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AM-CD013
Amber
AM-CD013
Most Clean Room Sliding Doors are fitted with features that sense movement, provide an airtight seal and are resistant to corrosion to help isolate and protect clean areas from becoming polluted. Because the operation is automated, there is less opportunity for cross-contamination which is why this sliding door is perfect for cleanroom usage.
Maintain environmental isolation between clean and non-clean areas
Automatic sensing for opening, avoiding manual contact
High-efficiency sealing to prevent particle contamination caused by airflow
Enhancing personnel and material flow efficiency in cleanrooms
Especially for Clean Room Speed Doors for pharmaceutical applications, the high-speed opening and closing function minimises air exchange time, ensuring a consistently stable production environment.
Each level of cleanroom grade (for example, ISO 5-8) comes with different requirements for how doors must be closed, what materials they should be made of and how they need to be operated.
For ISO 5-6 levels, we advise that you use automatic, heavy-duty door systems for steady air moves.
With ISO 7-8 cleanliness required, you can use standard, low-cost Conventional Clean Room Sliding Doors that use sensors to open and are simply sealed.
Also, when it comes to workshops needing anti-static or radiation-proof features, custom doors made from anti-static or radiation-proof materials can be supplied.
Want to learn more about Stainless Steel Cleanroom Doors? Contact our Amber Team online.
Q1: Which industries are Stainless Steel Cleanroom Doors suitable for?
A: They are suitable for pharmaceutical cleanrooms, biological laboratories, medical sterile workshops, food processing plants, electronic manufacturing, and cosmetics production facilities.
Q2: What opening methods are supported by Clean Room Sliding Doors?
A: Various opening methods can be configured according to requirements, including automatic radar sensing, foot switches, buttons, and remote control, to flexibly adapt to different cleanroom environments and usage habits.
Most Clean Room Sliding Doors are fitted with features that sense movement, provide an airtight seal and are resistant to corrosion to help isolate and protect clean areas from becoming polluted. Because the operation is automated, there is less opportunity for cross-contamination which is why this sliding door is perfect for cleanroom usage.
Maintain environmental isolation between clean and non-clean areas
Automatic sensing for opening, avoiding manual contact
High-efficiency sealing to prevent particle contamination caused by airflow
Enhancing personnel and material flow efficiency in cleanrooms
Especially for Clean Room Speed Doors for pharmaceutical applications, the high-speed opening and closing function minimises air exchange time, ensuring a consistently stable production environment.
Each level of cleanroom grade (for example, ISO 5-8) comes with different requirements for how doors must be closed, what materials they should be made of and how they need to be operated.
For ISO 5-6 levels, we advise that you use automatic, heavy-duty door systems for steady air moves.
With ISO 7-8 cleanliness required, you can use standard, low-cost Conventional Clean Room Sliding Doors that use sensors to open and are simply sealed.
Also, when it comes to workshops needing anti-static or radiation-proof features, custom doors made from anti-static or radiation-proof materials can be supplied.
Want to learn more about Stainless Steel Cleanroom Doors? Contact our Amber Team online.
Q1: Which industries are Stainless Steel Cleanroom Doors suitable for?
A: They are suitable for pharmaceutical cleanrooms, biological laboratories, medical sterile workshops, food processing plants, electronic manufacturing, and cosmetics production facilities.
Q2: What opening methods are supported by Clean Room Sliding Doors?
A: Various opening methods can be configured according to requirements, including automatic radar sensing, foot switches, buttons, and remote control, to flexibly adapt to different cleanroom environments and usage habits.