VIP Turbine Type Water Meters, Flanged PN16, Complete with Pulse Output
Key Information
The VIP Turbine Type Water Meter is a robust and accurate solution for measuring water consumption in commercial, industrial and utility applications. Designed with a dry dial register for clear and reliable readings, this high-capacity water meter is available for both cold water applications up to 30°C and hot water applications up to 90°C. Supplied complete with pulse output, it can be easily integrated into building management systems, monitoring equipment and remote metering installations.
Manufactured with durable PN16 flanged connections and rated for working pressures up to 16 Bar, the meter is designed to deliver dependable performance in demanding environments. The pulse emitter device features a volt-free reed switch housed within a protective enclosure and is supplied with a 1.5 metre two-core cable for straightforward connection to data logging and monitoring systems.
Features
- Supplied complete with pulse output for remote monitoring and BMS integration
- WRAS and MID Approved
- Dry dial register for clear, reliable readings
- PN16 flanged connections for secure installation
- Rated for working pressures up to 16 Bar
- Pulse emitter includes volt-free reed switch and 1.5m two-core cable
- Ideal for commercial, industrial and water distribution applications
| VIP Code | Size | Minimum Flow (Q1) | Nominal Flow (Q3) | Max Flow (Q4) | Standard Pulse Value (L/P) |
|---|---|---|---|---|---|
| 28/0451/050 | 2″ | 0.5 | 40 | 50 | 100 |
| 28/0451/065 | 2 1/2″ | 0.787 | 63 | 78.7 | 100 |
| 28/0451/080 | 3″ | 0.787 | 63 | 78.7 | 100 |
| 28/0451/100 | 4″ | 1.25 | 100 | 125 | 100 |
| 28/0451/125 | 5″ | 2.0 | 160 | 200 | 100 |
| 28/0451/150 | 6″ | 3.125 | 250 | 312 | 1000 |
| 28/0451/200 | 8″ | 5.0 | 400 | 500 | 1000 |
- Minimum Flow Rate (Q1) (Q min m3/h): The absolute minimal flow rate required for the unit to function.
- Nominal Flow Rate (Q3) (GN m3/h): Typical application for every day usage.
- Max Flow Rate (Q4) (Qmax m3/h): The emergency flow rate in the event of system failure. Damage may result.
