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Automatic pipetting systems perform precise, repeatable liquid transfers between tubes and microplates for applications such as molecular biology, diagnostics, and cell culture. Select by volume range, channel number, consumable compatibility, and software capabilities. Mechanical or pneumatic systems can automate complex steps, though viscous or foaming liquids may be limiting.
View product category →Centrifuges separate liquid mixtures by component density for standardized preparation of plasma, serum, and cell fractions in diagnostics and research. Choose capacity, rotor type, maximum speed or RCF, and cooling according to sample volume and separation goals. Proper loading supports reliable operation.
View product category →ULT −86°C freezers support long-term storage of sensitive biological samples such as DNA, RNA, proteins and vaccines in life science, biomedical and pharmaceutical laboratories. Selection should consider stable temperature control, storage capacity versus footprint, energy use, insulation, alarms and door configuration.
View product category →CO2 incubators create controlled microclimates for cultivating cell cultures, microorganisms, bacteria, and yeasts by regulating CO2, temperature, and humidity. Select according to chamber size, control accuracy, humidity distribution, sensor technology, and cleaning or sterilization requirements. Regular calibration and maintenance support reproducible growth conditions.
View product category →PCR cyclers, or thermocyclers, generate the precise temperature cycles required for DNA amplification in applications such as pathogen detection, genotyping, sequencing, cloning, and mutagenesis. Selection should consider temperature accuracy and lag time, block format and sample capacity, cycle programmability, and compatibility with tubes or plates.
View product category →Manual pipettes precisely measure and dispense microliter liquid volumes for sample preparation and analysis. Available in single- and multi-channel formats, they use air displacement via a plunger. Select by volume range, channel number, tip compatibility, and ergonomic handling; viscous liquids may require specialized options.
View product category →Pipette tips are single-use consumables for piston-operated pipettes and automated pipetting systems, supporting precise, reproducible liquid transfer while helping prevent cross-contamination. Select tips for pipette compatibility, volume range, sterility, and liquid properties; low-retention or filter variants can reduce residue or aerosol exposure.
View product category →Bioreactors are closed vessels for cultivating microorganisms, cells, or small plants under defined conditions in fermentation, bioconversion, and biocatalysis. Select designs according to volume, mixing and oxygen requirements, and control of temperature, aeration, stirring, and pH; integrated sensors can monitor dissolved oxygen, pH, and redox potential.
View product category →Barcode readers automatically capture optically detected barcode data to identify samples, consumables, and laboratory equipment, supporting faster sample logistics, documentation, and quality control. Choose by supported 1D or 2D formats, handheld or stationary use, interfaces, reading range, and compatibility with existing IT systems.
View product category →Barcode systems automate laboratory data capture, sample and material labeling, and process documentation by linking scanners, printers, mobile computers, and software. Select systems for compatibility with existing laboratory software and infrastructure, scalability, supported barcode types, and reliable optical reading under expected print and environmental conditions.
View product category →Fluid workstations enable precise dosing, mixing, and transfer of liquid samples for reproducible laboratory workflows in biology, chemistry, and molecular biology. Choose based on volume range, required functions, automation level, ergonomics, and optional temperature control. They are not suitable for solids or highly viscous media.
View product category →Bioreactors are closed vessels for cultivating microorganisms, cells, or small plants under defined conditions in fermentation, bioconversion, and biocatalysis. Select designs according to volume, mixing and oxygen requirements, and control of temperature, aeration, stirring, and pH; integrated sensors can monitor dissolved oxygen, pH, and redox potential.
View product category →Deep-well plates support higher-volume sample storage, handling, and pre-processing for workflows such as extraction, DNA/RNA purification, cell culture samples, and automation. Choose well count, volume, material, chemical and temperature resistance, and automated pipetting compatibility; they are not intended for direct analytical measurement.
View product category →Filter tips support contamination-controlled liquid handling by using hydrophobic filters to block aerosol and liquid transfer between sample and pipette. They are useful for PCR, molecular analyses, infectious or radioactive samples. Select compatible pipette fits, appropriate volumes, filter quality, sterility, purity, and chemically suitable tip materials.
View product category →Microcentrifuge tubes support collection, mixing, and reactions of 0.2–2 ml samples in PCR, nucleic acid analysis, enzymatic assays, and microbiological testing. Select volume, closure type, chemical and temperature resistance, and device compatibility; round-bottom designs can aid sample recovery during centrifugation.
View product category →Microplates are multiwell reaction vessels for parallel handling and analysis of liquid samples in assays, cell culture, enzymatic reactions, filtration, and antimicrobial testing. Select well count, geometry, material, volume, optical transparency, chemical resistance, and automation compatibility to suit the application.
View product category →Wood and cardboard packaging protects laboratory glassware, materials, and chemical containers during transport, storage, and logistics. Choose dimensions, thickness, stability, and cushioning such as dividers or foam inserts to suit contents. Check regularly for moisture and integrity; these materials are unsuitable for high humidity or extreme chemical exposure.
View product category →Screw cap microtubes securely store, transport, and handle biological or chemical samples in applications from molecular biology to cryostorage. Their caps help limit leakage, contamination, and evaporation. Select by volume, material compatibility, seal integrity, centrifugation needs, and cryostorage suitability.
View product category →Disposable pipette tips enable precise liquid transfer with air-displacement pipettes while helping protect samples and instruments from contamination. Select for pipette volume range, single- or multichannel use, fit, material, sterility, geometry, and length. Filter tips add aerosol protection; a precise seal supports accurate aspiration and dispensing.
View product category →Cryogenic storage vials securely preserve biological samples, cell cultures and enzymes in liquid nitrogen or ultra-low-temperature freezers. Choose volumes typically from 0.5 to 5 ml, low-temperature-resistant materials, and reliable sealed closures to limit contamination and sample loss.
View product category →ULT −86°C freezers support long-term storage of sensitive biological samples such as DNA, RNA, proteins and vaccines in life science, biomedical and pharmaceutical laboratories. Selection should consider stable temperature control, storage capacity versus footprint, energy use, insulation, alarms and door configuration.
View product category →Sample storage preserves biological, chemical, or clinical samples under controlled conditions for reliable analysis. Choose solutions based on sample stability, required temperature and humidity, storage duration, container compatibility, and available space. Regular monitoring, calibration, cleaning, and suitable preparation help prevent contamination or loss.
View product category →ULT cooling systems provide long-term storage for temperature-sensitive biological samples and reagents, typically at −80 to −85 °C, supporting sample stability in molecular biology and biomedical research. Selection should consider temperature accuracy, internal volume, energy use, and safety features such as alarms and temperature logging.
View product category →Automated liquid handlers automate repetitive liquid transfers for sample preparation, genomics, proteomics, and cell culture workflows. They support precise, reproducible pipetting and dispensing at micro- or nanoliter volumes and high throughput. Selection should consider volume range, workflow complexity, vessel compatibility, and integration with existing automation.
View product category →Automatic pipetting systems perform precise, repeatable liquid transfers between tubes and microplates for applications such as molecular biology, diagnostics, and cell culture. Select by volume range, channel number, consumable compatibility, and software capabilities. Mechanical or pneumatic systems can automate complex steps, though viscous or foaming liquids may be limiting.
View product category →Laboratory dispensers deliver defined liquid volumes directly from stock bottles for repeatable dosing of reagents, buffers, and other chemicals. Choose according to bottle fit, volume range, material compatibility, and operation mode; mechanical, pneumatic, or electronic designs support different workflows. Regular cleaning and calibration help maintain accuracy.
View product category →Liquid handlers automate precise liquid transfer for sample and reagent preparation, microtiter plate dispensing, and standardized workflows. Technologies include piston pipetting, pumps, and acoustic transfer, covering nanoliters to milliliters. Select systems by volume range, channel count, labware and automation compatibility, accuracy, and suitability for challenging liquids.
View product category →Electronic pipettes automate precise, reproducible liquid transfer for molecular biology, cell culture, and general dispensing. Select volume range and single- or multichannel format according to the task; programmable steps and stored protocols can support routine workflows. They use electronically controlled piston movement with digital volume control.
View product category →Pipette holders provide organized, upright storage to minimize contact with work surfaces and support hygienic, efficient workflows. Select by capacity, pipette compatibility, material, and stability; open or partially closed designs, modular formats, and wall-mountable options can suit different laboratory setups.
View product category →Manual pipettes precisely measure and dispense microliter liquid volumes for sample preparation and analysis. Available in single- and multi-channel formats, they use air displacement via a plunger. Select by volume range, channel number, tip compatibility, and ergonomic handling; viscous liquids may require specialized options.
View product category →Pipette tips are single-use consumables for piston-operated pipettes and automated pipetting systems, supporting precise, reproducible liquid transfer while helping prevent cross-contamination. Select tips for pipette compatibility, volume range, sterility, and liquid properties; low-retention or filter variants can reduce residue or aerosol exposure.
View product category →Stepper pipettes are handheld manual dispensers for rapid, accurate repeated delivery of small liquid volumes in molecular biology, chemistry, and microbiology. Using displacement-based volume delivery with defined adjustment steps, they support one-handed operation; select for required volume range, tip compatibility, ergonomics, and adjustment accuracy.
View product category →High-performance centrifuges separate cellular components, proteins, viruses, and nucleic acids at high centrifugal forces for biotechnology, molecular biology, microbiology, and pharmaceutical sample preparation. Choose rotor type and capacity for sample volume: fixed-angle rotors support rapid small-volume sedimentation, while swing-out rotors accommodate larger volumes.
View product category →Diluters for tubes and plates automate precise liquid-sample dilutions for reproducible, sterile preparation in research, clinical, and microbiological workflows. They use volumetric aspiration and dispensing and may support serial, parallel, or individual dilutions. Choose according to format compatibility, dilution flexibility, throughput, automation, and contamination-control needs.
View product category →Electroporation systems use electrical pulses to temporarily permeabilize cell membranes, enabling uptake of nucleic acids, proteins, and other macromolecules for transformation, transfection, and cell manipulation. Select systems by adjustable pulse parameters and chamber formats matched to cell type and volume; optimized protocols support reproducible results.
View product category →PCR cyclers, or thermocyclers, generate the precise temperature cycles required for DNA amplification in applications such as pathogen detection, genotyping, sequencing, cloning, and mutagenesis. Selection should consider temperature accuracy and lag time, block format and sample capacity, cycle programmability, and compatibility with tubes or plates.
View product category →PCR plates are disposable microplates for parallel DNA amplification in molecular biology workflows. Available mainly in 96- or 384-well formats, they support controlled thermal cycling and manual or automated handling. Select by cycler compatibility, material temperature resistance, sealing method, and optical clarity where required.
View product category →PCR tubes and strip tubes are single-use reaction vessels for preparing and amplifying DNA through cyclic temperature changes. Choose formats by reaction volume, strip size, sealing, thermocycler compatibility, and—where fluorescence measurement is needed—optical clarity. Polypropylene supports chemical resistance and temperature stability.
View product category →Thermocyclers automate temperature-controlled reactions such as PCR-based DNA amplification, restriction enzyme reactions, ligations, and reverse transcription. Block-based systems heat and cool sample vessels through programmed cycles. Select by sample capacity, temperature range and control precision, cycling speed, vessel compatibility, and programmable parameters; gradient cycling can support PCR optimization.
View product category →Heat sealers thermally join packaging materials with at least one thermoplastic layer, helping secure laboratory samples, chemicals, and consumables against contamination, moisture, and leakage. Select according to film compatibility, required temperature and pressure, packaging dimensions, and handling area; adjustable temperature, timers, or automatic cycles may be useful.
View product category →Centrifugal evaporators remove volatile organic solvents from liquid samples by combining rotation, controlled temperature, and vacuum for gentler low-temperature evaporation. They support parallel processing in different vessel formats; choose based on sample volume, temperature and vacuum ranges, container compatibility, and condensing performance.
View product category →Centrifuges separate liquid mixtures by component density for standardized preparation of plasma, serum, and cell fractions in diagnostics and research. Choose capacity, rotor type, maximum speed or RCF, and cooling according to sample volume and separation goals. Proper loading supports reliable operation.
View product category →General purpose centrifuges separate, concentrate, or purify particles, cells, and biomolecules in liquid samples for applications such as cell harvesting, tissue culture, and molecular biology. Choose according to required RCF, speed range, sample volume, and rotor type, including fixed-angle, swing-out, or continuous-flow designs.
View product category →High-speed centrifuges rapidly separate particles or molecules in suspension by density and size for sample preparation, cell fractionation, and suspension clarification. Key selection factors include maximum speed and centrifugal force, rotor capacity and compatibility, speed and temperature control, plus safety and noise considerations.
View product category →Micro centrifuges rapidly separate small-volume samples in capillary or Eppendorf tubes, supporting work with cellular components, nucleic acids, proteins, and suspended particles. Select by maximum speed, rotor capacity and type, and consider cooling for temperature-sensitive samples. They are not intended for large volumes or ultrahigh-force applications.
View product category →Table top centrifuges separate or concentrate suspended particles by density for sample preparation, cell harvesting, and DNA, RNA, or protein research. Their compact design suits confined workspaces. Select by required maximum RCF, vessel volume range, and rotor type: fixed-angle for rapid small-volume pelleting or swing-out for plates and tubes.
View product category →Ultracentrifuges separate dissolved macromolecules and biological particles in liquids by sedimentation under forces up to about 1 million g, supporting analysis and purification in biology and biochemistry. Select by maximum speed, rotor compatibility, vacuum operation, and cooling; sensitive molecules require careful parameter selection.
View product category →Laboratory evaporators reduce liquid sample volume by removing solvent, helping concentrate solutions and simplify sample preparation. Choose according to solvent type and volume, sample properties, required evaporation parameters, and safety needs for volatile or flammable solvents. Rotary, vacuum, and ultrasonic designs support different evaporation approaches.
View product category →Shake incubators combine controlled incubation temperatures with shaking to temper and agitate cell cultures, microbiological preparations, and biochemical reaction mixtures. Mixing and ventilation support aerobic cultivation. Selection should consider temperature accuracy and stability, shaking motion and speed, platform capacity, vessel compatibility, and programmable incubation profiles.
View product category →Reactors are controlled vessels for laboratory chemical reactions or microorganism cultivation. They support reproducible processes through control of temperature, stirring, pH, and oxygen supply. Select according to reaction type, volume, material compatibility, operating temperature, aeration or sterility needs, and automation requirements.
View product category →Laboratory shakers provide even, gentle mixing of liquids in sample vessels for cell cultures, reagents, microbiological samples, and analytical preparation. Choose based on vessel type and volume, motion pattern—orbital, linear, or overhead—required speed, and load capacity; highly viscous liquids or very small volumes may require alternatives.
View product category →Laboratory shakers provide controlled shaking, orbital, or rotational movement for homogeneous mixing of liquids, cultures, and reagents in sample vessels. Select according to vessel type and size, motion type, speed adjustment, capacity, sample-holder stability, and compatibility with incubation systems.
View product category →Vortexers rapidly and intensively homogenize liquid samples in microtubes, Eppendorf tubes, and microtiter plates for laboratory sample preparation. Choose based on vessel compatibility, adjustable speed, operating mode, and vibrational or rotational drive. They are intended for small volumes and do not provide temperature control.
View product category →Block thermostats provide precise, uniform temperature control for small vessels in applications such as incubation, enzyme reactions, DNA denaturation, and melting-point determination. Select models based on temperature range, vessel compatibility and capacity, temperature uniformity, and reproducibility; interchangeable blocks may support different tube or microtiter plate formats.
View product category →Incubators provide controlled temperature and humidity for cultivating microorganisms, yeasts, and animal or plant cell cultures under standardized conditions. Choose models based on climate-control precision, chamber volume, and required functions such as CO₂ regulation, cooling, agitation, or programmable sequences.
View product category →CO2 incubators create controlled microclimates for cultivating cell cultures, microorganisms, bacteria, and yeasts by regulating CO2, temperature, and humidity. Select according to chamber size, control accuracy, humidity distribution, sensor technology, and cleaning or sterilization requirements. Regular calibration and maintenance support reproducible growth conditions.
View product category →General incubators create controlled temperature and humidity conditions for cultivating bacteria, yeasts, microorganisms, and insect, animal, or plant cells in research, diagnostics, and quality control. Select models by temperature range, humidity control, chamber size, and cleaning requirements; they are not intended for highly temperature-critical or CO2-dependent cultures.
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