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LUGB-F

The LUGB series vortex flowmeter is a type of flow instrument that uses a piezoelectric crystal as the sensing element, delivering a standard signal proportional to the flow rate. This instrument can be directly paired with instrumentation devices or integrated with computers and distributed control systems, enabling accurate measurement of flow parameters for various media. Operating on the principle of detecting fluid-induced vortices, the piezoelectric crystal in this flowmeter remains completely isolated from the measured medium, ensuring features such as simple construction, excellent versatility, and high stability.

LUGB-FW

The LUGB series vortex flowmeter is a type of flow instrument that uses a piezoelectric crystal as the sensing element, delivering a standard signal proportional to the flow rate. This instrument can be directly paired with instrumentation devices or integrated with computers and distributed control systems, enabling accurate measurement of flow parameters for various media. Based on the principle of detecting fluid-induced vortices, the piezoelectric crystal used in this flowmeter remains completely isolated from the measured medium, ensuring features such as simple construction, excellent versatility, and high operational stability.

LUGB-T

The LUGB series vortex flowmeter is a type of flow instrument that uses a piezoelectric crystal as the sensing element, delivering a standard signal proportional to the flow rate. This instrument can be directly paired with instrumentation devices or integrated with computers and distributed control systems, enabling accurate measurement of flow parameters for various media. Based on the principle of detecting fluid-induced vortices, the piezoelectric crystal used in this flowmeter remains completely isolated from the measured medium, giving the instrument a simple structure, excellent versatility, and high stability.

LUGB-W

The LUGB series vortex flowmeter is a type of flow instrument that uses a piezoelectric crystal as the sensing element, delivering a standard signal proportional to the flow rate. This instrument can be directly paired with instrumentation devices or integrated with computers and distributed control systems, enabling accurate measurement of flow parameters for various media. Based on the principle of detecting fluid-induced vortices, the piezoelectric crystal used in this flowmeter remains completely isolated from the measured medium, giving the instrument a simple structure, excellent versatility, and high stability.

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