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Product categories linked on LabFinder with further independent product knowledge.
Dynamic light scattering measures particle size distribution, aggregation, and concentration in liquid samples by analyzing light-intensity fluctuations from Brownian motion. It provides rapid, non-destructive hydrodynamic-radius measurements from small volumes. Select systems by sample type, size and concentration range, and capability for polydisperse or complex media.
View product category →Gas adsorption analyzers characterize porous solids by measuring gas uptake to determine surface area, pore volume, and pore-size distribution, particularly for micropores and mesopores. Select instruments by required pore-size and pressure ranges, gas type, evaluation model, accuracy, and automation. Reliable results require uniform sample preparation, drying, and regular calibration.
View product category →Laser diffraction particle size analyzers determine size distributions in powders, granulates, dispersions, and suspensions for quality control, research, and process optimization. They calculate equivalent spherical diameters from laser-light scattering, with selection guided by measurement range, dry or wet preparation, throughput, and sample dispersion quality.
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 →Digital morphology systems use digital microscopy, automated image capture, and image-analysis algorithms to assess and classify blood cells such as leukocytes, thrombocytes, and erythrocytes. They support standardized hematology workflows; selection should consider image resolution, classification performance, laboratory information system connectivity, and compatibility with existing hematology systems.
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 →Hematology analyzers automatically quantify blood cells and hemoglobin in clinical laboratories, supporting rapid, precise, and reproducible blood analysis. They typically use impedance or flow cytometry, while selection should consider measurable parameters, throughput, LIS compatibility, accuracy, and maintenance needs. They complement rather than replace microscopic morphological assessment.
View product category →Systems for clinical chemistry and immunochemistry automatically measure biochemical and immunological parameters in serum, plasma, urine, and other body fluids to support diagnostics, therapy monitoring, and health surveillance. Selection should consider analysis range, automation, reagent compatibility, throughput, laboratory information system interfaces, and quality assurance options.
View product category →Gas adsorption analyzers characterize porous solids by measuring gas uptake to determine surface area, pore volume, and pore-size distribution, particularly for micropores and mesopores. Select instruments by required pore-size and pressure ranges, gas type, evaluation model, accuracy, and automation. Reliable results require uniform sample preparation, drying, and regular calibration.
View product category →Nanoparticle analyzers characterize particles with at least one dimension below 100 nm, determining size distributions and often behavior in suspensions. Choose a measurement principle, range, and sample compatibility suited to the material and analytical objective, as aggregation and sample homogeneity can affect results.
View product category →Ozone analyzers determine ozone concentrations in air, gases, and water for atmospheric monitoring and control of ozone-based disinfection. Choose according to medium, measurement range and accuracy, response time, and installation needs. Electrochemical, UV absorption, and chemico-optical methods differ in maintenance, lifespan, and sensitivity to environmental interference.
View product category →Particle analyzers quantify and characterize particles by size, shape, color, and other properties for research, quality control, material testing, process monitoring, and product release. Select a measurement principle suited to the size range and shape-analysis needs; laser diffraction, dynamic image analysis, and sieve analysis can complement one another.
View product category →Liquid particle counters support particle counting and quality control in liquids such as ultrapure water, oils, fuels, and pharmaceutical liquids. Optical methods including light scattering or flow spectrometry are common. Selection depends on the medium, particle size and concentration, accuracy, sample volume, and potential interference from turbidity or bubbles.
View product category →Particle size distribution analyzers characterize powders, suspensions, and emulsions to assess particle size, shape, and distribution. Select systems by measurable size range, sample medium, density, accuracy, throughput, and dispersion compatibility. Methods include laser diffraction, dynamic image analysis, and sieving; effective dispersion supports reliable results.
View product category →pH meters determine the pH of aqueous solutions electrochemically using a measuring and reference electrode. Used across laboratory disciplines, they support direct acid-base assessment. Selection should consider range, accuracy, repeatability, electrode compatibility, and benchtop or portable operation; regular buffer calibration is essential for reliable results.
View product category →pH probes electrically measure a solution’s acidic or basic character through a glass electrode and reference electrode. Used in laboratory testing, process control, and environmental analysis, they should be selected for sample resistance, temperature, measurement range, probe design, and pH meter compatibility.
View product category →Surface plasmon resonance systems enable real-time, label-free analysis of molecular interactions at sensor surfaces, supporting affinity, kinetic and thermodynamic characterization of ions, small molecules, proteins and viruses. Selection should consider sensitivity, sensor surfaces, sample delivery, throughput and data-analysis software.
View product category →Total organic carbon analyzers quantify organic impurities in water, wastewater, process liquids, soil extracts, and other samples for environmental monitoring, water treatment, and process control. They convert organic carbon to CO2 by combustion or UV oxidation for infrared or NDIR measurement; select according to sample type, accuracy, throughput, and automation needs.
View product category →Water quality analyzers assess chemical and physical water parameters to evaluate purity, pollutant loads, and composition in laboratory, environmental, and process-control testing. Select by target parameters, measurement range, accuracy, and stationary or mobile use. Multi-parameter models broaden testing, while regular calibration supports reliable results.
View product category →Zeta potential analyzers determine the electrical potential at the slipping plane of particles in liquid suspensions or emulsions, helping assess surface charge and colloidal stability. They commonly derive zeta potential from electrophoretic mobility. Selection may depend on sample compatibility, accuracy, measurement modes, temperature control, and low-volume capability.
View product category →Digital morphology systems use digital microscopy, automated image capture, and image-analysis algorithms to assess and classify blood cells such as leukocytes, thrombocytes, and erythrocytes. They support standardized hematology workflows; selection should consider image resolution, classification performance, laboratory information system connectivity, and compatibility with existing hematology systems.
View product category →General clinical diagnostic analytical instruments measure and evaluate laboratory parameters in blood, tissue, and other body fluids for method development, monitoring, and routine testing. They may use photometric, electrochemical, or spectrometric principles. Selection should consider accuracy, reliability, sample compatibility, workflow integration, and calibration needs.
View product category →ESR analysis systems automate erythrocyte sedimentation rate measurement in anticoagulated whole blood to support assessment of non-specific inflammation. They measure red-cell sedimentation over one hour, often following the Westergren principle. Selection should consider reference-method compliance, accuracy, reproducibility, workflow compatibility, and automation to reduce handling errors.
View product category →Laser diffraction particle size analyzers determine size distributions in powders, granulates, dispersions, and suspensions for quality control, research, and process optimization. They calculate equivalent spherical diameters from laser-light scattering, with selection guided by measurement range, dry or wet preparation, throughput, and sample dispersion quality.
View product category →Dry particle analyzers characterize the size, shape, and other properties of powders, dusts, and granulates to support material characterization and process control. Select systems by detection range, accuracy, measurement principle, sample compatibility, and dispersion needs; laser diffraction suits broad distributions, while image analysis also captures shape.
View product category →Turbidimeters determine particulate solids in liquids by measuring light scattering or absorption. They support quality assurance, process control, biomass monitoring, and beer filtration. Select measurement range, sensitivity, sampling mode, and optical principle for the application; colored, highly concentrated, abrasive, or viscous samples may affect results.
View product category →Dynamic light scattering measures particle size distribution, aggregation, and concentration in liquid samples by analyzing light-intensity fluctuations from Brownian motion. It provides rapid, non-destructive hydrodynamic-radius measurements from small volumes. Select systems by sample type, size and concentration range, and capability for polydisperse or complex media.
View product category →Element spectrometers determine chemical composition by measuring elemental concentrations in solid, liquid, or gaseous samples. They support trace-element detection, alloy analysis, pollutant determination, and quality control. Select the measurement principle based on target elements, detection limits, sample type, and required multi-element capability.
View product category →Fluorescence measurement determines fluorescent components by detecting longer-wavelength light emitted after wavelength-specific excitation, with emission proportional to concentration. It supports selective, sensitive analysis in laboratory analytics, biochemistry, environmental monitoring, and material testing. Select instruments by sensitivity, dynamic range, sample compatibility, interference risk, and required excitation/emission wavelength flexibility.
View product category →Fluorescence spectrophotometers qualitatively and quantitatively determine fluorescent sample contents in biochemical, molecular biological, pharmaceutical, and environmental analysis. By measuring emissions after monochromatic excitation, they provide higher sensitivity and selectivity than absorption methods. Select wavelength range, sensitivity, sample capacity, holders, and data-management interfaces for the intended format.
View product category →Raman spectroscopy enables non-invasive characterization of materials, molecules, and aqueous systems through inelastic scattering of monochromatic light. It supports research, quality control, and materials testing, providing information on composition, crystallinity, strain, and temperature. Selection should consider spectral resolution, sensitivity, acquisition time, and sample compatibility.
View product category →X-ray fluorescence (XRF) enables qualitative and quantitative elemental analysis through characteristic fluorescence radiation. It supports non-destructive testing with minimal sample preparation in metals, glass, ceramics, building materials, lubricants and mineral oils. Selection depends on accuracy, spectral resolution, sensitivity, sample geometry and material flexibility; light elements and heterogeneous samples can be challenging.
View product category →All 27 product categories
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