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| Customization: | Available |
|---|---|
| Type: | Differential Pressure Transmitter |
| Structure Type: | Diffused Silicon Pressure Transmitter |
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| Measuring Medium | Liquid, Gas or Steam |
| Pressure Range | -4MPa~4MPa |
| Output Signal | 4~20mADC with HART |
| Permissible Load Resistance | 0~600Ω(DC 24V) |
| Supply Voltage | 10.5~45VDC (General Service), 10.5~26VDC (Intrinsic safety and explosion-proof) |
| Zero-scale Migration | Within between -20% ~ 20% of maximum range |
| Ambient Temperature | -40~+85ºC(normal);-20~+60ºC(explosion-proof); -10~+60ºC(when filled with fluorine oil) |
| Storage Temperature | -40~90ºC |
| Accuracy | TD 1:1…15:1 =±0.075% TD>15:1 =±(0.0015×TD+0.053) % |
| Output Mode | Linear output, square root output |
| Static Pressure Influence | ±0.05% of range/10MPa |
| Overpressure Influence | ±0.05% of maximum range/10MPa |
| Stability | ±0.05% of maximum range /12 months |
| Protection of Shell | IP66 |
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In the field of industrial measurement, differential pressure is a key tool for the accurate and reliable monitoring of the levels of liquids and liquefied gases within pressurised tanks. Pressurised tanks are used for a number of reasons, including ensuring a constant output, eliminating foam, providing a barrier for caustic materials and liquefying gas for easier storage. In all of these scenarios, a differential pressure transmitter will only measure the difference between the static pressure and the overall pressure. The standard formula for hydrostatic pressure consists of three variables: pressure, density, and height. The sensor measures pressure, with density input by the customer as a constant, and the height is the product level. For this formula to be effective, it is crucial that density remains relatively constant. With a known density and pressure value, the pressure sensor's electronics can accurately and reliably calculate liquid level from the differential pressure. |