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Cooling, cryogenics and sample storage (1)

Chiller

Chillers remove heat from liquid coolants and circulate the cooled liquid through heat exchangers to maintain defined temperatures in laboratory and process applications. Selection depends on cooling load, required temperature, refrigerant and process-media compatibility, connections, and whether vapor-compression, adsorption, or absorption operation is suitable.

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Balances and measurement technology (2)

Calorimeter

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.

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Viscosimeter

Viscosimeters determine liquid resistance to flow for research, development, and quality assurance in chemicals, oils, foods, paints, and pharmaceuticals. They characterize Newtonian and non-Newtonian fluids using capillary, rotational, or falling-ball principles. Choose according to fluid behavior, measurement range, sample volume, accuracy, and method.

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Molecular biology, PCR and sequencing (1)

Reactors – Formulation reactor

Formulation reactors support the development and optimization of chemical mixtures, including crystallization, solubility, polymorphism, and targeted particle nucleation studies. Precise temperature and stirring control promotes reproducible, scalable process development. Select according to volume, temperature-control options, stirring system, chemical resistance, and measurement-device compatibility.

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Laboratory safety and facilities (4)

Pumps – Vacuum pump

Laboratory vacuum pumps generate controlled negative pressure for filtration, distillation, drying, and evacuation. Select by required vacuum level, pumping speed, operating principle, and compatibility with process media. For very low pressures, specialized pumps or backing-pump combinations may be required.

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Tripod

Laboratory tripods provide stable, secure mounting and flexible positioning for equipment and measuring instruments. Select according to load size and weight, mounting compatibility, construction stability, and corrosion resistance. Adjustable or modular designs support varied setups; insufficient strength can cause vibration or slipping.

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Vacuum regulator

Vacuum regulators control, measure and monitor vacuum processes, helping maintain defined pressure values and protect sensitive steps from fluctuations. Choose according to required accuracy, chemical resistance, system compatibility and control range; mechanical designs use bellows or diaphragms, while electronic models use sensors.

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Vacuum system

Vacuum systems generate and maintain negative pressure for laboratory filtration, drying, degassing, and process control. Choose based on required vacuum level, evacuated volume, and gas or vapor type, while considering controllability, maintenance, and compatibility. Specialized components may be needed for aggressive, contaminated, or highly volatile media.

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Centrifugation and sample preparation (18)

Disperser

Dispersers prepare samples by homogenizing, suspending, emulsifying, or comminuting materials to form stable mixtures with well-wetted particles. Choose according to sample type, volume, and required disaggregation; key factors include power, shear force, speed control, and mechanical rotor-stator or ultrasonic dispersion principles.

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Distiller

Laboratory distillers separate volatile from less volatile substances by evaporation and vapor condensation, supporting purification, solvent recovery, and collection of specific liquids. Selection depends on mixture type, required efficiency, volume, component temperature resistance, and cooling system; similar boiling points or thermal instability can limit use.

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Evaporator

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.

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Flow Reactor

Flow reactors conduct chemical reactions in continuous, closed pipe systems under defined temperature and pressure, supporting chemical synthesis, process development, and fine-chemical production. Select materials, volume, and tube diameter for reagent compatibility, flow rate, heat transfer, mass transport, and residence time.

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Homogenizer

Homogenizers prepare uniform liquid and finely ground samples by reducing and mixing particles through shear, turbulence, and cavitation in a homogenizing valve. They support cell disruption and tissue grinding for subsequent analysis. Select based on sample type, target particle size, throughput, cleaning needs, and sensitive-sample compatibility.

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Incubators – Shake Incubator

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.

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Magnetic stirrer

Magnetic stirrers provide gentle, even mixing of liquids in chemistry, biology, and environmental analysis by rotating a stirring bar magnetically inside the vessel. Choose adjustable speed and plate materials for the sample environment; hotplate models add temperature-controlled heating. They are best suited to low- to medium-viscosity liquids.

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Mill

Laboratory mills homogenize solids, minerals, plants, and plastics to a defined fineness for reproducible chemical and physical analyses. Select the milling principle, dry or wet operation, and grinding conditions according to sample properties, volume, target particle size, and potential heat sensitivity or contamination.

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Mixer

Laboratory mixers prepare samples for reproducible analysis by mechanically mixing, homogenizing, grinding, or emulsifying liquids and solids. Choose according to sample type, volume, and vessel flexibility: bench-top units combine motor and container, while immersion models work across different vessels. Avoid highly abrasive or extremely viscous media.

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Overhead stirrer

Overhead stirrers mix, homogenize, suspend, or redistribute larger volumes and highly viscous liquids that magnetic stirrers may not handle effectively. Select by sample volume, viscosity, and application, considering speed range, drive type, control options, stirrer geometry, and reaction-monitoring requirements.

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Roller mixers

Roller mixers gently and uniformly mix samples in tubes or bottles through combined rolling and tilting motion. They suit sensitive samples such as blood, viscous liquids, and liquid-solid suspensions. Select by speed control, vessel capacity, container compatibility, and stability; they are unsuitable for rapid or vigorous mixing.

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Rotary evaporator

Rotary evaporators gently remove, concentrate, or dry solvents under reduced pressure, using rotation to create a large evaporation surface for rapid low-temperature processing. Consider flask capacity, heating bath type, temperature and speed ranges, vacuum control, and condenser configuration; they are less suitable for highly viscous or low-volatility samples.

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Rotators

Laboratory rotators gently and uniformly mix biological fluids, cell cultures, and chemical solutions through slow rotation or tilting, helping reduce sedimentation. Select according to sample type, required motion, speed, tilt range, and capacity. They are intended for gentle mixing rather than intensive shaking or homogenization.

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Shaker

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.

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Shaker general

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.

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Stirrer

Laboratory stirrers mix, disperse, or suspend liquids, gases, and particles for tasks such as homogenizing solutions, dissolving solids, and stabilizing suspensions. Select the design according to medium viscosity and volume, vessel geometry, chemical compatibility, and required flow conditions.

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Synthesis instrument

Synthesis instruments automate programmable laboratory chemical syntheses, such as peptide or other complex reactions, with controlled temperature, reaction time and reagent addition. Selection depends on synthesis type, programming flexibility, chemical compatibility, capacity, and required maintenance; sensors may monitor temperature, pH or pressure.

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Vortex

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.

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Temperature control and incubation (6)

Block thermostat

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.

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Dryer

Laboratory dryers remove moisture from samples and materials for analytical preparation, storage, or conditioning, supporting stability and reproducible results. Select by material type, temperature, and drying time: hot air evaporates moisture, while vacuum drying lowers evaporation temperature for sensitive samples.

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Drying chamber

Drying chambers provide temperature-controlled drying and warm storage of laboratory samples and materials, with higher-temperature use possible for hot air sterilization. Select based on required temperature range, stability, chamber size, and air circulation; forced circulation supports uniform temperatures and reproducible processes.

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Heating plate

Heating plates provide controlled heating of laboratory vessels for reactions, evaporation, and sample tempering in chemistry and biology. Select by maximum temperature, control accuracy, heating-surface dimensions, vessel compatibility, and options such as temperature display or integrated magnetic stirring. They do not directly measure sample temperature.

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Temperature regulating system

Temperature regulating systems control laboratory and technical processes by circulating a thermal fluid at a defined setpoint to add or remove heat. They support stable conditions in reaction vessels, extraction and chromatographic setups, incubators, and cooling units. Select according to temperature range, fluid stability, regulation accuracy, and installation compatibility.

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Thermostat

Thermostats regulate laboratory temperatures by using sensor feedback to control heating or cooling and maintain predefined setpoints. They support stable conditions in incubators, cooling wells, analytical instruments, and temperature-sensitive tests. Select based on temperature range, control accuracy, response time, and sensor type and placement.

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All 32 product categories

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