| Hersey-Meters |
- Flowmeters
- Vertical Turbine
- Horizontal Turbine
- 400 Series
- 500 Series
- Compound Meter
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| MVR Magnetic Drive Vertical Turbine Meter | Downloads |
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Measurement of water for residential, commercial, industrial and residential fire applications, where sensitivity to low flow is also important. Hersey MVR meters are among the most sensitive vertical turbine meters available and may be used in place of compound meters in some applications. The compact design and integral strainer (separate external strainer is not needed) of Model MVR meters facilitate installation in tight spaces. They are ideal where flexibility is needed to meet wider flow ranges, where water temperatures are elevated between 80F and 130F, or where sand particles or other small debris may be encountered. May be installed vertically or horizontally for greater installation flexibility. |
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| Horizon Horizontal Turbine Meter | Downloads |
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For use in the measurement of potable water for applications where flow is consistently moderate to high. Designed for applications where accuracy is an essential part of maintaining revenue. The Horizon horizontal turbine meter is built to maintain accuracy over extended periods of use. |
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| 400 Series Positive Displacement Disc Meter | Downloads |
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Measurement of cold water for residential and small commercial applications where water volumes are low, and low flow sensitivity is important. |
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| 500 Series Positive Displacement Disc Meter | Downloads |
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Measurement of cold water for residential, commercial and industrial applications where water volumes are low, and low flow sensitivity is important. |
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| MCT II Compound Magnetic Drive Meter | Downloads |
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The Hersey Meters MCT II Compound Magnetic Drive Meter is designed for applications where a high degree of accuracy is required over a wide range of water flow rates. Hotels, motels, institutions, schools, factories, office buildings, apartment building and commercial properties are examples of installations where domestic or process water services may have widely varying flow rates. |
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