5 ft Medical Clean bench- Vertical Flow
Reference Price:US$From $800




Cleanroom
5 ft Medical Clean bench- Vertical Flow
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Summary
5 ft Medical Clean bench- Vertical Flow
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Installation & Validation
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Product Briefing
A 5 ft Medical Clean Bench offers an expanded sterile workspace, ideal for larger laboratory applications. It utilizes HEPA filtration to provide consistent laminar airflow, creating a contamination-free environment over a more extensive area. This bench balances ample working space with high-performance contamination control, making it suitable for various medical and research settings.Here’s a detailed overview of its features, functions, and benefits:
Applications
Microbiology: Ideal for working with cultures, cell lines, and other sensitive biological materials.
Pharmaceuticals: Used in the preparation and compounding of sterile medications.
Electronics: Suitable for assembling and handling sensitive electronic components that may be susceptible to dust or static.
Research: Provides a clean environment for various scientific experiments and procedures.
Models
Vertical Laminar Flow Clean Bench | |||
Model | GDC-SPT-01 | GDC-SPT-02 | GDC-SPT-03 |
3 ft | 4ft | 5ft | |
External size W×D×H(mm) | 1000×850×1500 | 1200×850×1500 | 1500×850×1500 |
Internal Size W×D×H(mm) | 960×600×600 | 1160×600×600 | 1460×600×600 |
HEPA Filter(mm) | 905×585×69×1 Pcs | 1105×585×69×1 Pcs | 1405×585×69×1 Pcs |
HEPA Filter Efficiency | 99.95%@0.3μm | 99.95%@0.3μm | 99.95%@0.3μm |
G4 Pre Filter(mm) | 500×375×21×1 Pcs | 500×375×21×1 Pcs | 745×375×21×1 Pcs |
Noise | 52~62dB(A) | 52~62dB(A) | 52~62dB(A) |
Fan Pressure | 260pa | 260pa | 260pa |
Fan Power (W) | 200W×1 Pcs | 200W×1 Pcs | 200W×1 Pcs |
LED Lamp Power(W) | 12W×1 Pcs | 18W×1 Pcs | 30W×1 Pcs |
Air Velocity(m/s) | 0.45m/s±20% | ||
Clean Level | ISO 5 | ||
Supply Power | AC 1N 220V/50Hz | ||
Control System | 4.3"touch screen,3 stage regulation,light,sterilization |
Vertical Laminar Flow Clean Bench | |||
Model | GDC-SPT-01 | GDC-SPT-02 | GDC-SPT-03 |
3 ft | 4ft | 5ft | |
External size W×D×H(mm) | 1000×850×1500 | 1200×850×1500 | 1500×850×1500 |
Internal Size W×D×H(mm) | 960×600×600 | 1160×600×600 | 1460×600×600 |
HEPA Filter(mm) | 905×585×69×1 Pcs | 1105×585×69×1 Pcs | 1405×585×69×1 Pcs |
HEPA Filter Efficiency | 99.95%@0.3μm | 99.95%@0.3μm | 99.95%@0.3μm |
G4 Pre Filter(mm) | 500×375×21×1 Pcs | 500×375×21×1 Pcs | 745×375×21×1 Pcs |
Noise | 52~62dB(A) | 52~62dB(A) | 52~62dB(A) |
Fan Pressure | 260pa | 260pa | 260pa |
Fan Power (W) | 200W×1 Pcs | 200W×1 Pcs | 200W×1 Pcs |
LED Lamp Power(W) | 12W×1 Pcs | 18W×1 Pcs | 30W×1 Pcs |
Air Velocity(m/s) | 0.45m/s±20% | ||
Clean Level | ISO 5 | ||
Supply Power | AC 1N 220V/50Hz | ||
Control System | 4.3"touch screen,3 stage regulation,light,sterilization |
Features
High-Quality Construction
| |
Quiet Operation
| |
ULPA Filter
| |
Energy-efficient
| |
GDC™ Antimicrobial Powder Coating
|
Principle
Air Intake: Ambient air is drawn into the cabinet through an intake grille.
Filtration: The air passes through a HEPA filter, removing 99.97% of particles ≥0.3 microns.
Laminar Airflow: Filtered air is directed vertically downward in a smooth, uninterrupted flow.
Clean Workspace: The downward airflow creates a contamination-free zone, protecting the work area and materials.
User Safety: The design minimizes exposure to airborne contaminants, enhancing operator safety.
Maintained Pressure: The cabinet maintains a slight negative pressure to prevent external contaminants from entering.
Consistent Environment: Provides a stable and sterile environment for sensitive applications.
Accessories
Stainless Steel Orifice Tabletop
ULPA Ultra GX Filter
UV Germicidal Lamps
De-static equipment
Support Stand with Caster Wheels
FAQ
1. What are the latest innovations in medical clean benches?
Recent innovations in medical clean benches include the integration of advanced filtration technologies, such as ULPA filters, which provide higher air purity levels. Additionally, smart control systems with digital displays and remote monitoring capabilities are becoming more common, enhancing operational efficiency and safety.
2. How to test the effectiveness of a vertical laminar flow cabinet?
To test the effectiveness of a vertical laminar flow cabinet, measure the airflow using an anemometer at various points on the work surface. Verify that the velocity matches the manufacturer's specifications, usually around 0.45 m/s or 90 fpm. Conduct regular microbiological testing to ensure the environment remains contamination-free.
3. What are the common issues with medical clean benches?
Common issues with medical clean benches include clogged or damaged HEPA filters, uneven airflow distribution, and surface contamination. Regular maintenance, such as replacing filters and thorough cleaning, can mitigate these problems and ensure optimal performance.
4. What is the difference between horizontal and vertical laminar flow cabinets?
Horizontal laminar flow cabinets direct HEPA-filtered air horizontally across the work surface, whereas vertical laminar flow cabinets direct the air vertically from top to bottom. Vertical cabinets are preferred for preventing contamination from larger particles that might settle, while horizontal cabinets are often used for specific tasks requiring minimal turbulence.
5. How to monitor the performance of a medical clean bench?
Monitor the performance of a medical clean bench by regularly checking airflow velocity with an anemometer and ensuring it meets the specified rate. Additionally, conduct routine microbiological testing and inspect HEPA filters for any signs of damage or clogging.
6. How to improve the efficiency of a medical clean bench?
Improving the efficiency of a medical clean bench involves regular maintenance, such as cleaning surfaces and replacing HEPA filters as needed. Ensure proper training for users to minimize contamination risks and optimize airflow by avoiding obstructions on the work surface.
7. How to measure airflow in a vertical laminar flow cabinet?
To measure airflow in a vertical laminar flow cabinet, use an anemometer to take velocity readings at multiple points on the work surface. Ensure that the measured values align with the manufacturer's specifications to confirm proper airflow and performance.
8. What are the benefits of using a vertical laminar flow cabinet in a lab?
A vertical laminar flow cabinet provides a sterile environment with consistent downward airflow, minimizing contamination risks. Its ergonomic design enhances user comfort, and the efficient HEPA filtration ensures a high level of air purity, making it ideal for sensitive laboratory tasks.
9. How to maintain a medical clean bench?
Maintain a medical clean bench by regularly cleaning all surfaces with appropriate disinfectants and replacing HEPA filters according to the manufacturer's guidelines. Conduct periodic airflow tests to ensure consistent performance and address any issues promptly.
10. How to conduct a visual inspection of a medical clean bench?
Conduct a visual inspection of a medical clean bench by examining the work surface for cleanliness and checking the HEPA filter for any visible damage or clogging. Ensure that the airflow is unobstructed and that the bench is free from dust and debris.
11. How to properly dispose of HEPA filters from a vertical laminar flow cabinet?
To properly dispose of HEPA filters from a vertical laminar flow cabinet, place the used filters in sealed plastic bags to prevent the release of contaminants. Follow local regulations for hazardous waste disposal, ensuring the filters are handled and disposed of safely.
12. How to handle hazardous materials in a medical clean bench?
Handle hazardous materials in a medical clean bench by wearing appropriate personal protective equipment (PPE) and following safety protocols. Ensure proper containment of materials and use spill trays to manage any accidental releases. Regularly decontaminate the work surface to prevent cross-contamination.
13. Can a vertical laminar flow cabinet be used in a medical lab?
Yes, a vertical laminar flow cabinet can be used in a medical lab. It provides a sterile environment essential for various medical procedures, such as preparing medications, conducting research, and handling sterile samples, ensuring contamination-free operations.
14. How does a vertical laminar flow cabinet work?
A vertical laminar flow cabinet works by drawing air through a HEPA filter and directing it vertically over the work surface. This creates a sterile environment by removing airborne contaminants and preventing particles from settling on the workspace.
15. How to prevent contamination in a medical clean bench?
Prevent contamination in a medical clean bench by regularly cleaning and disinfecting all surfaces, replacing HEPA filters as needed, and ensuring proper hand hygiene for users. Avoid placing unnecessary items on the work surface and follow strict protocols for handling sterile materials.
16. How to improve air quality in a vertical laminar flow cabinet?
Improve air quality in a vertical laminar flow cabinet by regularly replacing HEPA filters and ensuring the cabinet is properly sealed. Conduct routine airflow tests to verify consistent performance and address any issues with airflow or contamination promptly.
17. Can a vertical laminar flow cabinet be used for vaccine production?
Yes, a vertical laminar flow cabinet can be used for vaccine production. The sterile environment provided by the downward laminar airflow helps prevent contamination during the preparation and handling of vaccines, ensuring the integrity and safety of the final product.
18. Can a vertical laminar flow cabinet be used for cell culture?
Yes, a vertical laminar flow cabinet can be used for cell culture. The sterile environment it provides is essential for preventing contamination of cell cultures, ensuring the success and reliability of cell-based experiments and research.
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