Image name

Monitoring sensor

In the current situation where textile factory workers are becoming increasingly scarce, enterprises are placing greater and greater emphasis on the comfort of workshop environments. Accurately and reliably controlling the four key parameters—workshop temperature, humidity, cleanliness, and air velocity—is attracting increasing attention from customers.
  • Product Description
  •  

    In the current situation where textile factory workers are becoming increasingly scarce, the comfort of workshop environments has been receiving growing attention from enterprises. Workers’ comfort is related to the following factors:

    (1) Air temperature in the workshop

    (2) Relative humidity of the air in the workshop

    (3) Dust concentration in the workshop air

    (4) Airflow velocity near the human body

    (5) Maintain the surface temperature of internal components and machine surfaces.

    (6) Human activity levels and clothing conditions

    Accurately and reliably controlling the four parameters—workshop temperature, humidity, cleanliness, and air velocity—is receiving increasing attention from customers.

    Therefore, the durability and sensitivity of various sensors are extremely critical.

     

     

     

    Temperature and humidity sensor

    For measurement in air-conditioned rooms and ducts. Features sensor protection specifically designed for textile production environments.

    ● Range: 0–100% RH and 0–50 °C

    ● Accuracy: ± 1.5% RH, ± 0.2 °C

    ● Output signal: 2 x 0(4)-20mA / 0(2)-10V

    ● Input power: 24VDC or 220VAC

    The following are just a few examples illustrating some of the sensors we commonly use.

     

     

    Temperature sensor

     

    Differential pressure sensor

     

    Wind speed sensor

     

    Submersible level sensor

    The submersible level sensor uses a high-performance pressure sensor as the sensing element. It converts the liquid level depth into a current or voltage signal via an electronic circuit, and the output signal is directly proportional to the liquid depth.

    Simply immerse the sensor directly into the liquid to measure the liquid height from the transmitter’s tip to the liquid surface.