Large Magnetic Stir Plate

Large Magnetic Stir Plate

1. Magnetic Stirrer:
(1)LCD/Double Knob/Timmer/Heating Plate
(2)Stirring Volume:5L
2. Large Capacity Magnetic Stirrer
(1)Double Knob/DC Brushless Motor/100~240V/5~40°C 80%RH
(2)Stirring Volume:10L/20L/50L
3. Multi Link Magnetic Stirrer:
(1)Double Knob/LCD/100~240V/100~1500RPM
(2)Stirring Volume:3*1/6*1/9*1
4. Mini Magnetic Stirrer:
(1)Miniature Brushless Motor/Stepless Speed Regulation/0~2000RPM/AC 220V 50Hz
(2)Stirring Volume:2L
5. Single Control Multi Connection Magnetic Stirrer:
(1)LED Digital/0~1600RPM/RT±5~99.9°C/220V 50/60Hz
(2)Stirring Volume:4*1/6*1
***Price List for whole above, inquire us to get
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Description

Technical Parameters

large magnetic stir plate is a common laboratory equipment, mainly used for mixing, heating and stirring various liquid samples. It makes the agitator (usually a small permanent magnet) rotate rapidly in the liquid by manetic force, so as to achieve a uniform mixture of the liquid. At the same time, some models are also equipped with a heating function, which can heat the liquid.

 

We provide large magnetic stir plate, please refer to the following website for detailed specifications and product information.

Product: https://www.achievechem.com/chemical-equipment/laboratory-magnetic-stirrer.html

 

Parameters
Large capacity magnetic stirrer

102050

Model
AC10-10L
SN-MS-10L
AC10-20L
SN-MS-20L
AC10-50L
SN-MS-50L
products

10L

20L

50L
Control Mode Double knob
Motor Type DC brushless motor
Max. Stirring Volume(L) 10 20 50
Speed Range(RPM) 100~1500 100~1200 100~800
Magneton Size(mm) φ10*60 φ10*70 φ10*80
Direction of Rotation Clockwise
Timing(min) 1~999
Power(W) 35 45 60
Voltage(V) 100~240
Frequency(Hz) 50/60
Temp. and Humidity 5~40°C 80%RH
Product Size(mm) 300*250*90 360*280*90 490*400*90
Net Weight(KG) 2.95 4.4 5.85
prices $ xxx $ xxx $ xxx
Single Control multi connection magnetic stirrer

20240116163258

Model
AC10-1L-4A
SN-HJ-4A
AC10-1L-6A
SN-HJ-6B
products

4A

6b

Voltage 220V 50/60Hz
Overall Power(W) 580 870
Display Mode LED digital
Display Data Temperature
Speed Range(RPM) 0~1600
Single-station Stirring Volume(L) 1
Speed Regulation Mode Stepless speed regulation, single station and single control
Temp. Control Range(°C) RT±5~99.9
Temp. Regulation Mode Button adjustment, single station and single control
Timing(min) / 0~120
Single-station Max Bearing Weight(KG) 3
Single-station Max Max. Stirring Volume(L) 1
Net Weight(KG) 8 12
Product Size(mm) 660*300*125 720*300*125
prices $ xxx $ xxx

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Development

The history of manetic stirre can be traced back to the middle of the 20th century, and it has gradually been widely used in various fields as a technology to achieve aseptic stirring using manetic principle. Here's a detailed look at the history of manetic stirres:

 
In the 1940s

Dr. Dreyfus, a Swede, discovered that a low-speed moving induced manetic field can produce a strong stirring effect in molten steel, which laid the foundation for the birth of electromanetic stirring technology.

 
In 1947/1948s

According to different sources, Dr. Dreyfus built the world's first electro agnetic stirre in 1947 or 1948 and put it into industrial use. This device was originally used in the electric arc furnace steelmaking process, marking the official birth of electromanetic stirring technology.

 
In the 1950s

Manetic stirres began to be used in experimental equipment such as cell culture meters and fermenters in biomedical production. The magneti tirrer in this period mainly used the manetic principle to achieve aseptic mixing, which met the special requirements for mixing technology in the biomedical field.

 
In the 1960s

Electromanetic stirring technology began to be used in the production of cast alloy steel in Austria, further expanding its scope of application.

 
In 1970s

With the in-depth study of manetic flow mechanics, electromanetic stirring technology has been rapidly developed. The French Iron and Steel Research Institute applied electromanetic stirring technology to the billet continuous casting machine for the first time, marking the extensive application of electromanetic stirring technology in the metallurgical industry.

 
In the 1980s

the combined electromagnetic stirring technology was researched, developed and applied, including the solidification end electro facilities, the secondary cooling area electromanetic stirring and the mold electromanetic stirring technology. The combination of these technologies can work together to stir the continuous casting system, which significantly improves the metallurgical effect and product quality.

 
In 1990s

Electromanetic stirring technology has been widely used in industrial production, especially in the metallurgical industry. The emergence of multi-frequency agitator and intermittent agitator indicates that the application and development of electromanetic stirring technology in the field of metallurgy has been mature.

 
Notice

Laboratory Magnetic Stirrer | Shaanxi Achieve chem-tech

Laboratory Magnetic Stirrer | Shaanxi Achieve chem-tech

Laboratory Magnetic Stirrer | Shaanxi Achieve chem-tech

► Read the equipment manual carefully before use and understand the use method and precautions of the equipment.
► Ensure that the device is placed in a smooth and well-ventilated place to avoid vibration and humidity.
► Pay attention to safe operation during use to prevent electric shock, scalding and other accidents.
► Regular maintenance and maintenance of the equipment to keep the equipment in good condition and extend the service life.

► Before use, it is necessary to correctly connect the power cord to ensure the safety of the equipment and personnel.
► When stirring, first adjust the speed control knob to the minimum, then turn on the power and gradually adjust it to the appropriate speed. Accelerating too quickly will cause the stirring rotor to jump continuously. At this time, immediately adjust the speed back to the "low" position and wait for the rotor to stop jumping before slowly accelerating.
► Liquids with high viscosity at room temperature often have poor thermal conductivity. When heating and stirring, it is not advisable to quickly raise the temperature to avoid container rupture. Intermittent use can extend the service life.
► Place the container in a suitable position on the metal tray so that the stirring rotor does not touch the power wall of the container while rotating.,
Otherwise, the mixing of 6 will fluctuate quickly and slowly, affecting the mixing effect.
► Keep the outer wall of the container dry. When the manetic stirrer is not in use, it should be cut off in a timely manner. Pay attention to the cleanliness of the manetic stirrer and its surrounding environment, and avoid the instrument power cord from touching the chassis.

 

Application

► The field of chemistry
1) Chemical reaction: Magnetic stirrer can be used in a variety of organic synthesis and inorganic synthesis reactions to ensure that the reactants are fully mixed to improve reaction efficiency and yield. In the process of solution synthesis, titration, mixing and so on, the use of magnetic stirrer can significantly improve the reaction efficiency, and help to reduce the occurrence of side reactions, improve the purity of products.
2) Solution preparation: The magnetic stirrer can accurately prepare a variety of chemical solutions, so that the solute is evenly dispersed in the solvent, ensuring the concentration and uniformity of the solution.
► Biological field
1) Cell culture: Magnetic stirrer plays a key role in the cell culture process, maintaining the uniformity of the cell culture system and providing a good growth environment for cells. A uniform dispersion of cells and a good mix of nutrients are essential for cell growth and reproduction.
2) Biological sample processing: Magnetic stirrer is often used in the process of protein extraction, nucleic acid purification and other biological sample mixing to ensure that the sample is fully mixed and improve the efficiency of extraction and purification.
► Medical field
1) Drug research and development: In drug synthesis, preparation and other links, magnetic stirrer can ensure the uniform distribution of drug ingredients, improve the stability and bioavailability of drugs.
2) Drug testing: Magnetic stirrer can be used to stir samples in order to carry out various testing and analysis to ensure the quality and safety of drugs.

 

Why choose us?
Technological innovation and design advantages
 
 

Efficient mixing technology:

Advanced manetic drive principle is adopted to ensure efficient and uniform mixing process and improve experimental or production efficiency.

 
 
 

Precise control:

Equipped with high-precision speed and temperature control system, it can accurately adjust the mixing speed and temperature to meet different experimental or production needs.

 
 
 

Structural design:

Compact design, small footprint, suitable for laboratory and production environments of various sizes, especially places with limited space.

 
Stable performance and durability

High-quality materials:

The use of high-quality materials to ensure long-term stable operation of equipment, reduce the failure rate.

Wear resistance and corrosion resistance:

The mixer and key components are specially treated to have good wear resistance and corrosion resistance, extending the service life of the equipment.

Safety and ease of operation
 
 

Safety design:

Avoid vibration, noise and safety hazards caused by mechanical transmission, and ensure safe and reliable operation process.

 
 
 

Easy operation:

One-click operation, users can start mixing with a simple setting, without complex training.

 
 
 

Easy maintenance:

The parts are removable, easy to clean and disinfect, and reduce maintenance costs.

 
Wide applicability and flexibility
 
 

Multi-field application:

Suitable for chemical, biological, pharmaceutical, material science and other fields, to meet different experimental and production needs.

 
 
 

Compatibility:

Can be adapted to a variety of specifications and shapes of containers, with strong adaptability.

 
 
 

Custom service:

Provide custom service to customize facilities with specific specifications and functions according to customer needs.

 
After-sales service and technical support
 
 

Professional team:

We have a professional after-sales service team and technical support team to respond to customer needs in a timely manner and solve problems encountered in the process of use.

 
 
 

Training services:

Provide comprehensive operational training and guidance to ensure that customers can use the equipment proficiently.

 
 
 

Warranty policy:

Provide long-term warranty policy, let customers buy worry-free.

 

With the advancement of technology and the continuous increase in laboratory demand, its are also constantly innovating and developing. Here are some new technologies and trends in mgnetic strrers:

Intelligence and automation:

Modern facility are increasingly incorporating intelligence and automation technologies. Through the built-in microprocessor and sensors, key parameters such as mixing speed and temperature can be monitored and controlled in real-time, achieving precise automation control. Some high-end mgnetic stirers also support remote control and data recording, making experimenters convenient for experimenters to conduct remote monitoring and data management.

Multifunctionality:

In order to meet the needs of different experiments, facilitys are gradually showing a trend towards multifunctionality. In addition to basic stirring and heating functions, some experimenters also integrate multiple functions such as constant temperature, timing, and stirring mode selection. In addition, some there are equipped with a stirrer recognition system that can automatically identify and adjust the stirring speed to accommodate stirrers of different sizes.

Environmental protection and energy conservation:

With the increasing awareness of environmental protection, experimenters are also developing towards a more environmentally friendly and energy-efficient direction. Some these adopt advanced energy-saving technologies such as variable frequency speed regulation and low-power heating to reduce energy consumption and minimize environmental impact.

Miniaturization and portability:

In order to meet the needs of limited laboratory space or frequent movement, there facilities also developing towards miniaturization and portability. Some experimenters adopt a compact design that can be easily placed on a laboratory bench or carried to different laboratories for use.

Customization and Personalization:

With the diversification of laboratory needs, there are gradually showing a trend towards customization and personalization. Experimenters can choose different sizes, shapes, and materials of stirrers according to their own needs, as well as different heating methods, temperature ranges, stirring speeds, and other parameters. In addition, some it also support user-defined programs, which can easily implement specific stirring modes and temperature control strategies.

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