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Guoli Tian (Shenzhen) Technology Co., Ltd

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Characteristics of ceramic disc heating magnetic stirrer
Date: 2025-11-20Read: 1

The ceramic disc heating magnetic stirrer combines ceramic heating disc and magnetic stirring technology, demonstrating significant characteristics such as high efficiency, safety, and easy maintenance in laboratory and industrial applications. The specific analysis is as follows:

1. Chemical corrosion resistance and high temperature resistance performance

  • Advantages of ceramic materialsCeramic discs are made of high-purity ceramic materials, which have chemical corrosion resistance and can withstand most acidic and alkaline solutions as well as organic solvents (such as hydrochloric acid, sodium hydroxide, ethanol, etc.), avoiding equipment damage or sample contamination caused by corrosion of traditional metal discs.

  • high-temperature stabilityCeramic discs can withstand high temperature environments (with some models reaching a maximum surface temperature of 340 ℃) and are not easily deformed or broken at high temperatures, making them suitable for experimental scenarios that require high-temperature heating (such as catalytic reactions, solvent evaporation, etc.).

2. Efficient heating and uniform temperature control

  • rapid heatingCeramic heaters have high thermal conductivity efficiency and can reach the set temperature in a short period of time, reducing experimental waiting time. For example, some models use nano thermal energy technology, which heats up more than 30% faster than traditional resistance heaters.

  • temperature uniformityThe surface of the ceramic disc is smooth, with uniform heat distribution to avoid local overheating or temperature fluctuations, ensuring consistent heating of the sample. Combined with PID temperature control system (temperature control accuracy ± 0.3 ℃), constant temperature control can be achieved to meet temperature sensitive experimental needs (such as enzyme activity measurement, cell culture, etc.).

3. Uniformity and adaptability of magnetic stirring

  • Contactless stirringBy driving the magnetic stirrer to rotate through an electromagnetic field, liquid mixing is achieved, avoiding the risk of wear and contamination of mechanical transmission components. The shape of the stirrer is diverse (such as type A, type B, type C), and can be selected according to the container shape and solution viscosity to ensure efficient mixing.

  • Wide speed rangeThe adjustable speed range is wide (such as 0-2500rpm), which can stir smoothly at low speeds (such as cell suspensions) and mix strongly at high speeds (such as high viscosity polymer solutions), adapting to different experimental needs.

4. Safety and easy to maintain design

  • Multiple security protections

    • overheat protectionWhen the temperature exceeds the set value, the device automatically cuts off the heating power to prevent damage to the sample or equipment.

    • earth leakage protectionBuilt in leakage detection device ensures safe operation.

    • Waste heat warningAfter the device is turned off, there may be residual heat on the panel, and the warning light will continue to work to avoid burns.

  • Easy to clean and maintainThe ceramic disc surface is smooth and pore free, making it difficult to adsorb sample residues. After the experiment, it can be cleaned by simply wiping with alcohol or water to reduce the risk of cross contamination.

5. Intelligence and multifunctionality

  • intelligent controlSome models are equipped with digital display screens that can display real-time parameters such as speed and temperature, and support timing functions (such as 0-9999 minutes) to achieve automated operation.

  • Data recording and transmissionSupports USB interface or wireless connection, which can transfer experimental data to a computer for analysis and improve experimental efficiency.

  • Multi station designSome models offer multiple workstation options (such as 5 or 10 workstations), which can process multiple samples simultaneously and are suitable for batch experiments or screening.

6. Adaptability and Scalability

  • Container compatibilityCan adapt to various specifications of containers (such as 1.5mL centrifuge tubes, 50mL reagent bottles, 10L reaction vessels, etc.) to meet the needs of different experimental scales.

  • Extended featuresSome models support external temperature probes (such as PTFE coated probes) to monitor sample temperature in real-time and improve temperature control accuracy; Or equipped with explosion-proof design, suitable for hazardous environments (such as handling flammable and explosive solvents).