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Air Particle Monitor PFM-AP01 Matsushima

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PFM-AP01 Matsushima is Air Particle Monitor continuously measures airborne particulate concentration; Min. detectable size: 0.3µg; Analog output: DC4 to 20mA; Update time of concentration: 20s
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PFM-AP01 Matsushima is Air Particle Monitor continuously measures airborne particulate concentration; Min. detectable size: 0.3µg; Analog output: DC4 to 20mA; Update time of concentration: 20s

Model PFM-AP01
Power source DC24±10%
Current consumption 150mA or less(in case of DC24V)
Min. detectable size 0.3µg
Range Mass concentration [µg/m3] Particle diameter to be detected:
PM1 .0 or smaller;
PM2.5 or smaller;
PM10 or smaller(3 patterns)
Measuring range: 35 to 1000µg/m3
Particle counting [cnt] Particle diameter to be detected:
PM1 .0 or smaller;
PM2.5 or smaller
PM5.0 or smaller;
PM10 or smaller (4 patterns)
Cleanliness level [class] Calculating with conversion factor (class over 10,000)
Output signal Analog output DC4 to 20mA (Resolution: 1µA or less); Load resistance: Max. 500Ω
Contact output 1c(Contact capacity: DC30V 3A, AC250V 3A)
Cumulative count time 1 to 60 min (in case of 1 min, updating the number of the counting particles every 1 min)
Update time of concentration 20s
Moving average of particle
counting
1 to 60 times
Wi-Fi standards IEEE 802.11 b/g/n compliance
Wi-Fi frequency band 2.4GHz
Wi-Fi communication distance
(ref.)
Approx.100m (Straight-line distance in open environment.)
Mounting M3 screw x 2
Casing Material ABS resin
Applicable temperature 0 to+ 50 deg . C
Applicable humidity 0 to 80%RH (without dew condensation)
Protection IP20
Mass Approx. 150g/unit

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At glance

  • Air Particle Monitor continuously measures airborne particulate concentration to assess air quality and process conditions.
  • Using optical sensing principles, it detects and quantifies suspended particles in real time, providing stable and reliable data for environmental monitoring, cleanrooms and industrial applications.

Features

  • Improved Air Quality Control: Enables early detection of particulate level changes, allowing prompt corrective action to maintain safe air quality.
  • Operational Risk Reduction: Early identification of abnormal particle generation helps prevent equipment contamination, process failures and unplanned downtime.
  • Cost Reduction: Early identification of such abnormal situations lowers overall maintenance and operating costs.
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