Ultrasonic flowmeter is unaffected by temperature, density, viscosity
Clark Solutions' CSLFB Ultrasonic Flowmeter is designed for high accuracy flow measurement and is unaffected by changes in fluid temperature, density or viscosity.
Clark Solutions' CSLFB Ultrasonic Flowmeter is designed for high accuracy flow measurement and features a proprietary mixed signal ASIC for sophisticated timing and control.
CSLFB ultrasonic flowmeters are unaffected by changes in fluid temperature, density, or viscosity and have no moving parts in the flow path. CSLFB Ultrasonic Flowmeters have negligible pressure drop and are better suited for monitoring media containing entrained solids.
CSLFB Ultrasonic Flow Transmitters are bi-directional, rated for flow ranges to 120 GPM, and are available in 3/4" to 2 in." pipe sizes. Maximum working pressure for CSLFB Ultrasonic Flow Transmitters is 250 PSI (17.2 bars) for fluids having temperatures of -4 to 190 F (-20 C to 87.8 C). An optional 3-wire RTD, 100 Ohm, Platinum, Class A, IEC 60751 temperature sensor is available for temperature and energy monitoring applications. All CSLFB Ultrasonic Flow Transmitters have 4-20 mA output as standard; a second output is available in the form of an optically isolated NPN transistor, configured at the factory. Wetted materials include ULTEM encapsulated ultrasonic transducers with a choice of elastomer seals and brass body material.
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After almost a decade of uncertainty, the confidence of plant floor managers is soaring. Even with a number of challenges and while implementing new technologies, there is a renewed sense of optimism among plant managers about their business and their future.
The respondents to the 2014 Plant Engineering Salary Survey come from throughout the U.S. and serve a variety of industries, but they are uniform in their optimism about manufacturing. This year’s survey found 79% consider manufacturing a secure career. That’s up from 75% in 2013 and significantly higher than the 63% figure when Plant Engineering first started asking that question a decade ago.