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FAQ

  • Q How is the glove box automatic transition cabin in Mikrouna discharged?

    A
    Click on the "Large Transition Cabin Automatic Discharge Switch" when the Mikrouna glove box automatically discharges from the large transition cabin, and the discharge process will be completed automatically. The process is as follows:
    1. The system automatically determines whether the large transition cabin needs to perform air replenishment operation based on the set parameters;
    2. After the gas supply is completed, the inner door of the large transition cabin begins to open;
    3. After the inner door is opened, the placement of the discharged items must be completed within the set delayed closing time;
    4. After the items are placed, the system will delay the closing time and automatically start closing the interior door of the transition cabin;
    5. After the inner door of the transition cabin is closed, the outer door of the transition cabin begins to open, and the required items must be taken out within the set delayed closing time;
    6. After the item is taken out, the system will delay the closing time and automatically start closing the outer door of the transition cabin;
    7. After the outer door of the transition cabin is closed, if no operation is carried out within 10 minutes, the system will automatically draw the transition cabin to a negative pressure of about 500mbar and place it.
  • Q Is the fully automatic compartment of the glove box effective?

    A The fully automatic large transition compartment of the glove box is very user-friendly. In automatic mode, there are automatic discharge switches and automatic feeding switches for the large transition compartment. After setting the parameters, these two switches can be used to complete the discharge and feeding of materials with just one click, without the need for manual intervention throughout the process, and the atmosphere of the glove box will not be damaged due to misoperation; The system automatically determines the atmosphere of the warehouse, automatically draws negative pressure and places it, preparing for the next use and completing intelligent operations.
  • Q What should be done for daily inspection of glove boxes?

    A The daily inspection of the glove box should check whether the water and oxygen levels in the glove box are within the normal range; Check if the sealing performance of the glove box is intact and there is no leakage; Ensure that the pressure and vacuum systems are functioning properly without any abnormal pressure fluctuations; Confirm that the circulating fan and filter are working properly, without blockage or damage; Ensure that all power and electrical connections are stable and free from looseness or damage; Record daily inspection results, including any abnormal situations and measures taken.
  • Q What components of the glove box are recommended for regular replacement?

    A Many components of the glove box need to be replaced regularly, such as the intake/exhaust filter inside the glove box, which is recommended to be replaced every 2 years (the replacement cycle depends on the blockage of the filter element for special operating conditions). If there is an activated carbon device installed inside the glove box, it is recommended to replace it every 3-6 months, and the filter element should be replaced every 2 times (when there are many organic solvents, the replacement cycle of activated carbon and filter element should be determined according to the actual situation). The water probe is recommended to be maintained every 2000 hours.
  • Q How often is it better to check the vacuum pump of the glove box?

    A It is recommended to conduct daily inspections on the vacuum pump of the glove box to check for abnormal noise and oil level. It is recommended to replace the vacuum pump oil and oil mist filter element every six months. After each regeneration is completed, it is recommended to replace the vacuum pump oil (the replacement cycle of the vacuum pump oil is determined based on the oil for special operating conditions).
  • Q Does the volatilization of organic solvents during glove box operation have any impact?

    A There is a significant amount of organic solvent volatilization during glove box operation, which may alter the atmosphere inside the glove box. It is recommended to turn off the circulation function first, complete the operation, and then turn on the cleaning function. After 20-30 minutes, turn on the circulation again.
  • Q What are the oxygen test conditions for leak rate detection of Mikrouna glove box?

    A The oxygen based testing conditions for the leakage rate detection of the Mikrouna glove box are as follows: turn off the functions of the small and large compartments, regeneration, and circulation, evacuate the glove box to a negative pressure of about -10mbar, and ensure that the pressure value is stable and the oxygen value is below 50PPM. After the oxygen value is stable for 5 minutes, the test begins. After entering the detection time (it is recommended to set the detection time to 60 minutes), click the "Oxygen based Leakage Rate Test Switch" to start the oxygen based leakage rate detection, and the detection time will start counting. When the timing ends, the system will automatically calculate the leakage rate and then stop the leakage rate detection.
  • Q What are the pressure testing conditions for leak rate detection of the Mikrouna glove box?

    A The pressure test conditions for the leakage rate detection of the Mikrouna glove box are as follows: turn off the functions of the small and large transition compartments, regeneration, and circulation, and inflate the glove box to about 10mbar with stable pressure. The test will begin after 5 minutes of stable pressure. After entering the detection time, click the "Single Leakage Rate Switch" to start the leakage rate detection, and the detection time will start counting. When the timer is up, the system calculates the leakage rate and then stops the leakage rate detection.
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