Vibronic Point Level Detection

Point level switches in liquids and solids.

1 - 31 of 31 Products
Vibronic level switch Liquiphant FTL31/33
Endress+Hauser
Vibronic level switch Liquiphant FTL31/33
Fundamental Fundamental
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Vibronic level switch Soliphant FTM2x FTM20
Endress+Hauser
Vibronic level switch Soliphant FTM2x FTM20
Fundamental Fundamental
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Probe 11375Z
Endress+Hauser
Probe 11375Z
Lean Lean
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Liquiphant FTL62/63/64 FTL63
Endress+Hauser
Liquiphant FTL62/63/64 FTL63
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Liquiphant FTL62/63/64 FTL64
Endress+Hauser
Liquiphant FTL62/63/64 FTL64
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Liquiphant FTL80/81/85 FTL81
Endress+Hauser
Liquiphant FTL80/81/85 FTL81
Xpert Xpert
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Vibronic level switch Liquiphant FTL43
Endress+Hauser
Vibronic level switch Liquiphant FTL43
Lean Lean
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Probe 11362Z
Endress+Hauser
Probe 11362Z
Lean Lean
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Vibronic level switch Soliphant FTM5x FTM51
Endress+Hauser
Vibronic level switch Soliphant FTM5x FTM51
Extended Extended
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Capacitance level switch Nivotester FTW325
Endress+Hauser
Capacitance level switch Nivotester FTW325
Lean Lean
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Nivotester FTL825
Endress+Hauser
Nivotester FTL825
Xpert Xpert
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Probe 11363Z
Endress+Hauser
Probe 11363Z
Lean Lean
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Transmitter NRR26x NRR261
Endress+Hauser
Transmitter NRR26x NRR261
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Soliphant FTM5x FTM52
Endress+Hauser
Soliphant FTM5x FTM52
Extended Extended
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Vibronic level switch Liquiphant FTL50/H, FTL51/C/H FTL51H
Endress+Hauser
Vibronic level switch Liquiphant FTL50/H, FTL51/C/H FTL51H
Extended Extended
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Transmitter NRR26x NRR262
Endress+Hauser
Transmitter NRR26x NRR262
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Nivotester FTL325N/325P/375P FTL325P
Endress+Hauser
Nivotester FTL325N/325P/375P FTL325P
Extended Extended
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Liquiphant FTL80/81/85 FTL85
Endress+Hauser
Liquiphant FTL80/81/85 FTL85
Xpert Xpert
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Vibronic level switch Liquiphant FTL31/33 FTL33
Endress+Hauser
Vibronic level switch Liquiphant FTL31/33 FTL33
Fundamental Fundamental
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Probe 11961Z
Endress+Hauser
Probe 11961Z
Lean Lean
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Capacitance level switch Nivotester FTC325
Endress+Hauser
Capacitance level switch Nivotester FTC325
Extended Extended
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Vibronic level switch Soliphant FTM2x FTM21
Endress+Hauser
Vibronic level switch Soliphant FTM2x FTM21
Fundamental Fundamental
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Oil Leak Detector NAR300
Endress+Hauser
Oil Leak Detector NAR300
Xpert Xpert
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Vibronic level switch Liquiphant FTL51B
Endress+Hauser
Vibronic level switch Liquiphant FTL51B
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Nivotester FTL325N/325P/375P
Endress+Hauser
Nivotester FTL325N/325P/375P
Extended Extended
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Vibronic level switch Soliphant FTM5x FTM50
Endress+Hauser
Vibronic level switch Soliphant FTM5x FTM50
Extended Extended
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Liquiphant FTL80/81/85
Endress+Hauser
Liquiphant FTL80/81/85
Xpert Xpert
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Liquiphant FTL50/H, FTL51/C/H FTL50H
Endress+Hauser
Liquiphant FTL50/H, FTL51/C/H FTL50H
Extended Extended
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Liquiphant FTL41
Endress+Hauser
Liquiphant FTL41
Lean Lean
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Liquiphant FTL62/63/64
Endress+Hauser
Liquiphant FTL62/63/64
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Probe 11371
Endress+Hauser
Probe 11371
Lean Lean
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Vibronic Point Level Detection

Vibronic point level detection uses vibrating elements (commonly tuning forks or rods) to deliver highly reliable discrete level switching in liquids and bulk solids. It is frequently applied for safety-relevant overfill prevention, leak detection, and minimum/maximum control because it produces a clear switching result with strong immunity to many process disturbances. Vibronic devices are used in general industrial service and are also applied in hazardous areas and in applications aligned with functional safety requirements.

The measuring principle excites a sensor at its resonant frequency using a piezoelectric drive. In liquids, the oscillating frequency changes as the fork enters the medium; in solids, a one-rod sensor’s amplitude changes as material contacts the vibrating element. The instrument analyzes these changes and converts them into a switching signal. This direct mechanical-electrical conversion is the foundation for stable point detection across varied services.

Benefits include strong resistance to changing process conditions and minimal setup effort. Vibronic switching is described as unaffected by changing media properties, turbulence, foam, vibrations, or buildup, and is typically ready for use without calibration. Additional advantages include self-monitoring behavior and maintenance-free operation with no meaningful wear-and-tear from moving linkages. These characteristics make vibronic devices a common standard for dependable point level protection.

Typical applications in liquids include minimum/maximum detection for pump protection, certified leakage monitoring, and overfill prevention, including use in plant sections subject to SIL requirements (depending on device and safety design). In solids, vibronic sensors are used in silos with fine-grained, powdery, or lumpy materials, including chemical and food industry services, often in hazardous-area installations. They are also used where media variability would cause frequent nuisance trips with alternative switch types.

Engineering considerations include verifying density thresholds, selecting appropriate insertion length and process connection, and ensuring temperature/pressure ratings match the service. While vibronic devices tolerate many disturbances, extreme mechanical loads, severe abrasion in certain solids, or unusual buildup behaviors should be evaluated for sensor style and mounting location. When properly selected, vibronic point level detection provides a high-integrity switching layer for both control and safety functions.

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