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FL2000-Series
± 5 % Acrylic Variable Area Flow Meters for Air or Water
Models In Stock
- FEATURES:
- Easy-to-Read English or Metric Scales
- Water Ranges from 4 CCM to 20 GPM, Air Ranges from 40 CCM to 4000 LPM
- Threaded Brass Inserts for Quick Installation
FL2000-Series
From
C$
135.15
Models In Stock
Product Overview
- Operating Pressure, Max 100 psi
- Process Connection Type NPT Female
- Process Temperature, Max 65 °C
- Scale Direct Read
- Scale Media Calibration Air @ 100 psi
- Series ID FL2000-Series
NOT ALL MODELS ARE STANDARD WITH VALVES, VERIFY MODEL DESCRIPTION TO CONFIRM
The FL-2000 Series ±5% acrylic variable area flow meters are designed for precise measurement of air or water flow. Suitable for medical, industrial, chemical, and laboratory applications, these durable flow meters operate up to 100 PSI, offering reliable performance at an economical price.
The FL-2000 Series ±5% acrylic variable area flow meters are designed for precise measurement of air or water flow. Suitable for medical, industrial, chemical, and laboratory applications, these durable flow meters operate up to 100 PSI, offering reliable performance at an economical price.
PDFs & Manuals
Show Ratings & Reviews
What is the pressure drop of a FL-2012 (0.2 to 2.5) flow meter?
Thank you for your question?
The max drop is 3 PSI for the FL-2012
Date published: 2019-07-01
Can I use an equation to determine the flow at non-standard pressure and temperature? On another MFG's site I saw Q2 = Q1 * sqrt (P1*T2/(P2*T1)). Is that equation correct for this flowmeter?
Send us an email to flow@omega.com. We can provide correct equation on a PDF form.
Date published: 2021-12-11
Can these be used with inert gases or solely just air?
Hi, thanks for connecting with us! You can use these meters with inert dry gases other than air but you will have to correct for the specific gravity. If you need help calculating this, please contact our Flow Department at flow@omega.com.
Date published: 2019-05-20
We are using FL-2012 not with a ball float but with a conical float. Do we have to determine the flowrate by reading the center, top or bottom of the conical float?
Thank you for your inquiry! For conical floats the reading will be taken from the top
Date published: 2021-07-30