Cod. NPT70121 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70116 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. 00370166 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. 00370116 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70165 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70135 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70125 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70120 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. NPT70115 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. 00370165 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. 00370115 STAINLESS STEEL (304-316) AXIAL-FLOW TURBINE FLOWMETER. Stainless steel body (304-316) in the versions with antacid plastic ducts (PVDF) or stainless steel ducts. This is the most suitable flowmeter for measuring corrosive and abrasive liquid chemical products at high working pressures. It can be used with a sinusoidal-wave or square-wave sensor, 4-20 mA.
Cod. 00200115 AUTOMATIC SPRING-LOADED MAXIMUM PRESSURE SAFETY VALVES. These valves are made of a plastic (nylon and fiberglass) which is particularly resistant to liquid chemical products and even abrasive liquid chemical products. If they are used as safety valves, they guarantee a constant pressure whenever it is not necessary to continuously regulate the working pressure. Any excess liquid bypasses the valve and allows it to maintain a constant line pressure. Available in the membrane version (for better regulating accuracy) and the piston version (to deaden the effect of vibrations).
Cod. 00200114 AUTOMATIC SPRING-LOADED MAXIMUM PRESSURE SAFETY VALVES. These valves are made of a plastic (nylon and fiberglass) which is particularly resistant to liquid chemical products and even abrasive liquid chemical products. If they are used as safety valves, they guarantee a constant pressure whenever it is not necessary to continuously regulate the working pressure. Any excess liquid bypasses the valve and allows it to maintain a constant line pressure. Available in the membrane version (for better regulating accuracy) and the piston version (to deaden the effect of vibrations).
Cod. 00200082 AUTOMATIC SPRING-LOADED MAXIMUM PRESSURE SAFETY VALVES. These valves are made of a plastic (nylon and fiberglass) which is particularly resistant to liquid chemical products and even abrasive liquid chemical products. If they are used as safety valves, they guarantee a constant pressure whenever it is not necessary to continuously regulate the working pressure. Any excess liquid bypasses the valve and allows it to maintain a constant line pressure. Available in the membrane version (for better regulating accuracy) and the piston version (to deaden the effect of vibrations).
Cod. 00200081 AUTOMATIC SPRING-LOADED MAXIMUM PRESSURE SAFETY VALVES. These valves are made of a plastic (nylon and fiberglass) which is particularly resistant to liquid chemical products and even abrasive liquid chemical products. If they are used as safety valves, they guarantee a constant pressure whenever it is not necessary to continuously regulate the working pressure. Any excess liquid bypasses the valve and allows it to maintain a constant line pressure. Available in the membrane version (for better regulating accuracy) and the piston version (to deaden the effect of vibrations).