

Mycron Air Tech presents its Air showers are made of MS/GI powder coated and stainless steel 304 / 316 grades with international quality standard components. Air showers are specialized enclosed antechambers which are incorporated as entryways of clean rooms and other controlled environments to reduce particle contamination. Air showers utilize high-pressure, HEPA filtered air to remove dust, fibrous lint and other contaminants from personnel or object surfaces. The forceful "cleansing" of surfaces prior to entering clean environments reduces the number of airborne particulates introduced. Air showers are generally constructed from clean room compatible steel or plastic materials and feature electronically powered blowers, filters and high-pressure jet nozzles. The latter being incorporated into the walls and ceiling of the chamber. Air at velocities of 3, 000 to 7, 000 feet-per-minute (FPM), continuously streams from the jet nozzles for 20-40 seconds effectively removing loose particulate matter. Personnel inside the enclosure will lift their arms and turn their bodies for uniform exposure to the air streams. A procedure usually specified in protocol. Air currents from the jets create shearing and flapping forces which lift and remove contaminants from both flat surfaces and the creases of garments. HEPA filtration within the air shower is capable of removing 99.97% of particles greater than 0.3µm diameter.

Mycron Air Tech presents its Clean Room pass box equipment, fabricated with MS/GI powder coated and stainless steel 304 / 316 grades are capable of eradicating pollutants completely from the air. Such pass box exists in Static and Dynamic configurations. Static Pass Box These static pass boxes are installed in manufacturing areas and filter the incoming air in order to keep the air free from dust and other contaminants. With UV light along with hour meter, Fluorescent light, buzzer indicator to know the material is kept inside and indicating lamp, these static pass boxes provide excellent working performance in the clean room unit. An interlock guard system controls the inlet and the outlet of pass box not be opened at the same time, in order to prevent the cross contamination. Dynamic Pass Box The Dynamic Pass Box equipments are made of MS/GI powder coated and stainless steel 304 / 316 grades with international quality standard components including mechanically or electrically interlocked doors and UV light. These dynamic pass box equipment are equipped with suction filter made of stainless steel with 95% down to 0.3µ efficiency and supply filter made of aluminum with 99.999% down to 0.3 µ. An interlock guard system controls the inlet and the outlet of pass box not be opened at the same time, in order to prevent the cross contamination.

Mycron Air Tech presents a Fume Hood fabricated with MS/GI powder coated, stainless steel 304 / 316 grade and plywood. A fume hood is typically a large piece of equipment enclosing five sides of a work area, the bottom of which is most commonly located at a standing work height. Two main types exist, ducted and recirculation (ductless). The principle is the same for both types are air drawn in from the front side of the cabinet, and either expelled outside the building or made safe through filtration and fed back into the room. This is used to protect the user from inhaling toxic gases and the secondary functions of these devices may include explosion protection, spill containment, and other functions necessary to the work being done within the device. Fume hoods are generally set back against the walls and are often fitted with in fills above, to cover up the exhaust ductwork. Because of their recessed shape they are generally poorly illuminated by general room lighting, so many have internal lights with vapor-proof covers. The front is a sash window, usually in glass, able to move up and down on a counterbalance mechanism.

Mycron Air Tech presents a Laminar Air flow cabinet fabricated with MS/GI powder coated, stainless steel 304 / 316 grade and plywood box. It is a carefully enclosed bench designed to prevent contamination of semiconductor wafers, biological samples, or any particle sensitive materials. Air is drawn through a HEPA filter and blown in a very smooth, laminar flow towards the user. The cabinet is usually made of Wood, MS/GI Powder Coated and stainless steel (grade 304/316). Such hoods exist in horizontal, vertical and ceiling suspended configurations. Laminar flow cabinets may have a UV Lamp to sterilize the interior and contents before usage to prevent contamination of experiment. UV lamps are usually kept on for 15 minutes to sterilize the interior and no contact is to be made with a laminar flow hood during this time. During this time, scientists normally prepare other materials to maximize efficiency. It is important to switch this light off during use, to limit exposure to skin and eyes as stray ultraviolet light emissions can cause cancer and cataracts.

Mycron Air Tech make Powder containment booths are used to control the hazardous emissions of powders, dust or vapors during powder dispensing, product sampling, or bag dispensing, etc., without risk to the operator or environment.The downdraught prevents airborne dusts caused by weighing and dispensing operations rising into the operator's breathing zone. The air forced downwards is extracted at low level into the booth's filtration system where dust particles are contained at each level of filtration prior to being re-circulated back into the booths air stream. The Powder Dispensing/ Sampling Booths are designed to give mixed air flow stream for product, operator and environmental protection and used to control the hazardous emissions of dust powder during powder dispensing / sampling process. 0.3 micron downward air stream deflects air-borne dust away from the operator breathing zone which is caused in handling operation. Dust particle available is being filtered at three levels of filtration prior to being circulated back to the booths air stream. For filling, refilling, weighing & sampling of Raw material & Components.
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