IVF Workstation Laminar Flow
This high-efficiency laboratory station provides advanced contamination defense alongside steady heat containment across critical sample manipulations.
Driven by a heavy-duty, statically balanced blower motor, it functions with a very low vibration profile to minimize disturbances during micromanipulation. The layered defense network pairs cleanable pre-filters with water-resistant, micro-fine glass fiber HEPA filtration. This guarantees a continuous downward sweeping air stream that successfully shields delicate specimens from environmental pollutants.
- Ergonomically designed plug and play sterile workstation engineered to provide continuous particle free vertical laminar airflow.
- Renders Class 100 sterile conditions meeting US Federal Standard 209 B compliance guidelines.
- Seamless stainless steel work surface eliminates joints or internal welding where contaminants could settle.
- Incorporates a built in electrical heating zone driven by digital controls to eliminate cellular thermal shock risks.
- Employs washable non woven synthetic pre filters combined with high efficiency mini pleat HEPA filter media.
- Primary application is providing an ultra clean thermally stable workspace for sensitive assisted reproductive procedures.
- Accommodates various laboratory floorplans with modular standard sizes ranging from two by two feet up to heavy duty six by two feet configurations.
- Driven by a heavy duty statically balanced blower assembly operating at fourteen hundred and forty revolutions per minute.
- Features a very low vibration profile with blower noise levels comfortably restricting operations below fifty five decibels.
- Utilizes water resistant fire retardant micro fine glass fiber filters confirming to elite EU 14 grading.
- Achieves an efficiency rating greater than or equal to ninety nine point nine hundred and ninety nine percent for zero point three micron particles.
- Protected by a structural perforated diffuser screen shield mesh guard to safeguard inner filters from physical damage.
- Statically Balanced Mechanical Motor: Equipped with a high-performance 1440 rpm motor to deliver high flow with minimal vibration transfer.
- Low-Acoustic Work Environment: Operates quietly below 55 dBA to ensure a comfortable and low-fatigue workspace for embryologists.
- Elite Particulate Extraction: Features a mini-pleat HEPA filter rated for over 99.999% efficiency for ultra-fine microparticles.
- Physical Guard Shielding: Outfitted with a perforated diffuser screen mesh guard to actively safeguard filters from accidental mechanical damage.
- Model Designation: In vitro fertilization laminar air flow vertical.
- Airflow Path Design: Vertical Laminar Airflow directed downwards from the top.
- Air Cleanliness Compliance: Class one hundred conditions; meets United States Federal Standard two hundred and nine B (British Standard five thousand two hundred and ninety-five) requirements.
- Blower Motor Assembly: Heavy-duty, statically balanced assembly; fourteen hundred and forty revolutions per minute, one-fourth horsepower.
- Acoustic and Vibration Scale: Very low vibration profile with blower noise levels operating below fifty-five A-weighted decibels.
- Pre-Filter Specification: Non-woven synthetic media with high-density polyethylene mesh and aluminum expanded mesh on air leaving side; conforms to European Union-four or G-four Grade; filters down to ten microns; washable or cleanable with compressed air.
- HEPA Filter Specification: Mini-pleat type, imported water-resistant, fire-retardant micro-fine glass fiber media; conforms to European Union-fourteen Grade; greater than or equal to ninety-nine point nine hundred and ninety-nine percent efficiency rating for zero point three micron particles.
- Filter Protection: Perforated diffuser screen or shield mesh guard to safeguard filters from mechanical damage.
- Air Flow Velocity Layout: Air Flow Velocity: ninety feet per minute plus or minus twenty percent; Inflow Velocity: zero point five three meters per second; Downflow Velocity: zero point three three meters per second.