『Battery powered flowmeter』Related information(clamp on meter|electromagnetic meter|venturi meterrotameter|orifice meter|ultrasonic flow meter|mass flow meter|coriolis mass flow meter|coriolis flow meter|magnetic flow meter|magmeter flow meter|magflow flow meter|mag meter flow meter|electromagnetic flow meter|vortex flow meter|turbine flow meter|thermal mass flow meter|thermal flow meter|rotameter flow meter)

1. Pipeline flowmeter
2. Selection of battery powered turbine flowmeter
When selecting a battery powered turbine flowmeter, the first consideration is the measurement requirements. The LWGY series offers multiple specifications to accommodate different applications. For example, for DN40 diesel pipelines, if flange connection is required, the LWGY-40 (FL) model can be selected. Its characteristic is explosion-proof type (Exm Ⅱ CT6 or Exd Ⅱ BT6), ensuring safe operation of the Weina in high-pressure environments. For on-site display and remote transmission of current signals, the LWGY series offers a C-type, which means you will receive battery powered on-site display and 4-20mA two-wire current output function. The accuracy level is 0.5, ensuring the accuracy of the measurement results. The accuracy level option for LWGY is 05. Considering the material of the pipeline, choosing S304 stainless steel for turbine components is the correct choice for 304 stainless steel. In terms of pressure rating, due to the need to withstand a pressure of 16MPa, the H (x) high-pressure version should be selected. In terms of measurement range, diesel belongs to the standard range, so the S standard turbine is selected. In summary, based on the above conditions, you should choose the turbine flowmeter model LWGY-40 (FL)/C/05/S/S/E/H16.
3. Product features of battery powered turbine flowmeter
The battery powered turbine flowmeter has various significant characteristics, ensuring high-precision measurement and wide application.
. Firstly, its accuracy is extremely high, with standard models reaching ± 1% R and even high-precision models reaching an astonishing ± 0.2% R, which is particularly crucial in tr

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