Description

Electronic components and automation solutions from RS Pro has been offering no compromise between quality, price and efficiency since 1937. Quality is the company’s passion, that is why every item gets audited, inspected and tested for compliance with internal and international standards by highly qualified engineers.RS-E0742 Fume Extraction UnitThe RS-E0742 is our cost effective single arm fume extraction unit for professional applications.Robust design and high efficiency filtering system guarantee long life and best in class noise level.The RS-E0742 solder fume extraction unit has been designed primarily to extract the fumes generated during hand soldering in the electronics industry.This portable system comes complete with an extraction arm and installation kit that contain everything required to set up an operator with ease.Minimal installation allows this unit to be moved with the work bench when factory layouts need changing due to production challenges.The low noise level and fully comprehensive filtration is ideal for factories with changing production demands.Standard features:Filter blocked indicatorUnique flip top flush sealing mounting plateGranulated Carbon Gas Filter99.997% HEPA FiltrationTechnical data:Dimensions (HxWxD): 380 x 260 x 260mmCabinet construction: Powder coated mild steelAirflow/Pressure: 90m?/hr / 20mbarElectrical data: 230v 1ph 50/60HzFull load current: 0.45 amps / 90wNoise Level: < 54dBA at typical operating speedWeight: 7kgDuct size: 50mmDuct run: 3mtrsPackage includes:RS-E0742 extraction unit1 x Pre filter pad1 x Combined HEPA/Gas filter1 x Power cable1 x Installation flex and table bracket1 x 50mm ESD Stay Put extraction armPre filter specifications:Filter media: glass fibreFilter media construction: PadFilter efficiency: F7 (96% @ 2 microns)Combined filter specifications:HEPA filter media: Glass fibreHEPA media construction: Maxi pleat construction with webbing spacersGas filter: Treated activated carbonFilter housing: Zintec mild steelFilter Efficiency: 99.997% @ 0.3 microns''