FTP10
Integrated flow, temperature, and pressure sensor
The schematic diagram of the principle of the flow pressure temperature sensor is shown. The sensor probe is equipped with a pressure sensor, Hall switch, temperature sensor, and an impeller supported by bearings at the center of the pipeline. When the fluid passes through the pipeline, it impacts the impeller blades, causing the impeller to rotate. The rotational speed of the impeller is proportional to the fluid flow rate. The liquid flow drives the impeller to rotate, and the rotating impeller causes the induction Hall switch to generate a frequency signal proportional to the flow rate. The transmitter then converts the frequency signal into an electrical signal, and the pressure sensor outputs a pressure signal, while the temperature sensor outputs a temperature signal.
- application
- The integrated flow temperature pressure sensor is suitable for industries such as thermal heating
- petrochemicals
- power
- water treatment
- and light manufacturing. It can perform multi parameter online monitoring of gases
- liquids
- saturated and superheated steam in pipelines. Commonly used in heat exchange pipelines
- process pipelines
- and energy metering stations to collect real-time flow
- temperature
- and pressure data. The equipment only needs to be installed with a single opening
- suitable for industrial automation control
- energy consumption accounting
- and working condition adjustment
- and can meet the data collection needs of various pipeline process monitoring and system safety operation and maintenance.
- Functional characteristics
- The flow temperature pressure integrated sensor adopts an integrated design
- which can synchronously measure the three parameters of flow
- temperature
- and pressure in real time
- eliminating the need for multiple instruments to be installed separately. Based on the principle of vortex street measurement
- it has no mechanical moving parts
- is wear-resistant
- anti blocking
- high stability
- and low failure rate. The device has fast response speed
- high measurement accuracy
- good anti vibration and anti-interference capabilities
- and supports standard signal output. The whole machine is made of stainless steel structure
- resistant to high temperature and high pressure
- and suitable for various media such as gas
- liquid
- and steam. Easy to install and require minimal maintenance
- it can meet the needs of industrial automation measurement and control
- energy consumption statistics
- and pipeline safety monitoring.
describe
The schematic diagram of the principle of the flow pressure temperature sensor is shown. The sensor probe is equipped with a pressure sensor, Hall switch, temperature sensor, and an impeller supported by bearings at the center of the pipeline. When the fluid passes through the pipeline, it impacts the impeller blades, causing the impeller to rotate. The rotational speed of the impeller is proportional to the fluid flow rate. The liquid flow drives the impeller to rotate, and the rotating impeller causes the induction Hall switch to generate a frequency signal proportional to the flow rate. The transmitter then converts the frequency signal into an electrical signal, and the pressure sensor outputs a pressure signal, while the temperature sensor outputs a temperature signal.