Measure Hydraulic Pressure


Hello dear friends,

Hydraulic transmitters are used to measure and control hydraulic pressure. They are devices that convert pressure measurements into analog electrical output signals. Hydraulic pressure sensors or transducers provide accurate and precise measurements over long periods of time. The hydraulic pressure sensors we offer are suitable for hydraulic applications and use hermetically sealed thin-film measurement coils with a high-level output circuit. This ensures that the pressure sensor is suitable for demanding environments, including hydraulic applications and other industries.

To operate correctly, hydraulic pressure sensors, like other sensors, require an electrical input source (DC voltage). The input voltage varies, but for hydraulic pressure sensors, it is typically between 10-30V. Hydraulic pressure sensors work by producing different values in their output according to a change in system pressure. The most common output type for these sensors is 4-20mA.

Features and Benefits of Hydraulic Pressure Sensors:

- Highly reliable
- Compact and robust
- Resistant to shocks and vibrations
- Long-lasting - most of our pressure sensors offer more than 10 million cycles
- High performance
- Wide temperature range - typically -40 ... +125


Typical applications for hydraulic pressure sensors include:

- Brake systems
- Mobile hydraulics
- Hydraulic systems
- Diesel and gas engines

We offer several types of pressure transmitters suitable for hydraulic applications, but the most common is made of high-quality stainless steel with additional EMI/RFI protection. These transmitters are resistant to shock and vibration, and suitable for use in high temperatures up to 125 °C. Our sensors can be used in various configurations and can measure absolute, gauge, or vacuum pressure.


The sensors are mainly available in 0-400, 0-700 bar range and have some considerations to take into account when using them.

The first consideration is the mounting area, and it is important to make sure that the selected model's diameter and thread pitch are compatible with your machine. The second consideration is the measurement range, and it is essential to use a sensor with a suitable measurement range for the machine's pressure. Using a sensor with a measurement range that is not suitable for the machine's pressure can damage the mechanical equipment and affect the electrical signals.

The third consideration is the power supply and output type, and it is crucial to ensure that the sensor's power supply voltage is compatible with your machine's power supply. Also, each product has its electrical specifications listed in its description.

All the
pressure sensor models available on their website are designed to be directly connected to AC motor speed control devices. Therefore, if you have a pressure stabilization application, you can choose an inverter from the "Standard speed control devices" section and connect it with a suitable sensor model.

Each model has a detailed product page with information on power supply voltages, output types, input types, and operating modes. It is also noted that their pressure sensors, like all other products on their website, are designed for industrial automation machines and are equipped with galvanic isolation to protect against potential interference sources like frequency drives, power supplies, and small and large induction motors.

+ Pressure sensor main page

+ Reading Hydraulic Pressure

+ PLC for Hydraulic Pressure -


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