
The Horizontal Wave Force Sensor is designed for measuring horizontal force
applied to rigid structures. The sensor uses a pressure-based sensing
principle to measure the dynamic hydrostatic pressure acting on a diaphragm.
The sensor can measure both applied pressure and vacuum/reverse pressure.
It can be easily mounted on the walls of structures, and its output can be
connected to a data logger for recording and analysis.
The sensor measures the dynamic hydrostatic pressure acting on a diaphragm.
The pressure applied to the diaphragm is converted into an electrical
output that can be recorded through a data logger.
Both applied pressure and vacuum/reverse pressure can be measured using
the sensor.
The sensor is specifically designed for measuring horizontal force applied
to rigid structures. It can be mounted on the walls of the structure to
measure the dynamic pressure acting on the sensing diaphragm.
The pressure-based sensing system measures dynamic hydrostatic pressure.
Both applied pressure and vacuum/reverse pressure can be measured, allowing
the sensor to capture pressure variations acting on the structure.
The output of the sensor can be connected to a data logger. This allows
the measured pressure and corresponding horizontal force information to
be recorded for further analysis.
The sensor has a stainless steel casing designed for the pressure
measurement application. Its diaphragm-based sensing arrangement allows
dynamic hydrostatic pressure acting on the rigid structure to be measured.
The sensor can be easily mounted on the walls of structures. Once installed,
the output can be connected to a data logger for recording the measured
pressure.
The sensor provides a 0 to 5 Volt output that can be fed to a data logger
for recording and analysis of the measured pressure.
Tell us what you need to measure, where it will be deployed and the application. Our team can help identify an existing EMCON solution or discuss a custom-developed system.