Precision Analysis
Drinking Water of TDS

Engineered for the most demanding water quality monitoring environments, our state-of-the-art TDS and pH instrumentation provides unparalleled accuracy for drinking water of tds analysis, ensuring global safety standards and regulatory compliance through advanced sensor technology and real-time data integration.

5000+
Annual Output
120+
Countries Served
7 Days
Sample Lead Time
99.9%
On-Time Delivery

Industry-Leading Precision
& Pure Water Analysis

Setting the global benchmark for dissolved solids monitoring in municipal and industrial drinking water.

As a premier manufacturer in the field of environmental monitoring instrumentation, we specialize in the precision measurement of drinking water of tds. Our equipment is recognized for its exceptional stability and long-term reliability, positioning us as a critical partner for municipal water works and pharmaceutical grade water purification plants worldwide.

Our technical advantage lies in the integration of automatic temperature compensation and three-point calibration protocols. By minimizing drift and maximizing resolution, our sensors provide real-time, lab-grade data for drinking water of tds, allowing operators to maintain strict quality control over total dissolved solids and pH levels with minimal manual intervention.

The Engineering
Pillars of Accuracy

Combining advanced materials science with cutting-edge digital signal processing.

01

Advanced Sensor Design

High-performance compound electrodes designed for long-term immersion in varying flow velocities.

  • PTFE Membranes: High resistance to pollution and chemical interference.
  • NPT Threading: Standard 3/4" NPT joints for seamless industrial installation.
  • Low Drift: Optimized electrode chemistry for minimal signal decay.
02

Intelligent Calibration

Dynamic calibration systems that eliminate human error and ensure traceability.

  • Three-Point Auto: Automatic identification of standard buffer solutions.
  • Temp Compensation: Integrated NTC-10K and PT1000 support for precise thermal correction.
  • Error Detection: Built-in "ERR" prompts for rapid electrode failure identification.
03

Digital Connectivity

Seamlessly integrate water quality data into your SCADA or PLC systems.

  • Modbus RS485: Industry standard protocol for long-distance data transmission.
  • 4-20mA Output: Analog current output for legacy system compatibility.
  • Relay Alarms: Dual-threshold high/low limit alarms for automated safety shutdowns.

Analytical Metrics
& Performance Data

Quantitative evidence of our instruments' superiority in water pollution control.

Market Share by Application

Technical Performance Benchmark

Technical Parameters
& Specifications

Detailed engineering specifications forDrinking Water TDS/pH Transmitters.

Parameter
Range/Value
Resolution
Accuracy
Compensation
Output
pH Measurement
0.000~14.00pH
0.02pH
±0.1pH
0~120℃
4-20mA/RS485
Power Supply
DC-24V / DC-12V
0.5A
Standard
N/A
DIN Install
Flow Velocity
≤3m/s
N/A
±0.1m/s
N/A
N/A
Pressure Limit
≤0.5MPa
N/A
±0.01MPa
N/A
N/A
Cable Distance
5m (Up to 40m)
N/A
Standard
N/A
Shielded
Calibration
Three-Point
Automatic
±0.02 pH
Manual/Auto
LCD Display
Environmental
0~50℃
≤85% RH
Standard
N/A
Industrial
Dimensions
92*76*59mm
N/A
±1mm
N/A
DIN Rail

Real-World
Impact

Deployment success stories in drinking water of tds monitoring across various continents.

Nordic Municipal Water

City-Wide TDS Monitoring

Implemented a network of 50 sensors to monitor the dissolved solids of drinking water in real-time across the urban grid.

Accuracy: ±0.1 pH Efficiency: +25%

Global Pharma Corp

Ultrapure Water Control

Integration of high-precision pH and TDS transmitters for critical pharmaceutical ingredient synthesis.

Reliability: 99.9% Compliance: FDA Ready

Southeast Asia Desal Plant

Brackish Water Treatment

Deployment of rugged sensors capable of handling high salt concentrations during the desalination process.

TDS Range: High Durability: 5+ Years

Alpine Bottling Co.

Mineral Water Quality

Continuous TDS monitoring ensuring consistent mineral profiles for a premium bottled water brand.

Stability: High Drift: <0.1%

Amazonian Eco-Resort

Remote Water Filtration

Solar-powered monitoring of remote drinking water filtration systems using low-power Modbus transmitters.

Power: Low Remote: OK

Metro Industrial Park

Wastewater Recirculation

Continuous loop monitoring of recycled water to ensure TDS levels are below regulatory limits for non-potable use.

Flow Rate: 3m/s Alarm: Real-time

Industry
Applications

Tailored solutions for demanding water quality monitoring environments.

Municipal Water Works

City-wide monitoring of drinking water of tds to ensure compliance with health regulations and safety standards.

Pharmaceutical Labs

Ultra-high purity water monitoring where zero-tolerance for contamination is mandatory for drug synthesis.

Desalination Plants

Real-time monitoring of reverse osmosis membrane efficiency by measuring TDS gradients.

Beverage Production

Maintaining strict TDS profiles for consistency in mineral water and soft drink bases.

Power Generation

Monitoring boiler feedwater conductivity to prevent scaling and equipment corrosion.

Agricultural Irrigation

Optimizing nutrient delivery in hydroponics through precise EC/TDS monitoring.

Quality Assurance
& Export Standards

Precision Calibration Guarantee

Every instrument undergoes a rigorous three-point calibration process before leaving the factory, ensuring that drinking water of tds readings are accurate to within ±0.1 pH/TDS equivalent.

Industrial Grade Durability

Our electrodes are constructed with PTFE and chemical-resistant plastics, capable of withstanding pressures up to 0.5MPa and flow velocities of 3m/s.

Global Protocol Compliance

Fully compatible with Modbus RS485 and 4-20mA standards, allowing for seamless integration into worldwide SCADA architectures.

Trust Verified

Our commitment to quality is backed by international certifications and a track record of excellence in water quality monitoring.

✓ ISO 9001:2015 ✓ CE Certified ✓ RoHS Compliant

Frequently Asked
Questions

Expert answers to common technical and commercial inquiries regarding drinking water of tds.

01

How often should I calibrate the drinking water of tds sensors?

For municipal drinking water, we recommend a three-point calibration every 30 days. However, in highly fluctuating industrial environments, weekly checks are advised to ensure maximum accuracy.

02

Does temperature affect the TDS and pH readings?

Yes, temperature significantly impacts conductivity. Our instruments feature integrated automatic temperature compensation (NTC-10K/PT1000) to normalize readings to 25°C.

03

What is the maximum distance for the RS485 signal?

Using shielded twisted-pair cables, our Modbus RS485 output can reliably transmit data up to 1200 meters, making it ideal for large-scale municipal water treatment plants.

04

How do I clean the electrodes to avoid pollution?

We recommend using a 10% hydrochloric acid solution to remove calcium precipitates and surface active agents for greasy pollutants, as detailed in our maintenance manual.

05

What does the "ERR" message on the display mean?

The "ERR" signal indicates a calibration failure. This usually occurs if the buffer solution is contaminated or the electrode has reached the end of its service life.

06

Can these sensors be installed in high-flow pipes?

Yes, our sensors are designed for flow velocities up to 3m/s. We recommend installing them where flow is steady and air bubbles are minimized to avoid noise.

Optimize Your Drinking Water Analysis

Upgrade your facility with the industry's most reliable drinking water of tds monitoring solutions today.

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