High-precision 316L stainless steel conductivity sensor, engineered for durable and stable water quality monitoring in industrial environments.
Close-up view of a professional 2-electrode conductivity probe, highlighting its high-response, corrosion-resistant structure for liquid analysis.
Industrial conductivity sensor monitoring flow in a reverse osmosis (RO) water treatment system, ensuring optimal permeate quality control.
High-precision 316L stainless steel conductivity sensor, engineered for durable and stable water quality monitoring in industrial environments.
Close-up view of a professional 2-electrode conductivity probe, highlighting its high-response, corrosion-resistant structure for liquid analysis.
Industrial conductivity sensor monitoring flow in a reverse osmosis (RO) water treatment system, ensuring optimal permeate quality control.

LT5500 Stainless Steel 316L Conductivity Sensor for Pure Water

High-precision 316L stainless steel conductivity sensor. A durable, industrial-grade solution for accurate water quality monitoring from a reliable manufacturer.

● High-Precision 2-Electrode Design: Engineered specifically for superior measurement accuracy in low-to-medium conductivity water applications.
● Durable 316L Stainless Steel Construction: Crafted with high-quality 316L stainless steel to provide exceptional longevity, mechanical strength, and corrosion resistance for demanding industrial processes.
● Broad Measurement Flexibility: Covers a wide conductivity range (0-20,000 μS/cm) with selectable constants to meet diverse application requirements.
● Industrial-Grade Reliability: Features an IP68 waterproof rating and robust temperature and pressure tolerance, ensuring stable performance in harsh, continuous operating environments.

2-Electrode Stainless Steel EC Probe Features

The LT5500 is a professional Stainless Steel 316L Conductivity Sensor for Pure Water designed for high-accuracy monitoring. This robust industrial conductivity sensor features a 2-electrode design for low-to-medium range measurements. Built with durable 316L stainless steel and an IP68 rating, it withstands harsh conditions with ease. Offering precise data from 0.01 to 20,000 μS/cm, it supports critical applications in wastewater treatment and RO equipment. With customizable insertion depths and high-pressure tolerance up to 8 Bar, the LT5500 provides system integrators with a reliable, long-lasting solution for demanding process environments.

Conductivity Sensor Measurement Range Technical Specifications

Measuring range: 0.01~20μS/cm; 0.1~200μS/cm; 1~2000μS/cm; 10~20000μS/cm
Measurement Accuracy: ±1%
Temperature Range: 0~100℃
Pressure Resistance: 0~8Bar
Temperature Compensation Type: Optional NTC10K, NTC2.252K, NTC22K, PT100, PT1000, etc.
Response Time: <10S
Mounting Thread: G3/4
Housing Material: 316L Stainless Steel
Insertion Depth: 60mm
Cable Connection: Integrated direct connection type

Industrial Conductivity Electrode Applications

The LT5500 conductivity sensor is engineered for high-precision, long-term stability across diverse industrial environments. Its 316L stainless steel body and IP68-rated design allow it to perform reliably in applications ranging from ultra-pure water systems to demanding industrial wastewater treatment.

1. Ultra-Pure and Process Water Systems

● Reverse Osmosis (RO) Equipment: The LT5500 is ideal for monitoring permeate and concentrate levels in RO systems. Its 2-electrode design provides the high sensitivity required to detect minor changes in conductivity, ensuring system efficiency and membrane health.
● Pure Water & Deionized (DI) Water: Designed for high-accuracy in low-conductivity ranges (0-20 µS/cm), this sensor acts as a critical quality control tool in semiconductor manufacturing, pharmaceutical production, and laboratory water purification, where water quality consistency is paramount.

2. Environmental and Municipal Water Monitoring

● Surface Water Analysis: Deployed in lakes, rivers, and environmental monitoring stations, the LT5500’s rugged, corrosion-resistant 316L housing ensures stable measurements even in exposed, unpredictable natural environments.
● Tap Water & Secondary Water Supply: Perfect for monitoring distribution networks and high-rise building water tanks. The sensor provides continuous, maintenance-free data, ensuring water safety and compliance with municipal quality standards.

3. Industrial Process and Wastewater Treatment

● Wastewater Treatment Plants: Unlike standard sensors, the LT5500’s 316L stainless steel construction offers superior mechanical strength and chemical resistance. It is highly effective for monitoring effluent and discharge streams where standard materials might degrade.
● Circulating Cooling Water: In industrial cooling loops, the sensor prevents scale and corrosion by accurately monitoring conductivity. Its resistance to pressure (up to 8 Bar) and high temperatures makes it the preferred choice for closed-loop, harsh industrial environments.

Extra Information

Robust 316L Stainless Steel Conductivity Sensor Design

The LT5500 2-Electrode Conductivity Sensor is an industrial-grade solution engineered for high-precision water quality monitoring across low-to-medium range applications. Constructed from robust 316L stainless steel with an IP68 waterproof rating, this sensor delivers long-term durability and reliable, repeatable data within a measurement range of 0 to 20,000 μS/cm. Designed to withstand demanding conditions, it features exceptional temperature tolerance up to 100°C and pressure resistance up to 8 Bar, ensuring stable performance in critical process environments where measurement accuracy and hardware longevity are paramount.

Versatile Industrial Applications and Usage

Versatility is the hallmark of the LT5500, making it an ideal choice for diverse sectors ranging from ultra-pure water systems and reverse osmosis (RO) equipment to municipal wastewater treatment and secondary water supply networks. To facilitate seamless integration into existing process infrastructures, the sensor offers extensive customization options, including flexible insertion depths, various mounting configurations, and cable extensions up to 30 meters. By combining superior material quality with highly adaptable design specifications, the LT5500 provides a maintenance-efficient and precise instrument for complex fluid management systems.

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