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'temperature requirements'

Items tagged with 'temperature requirements'

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Pressure Transmitter

Diaphragm seal systems are used for demanding measuring requirements with extreme medium temperatures of -90 °C up to +400 °C in the process industry. The diaphragm seal assemblies protect the measuring instrument from aggressive, corrosive, heterogeneous, abrasive, highly viscous or toxic media. With this service, the total costs of the diaphragm seal system can be clearly lowered. In this way, the service life of the measuring instrument can be fully utilised and only the diaphragm seal assembly needs replacement or repair, preventatively or after failure. With preventive maintenance, scheduled in line with planned shutdowns to your plant, you can reduce downtimes. Service can be done both on a mounted process transmitter as well as on a mechanical measuring instrument. Depending on the application case, the service life of the process transmitter is longer than that of the wetted parts. Therefore, only in rare cases must defective diaphragm seal systems be replaced completely, i.e. including the process transmitter. By re-using the process transmitter, WIKA offers a service package with clear cost savings. With the replacement service, through the exchange of the diaphragm seal, the TCO (total cost of ownership) of the measuring location can be reduced considerably. Your benefits Cost saving Fast availability by saving time Functional test of a process transmitter Current material test certificate New calibration of the entire system Additional Information: Production Capacity: 100 Delivery Time: WEEK Packaging Details: EXPORT WORTHY PACKING

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Pressure Transmitter

pressure transmitter is a ceramic pressure sensor (If you need higher accuracy and pressure, we have a transmitter with an oil-washed silicon core) that is temperature compensated and laser trimmed for accurate span and offset calibration. The typical advantage is the compact size, which make it convenient to be installed in small room. Some typical applications for these pressure sensor are: Process control and automation, compressors and pumps, engine controls, off road vehicles to name few. Additional Information: Production Capacity: 100 Delivery Time: WITHIN A 10 DAYS Packaging Details: EXPORT WORTHY PACKING

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Flow Rotameter

Metal Variable Area Type Flow Meter are designed to measure flow rate of liquids and gases under critical conditions. It consists of a tapered metal tube, an indicating assembly and float. A magnet encapsulated in float couples with rotating magnets are connected to an indicating pointer. Henceforth, the movement of the float is accurately indicated in terms of flowrate. They are intended for application where high pressure, temperature or corrosive conditions preclude the use of conventional glass tube. These are all Metal Variable Area Type Flow meter design to measure flow rate of Liquids & Gases under critical conditions. It consists of a tapered metal tube, an indicating assembly and a float. A magnet encapsulates in float couples with rotating magnets connected to an indicating pointer, thus the movement of the float, is accurately indicated in terms of flow rate. 2. Working Principle When fluid or gas flows through a taper tube containing a float, a pressure difference of P1 and P2 is created between upper and lower side of the float. The float moves upwards by a force obtained by multiplying the pressure differential by the maximum cross-sectional area of the float. Based on Bemoulli's theorem, the principle mentioned above can be theoretically expressed as follows. Due to taper tube, as the float moves upwards, the fluid passing area increases as a result of which the differential pressure decreases. Upward movement of float stops when the dead load is dynamically balanced by the differential pressure. Tapering of metering tube is so designed that the vertical movement of the float becomes linearly proportional to the rate of flow and the scale is provided to read the position of the float, thus giving birth to flow rate indication. 3. Specifications Accuracy : ± 2% of FSD Rangeability : 10:1 Repeatability : ± 0.5% Temperature Rating : -200 to 250°C Pressure Rating : 40 Bar Flow Direction : Bottom to Top Connections : Flanged, TC End and Screwed Enclosure : IP 65 Weatherproof 4. Design features 1. Simplified piping and reduced space requirements 2. Permanent magnetic link between metering float and motion position transmitter 3. Precision swaged metering tube 4. Guide cartridges easily removable for cleaning 5. Provide with Electrical transmitter, flow indicator or alarm 6. Available F/F Height in 350, 450, 500 mm 7. Available Flange size 15 NB to 150 NB & Flow 200 LPH to 50,000 LPH

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Strainer

NRG GLOBAL MAKE Basket strainers are installed to protect equipment from damage caused by unwanted debris that may be in the pipeline. The unwanted debris could be dirt or other foreign particles that make their way into the process fluid. Typically, basket strainers are installed in horizontal pipelines and in situations where high flow capacity is required. These strainers are installed upstream of equipment like pumps, control valves, and traps, keeping potentially corrosive or damaging debris from making its way down the line. They can be installed alone or in a series to increase filtration. They may come with a single chamber (simplex strainers) or multiple chambers (multiplex strainers). To read more about the differences between simplex and duplex strainers, check out this post. Understanding Mesh Sizing Each strainer is designed with a mesh lined basket to filter and collect the unwanted debris. Mesh size should be chosen based on the job function, not the size of the system. Selecting a mesh with openings that are too small could result in more frequent clogged lines, while a mesh with significantly larger openings could permit more unwanted debris to flow through the pipeline and equipment. Ideally, then, you’ll want to choose a mesh where the perforation is slightly smaller than the smallest particle you’ll need to filter out. Mesh size is measured by the number of openings in one linear inch of screen. For instance, a 16-mesh screen would have 16 openings per inch, while a 100-mesh screen would have 100 openings. Higher numbers, therefore, are able to strain out smaller particles with a finer weave. The baskets are typically made of stainless steel for quality and durability. Factors for Selecting the Right Basket Strainer Each application could require a different basket strainer. Consider the unique functions of your pipeline before deciding on a strainer. Important factors include the pressure and temperature requirements of your line, the type of liquid flow (corrosive, abrasive, etc.), debris size, and the frequency of cleaning and maintenance. You may also consider a duplex style basket strainer (such as these), which holds two strainer baskets fed by diverting valves. This system allows one basket to be cleaned and serviced while the other maintains flow.

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RTD Sensor

RTDs - or Resistance Temperature Detectors - are temperature sensors that contain a resistor that changes resistance value as its temperature changes. The most popular RTD is the Pt100. They have been used for many years to measure temperature in laboratory and industrial processes, and have developed a reputation for accuracy, repeatability, and stability. Most RTD elements consist of a length of fine coiled wire wrapped around a ceramic or glass core. The element is usually quite fragile, so it is often placed inside a sheathed probe to protect it. The RTD element is made from a pure material whose resistance at various temperatures has been documented. The material has a predictable change in resistance as the temperature changes; it is this predictable change that is used to determine temperature. The pt100 is one of the most accurate temperature sensors. Not only does it provide good accuracy, it also provides excellent stability and repeatability. Most OMEGA standard pt100 comply with DIN-IEC Class B. Pt100 are also relatively immune to electrical noise and therefore well suited for temperature measurement in industrial environments, especially around motors, generators and other high voltage equipment.

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