and analyzers, suitable magnification, and a rotating stage for precise sample alignment.
View product category →Stereomicroscopes provide 3D visualization through two optical channels, supporting preparative work, quality control, and microbiological examination. Macroscopes use a single optical path for 2D imaging, documentation, and macro photography up to about 10×. Select by required depth perception, magnification range, illumination, objective quality, and ergonomics.
View product category →Super-resolution microscopes enable optical imaging beyond the classical diffraction limit for detailed visualization of cellular and molecular structures. Used in life-science, medical, and nanotechnology research, they can be selected by measurement principle, sample compatibility, resolution, multicolor channels, and image reconstruction capabilities.
View product category →Plant imaging systems enable non-invasive, in vivo monitoring of plant growth and physiological changes under controlled conditions. Camera-based 2D, 3D, top-view, or side-view imaging supports quantitative evaluation in research, breeding, and environmental analytics. Select systems based on imaging mode, flexible camera positioning, environmental control, and analysis-software compatibility.
View product category →Fluorescence microscopes visualize labeled cells, tissues, morphological structures, and molecular processes by detecting light emitted from fluorophores after wavelength-specific excitation. They support applications from disease diagnosis to drug and molecular biology research. Selection should consider light source, filter sets, detectors, objective quality, and fluorophore compatibility.
View product category →All 20 product categories
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