Products Bio-Chem Equipment cooling circulator & heater circulator 5L Chilling Circulator Low temperature constant temperature reaction bath
5L Chilling Circulator Low temperature constant temperature reaction bath

cooling circulator & heater circulator

5L Chilling Circulator Low temperature constant temperature reaction bath

Item Number : KCP-5

Price varies based on specs and customizations


Fluid Volume
5 L
Working Temp
-120-5 ℃
Flowrate
35 L/min 4-6m
ISO & CE icon

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Applications

KinTek KCP chilling circulator is an ideal functional chilling equipment , besides supplying constant chilling power with circulating fluids, it can also work as a one chilling bath to meet different working circumstances.

Its chilling system applies brand refrigerating compressor, high efficient heat exchangers, which can create a stable and quiet chilling power, max. Chilling temperature can be up to -120℃.

Its circulating system applies built in brand circulating pump, equipment standard inlet and outlet ports, which guarantee a reliable circulating result.

Detail & Parts

Running lights. Door lock, easy to open the door for maintenance.
Running lights.
Door lock, easy to open the door for maintenance.
Circulation inlet
Circulation inlet
Oil level can be observed at any time
Oil level can be observed at any time
The status of the compressor can be observed at any time.
The status of the compressor can be observed at any time.
Explosion proof controller system
Explosion proof controller system
Explosion proof controller system and LCD touch screen
Explosion proof controller system and LCD touch screen

Technical specifications

Model Fluid Volume Working Temp. Cooling Capacity Flowrate Temp. Stability Hose Port Dimensions (mm)
KCP5-10 5L -12-5℃ 1213-290W 35L/min 4-6m +/-2℃ 1/2’’ 520*350*720
KCP5-20 -23-5℃ 1248-319W
KCP5-25 -26-5℃ 1314-447W
KCP5-30 -32-5℃ 1375-450W
KCP5-40 -40-5℃ 1420-462W
KCP5-60 -63-5℃ 1910-230W 430*350*960
KCP5-80 -83-5℃ 1938-200W
KCP5-120 -120-5℃ 2635-180W 540*450*1020

Warnings

Operator safety is the top important issue! Please operate the equipment with cautions. Working with inflammable& explosive or toxic gases is very dangerous, operators must take all necessary precautions before starting the equipment. Working with positive pressure inside the reactors or chambers is dangerous, operator must fellow the safety procedures strictly. Extra caution must also be taken when operating with air-reactive materials, especially under vacuum. A leak can draw air into the apparatus and cause a violent reaction to occur.

Designed for You

KinTek provide deep custom made service and equipment to worldwide customers, our specialized teamwork and rich experienced engineers are capable to undertake the custom tailoring hardware and software equipment requirements, and help our customer to build up the exclusive and personalized equipment and solution!

Would you please drop your ideas to us, our engineers are ready for you now!

FAQ

What is a cold trap chiller in lab?

A cold trap chiller is a device used in laboratory equipment to protect vacuum pumps from contamination by condensing or sublimating vapors in a separate apparatus. It prevents oil vapors from backstreaming from the pump into the system and maintains a chilled stainless steel or glass surface for vapors to condense or sublimate on. The device utilizes an active material such as dry ice or liquid nitrogen or a Peltier element for cooling and can be disassembled for easy cleaning. Cold traps are essential for efficient pump operation and longer service lives.

What is the purpose of a cold trap chiller?

The purpose of a cold trap chiller is to protect vacuum pumps from contamination by condensing or sublimating vapors and preventing oil vapors from backstreaming into the system. It provides a chilled surface for vapors to condense or sublimate on and utilizes an active material such as dry ice or liquid nitrogen or a Peltier element for cooling. Cold traps are most commonly used to collect vapor from applications involving rotating discs or vacuum systems, but can also be used on other types of contamination including solids. Cryogenic cold traps are specifically manufactured for cryogenic applications such as the adsorption of noble gases.

What is a cooling circulator?

A cooling circulator is a laboratory cooling system that provides consistent and precise temperature control for experiments that require cooling. It features a liquid reservoir, a cooling system, and a temperature control mechanism. These circulators can be used to cool or chill samples, and supply temperature-controlled water to external equipment. They are commonly used in life science research, drug discovery, material testing, wafer production, and wet chemistry. The temperature range of cooling circulators can be as wide as -95°C to 200°C

What is a heated circulator?

A heated circulator is a laboratory equipment used to precisely control the temperature of fluids. It is often used in experiments that require consistent and precise temperature control, such as dissolution testing. The circulator typically features a liquid reservoir, a heating system, and a temperature control mechanism. The temperature range of a heated circulator can be as wide as -95°C to 300°C. It is commonly used in life science research, drug discovery, material testing, wafer production, and wet chemistry.

Why is a cold trap placed before the vacuum pump?

A cold trap is placed before the vacuum pump to prevent vapors, such as vapor from water or solvents, from contaminating the vacuum pump and the airstream. The cold trap condenses or sublimates gases, preventing them from reaching areas of the system that could lead to malfunction. Cold traps collect vapor from applications involving rotating discs or vacuum systems and oil vapors from a pump to prevent them from flowing into the chamber. By using a cold trap, vacuum pumps operate more efficiently and have longer service lives.

What is a circulating water bath?

A circulating water bath is a laboratory equipment that maintains a constant temperature by circulating water. This equipment is designed to enable the rapid heating and cooling of samples by constantly circulating water. It is commonly used in life science research, drug discovery, material testing, wafer production, and wet chemistry. Circulating baths offer efficient temperature maintenance over a wide range of temperatures, ranging from -90 to 300°C, and heat load removal of up to 1000 watts. They are ideal for holding samples such as flasks and beakers, and can also be used to circulate fluid to external equipment in open- or closed-loop applications.

What is the purpose of a heater circulator?

The purpose of a heater circulator is to provide a consistent and precise temperature control for experiments that require heating internally or externally. These circulators feature a liquid reservoir and a heating system, along with a temperature control mechanism. They are ideal for maintaining a few temperature set points over a long period of time and are commonly used in laboratories for experiments that involve liquid baths. Heating circulators come in open or closed baths and offer a wide temperature range from –90 to 300°C and heat load removal of up to 1000 watts.

How does a cooling circulator work?

Cooling circulators work by utilizing a refrigeration system to cool the circulating coolant. The coolant is pumped from the reservoir through a cooling coil or heat exchanger, where it absorbs heat from the system being cooled. The heated coolant then flows back to the refrigeration system, which removes the heat and lowers its temperature. The cooled coolant is then circulated back into the system to maintain the desired temperature. The temperature is regulated and controlled by a temperature controller that monitors and adjusts the refrigeration system and pump speed accordingly.

How does a heater circulator work?

A heater circulator works by heating a fluid and then circulating it through the system. The heating element, often an electric coil or a heating mantle, provides controlled heat to the fluid. The pump, typically a magnetic or centrifugal pump, circulates the fluid through tubes or a bath, ensuring even temperature distribution. The fluid absorbs heat from the heating element and transfers it to the desired location, such as a reaction vessel or a temperature-controlled chamber. Temperature sensors and controllers are used to monitor and maintain the desired temperature within a specified range. The combination of heating and circulation allows for precise temperature control and uniform heating throughout the system.

What are the advantages of using a cooling circulator?

Cooling circulators offer several advantages for temperature control and cooling applications. Firstly, they provide precise and stable temperature control within a specific range, ensuring accurate and repeatable experimental results. The ability to maintain constant temperatures is crucial for many laboratory processes, such as chemical reactions, sample storage, and equipment cooling. Secondly, cooling circulators are versatile and can be used with a wide range of laboratory equipment, such as rotary evaporators, reactors, and spectrophotometers. They also come in various sizes and cooling capacities to accommodate different cooling requirements. Additionally, cooling circulators are energy-efficient, as they recycle and reuse the coolant, minimizing water consumption and reducing operating costs. Overall, cooling circulators enable efficient and controlled cooling in laboratory and industrial settings.

What types of fluids can be used with a heater circulator?

Heater circulators can be used with a variety of fluids depending on the specific application requirements. Commonly used fluids include water, oils, and silicone-based fluids. Water is a popular choice due to its availability, low cost, and good heat transfer properties. Oils, such as mineral oil or silicone oil, are often used when higher temperature ranges or better heat stability are required. Silicone-based fluids are suitable for applications that involve low temperatures or require inertness. It is important to select a fluid that is compatible with the materials of construction in the heater circulator and consider the desired temperature range, heat transfer properties, and safety considerations when choosing the appropriate fluid.

What safety precautions should be taken when using a cooling circulator?

When using a cooling circulator, it is important to follow safety precautions to ensure safe operation and prevent accidents. Firstly, proper training should be provided to personnel operating the circulator to ensure they understand its operation, safety features, and emergency procedures. Secondly, it is crucial to regularly inspect and maintain the cooling circulator, including the refrigeration system, pump, and electrical connections, to ensure safe and reliable operation. Any potential leaks or malfunctions should be promptly addressed. Thirdly, appropriate personal protective equipment (PPE) should be worn, such as gloves and safety glasses, when handling the coolant or performing maintenance tasks. Additionally, the cooling circulator should be placed on a stable surface and away from any potential obstructions or flammable materials. Proper grounding and electrical safety measures should also be followed.

Can a heater circulator be used for cooling applications?

Yes, certain models of heater circulators can also be used for cooling applications. These units are often referred to as heating and cooling circulators or temperature control systems. They feature both heating and cooling capabilities, allowing for precise temperature control within a wide range. The cooling function is achieved through a refrigeration system that circulates a coolant, such as water or refrigerant, through the system. This enables the user to cool down a process, vessel, or chamber to the desired temperature. Heating and cooling circulators are commonly used in applications that require rapid temperature changes or control over a broad temperature range, such as thermal cycling, material testing, or biological sample preservation.
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4.6

out of

5

KinTek's 5L Chilling Circulator is a game-changer for our lab. It provides precise temperature control and reliable performance, making our experiments more efficient and accurate.

Mohamed Mubasher

4.7

out of

5

The 5L Chilling Circulator from KinTek is a valuable addition to our laboratory. Its user-friendly design and advanced features have significantly improved our experimental outcomes.

Alisa Popescu

4.8

out of

5

KinTek's 5L Chilling Circulator has exceeded our expectations. Its rapid cooling and heating capabilities have accelerated our research and saved us valuable time.

Ramesh Varma

4.9

out of

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The 5L Chilling Circulator from KinTek is a testament to their commitment to quality. Its durable construction and attention to detail ensure years of reliable service.

Paola Santos

4.6

out of

5

KinTek's 5L Chilling Circulator has become an indispensable tool in our lab. Its compact design and low noise operation make it a pleasure to use.

Tomáš Novák

4.7

out of

5

The 5L Chilling Circulator from KinTek is a cost-effective solution for our laboratory. Its energy-efficient design helps us reduce our operating costs.

Maria Rodriguez

4.8

out of

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KinTek's 5L Chilling Circulator is a testament to their customer service. Their prompt response to our queries and technical support is exceptional.

Ahmed Mohammed

4.9

out of

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The 5L Chilling Circulator from KinTek is a reliable workhorse in our laboratory. Its consistent performance and minimal maintenance requirements make it a hassle-free solution.

Olivia Dubois

4.6

out of

5

KinTek's 5L Chilling Circulator has revolutionized our research. Its advanced temperature control system ensures accurate and reproducible results.

Lucas Silva

4.7

out of

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The 5L Chilling Circulator from KinTek is a valuable asset to our laboratory. Its ease of use and intuitive interface make it accessible to researchers of all skill levels.

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4.8

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KinTek's 5L Chilling Circulator is a testament to their commitment to innovation. Its cutting-edge technology has enabled us to explore new avenues of research.

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4.9

out of

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The 5L Chilling Circulator from KinTek is a game-changer for our laboratory. Its ability to maintain precise temperatures has improved the quality of our research.

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4.6

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KinTek's 5L Chilling Circulator is a reliable workhorse in our laboratory. Its durability and longevity make it a worthwhile investment.

Oliver Chen

4.7

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The 5L Chilling Circulator from KinTek is a cost-effective solution for our laboratory. Its energy-efficient design and low maintenance requirements save us money.

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4.8

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KinTek's 5L Chilling Circulator is a testament to their customer service. Their prompt response to our queries and technical support is exceptional.

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4.9

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The 5L Chilling Circulator from KinTek is a reliable workhorse in our laboratory. Its consistent performance and minimal maintenance requirements make it a hassle-free solution.

Amelia White

4.6

out of

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KinTek's 5L Chilling Circulator has revolutionized our research. Its advanced temperature control system ensures accurate and reproducible results.

Elijah Kim

4.7

out of

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The 5L Chilling Circulator from KinTek is a valuable asset to our laboratory. Its ease of use and intuitive interface make it accessible to researchers of all skill levels.

Isabella Garcia

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