L3 applied technologies ati has been providing e beam solutions for its customers for 20 years.
Electron beam sterilization equipment for sale.
12 mev million electron volts and usually operate at a single energy advances in technology have resulted in the development of select e beam equipment capable of operating at varying energies.
Electron beam processing systems are currently utilized in various industrial applications for crosslinking compounds polymerization sterilization and vulcanization.
Equipment used 1 0 3 0 mev e beam accelerators.
L3 ati exactbeam equipment has been delivered to 26 facilities worldwide and has logged over one million hours of operational time processing medical and food products in manufacturing and contract facilities.
Electron beam e beam irradiation is a form of ionizing energy that is characterized by its low penetration and high dosage rates.
In 1956 johnson johnson developed the first commercial application of electron beam e beam sterilization processing for medical devices.
Electron beam irradiation service to specification is available for all continuous product such as insulated wire jacketed cable tubing and hose.
For the sterilization of healthcare products high energy electron beams are typically required to achieve penetration of the product and packaging.
The beam a concentrated highly charged stream of electrons is generated by accelerators capable of producing continuous or pulsed beams.
Contract electron beam treatment service of extruded molded plastics semiconductors chemical compounds medical device sterilization.
Electron beam technologies has three electron beam irradiation lines which are capable of producing electron beam energies from 425 000 volts up to 1 500 000 volts.
Product types medical heat shrinkable tubing film electronic components.
Equipment sterilization through irradiation.
The initial high hopes for commercializing e beam technology were short lived due to the poor reliability of these early systems and the opportunity for radiation sterilization of medical products was.
The electron beam process can achieve widely differing effects such as sterilization polymer modification crosslinking and chain scission via its action as an ionizing radiation.
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