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Underwater Thickness Gauge

Underwater Thickness Gauge

1162

The Cygnus Underwater is the original diver held subsea multiple echo ultrasonic thickness gauge. It was designed for use by divers undertaking subsea maintenance and surveys 3 decades ago¦ and today it is still the industry standard. The unit is depth rated to 300 meters (985 ft) and it provides an accurate metal thickness measurement through coatings up to 20 mm (0.787 in) thick using Deep Coat mode (upon request). The bright LED display ensures easy viewing even in poor visibility conditions. The Cygnus Underwater thickness gauge is supplied ready to use as a complete kit with 2 rechargeable batteries in a protective carry case. Features: RINA approved (Certificate No. 2009DGPO787) Auto Probe Recognition (APR) Deep-Coat mode for measuring through coatings up to 20 mm (0.787 in) thick (upon request) Easy calibration using convenient buttons Rugged, durable, shock-proof construction Stable calibration “ linear accuracy “ no zero adjustment Large bright LED display for poor visibility Pressure rated to 300 m (985 ft) depth Heavy-duty sealed unit with double ˜O™ ring protection Self-verification of measurements to ensure accuracy Echo strength indicator to aid measurement All probes are protected by a membrane to prevent damage Various probe options Two rechargeable battery packs with charger Fixed head probe option for single-handed use
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Mini ROV Mountable

Mini ROV Mountable

1167

The Cygnus Mini ROV Mountable thickness gauge has been specially designed to be mounted onto small observation ROVs with or without a manipulator facility. Built-in conjunction with VideoRay, this mountable subsea thickness gauge will allow the operator to carry out an ultrasonic thickness measurement in areas that have previously been unfeasible using larger ROVs or divers. The multiple echo thickness gauge measures metal thickness and corrosion without removing protective coatings. Dedicated software displays the time, date and thickness readings on the surface which can all be stored or logged. Alternatively, an optional Topside Repeater (TSR) is available which has the facility to display the thickness measurements remotely and overlay them on to a video signal. This allows the measurements to be superimposed on the ROV camera™s monitor screen. The unit is pressure tested to 1,640 ft (500 m). Features: Designed specifically to mount onto small observation ROV™s. Supplied with *CygLink software to display and log thickness measurements from the ROV on a computer at the surface which can be saved to a file and printed out. CygLink has two data logging facilities: Quick Log for simple recording of thickness measurements and structured mode with four templates available “ Single Point, Multi Point, Grid Point and KeyPoint. Easy calibration at the surface via CygLink software or Top Side Repeater (TSR) unit. Optional dedicated probe holder to allow measurements on curved or flat surfaces. Only one twisted pair is required to transfer the data to the surface.
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SITRANS LH300

SITRANS LH300

3449

The SIEMENS SITRANS LH300 submersible pressure transmitter sensor for hydrostatic level measurement with protective caps made of PPE, stainless steel and ETFE. The SITRANS LH300 converts the level proportional hydrostatic pressure into a standardised 4 to 20 mA signal. The SIEMENS SITRANS LH300 submersible pressure transmitter consists of a stainless steel housing (Ø 30 mm) with mechanical protection IP68 and the piezo-resistive sensor with a ceramic diaphragm made of 99,6 % purity ceramic ensures versatile use, also good in drinking water systems. The transmitter cable has a diameter of Ø 8 mm and contains a vent pipe to connect to the atmosphere. The pressure transmitter measures liquid levels in tanks, containers, channels and dams. LH300 pressure transmitters are available for various measuring ranges and with explosion protection as an option.
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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.
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VTM 40 Turbine Flow Sensor

VTM 40 Turbine Flow Sensor

7803

The SIKA VTM 40 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 VTM 40 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.
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VTH 40 Turbine Flow Sensor

VTH 40 Turbine Flow Sensor

7805

The SIKA VTH 40 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 40 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.
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VTM 25 Turbine Flow Sensor

VTM 25 Turbine Flow Sensor

7807

The SIKA VTM 25 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 VTM 25 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.
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VTH 25 Turbine Flow Sensor

VTH 25 Turbine Flow Sensor

7809

The SIKA VTH 25 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 25 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.
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