Brief Introduction
The E3CL Thermal flow meter offers effortless installation, exceptional accuracy and comprehensive data collection for precise energy monitoring in industrial applications.
Product Introduction
1)Effortless Installation: With its external clamp-on design, the E3CL Thermal flow meter eliminates the need for disruptive pipe cutting, simplifying the installation process and minimizing downtime during setup.
2) Exceptional Accuracy: Engineered for accuracy, the E3CL Thermal flow meter delivers reliable measurements in industrial settings, ensuring that you can trust the data collected for critical energy monitoring and management tasks.
3)User-Friendly Interface: Equipped with an intuitive LCD display, the E3CL E3CL Thermal flow meter allows for easy monitoring and configuration, with the flexibility to customize unit settings to suit specific requirements, providing a seamless user experience.
4)Comprehensive Data Collection: By measuring both inlet and outlet water temperatures, the E3CL enables precise calculation of heat consumption, empowering users to monitor energy usage effectively and make informed decisions to optimize energy efficiency.
Product Parameter
1) Body Parameters
Wring diagram

|
Function |
Identifier |
Color |
|
Power Supply (10~36VDC) |
+ |
Brown |
|
- |
Black |
|
|
RS485 |
A |
Green |
|
B |
White |
|
|
Optional (4-20mA\OCT&Relay) |
+ |
Red |
|
- |
Yellow |
2)Appearance

3)Technical Parameters
|
Performance Index |
|
|
Flow velocity |
0.03~5.0m/s |
|
Nominal diameter |
DN20~DN80 |
|
Accuracy |
±2% |
|
Temperature range |
4~95℃ |
|
Temperature difference range |
3~75K |
|
Temperature resolution |
0.01℃ |
|
Measuring medium |
Water |
|
Pipe Material |
Carbon Steel, Stainless Steel, Copper, PVC |
|
Functional Index |
|
|
Input interface |
2*PT1000 Clamp-on temperature sensor 32~212℉(0~100℃) |
|
Communication Interface |
RS485(standard); Support FUJI Protocol and MODBUS Protocol. |
|
Output |
4-20mA (for E3CL), OCT&Relay (for E3RO) |
|
Power supply |
10~36VDC/500mA |
|
Keypad |
4 touch keys |
|
Display screen |
1.44 " LCD colorful screen, resolution 128 * 128 |
|
Temperature |
Transmitter installation ambient temperature: 14 °F to 122 °F ( –10℃ ~ 50℃ ) Transducer measures medium temperature: 32 °F to 140 °F ( 0℃ ~ 60℃ ). |
|
Humidity |
Relative humidity 0~99%, No condensation |
|
IP |
IP54 |
|
Physical Characteristics |
|
|
Transmitter |
Integrated |
|
Transducer |
Clamp on |
|
Cable |
φ5 six core cable, standard length: 2m |
Product Applications

Application:HVAC system
Model name: E3CL
Pipe material: Stainless steel
Pipe size: DN80
Liquid: Chill Water
Product Qualification
For more than three decades, Gentos has been at the forefront of manufacturing top-notch, competitively priced ultrasonic flow meters, earning a reputation for excellence. We are industry leaders in innovation and eco-friendly products, striving to elevate industry standards while keeping costs reasonable.
As our product line continues to evolve, we remain committed to enhancing functionality and pushing the boundaries of quality and performance. Throughout the process of designing new products, we actively seek input from our valued customers, recognizing their invaluable contributions in shaping our success. It is through this collaborative approach that we have carved out a distinctive position in an industry that demands a seamless fusion of safety and performance.
Company environment display:



Certificate display:




Deliver, Shipping, and Serving



Shipping
Nurturing seamless customer experiences, Gentos has implemented an expedited delivery system, ensuring prompt product acquisition. Effortlessly, Gentos expedites order processing and swift product dispatch within an efficient 2 to 3-day window. Featuring an extensive selection of transportation and express delivery options, Gentos caters to the unique preferences of each customer.
FAQ
Q1: How does a thermal flow meter work?
A1: A thermal flow meter operates by measuring the heat dissipation or thermal conductivity of a fluid flowing through a pipe to determine the flow rate. It typically uses a heated sensor and one or more temperature sensors to calculate the flow rate based on the difference in temperature between the heated sensor and the fluid.
Q2: What is a thermal meter used for?
A2: Thermal flow meters are commonly used for measuring the flow rate of gases and liquids in various industrial applications. They are particularly useful in applications where traditional flow meters may not be suitable, such as in high-temperature, high-pressure, or corrosive environments. Thermal flow meters are employed in industries such as oil and gas, chemical processing, HVAC, power generation, and water treatment for tasks such as energy monitoring, process control, and efficiency optimization.
Q3: What is a thermal conductivity flow meter?
A3:A thermal conductivity flow meter is a type of flow meter that operates based on the principle of thermal conductivity. It measures the flow rate of a fluid by sensing the heat transfer between a heated sensor and the fluid. As the fluid flows past the sensor, it carries away heat, and the flow rate is determined by the amount of heat transfer. Thermal conductivity flow meters are commonly used for measuring the flow of gases and liquids in various industrial applications.
Q4:What is the principle of heat flow meter?
A4:The principle of a heat flow meter involves measuring the heat transfer through a material or substance to determine properties such as thermal conductivity or heat flow rate. This is typically done by applying a known heat flux to one side of the material and measuring the temperature difference across it. By analyzing the heat transfer and temperature gradient, the heat flow meter can calculate the thermal properties of the material being tested. Heat flow meters are used in various applications such as building insulation testing, material characterization, and thermal performance analysis.
Q5: What is the thermal mass flow measurement?
A5: Thermal mass flow measurement is a technique used to measure the flow rate of a fluid (gas or liquid) based on the thermal properties of the fluid. In this method, the flow rate is determined by measuring the amount of heat required to maintain a constant temperature difference between two temperature sensors in the flow stream.
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