Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability

Product Details
Certification: GS, CE, ISO9001
Feature: High Speed, Vacuum, Corrosion-Resistant
Standard: Nonstandard
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Year of Establishment
2025-03-19
Registered Capital
221703.27 USD
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
  • Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
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Basic Info.

Model NO.
Clean Room
Material
Non-Standard
Transport Package
on-Site Construction
Specification
non-standard
Trademark
fl
Origin
Suzhou
HS Code
2304001000
Production Capacity
5000

Product Description

A cleanroom is a special environment that controls particle, harmful gas, and microbial contamination through a high-efficiency air purification system, ensuring the accuracy and reliability of experimental or production processes.

Core functions of a cleanroom:

Contamination control: Removes particles, harmful gases, and bacteria from the air through a high-efficiency filtration system, maintaining cleanliness, temperature, humidity, pressure, and other parameters within set ranges.

Environmental stability: Regardless of changes in external air conditions, the internal environment consistently meets pre-set standards, making it suitable for fields such as biological experiments that are sensitive to environmental conditions."

Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
 

The purification of clean laboratories aims to ensure that the laboratory environment meets specific cleanliness standards to satisfy the needs of high-precision experiments and production.

The required cleanliness level is determined based on the purpose of the laboratory, such as ISO 5, ISO 6, ISO 7, or ISO 8. The layout and space of the laboratory are planned, with dedicated passageways, laboratory benches, and fume hoods emphasised in the layout design to ensure smooth operation, streamlined design, and minimised cross-contamination.

 

Choose cleaning materials that are easy to clean, do not generate dust, and are corrosion resistant, such as stainless steel, PVC, tiles, and epoxy resin.

Interior walls, floors, and ceilings: Materials that are easy to clean, do not generate dust, and are corrosion-resistant should be selected, such as stainless steel, PVC, tiles, and epoxy resin.

Doors and windows: They should have good sealing performance and use cleanroom-specific doors and windows to ensure airtightness and prevent external contaminants from entering.

Flooring: Choose seamless, non-slip, anti-static flooring materials, such as epoxy resin flooring and PVC flooring, to prevent dust accumulation and static electricity build-up.

Ceiling: A dust-free, easy-to-clean suspended ceiling system is used to ensure the sealing performance of the clean room.

Airflow within the laboratory should flow from clean areas to non-clean areas to reduce the risk of cross-contamination. Typically, air is supplied from above and exhausted from below, with exhaust vents located in areas with the highest risk of contamination. The pressure difference between areas of different cleanliness levels should be at least 5 Pa, and the pressure difference between clean rooms and the outside should be at least 10 Pa.

Ventilation system: Use an appropriate ventilation system to control indoor temperature, humidity, and airflow, prevent airflow mixing, and prevent contaminated gases from entering the laboratory.

Airflow design: Based on cleanliness requirements, design a reasonable airflow pattern, such as unidirectional flow (laminar flow) or turbulent flow (non-unidirectional flow), to ensure that the air pressure in the clean area is higher than that in the surrounding areas.

High-efficiency filters: Install high-efficiency filters (HEPA or ULPA) to effectively filter particles and microorganisms in the air and ensure the cleanliness of the air in clean rooms.

Air exchange rate: Design an appropriate air exchange rate based on the cleanliness level to ensure air quality.

Equipped with emergency shower and eyewash safety facilities to ensure timely response and rescue in the event of an accident in the laboratory.

The purification of clean laboratories requires a clean, safe, and functional laboratory environment, providing reliable technical support and guarantees for high-precision experiments and production.

Advanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
Suzhou Shengtong Jiuhe Technology

We will truly integrate integrity into the concept, adhere to the business purpose of "treating people with sincerity, winning people with trust, convincing people with quality and winning people with quantity", and are willing to become mutually trusted friends with users from all sides. We look forward to your presence

Advanced Cleanroom Systems Ensuring Cleanliness and Environmental StabilityAdvanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
Advanced Cleanroom Systems Ensuring Cleanliness and Environmental StabilityAdvanced Cleanroom Systems Ensuring Cleanliness and Environmental Stability
frequently asked questions
Q1:Can you provide us with design services?
Answer: Yes, we have over 50 design engineers. We can designa complete solution drawing according to your requirements.
Q2: Do you provide guidance services for overse
A: Yes, it is. We can dispatch a supervising engineer as theinstallation director,or even a work team to yourconstruction site.
Q3: How can I get a quick quote for my project from you?
Answer: The more detailed your description, the faster ourquotation will be. You can contact us anytime via email orphone to provide us with your detailed information, and wewill provide you with the best quotation as soon as possible
 

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