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    Capacitive Fuel Level Sensor, 100-1400mm

    The capacitive fuel level sensor provides accurate level measurement with an optional measuring range of 100–1400mm. Featuring 0.01mm resolution and measurement accuracy of ±1% or 0.5%, it delivers reliable liquid level detection for various industrial applications. Supporting 5V and 9–36VDC power supplies.
    SKU: SISCO-CLS-GLTV7S
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    $194.31
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    🚚 Free shipping
    🔙 30-day returns
    📅 Delivery: 7-12 days
    Overview


    Stainless Steel capacitive fuel level sensor is an industrial-grade device designed for accurate liquid level measurement under various temperature and pressure conditions. Supporting a wide operating temperature range of -35℃ to 70℃ and a pressure range of -0.1MPa to 0.4MPa, the sensor features a durable stainless steel construction with IP67 protection for reliable performance in harsh environments. With low power consumption of less than 10mA, it is suitable for long-term liquid monitoring applications in industrial tanks, reservoirs, and fluid control systems.

     

    Capacitive fuel level sensors

    Structural Design & Performance Features

    • Atmospheric Vent Hole Design: Stainless Steel capacitive fuel level sensor features a top vent hole structure that improves air pressure balance and liquid flow, enabling faster medium entry, stable measurement, and quick signal response.
    • Stainless Steel Integrated Housing: Built with a full stainless steel body, the capacitive fuel level transmitter offers high mechanical strength, corrosion resistance, and durability. It is compatible with fuels, chemicals, beverages, and other liquid media in demanding environments.
    • Laser Marking Identification: Laser-engraved model, specifications, and serial numbers provide clear product identification, supporting easy maintenance, tracking, and quality management.
    Capacitive fuel level sensor

    Smart Monitoring & Safety Protection

    • Reverse Polarity Protection: Integrated protection circuitry prevents damage caused by incorrect wiring and improves the operational safety of the sensor.
    • GPS Remote Monitoring: The capacitive fuel level sensor supports external GPS modules for real-time liquid level data transmission to management systems, enabling remote monitoring of fuel tanks, storage tanks, fuel trucks, and agricultural equipment.


    Applications

    Stainless steel capacitive fuel level sensor is widely used for liquid level monitoring in fuel tanks, storage tanks, and industrial containers. It supports detection of various liquids, including gasoline, diesel, hydraulic oil, chemical reagents, beverages, and water. Common applications include construction machinery, chemical storage facilities, beverage production systems, and water storage equipment for automatic liquid level control and management.

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    Specs

     

    Model SISCO-CLS-GLTV7S
    Measuring Range 100~1400mm Optional
    Power Supply 5V, 9~36VDC
    Accuracy ±1%, 0.5%
    Resolution 0.01mm
    Output Mode 4~20mA, 0~5V, RS485, RS232
    Ambient Temperature -35~70℃
    Rod Diameter Φ16
    Weight 2kg
    Pressure Range -0.1MPa~0.4MPa
    Operating Current <10mA
    Material Stainless Steel
    Protection Class IP67
    Explosion-Proof Grade Exd II CT5
    Mounting Method Standard Flange/Threaded Mount M20×1.5 Optional


    Dimension (unit: mm)

    Capacitive fuel level sensor dimension

    FAQs

    Q1: What types of liquids can the capacitive fuel level sensor detect?
    A1: The capacitive fuel level sensor can detect various liquids, including diesel, gasoline, hydraulic oil, lubricating oil, chemical solutions, and water. It is suitable for monitoring fuel, oil, and other compatible liquid media in tanks, storage containers, machinery, and industrial systems. Detection performance may vary depending on the liquid's dielectric properties, so proper calibration is recommended for different applications.

    Q2: Can the capacitive fuel level sensor be used for remote fuel monitoring?
    A2: Yes, the capacitive fuel level sensor can be used for remote fuel monitoring because it is integrated with GPS modules. It can collect real-time fuel level data and transmit information to a remote platform, enabling online monitoring of fuel tanks, fuel trucks, generators, and construction equipment. This helps improve fuel management, reduce manual inspections, and support digital monitoring applications.

    Q3: Can a capacitive fuel level sensor be used for diesel tanks?
    A3: Yes, the capacitive fuel level sensor is suitable for diesel tank monitoring. Its stainless steel construction and stable sensing performance make it suitable for diesel tanks used in trucks, generators, construction machinery, and industrial equipment.

    Tips: What is the operating temperature range of the capacitive fuel level transmitter?  

    The capacitive fuel level transmitter operates within a temperature range of -35℃ to 70℃. This wide operating temperature capability allows stable fuel level monitoring in outdoor and industrial environments.

    Warranty

    Thank you for buying industrial test and measurement equipment on SISCO.com, all products sold by SISCO and the partner cover a 12 months warranty, effective from the date of receiving the products.


    What is covered?

    SISCO is responsible for providing free spare parts, and free technical support to assist the customer to repair the defective products until the problem is solved.


    What is not covered?

    • Product purchased from anyone other than a SISCO store or a SISCO authorized reseller.
    • Expendable parts.
    • Routine cleaning or normal cosmetic and mechanical wear.
    • Damage from misuse, abuse or neglect.
    • Damage from use of parts other than SISCO approved.
    • Damage from use outside the product’s usage or storage parameters.
    • Damage from use of parts not sold by SISCO.
    • Damage from modification or incorporation into other products.
    • Damage from repair or replacement of warranted parts by a service provider other than a SISCO authorized service provider.
    • Damage caused by the application environment not meeting the product usage requirements and the failure to perform preventive maintenance.
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