Filter Sort
close
Categories
Filter By
Company
Ambient Temperature
Filling
Flow Rate (l/min)
Measuring range
Nominal Diameter
Pressure Range
1 - 6 of 6
111.11 Bourdon Tube Pressure Gauge

111.11 Bourdon Tube Pressure Gauge

3303

The WIKA 111.11 bourdon tube pressure gauge is specially designed for equipment and plants for welding, cutting and allied processes. Ask our product specialist for further information, or see downloads for the datasheet.
View Details
113.53 Bourdon Tube Pressure Gauge

113.53 Bourdon Tube Pressure Gauge

3316

The WIKA 113.53 bourdon tube pressure gauge is a liquid-filled gauge with a max. 0…600 bar scale range, 1.5″ dial size, 1/8″ NPT lower mount connection, brass wetted material and stainless steel case material. The WIKA 113.53 gauge is the perfect choice for OEM and general industrial applications requiring an economical, liquid-filled pressure gauge. Typical applications include air compression, hydraulic presses, pumps, marine engines, as well as other types of industrial hydraulic and pneumatic equipment.
View Details
213.40 Bourdon Tube Pressure Gauge

213.40 Bourdon Tube Pressure Gauge

3322

The especially robust WIKA 213.40 bourdon tube pressure gauge is designed to meet the requirements of a wide range of industrial applications. For measuring points with high dynamic pressure loads or vibrations, for gaseous and liquid media that are not highly viscous or crystallising and will not attack copper alloy parts, mining, hydraulics and shipbuilding. The WIKA 213.40 is vibration and shock-resistant and made of solid forged brass.
View Details
A2G-mini Differential Pressure Gauge

A2G-mini Differential Pressure Gauge

5075

The WIKA A2G-mini differential pressure gauge can be used for monitoring differential pressures of the filter units in small and medium-sized central air-handling units. Further application cases are in industrial air extraction units and dust extraction plants as well as in the cleanroom industry. Its compact design and flush panel mounting enable an optimal integration in the enclosure structures of ventilation equipment. The pure metal design “ with the case of stainless steel and the measuring system and movement from copper alloy “ ensures maximum hygiene. Due to its silicone-free materials, the instrument can also be used in the painting industry and its applications. The high IP68 ingress protection and the UV-stabilised window also enable operation in outdoor areas.
View Details
VTL 20 Turbine Flow Sensor

VTL 20 Turbine Flow Sensor

7811

The SIKA VTL 20 turbine flow sensor is made for flow measurement or dosing applications for liquids. Because of the very compact design, the extensive measuring range and the convincing precision of measurements, almost unlimited applications are possible. The sturdy bearing materials – sapphire and tungsten carbide – also guarantee an exceptionally long endurance. The liquid flowing into the SIKA VTL 20 turbine flow sensor is split into individual jets by the guiding blade. These jets hit the rotor evenly from different directions, setting the rotor in motion. The rotation speed of the rotor is then converted to an electrical pulse signal (frequency): The rotor is fitted with magnets and a Hall effect sensor detects the rotation of the rotor. A flow-proportional frequency signal (square-wave signal) is made available. The construction of the guiding blade and rotor enables to realize the very low start-up flow values.
View Details
VTH 20 Turbine Flow Sensor

VTH 20 Turbine Flow Sensor

7813

The SIKA VTH 20 turbine flow sensor is made for flow measurement or dosing applications for liquids. Because of the very compact design, the extensive measuring range and the convincing precision of measurements, almost unlimited applications are possible. The sturdy bearing materials – sapphire and tungsten carbide – also guarantee an exceptionally long endurance. The liquid flowing into the SIKA VTH 20 turbine flow sensor is split into individual jets by the guiding blade. These jets hit the rotor evenly from different directions, setting the rotor in motion. The rotation speed of the rotor is then converted to an electrical pulse signal (frequency): The rotor is fitted with magnets and a Hall effect sensor detects the rotation of the rotor. A flow-proportional frequency signal (square-wave signal) is made available. The construction of the guiding blade and rotor enables to realize the very low start-up flow values.
View Details
1 - 6 of 6
1