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Heating and cooling circulator for X-ray diffraction system

Main features

  1. Amplia gama de temperaturas:
  • Temperature range: -25°C to 200°C
  • Such a temperature range can cover a variety of experimental needs from low temperature to high temperature.

  1. High-precision temperature control:
  • The control accuracy is usually ±0.1°C or less to ensure high consistency of experimental conditions.
  • Use PID controller or other advanced temperature control technology to achieve fast and stable temperature adjustment.

  1. Fast heating and cooling capabilities:
  • Fast heating: Able to heat the sample to the set temperature in a short time.
  • Fast cooling: Through an efficient refrigeration system, the sample is quickly cooled to the required temperature.
  • Helps improve experimental efficiency, especially when temperature conditions need to be changed frequently.

  1. Circulation pump:
  • The built-in circulation pump circulates the cooling medium (usually thermal oil or water/ethylene glycol solution) between the heating/cooling unit and the sample chamber to ensure uniform temperature distribution.
  • The flow rate of the circulation pump should match the sample chamber of the XRD system, usually between a few liters per minute and tens of liters per minute.

  1. Safety protection measures:
    •Over-temperature protection: Automatically cut off the power supply when the temperature exceeds the set value.
    •Over-pressure protection: Prevent the system pressure from being too high.
    •Leak detection: Detect whether the system has leaks.
    •Emergency stop button: Quickly stop the system operation in an emergency.

  1. Operation interface:
    •Touch screen or digital display: Intuitively display the current temperature, set temperature and other parameters.
    •User-friendly operation interface: Easy to set and monitor temperature, support programming and data logging functions.

  1. Compatibility:
    •Compatible with the sample chamber interface of the XRD system to ensure seamless integration.
    •Specific connectors or adapters may be required to connect the circulator and the sample chamber.

Application field

  1. Material science:
    •Study the changes of crystal structure of materials at different temperatures, such as phase change, thermal expansion, etc.
    •Evaluate the performance of new materials under high or low temperature conditions.

  1. Chemistry:
    •Study the crystal structure of compounds at different temperatures to understand their thermal stability.
    •Explore the changes of crystal structure during reaction.

  1. Chemistry:
    •Study the crystal structure of compounds at different temperatures to understand their thermal stability.
    •Explore the changes of crystal structure during reaction.

  1. Physics:
    •Study the change of solid physical properties with temperature, such as magnetism, conductivity, etc.
    •Explore the behavior of new materials under extreme temperature conditions.

  1. Geology:
    •Study the crystal structure of minerals at different temperatures and understand the physical processes inside the earth. Summary Heating and cooling circulators for X-ray diffraction systems are important auxiliary equipment that can provide a wide temperature range (-25°C to 200°C), high-precision temperature control, and fast heating and cooling capabilities. This equipment is essential for accurate XRD analysis under different temperature conditions.

When choosing a heating and cooling circulator, the following factors should be considered:

  • Temperature range: Make sure the system can cover the required temperature range.
  • Temperature control accuracy: Choose a system with high-precision temperature control, such as a PID controller.
  • Heating and cooling capacity: Choose heating and cooling power that suits the experimental needs.
  • Safety: Make sure the system has multiple safety protection measures to ensure the safety of operators and equipment.
  • Compatibility: Make sure the circulator is compatible with the sample chamber interface of the XRD system.

Sistemas de control de temperatura dinámica -120℃~350℃

  • Serie de conversión de frecuencia SUNDI Z"      /&gt;<figcaption><span>WHATSAPP WECHAT La tecnología de refrigeración de ultra alta temperatura puede enfriar directamente desde una alta temperatura de 300℃[porque sólo el medio de transferencia de calor en la expansión...</span></figcaption></figure></a></div><div class= Serie de conversión de frecuencia SUNDI Z

    WHATSAPP WECHAT Ultra high temperature cooling technology can directly cool from a high temperature of 300℃[because only the heat transfer medium in the expansion…

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    Fully enclosed system, single medium completes refrigeration and heating -120~350℃ ±0.5℃ AC 380V 50HZ 8kW max Ultra high temperature cooling technology can directly cool from a hi…

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  • SUNDI -80℃~250℃"      /&gt;<figcaption><span>● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ● Control inteligente de la temperatura ● Máxima estabilidad y reproducibilidad del proceso ● Intercambiador de calor de placas Adop, calentamiento por tuberías, el he...</span></figcaption></figure></a></div><div class= SUNDI -80℃~250℃

    ● Working temperatures from -120°C to +350°C ● Previously unachievable performance ●Intelligent temperature control ● Maximum process stability and reproducibility ● Adop plate heat exchager, Pipeline heating, the fastest he…

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  • SUNDI-320/320W"      /&gt;<figcaption><span>Sistema completamente cerrado, un solo medio completa la refrigeración y la calefacción -120~350℃ ±0.5℃ Tecnología de enfriamiento de temperatura ultra alta Puede enfriar directamente desde 300℃ de alta temperatura. Por...</span></figcaption></figure></a></div><div class= SUNDI-320/320W

    Fully enclosed system, single medium completes refrigeration and heating -120~350℃ ±0.5℃ Ultra-high Temperature Cooling Technology Can Directly Cool Down From 300℃ High Temperature. Bec…

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  • SUNDI -25℃~200℃"      /&gt;<figcaption><span>Sistema totalmente cerrado, un solo medio completa la refrigeración y la calefacción -120~350℃ ±0,5℃ ● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ●Control inteligente de la temperatura....</span></figcaption></figure></a></div><div class= SUNDI -25℃~200℃

    Fully enclosed system, single medium completes refrigeration and heating -120~350℃ ±0.5℃ ● Working temperatures from -120°C to +350°C ● Previously unachievable performance ●Intelligent temperature control…

    MÁS
  • SUNDI -45℃~250℃"      /&gt;<figcaption><span>● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ● Control inteligente de la temperatura ● Máxima estabilidad y reproducibilidad del proceso ● Intercambiador de calor de placas Adop, calentamiento por tuberías, el he...</span></figcaption></figure></a></div><div class= SUNDI -45℃~250℃

    ● Working temperatures from -120°C to +350°C ● Previously unachievable performance ●Intelligent temperature control ● Maximum process stability and reproducibility ● Adop plate heat exchager, Pipeline heating, the fastest heat…

    MÁS
  • SUNDI -60℃~250℃"      /&gt;<figcaption><span>La tecnología de refrigeración de ultra alta temperatura puede enfriar directamente desde una alta temperatura de 300℃[porque sólo el medio de transferencia de calor en la cámara de expansión entra en contacto con ox...</span></figcaption></figure></a></div><div class= SUNDI -60℃~250℃

    Ultra high temperature cooling technology can directly cool from a high temperature of 300℃[because only the heat transfer medium in the expansion chamber contacts with ox…

    MÁS
  • SUNDI -80℃~250℃"      /&gt;<figcaption><span>● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ● Control inteligente de la temperatura ● Máxima estabilidad y reproducibilidad del proceso ● Intercambiador de calor de placas Adop, calentamiento por tuberías, el he...</span></figcaption></figure></a></div><div class= SUNDI -80℃~250℃

    ● Working temperatures from -120°C to +350°C● Previously unachievable performance●Intelligent temperature control● Maximum process stability and reproducibility● Adop plate heat exchager, Pipeline heating, the fastest heating…

    MÁS
  • SUNDI -90℃~250℃"      /&gt;<figcaption><span>● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ● Control inteligente de la temperatura ● Máxima estabilidad y reproducibilidad del proceso ● Intercambiador de calor de placas Adop, calentamiento por tuberías, el he...</span></figcaption></figure></a></div><div class= SUNDI -90℃~250℃

    ● Working temperatures from -120°C to +350°C ● Previously unachievable performance ●Intelligent temperature control ● Maximum process stability and reproducibility ● Adop plate heat exchager, Pipeline heating, the fastest heat…

    MÁS
  • SUNDI -100℃~100℃"      /&gt;<figcaption><span>● Temperaturas de trabajo de -120°C a +350°C ● Rendimiento hasta ahora inalcanzable ● Control inteligente de la temperatura ● Máxima estabilidad y reproducibilidad del proceso ● Intercambiador de calor de placas Adop, calentamiento por tuberías, el he...</span></figcaption></figure></a></div><div class= SUNDI -100℃~100℃

    ● Working temperatures from -120°C to +350°C ● Previously unachievable performance ●Intelligent temperature control ● Maximum process stability and reproducibility ● Adop plate heat exchager, Pipeline heating, the fastest h…

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Consult other instrument temperature control units

&lt;trp-post-container data-trp-post-id=&#039;9796&#039;&gt;Heating and cooling circulator for X-ray diffraction system&lt;/trp-post-container&gt; - cooling heating circulator(images 11)
&lt;trp-post-container data-trp-post-id=&#039;9796&#039;&gt;Heating and cooling circulator for X-ray diffraction system&lt;/trp-post-container&gt; - X-ray cooling heating(images 12)

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