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LVP51
Non-Intrusive RF Capacitance Sensors Selectable NO or NC
- Detects Liquid Through Plastic or Fiberglass Tank Walls Up to 1' Thickness
- 1 AMP SPST Relay Output Standard
- Sensor Conveniently Slides In and Out of Mounting Bracket In PE or PP
- Ideal For Many Ultrapure and Sanitary Applications
Product Overview
- Accuracy ± 0.04 inH2O
- Approvals General purpose, CE
- Cable Length 1000 ft
- Dielectric Range 10 to 80 dielectric units @ 1 MHz
- Enclosure Ratings IP65, NEMA Type 4
- Indicator Type LED: Calibration and liquid status feedback
- Loop Resistance 600 Ω @ 24 Vdc
- Materials Plastic, Fiberglass
- Materials, Wetted Polypropylene
- Media Compatibility Clean process / cooling water, Oils / lubricants, Organic solvents
- Operating Temperature, Min -40 °C
- Power Consumption 25 mA
- Repeatability ± 0.04 inH2O
- Series ID LVP51
- Supply Power Type DC
- Supply Voltage 12 to 30 Vdc
- Switch Operation Selectable Normally Open or Normally Closed
- Switch Rating 1 A @ 60 or 120 Vac/Vdc
- Switch Type SPST
- Tank Wall Thickness 1 in
- Wire Gauge 22 AWG
Supported Applications
The Omega LVP-51 series consists of non-intrusive RF capacitance level switches designed for liquid detection through plastic or fiberglass tank walls. These sensors generate a high radio frequency signal from an electrode on the exterior to detect changes in dielectric value, determining liquid presence without penetrating the vessel wall. The series is intended for liquids with a dielectric constant between 20 and 80 (with some sources noting capability down to 10 units) and conductivity greater than 100 μS/cm.
Documented applications include:
- Liquid level detection in non-metallic tanks
- Ultrapure and sanitary applications using weld-on fittings for polyethylene, fiberglass, or polypropylene vessels
Operating Conditions & Performance
The LVP-51 series operates within a temperature range of -40° to 80°C (-40° to 176°F). The sensor is rated for tank wall thicknesses up to 25.4 mm (1") and requires non-metallic mounting surfaces; installation on metallic tanks or within 6" of any metallic object is prohibited.
Performance specifications include:
- Accuracy: ±1 mm (0.04") in water
- Repeatability: ±0.5 mm (0.02") in water
- Dielectric Range: 10 to 80 dielectric units @ 1 MHz (or > 20 constants per manual)
- Power Supply: 12-36 VDC with maximum consumption of 25 mA
The enclosure is constructed from Polysulfone and carries a NEMA 4X (IP65) or NEMA 4 (IP65) rating, described as splash-proof and chemical resistant. The sensor is not designed for immersion.
Configuration Options
The series offers configurable mounting options and output signals to accommodate specific installation requirements:
- Mounting Brackets/Fittings: Available in Polyethylene (PE) as model LVP-91 or Polypropylene (PP) as model LVP-92. Fittings utilize 3M adhesive for temporary holding during welding, glazing, or strapping.
- Cable Options: Standard length is 3 m (10') with a shielded 4-conductor #22 AWG cable. Extended lengths are available: add suffix '-25' for 7.62 m (25') or '-50' for 15.24 m (50'). Maximum supported length is noted as 305 m (1000').
- Output Signals:
- Selectable NO/NC SPST mechanical relay output (60 VA, 1A maximum; CE rated at 60 Vac/Vdc @ 1 A)
- FET switch and 4-20 mA sensor outputs
- Single LED for calibration and liquid status feedback
- Electrical Connection: Single, 1/2" NPT conduit entrance.
Key Product Differences
The primary model LVP-51-R is the non-intrusive capacitance sensor with a Polysulfone housing. Distinctions in the series are defined by mounting hardware and cable configuration:
- LVP-91 vs. LVP-92 Fittings: The LVP-91 fitting is made of PE, while the LVP-92 fitting is PP; both measure 6.4 x 6.4 cm (2.5" x 2.5").
- Cable Length Variants: Standard units include a 3 m cable; variants with suffixes '-25' or '-50' provide extended lengths for additional cost.
PDFs & Manuals
Show Ratings & Reviews
Can this sensor be modified to detect the difference between an aqueous and an organic solvent or can it only detect wet vs dry?
Unfortunately, no. You may want to look at continuous level monitors, such as ultrasonic for non-contact. https://www.omega.com/en-us/sensors-and-sensing-equipment/level/ultrasonic-sensor/p/LVU201A
Ultrasonics do have problems with fumes or foam. If this is the case then review:
https://www.omega.com/en-us/process-switches/level-switches/capacitance-and-conductivity-switches/p/LV3000-LV4000
Date published: 2019-06-26