Buscar en toda la estación


blog

Sobre la selección de productos de LNEYA, sus ventajas y la información sobre la industria de los chillers.

<trp-post-container data-trp-post-id='9761'>Features and applications of vacuum heat sink chillers</trp-post-container> - vacuum chiller(images 1)
<trp-post-container data-trp-post-id='9761'>Features and applications of vacuum heat sink chillers</trp-post-container> - vacuum chiller(images 2)
<trp-post-container data-trp-post-id='9761'>Features and applications of vacuum heat sink chillers</trp-post-container> - vacuum chiller(images 3)

Application areas

  1. Scientific research:
  • Cryogenic physics: When conducting low-temperature physics experiments, it is necessary to maintain extremely low temperatures in a high vacuum environment.
  • Materials science: Study the performance of materials at different temperatures, especially under high vacuum conditions.

  1. Semiconductor manufacturing:
  • Chip manufacturing: During semiconductor wafer processing, temperature needs to be precisely controlled to ensure process consistency and quality.
  • Ion implantation: During the high-energy particle implantation process, a stable low temperature environment needs to be maintained.

  1. Aerospace:
  • Satellite component testing: Thermal vacuum testing of satellite components is performed on the ground to simulate the space environment.
  • Spacecraft thermal management: Cryogenic cooling systems are used in spacecraft to manage heat loads.

  1. Medical equipment:
  • MRI equipment: Superconducting magnets in magnetic resonance imaging (MRI) equipment need to operate at extremely low temperatures.
  • Cryogenic surgical instruments: Some cryogenic surgical instruments need to operate in a high vacuum and low temperature environment.

5. Other applications:

  • Optical instruments: When conducting precision optical experiments in a high vacuum environment, a stable low temperature environment is required.
  • Nuclear magnetic resonance spectrometer: When performing NMR spectroscopy under high vacuum conditions, precise temperature control is required.

Features of vacuum heat sink chillers

  1. High-precision temperature control:
  • PID controllers or other advanced temperature control technologies are usually used to achieve high-precision temperature control.
  • The control accuracy is generally ±0.1°C or less to ensure temperature stability.

  1. Amplia gama de temperaturas:
  • It can provide cooling capacity from room temperature to extremely low temperatures (such as below -200°C).
  • Suitable for a variety of different experimental and production needs.

  1. Rapid cooling capability:
  • It has the ability to quickly cool down and can reduce the temperature to the required level in a short time.
  • Rapid cooling helps improve experimental efficiency, especially in applications where temperature conditions need to be changed frequently.

  1. Circulating cooling system:
  • Heat is removed by circulating a circulating cooling medium (such as liquid nitrogen, helium or other refrigerants) in a high vacuum environment.
  • The circulation system can ensure uniform temperature distribution and avoid local overcooling or overheating.

  1. Automation and remote control:
  • Usually has highly automated control functions, which can automatically adjust the temperature according to actual needs.
  • Support remote monitoring and data logging functions to facilitate real-time understanding of temperature changes.

  1. Safety protection measures:
  • Equipped with a variety of safety protection measures, such as over-temperature protection, over-pressure protection, leak detection, etc.
  • Safety protection measures help ensure the safe operation of the equipment and prevent accidents.

  1. Vacuum-resistant design:
  • Use vacuum-resistant materials and sealing design to ensure normal operation in high vacuum environments.
  • Usually has good corrosion resistance and high temperature resistance.

Recommended Products

  • 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…

    MÁS
  • SUNDI -10℃~150℃"      /&gt;<figcaption><span>Sistema completamente cerrado, un solo medio completa la refrigeración y la calefacción -120~350℃ ±0.5℃ AC 380V 50HZ 8kW max Tecnología de enfriamiento de ultra alta temperatura puede enfriar directamente de...</span></figcaption></figure></a></div><div class= SUNDI -10℃~150℃

    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…

    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 he…

    MÁS
  • 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…

    MÁS
  • 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…

    MÁS

loading…

已经是到最后一篇内容了!

¡Amplíe más!