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Lab Chillers & Heaters for Thermal Control

 

Laboratory chillers and heaters are temperature-control instruments used to cool or heat circulating fluids in reactors, condensers, analytical instruments, and recirculating bath setups. Available in configurations ranging from -120 degrees C cooling to +400 degrees C heating, they include recirculating chillers, immersion circulators, closed-system heater-chiller combos, and open bath heaters.

MBP serves procurement teams at Howard Hughes Medical Institute, Vanderbilt University, and MD Anderson Cancer Center, and provides direct specialist support for sourcing and quoting temperature-control equipment. Request a quote for laboratory chillers and heaters for thermal control, process cooling, and heating applications by contacting customerservice@mbpinc.net.

Chillers & Heaters

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Hi-Frequency Compact Induction Heater 100-500KHz
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USD7,700.70 - USD10,626.70
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USD5,500.50 - USD7,590.50
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Hi-Frequency Induction Heater 600-1100KHz
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USD15,946.70 - USD35,896.70
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USD11,390.50 - USD25,640.50
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Huber TC100E Spez Air-Cooled-100°C Immersion Cooler
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USD22,344.00
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USD15,960.00
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Julabo CORIO 100°C Capacity Heating Circulator
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USD5,445.02 - USD6,008.94
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USD3,889.30 - USD4,292.10
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Julabo CORIO 200°C Capacity Heating Circulator
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USD7,353.57 - USD7,926.80
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USD5,252.55 - USD5,662.00
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Julabo CORIO CD-200F -20C +150C Refrigerated/Heating Circulator
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USD10,886.05
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USD7,775.75
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Julabo FT900 -90°C Immersion Cooler with probe for rapid cooling
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USD25,432.62
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USD18,166.16
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Julabo PRESTO A45t -45C 250C 7.5L Dynamic Temperature Control
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USD92,235.36
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USD65,882.40
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Julabo PRESTO Dynamic Temperature Control
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USD84,354.89 - USD154,821.51
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USD60,253.49 - USD110,586.79
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Julabo PRESTO W50 -50C 250C 7.5L Dynamic Temperature Control
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USD110,447.50
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USD78,891.07
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Julabo Recirculating Chiller
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USD33,315.81 - USD77,606.98
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USD23,797.01 - USD55,433.56
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Low-Frequency Dual-Station Induction Heater 1-20KHz
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USD11,956.70 - USD27,916.70
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USD8,540.50 - USD19,940.50
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Showing 13 to 24 of 36 results

What Are Lab Chillers and Heaters?

 

Laboratory chillers and heaters are liquid-temperature control instruments that cool or heat circulating fluid and deliver it to connected equipment: reactors, condensers, rotary evaporators, spectrometers, chromatography columns, and viscometers. Recirculating chillers use compressor-based refrigeration to remove heat in a closed loop; heating circulators use resistive or induction elements to raise bath temperature. Heater-chiller combos integrate both functions in a single unit, enabling thermal cycling without a separate instrument. Temperature ranges across the category span approximately -120 degrees C to +400 degrees C, depending on the model family and manufacturer. Choose a chiller for equipment cooling or solvent recovery; choose a heater for reagent warming or enzyme assays; choose a combo unit when your workflow requires both heating and cooling cycles.

 

What You Will Find:

 

  • Laboratory Recirculating Chillers utilize high-efficiency cooling loops to remove heat from external equipment, ensuring rapid and consistent temperature reduction for high-throughput systems.

  • Immersion and Circulation Heaters deliver rapid thermal increases to circulating fluids, featuring digital control interfaces for precise management of complex heating cycles.

 

How to Choose Lab Chillers and Heaters

 

Cooling vs. heating vs. combo

Single-function recirculating chillers are the lowest-cost option when only cooling is needed, for example, jacketed reactor temperature control or rotary evaporator condenser cooling. Closed-system heater-chiller combos cost more but eliminate the need for two separate instruments and are preferred for workflows requiring thermal cycling, such as chemical synthesis with temperature ramps.

Temperature range

Confirm the achievable temperature at your actual heat load, not just the advertised minimum. A chiller rated to -80 degrees C may only reach that temperature with small glassware at low thermal load. Larger jacketed reactors (10 L and above) typically require higher-capacity units with flow rates of 20 L/min or more.

Air-cooled vs. water-cooled

Air-cooled chillers require no plumbing and fit most lab benches, but generate heat into the room and lose efficiency above 25 degrees C ambient. Water-cooled chillers are more efficient under high thermal loads and in warm rooms, but require drain and supply connections planned into the facility.

Flow rate and reservoir volume

Match the reservoir volume to the volume of fluid in the connected system. Flow rates from 10 L/min to 42 L/min are typical across benchtop and floor-standing models. External applications (jacketed vessels, instrument cooling lines) generally require higher flow rates than open bath immersion setups.

Control interface

PID controllers with digital setpoint display are standard. Higher-end models include programmable temperature ramps, RS-232/RS-485 or USB/Ethernet connectivity for data logging, and external Pt100 probe inputs for cascade control.

 

Specifications Context

 

Key specs to review before purchase: heating/cooling capacity in kW at the target setpoint temperature (not nominal max); reservoir volume in liters; pump flow rate (L/min) for external applications; and temperature stability, typically stated as plus or minus 0.1 degrees C for standard units. For closed systems handling flammable solvents, confirm the unit's DIN 12876-1 classification (Class III FL-rated units are compatible with flammable bath liquids). Units intended for North American labs should be specified for 120V/60Hz unless the facility has 208V or 240V service. 

 

Protect your equipment from thermal stress. Browse our chillers and heaters collection and contact the MBP team for a complete quote today.

FAQ

A recirculating chiller provides cooling only, using a compressor-based refrigeration loop to remove heat from connected equipment or fluid. A heater-chiller combo integrates both heating and cooling in one unit, enabling temperature control above and below ambient without two separate instruments. Combo units typically cover ranges from -90 degrees C to +250 degrees C and are preferred for thermal cycling workflows such as chemical synthesis with programmed temperature ramps.
Benchtop recirculating chillers commonly reach -10 degrees C to -80 degrees C at practical heat loads. High-capacity floor-standing models and cryogenic chillers extend cooling to -120 degrees C. Open bath heaters cover ambient to approximately 150 degrees C; heating circulators reach up to 200 degrees C. Heater-chiller process systems such as the JULABO PRESTO series cover -91 degrees C to +250 degrees C in a single unit.
Air-cooled chillers require no plumbing, are easier to relocate, and suit most bench-scale applications up to moderate heat loads. Water-cooled chillers are more efficient in warm rooms or high-load applications and can be positioned in sequence for large-scale setups, but require supply and drain connections. For ambient temperatures above 25 degrees C or heat loads exceeding 3 kW, a water-cooled model is generally more reliable.
Flow rate requirements depend on the reactor volume and desired temperature change rate. Jacketed reactors from 5 L to 20 L typically require flow rates of 10 L/min to 25 L/min; reactors 50 L and above benefit from 30 L/min to 42 L/min. Chiller manufacturers publish performance curves at different set-point temperatures -- confirm the flow rate at your target temperature, not at room temperature, since flow and cooling capacity both decrease at lower setpoints.
Yes. Recirculating chillers are a standard accessory for rotary evaporators, cooling the condenser coil to improve solvent condensation and recovery. Compact benchtop models with 4 L to 10 L reservoirs and temperatures down to -20 degrees C are sufficient for most solvent recovery applications. For solvents with low boiling points, models reaching -40 degrees C or colder improve recovery efficiency.
DIN 12876-1 classifies heating circulators by flash-point compatibility of the bath fluid. Class I units handle bath fluids with flash points above 60 degrees C; Class II units handle fluids above the working temperature plus 25 degrees C; Class III (FL) units are approved for use with flammable bath liquids regardless of flash point. If your application uses ethanol, acetone, or other flammable solvents as the heat-transfer fluid, specify a Class III (FL)-rated unit.
Heater-chiller combo units contain both a resistive heating element and a refrigeration compressor in a single housing, switching between modes automatically based on the setpoint relative to current bath temperature. This eliminates the need to disconnect and reconnect separate instruments when switching from a heating phase to a cooling phase. Units with closed-system designs also reduce fluid evaporation and improve temperature stability during rapid transitions.
Yes. MBP supports institutional purchase orders for temperature-control equipment. As a registered vendor for Howard Hughes Medical Institute, Vanderbilt University, and MD Anderson Cancer Center, MBP's procurement team can generate quotes, supply COA/SDS documentation, and coordinate lead times for equipment orders. Contact MBP directly for current stock, lead times, and volume pricing.
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