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SidePak™ AM520i Personal Aerosol Monitor

SidePak™ AM520i Personal Aerosol Monitor

SKU: AM520i
£5,305.00Price
Excluding VAT

The SidePak™ AM520i Personal Aerosol Monitor is a small, single-channel, portable, battery-operated, data-logging, light-scattering laser photometer that provides real-time aerosol mass concentration readings of dusts, fumes, mists, smoke and fog within a worker breathing zone. Newly designed inlet conditioners increase the mass concentration capability and provide size fraction cut points for PM10, PM4 (Respirable), PM5 (China Respirable), PM2.5 , PM1 and 0.8 μm Diesel Particulate Matter (DPM).

 

The SidePak AM520i has IECEx, ATEX, CSA and IECEx-SIM certifications, meaning it can help you protect workers and maintain compliance in a variety of potentially volatile environments.

 

    ​Features and benefits

    • NOW with dual display and data logging of mass concentration and response concentration on one screen (i.e. for respirable silica, welding fume and DPM monitoring applications)
    • NOW stores up to 10 custom calibration factors on the instrument for different applications
    • Updates to TrakPro™ v5 Data Analysis Software include:
      • Custom calibration factor calculator to simplify calibration factor process
      • Continued ability to name custom calibration factors and upload them to the instrument
      • Enhanced alarm features to include response concentration alarm value
    • IECEx and ATEX certified
    • CSA Certifications for North America
    • Audible and visual alarms
    • 0.8 μm DPM impactor
    • PM5 China respirable size fraction impactor
    • High capacity battery
    • Color OLED display
    • Real-time mass concentration measurement and data logging for "in-the-field" data analysis
    • Push button menu operation or programmable through newly improved TrakPro™ v5 Software
    • User-selectable alarm levels to alert workers to high aerosol concentrations
    • Robust impactors enable reliable size fraction measurements at higher aerosol concentrations over longer run times
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