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Recirculating Vertical Laminar Flow Clean Bench for Nanoparticle Sensing Research
This recirculating vertical laminar flow clean bench is used for nanoparticle sensing research. It features an all 304 stainless steel design for easy sterilization. Prefilters on the inside wall improve lifespan of the HEPA filter. Drawers help organize and tidy up the work station.
Recirculating Design Minimizes Turbulence
Recirculating ISO 5 vertical laminar flow hood exceeds Class 100 cleanroom conditions to protect your work area from particle contamination. The adjustable rear vents pull air back through the fan/filter unit mounted on top. Bench top hoods can also mount on top of base cabinets (sold separately) for easily accessible storage space underneath your workstation.
Stainless Steel Recirculating Vertical Laminar Flow Hood, 60”W
Recirculating vertical laminar flow hood exceeds Class 100 cleanroom conditions to protect your work area from particle contamination. The adjustable rear vents pull air back through the fan/filter unit mounted on top. Bench top hoods can also mount on top of base cabinets (sold separately) for easily accessible storage space underneath your workstation.
36”W Stainless Steel Recirculating Clean Bench with Vertical Flow
Recirculating bench designs with vertical flow exceed Class 100 cleanroom conditions to protect your work area from particle contamination. The adjustable rear vents pull air back through the fan/filter unit mounted on top. Bench top hoods can also mount on top of base cabinets (sold separately) for easily accessible storage space underneath your workstation.
Critical Environment Solutions
Terra's mission is to help customers in highly regulated industries transform the world with critical environment solutions that improve health, safety, performance, and yields. These environments may comply with stringent UL, ISO, IEST, ASTM and OSHA standards and local requirements.
ISO 6 Stainless Steel Horizontal Laminar Flow Hood with Spill Tray
This custom horizontal laminar flow hood functions as a versatile and easy to move clean bench. Chemical resistant 304 stainless steel construction with built-in spill tray contain spills and simplifies cleaning. Power strip and cord pass-throughs allow for hassel free equipment setup.
Narrow Vertical Laminar Flow Hood in an Aviation and Aeronautics Engineering Lab
This benchtop vertical laminar flow hood provides a class 100/ISO 5 clean work area. The high clearance design is perfect for microscopy.
Custom Walk-In Laboratory Fume Hoods by Genie Scientific
Designed, built and installed according to your specifications, Genie walk-in fume hoods accommodate large equipment in industrial, institutional and commercial labs.
Adjustable Top Vent and Removable Rear Plenum
Recirculating laminar flow hoods feature an adjustable top vent to control the amount of recirculated air. The rear plenum is removable for cleaning and maintenance.
Ductless Work Station
This compact, portable exhaust purification system provides effective protection against fume exposure. It is easy to relocate and set up and allows unrestricted access to the work in progress. This convenience makes it practical to guard against hazardous fumes in even the smallest jobs.
Removable Rear Plenum for Exhaust or Recirculation
An optional adjustable rear plenum mounts on the back wall of a benchtop laminar flow hood to exhaust or recirculate air (flexible ducting not included). Rear exhaust helps minimize turbulence and optimize laminar airflow in the work area.
Detachable Exhaust Plenum for Benchtop Hood, Back Side
Designed for Terra’s BioSafe® benchtop laboratory hoods, this detachable exhaust plenum is constructed of polypropylene for excellent chemical resistance. The vents on the front side are adjustable to optimize airflow. The top duct can reconnect back to the Fan-Filter Unit mounted on top of the hood, or connect to a remote exhaust system.
Airflow Diagram for Benchtop Laminar Flow Hood with Back Plenum to Reduce Air Turbulence
A built-in rear plenum draws air from the back to minimize air turbulence in the work zone and reduce the chance of cross contamination.