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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 →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 →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 →Static light scattering characterizes particle size and size distributions in dry or dispersed samples by analyzing angle-dependent laser-light intensity. Suitable for research and quality assurance, system selection should consider measurement range, accuracy, reproducibility, sample type, and data-analysis options. Transparent or weakly absorbing samples are required.
View product category →Calorimeters quantify heat released or absorbed in physical, chemical, or biological processes, supporting heat-capacity and reaction-enthalpy measurements. Select measurement principles and operating modes—such as adiabatic or isothermal—according to thermal stability, accuracy, range, sensitivity, and required handling effort.
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 →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 →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 →Gel permeation/size exclusion chromatography separates dissolved molecules by hydrodynamic volume, with larger molecules eluting first. It supports molecular-weight distribution analysis of polymers, biomolecule characterization, and quality control. Choose columns for solvent and sample compatibility and a size exclusion limit suited to the target molecules.
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 →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 →Multi-Angle Light Scattering (MALS) characterizes molecules and nanostructures by measuring scattered-light intensity at multiple angles to determine molar mass and radius of gyration. It supports biopolymer, nanoparticle, and complex assembly analysis; select systems by angular range, detector resolution, and sample compatibility.
View product category →Static light scattering characterizes particle size and size distributions in dry or dispersed samples by analyzing angle-dependent laser-light intensity. Suitable for research and quality assurance, system selection should consider measurement range, accuracy, reproducibility, sample type, and data-analysis options. Transparent or weakly absorbing samples are required.
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 13 product categories
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