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Shimadzu

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Shimadzu Schweiz GmbH
Swiss Labs
Säntis Analytical AG

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Product categories linked on LabFinder with further independent product knowledge.

Laboratory automation (1)

Automatic sampler

Automatic samplers collect liquid, gas, or solid samples according to programmable cycles without manual intervention, supporting standardized, continuous workflows in process control, environmental analysis, microbiology, and laboratories. Select systems based on sample properties and volume, sampling-point flexibility, carrier compatibility, integration needs, and environmental robustness.

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Chromatography and separation (14)

Chromatography detector

Chromatography detectors identify and quantify components separated by gas or liquid chromatography for research, quality control, and process analytics. Selection depends on GC or LC compatibility, sample properties, and requirements for sensitivity, linearity, detection limits, and robustness; available principles include UV/VIS absorption, fluorescence, refractive index, and mass analysis.

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Chromatography equipment

Chromatography equipment supports qualitative and quantitative separation and analysis of complex mixtures in research and quality control. It comprises components such as columns, mobile-phase pumps, detectors and flow cells for LC, GC, and MS-coupled methods. Select compatible components according to sample volume, resolution, sensitivity, throughput and maintenance needs.

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Chromatography Gas- GC

Gas chromatography separates gaseous or vaporisable mixture components for qualitative and quantitative analysis in chemical, environmental, quality-control, and research applications. Select systems by sample type, separation needs, detector sensitivity, and capillary-column stationary phase, dimensions, and carrier gas. It is unsuitable for non-volatile or thermally labile compounds.

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Chromatography Gel Permeation GPC/SEC

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.

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Chromatography general

Chromatography separates mixture components for identification, content determination, or purification in chemical, pharmaceutical, biochemical, environmental, and food analysis. Method selection depends on the analytical goal, sample matrix, target substances, required sensitivity and resolution, and whether analytical or preparative separation is needed.

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Chromatography HPLC

HPLC separates, identifies, and quantifies chemical substances in liquid samples, including thermally unstable or non-volatile compounds. System selection depends on analyte polarity, molecular size and concentration, required separation efficiency and detection limit, as well as column, mobile phase, and detection type.

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Chromatography Ion- IC

Ion chromatography separates and quantifies charged particles, particularly cations and anions, for environmental, food, water, research, and quality-control analysis. System selection depends on ion type, required separation performance and detection range; column choice strongly influences selectivity and resolution.

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Chromatography LC/MS

LC/MS combines liquid chromatography with mass spectrometry to separate, identify, and quantify components in complex mixtures. It is suited to polar, moderately sized, and thermo- or acid-sensitive molecules. Selection considerations include column separation performance, mass spectrometer type, sensitivity, detection limits, sample complexity, and component compatibility.

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Chromatography SFC

Supercritical fluid chromatography separates and identifies substances using a mobile phase above a fluid’s critical temperature and pressure. It is suited to thermally sensitive or low-volatility compounds and can support efficient, rapid, high-resolution separations. Select systems by mobile-phase composition, column compatibility, pressure/temperature range, and detector adaptability.

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Chromatography UPLC

UPLC separates liquid samples under high pressure using short columns with particles as small as 2 μm. It supports analysis of active substances, impurities and natural products with shorter run times and reduced solvent use. Match column particle size and pressure tolerance to sample requirements for effective resolution.

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Fraction collector

Fraction collectors collect separated sample fractions in chromatographic procedures, isolating mixture components for subsequent analysis or preparation. Choose based on chromatographic-system compatibility, vessel volume and capacity, supported formats, and automation level: automated models use programmed collection parameters, while manual units require vessel repositioning.

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Headspace Autosampler

Headspace autosamplers automate extraction of volatile or gaseous analytes from vial headspace for GC analysis, supporting reproducible preparation in environmental, food, pharmaceutical, and chemical applications. Choose systems compatible with chromatographic equipment, sample volumes, and vial sizes; static and dynamic techniques address different extraction needs.

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HPL

High Performance Liquid Chromatography separates and analyses multicomponent mixtures for chemical research, environmental analytics, and quality control. Separation depends on interactions between stationary and mobile phases under high pressure. Select systems by separation and detection method, flow rate, pressure range, sample volume, automation, and detector compatibility.

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Thermal desorption systems

Thermal desorption systems prepare gas, air, and solid samples for GC or GC/MS by temperature-controlled release of VOCs and other volatile, thermally stable analytes. Selection should consider sample characteristics, desorption format, automation, GC compatibility, and temperature and gas-flow control.

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Laboratory consumables (2)

Amino acid purification system

Amino acid purification systems separate amino acids from biological, pharmaceutical, or chemical samples for reliable qualitative or quantitative analysis. Often based on ion-exchange chromatography or HPLC, they help remove interfering substances. Choose according to sample type, required purity, throughput, automation, and compatibility with downstream processing.

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Chemicals – Carboxen

Carboxen are spherical synthetic carbon particles used to adsorb volatile organic compounds in sample preparation, analytical procedures, and gas adsorption techniques. Their defined pore structure and hydrophobic surface support kinetic saturation capacity. Select by particle size, pore distribution, surface chemistry, target compatibility, and required adsorption volume.

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Mass spectrometry (10)

MALDI-TOF Mass Spectrometers

MALDI-TOF mass spectrometers analyze proteins, peptides, oligonucleotides, and small molecules for applications including microorganism identification, protein characterization, and biomarker detection. They determine mass-to-charge ratios from ion flight times after laser ionization. Selection should consider mass accuracy, resolution, sensitivity, throughput, and sample compatibility.

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MALDI Targets / MALDI Target Plates

MALDI target plates hold matrix-mixed samples for laser ionization and mass-to-charge analysis in MALDI-TOF spectrometry. Choose formats compatible with the instrument, considering material, spot layout, surface coating, solvent resistance, and whether reusable or single-use targets suit the workflow.

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MS – ICP-MS Mass Spectrometer

ICP-MS mass spectrometers enable quantitative and qualitative elemental and isotope analysis, particularly for trace inorganic samples such as environmental materials and heavy-metal residues. Selection depends on detection limits, resolution, simultaneous element measurement, plasma stability, and interference suppression. They are less suitable for organic molecules.

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MS – Ion trap Mass spectrometry

Ion trap mass spectrometers analyze confined ions to distinguish masses and structures in chemical, environmental, proteomic, research, and quality-control applications. Electromagnetic trapping enables repeated mass selection and excitation for multistage analyses. Select based on trap type, required resolution and sensitivity, sample properties, mass range, and workflow compatibility.

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MS – Quadrupole Mass spectrometer

Quadrupole mass spectrometers measure mass-to-charge ratios for residual gas, trace gas, and complex-mixture analysis in high to ultra-high vacuum. They filter ions using an alternating quadrupole field, balancing accuracy, speed, and ease of use. Select by mass accuracy, sensitivity, dynamic range, ionization method, and sample-preparation compatibility.

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MS – Quadrupole Time of flight Mass spectrometer QTOF MS / HRMR

QTOF MS/HRMS combines quadrupole ion selection with rapid, high-resolution time-of-flight detection for accurate qualitative and quantitative analysis. It supports fragmentation and substance identification in complex samples for pharmaceutical, clinical, forensic, food-safety, and environmental applications. Key selection factors include mass resolution, accuracy, analysis speed, fragmentation flexibility, and software.

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MS – Sector Mass spectrometer

Sector mass spectrometers enable precise, high-resolution mass-to-charge analysis for demanding applications such as geochemistry, environmental analysis, materials testing, and research. Ion deflection in electric and magnetic fields supports accurate mass determination; double focusing can improve precision and signal quality.

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MS – Tandem mass spectrometry MS/MS

Tandem mass spectrometry (MS/MS) selects and fragments specific ions, then analyzes the resulting fragments to support structural elucidation and identification of complex molecules. Used for proteins, peptides, environmental, pharmacological and forensic samples, selection should consider ionization, fragmentation, resolution, sensitivity, mass range, speed and separation compatibility.

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MS – Time of flight Mass spectrometer (TOFMS)

Time-of-flight mass spectrometers determine the mass-to-charge ratios of charged molecules and fragments from ion flight times. They enable rapid qualitative and quantitative analysis in chemistry, biology, environmental analytics, and materials science. Select systems by mass accuracy, resolution, suitable ionization, and coupling options; ion mirrors can improve accuracy and resolution.

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MS – Triple Quad mass spectrometry TQMS

Triple quadrupole mass spectrometry enables targeted monitoring of known molecules through molecular-ion selection, collision-induced fragmentation, and fragment-ion analysis. It supports sensitive, specific measurements in drug metabolism, pharmacokinetics, environmental, and biological studies. Selection should consider detection limits, CID performance, dynamic range, and GC or LC compatibility.

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Balances and measurement technology (6)

Adhesion tester

Adhesion testers determine the tensile force required to detach coatings, paints, films, or adhesives from substrates, supporting material development, quality assurance, and process control. Choose by measuring range, accuracy, specimen holding, drive type, automation, data interfaces, and mobile or fixed installation.

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Balances – Balance general

Laboratory balances determine the mass of objects, materials, and substances in research, quality control, and production. Choose capacity, accuracy, and resolution for the weighing range, and consider electronic or mechanical operation. Temperature changes, drafts, and vibrations can affect measurement accuracy.

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Hardness tester

Hardness testers determine the hardness of materials such as metals and plastics for quality control, material development, and production monitoring. Choose according to the testing standard, material, and application; methods such as Brinell, Rockwell, Vickers, and Shore differ in indenter, force, and evaluation principle.

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Moisture meter

Moisture meters determine moisture in air and solids such as wood, building materials, food, and technical materials for quality control, environmental monitoring, research, and production. Select devices by material, measuring principle, range, accuracy, and portable or stationary use; regular calibration supports reliable results.

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Particle size distribution analyzer

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.

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Total organic carbon (TOC) Analyzer

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.

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Microscopy and imaging (1)

Micro-CT

Micro-CT provides high-resolution 3D X-ray imaging of internal structures in small biological, medical, and materials samples, enabling non-destructive analysis of size, shape, and porosity. Select systems by spatial resolution, contrast, sample size, detection area, and reconstruction quality; very large or dense materials may limit penetration or resolution.

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Molecular biology, PCR and sequencing (3)

Balances – Analytical balance

Analytical balances enable precise weighing of small samples for analysis, quality assurance, research, reagent dosing, and substance quantification. Select according to weighing range, readability, repeatability, stability, and response time; draft protection and calibration options help support accurate results in controlled environments.

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Laser Diffraction Particle Size Analyzer

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.

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Scales – drying scale

Drying balances rapidly determine moisture content in small to medium samples for quality control, materials testing, and research. They dry samples with halogen lamps and reweigh moisture loss using precision load cells. Select according to sensitivity, temperature control, drying programs, capacity, and sample heat sensitivity.

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Laboratory safety and facilities (1)

Pumps – Piston pump

Piston pumps are positive-displacement pumps that use reciprocating motion to convey liquids or gases at high, constant pressure. They can handle viscous or particle-containing media and compress gases. Select by operating pressure, medium type, flow rate, dosing accuracy, and maintenance needs; abrasive or corrosive media may require special materials.

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Centrifugation and sample preparation (1)

Differential Scanning Calorimeter (DSC)

Differential scanning calorimeters analyze thermal properties of solids, liquids, and powders by comparing heat supplied to a sample and reference during a defined temperature program. They detect melting, glass transitions, crystallization, and enthalpy changes. Select instruments by temperature range, heat-flow sensitivity, resolution, and heating or cooling rates.

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Spectroscopy and analytics (15)

Atomic Absorption Spectrometers (AAS)

Atomic absorption spectrometers quantify specific elements in liquid or solid samples, supporting trace and major metal analysis in environmental, food, materials, and pharmaceutical testing. Choose between flame atomization for simpler applications and graphite furnace AAS for higher trace-element sensitivity; sample matrix effects and single-element measurement limits should be considered.

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Elemental Analysis Instruments

Elemental analysis instruments identify and quantify major and trace elements in solid, liquid, and gas samples for environmental monitoring, quality control, and research. Select according to sample matrix, target elements, detection limits, throughput, and preparation needs, as interferences and suitability vary by technique.

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Element Spectrometer

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.

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Fluorescence measurement

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.

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Fluorescence Spectrophotometer

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.

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Fourier transform infrared Spectrophotometer (FTIR)

FTIR spectrophotometers identify and characterize solids, liquids, and gases from infrared absorption spectra, supporting material and environmental analysis, research, and quality control. They measure interferograms with a Michelson interferometer and apply Fourier transformation for rapid spectral acquisition. Choose by range, resolution, detector sensitivity, sampling configuration, and software performance.

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FTIR Microscopes

FTIR microscopes combine infrared spectroscopy with optical microscopy to chemically characterize microscopic regions in materials, cells, polymers, and pharmaceuticals. They support transmission, reflection, and ATR measurements, enabling spectral imaging and chemical mapping. Choose based on spectral range, resolution, measurement mode, and sample preparation compatibility.

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Mercury analysis

Mercury analysis detects mercury contamination in gas, liquid, and solid samples for environmental monitoring, industrial processes, quality control, and safety testing. Select methods by sample matrix, required detection limits, and preparation compatibility; atomic absorption and fluorescence spectrometry are suited to trace mercury detection.

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Micro volume UV/VIS Spectrophotometer

Micro volume UV/VIS spectrophotometers quantify nucleic acids and proteins and assess purity from 0.5 to a few microliters, often without cuvettes. They measure transmitted light through small wells; select by minimum sample volume, wavelength range, accuracy, reproducibility, and measurement speed.

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NIR Spectrophotometer

NIR spectrophotometers analyze near-infrared absorption to determine sample composition and properties such as moisture or particle size. Available as benchtop or portable systems, they support transmission, reflection, or interactance measurements. Selection should consider sample form, spectral resolution, sensitivity, calibration options, and data evaluation needs.

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Photometer

Photometers measure quantities such as luminance and luminous intensity and determine solution concentrations using the Beer-Lambert law. Used in environmental, process, microbiological, and biochemical analysis, they may use absorption or transmission principles. Select wavelength range, accuracy, and sample compatibility carefully, especially for complex or highly scattering media.

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Spectrophotometers general

Spectrophotometers measure light intensity by wavelength, primarily across the UV–visible range, for chemical and biological analysis, colour measurement, and material quality control. Choose transmission or reflection geometry according to sample transparency and surface properties; spectral range, wavelength accuracy, and repeatability are key considerations.

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UV/VIS Spectrophotometer

UV/VIS spectrophotometers quantify substance concentration and quality by measuring UV and visible light absorption, supporting nucleic-acid and protein purity testing and bacterial-culture turbidity measurements. Select according to wavelength range, accuracy, optical design, sample-container compatibility and data-export needs; opaque or highly scattering samples can reduce accuracy.

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XRF / X-ray fluorescence

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.

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XRM / X-ray microtomography

X-ray microtomography enables non-destructive, high-resolution 3D examination of internal structures in materials, porous media, biological samples, and complex specimens. Rotational X-ray scans are reconstructed into volume data sets. Consider resolution, sample volume, radiation source compatibility, and reconstruction and visualization capabilities; large or highly absorbent samples are limited.

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