Flow Meters

Applications
Brand
Color
Price
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Paddle type flow switch with a maximum pressure of 1450 PSI for brass and 3600 PSI for SS, replaces the OK15.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
Keeps the flow of liquid constant by decreasing the cross-section of an orifice proportionally as the pressure increases.
0.0
In stock
£23926
+
All metal, high pressure flow meter and switch for easy vertical or horizontal installation .
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Measures low flow with minimum pressure loss at high flow rates.
Compact float type flow meters and switches in brass or stainless steel, replaces the OK55.
0.0
In stock
£3,11793
+
All directions of flow, ideal for processes under difficult and adverse operating conditions.
0.0
In stock
£1,35186
+
All plastic, corrosion-resistant flow meter with customizable displays, data transmission, and ideal flow direction.
0.0
In stock
£36787
+
Viscosity compensated flowmeter with optional switch .
0.0
In stock
£39415
+
High pressure viscosity compensated flow meter with optional switch .
0.0
In stock
£6569
+
Viscosity-compensated plastic flow meters and switches, reduced float jamming.
0.0
In stock
£82979
+
Versatile, all-metal flow meters for liquid flow rates to 0.7 gpm and gas flow rates to 2.825 scfm.
0.0
In stock
£1,74809
+
Versatile, all-metal flow meters for liquid flow rates to 0.7 gpm and gas flow rates to 2.825 scfm.
0.0
In stock
£2,47814
+
Clamp-on flow meter that can be fitted on the outside of piping to measure the flowrate of liquids.
0.0
In stock
£6,94117
+
Portable clamp-on flow meter combines mobile and quick liquid measurement with proven precision and reliability.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
1/4in or 1in sizes available, ryton (PPS) construction, 0.5% accuracy, flow ranges up to 132 GPH.
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