All products
Better Control Starts with Better Measurements
Every refrigeration system depends on two fundamental parameters:
Pressure and temperature.
Almost every control decision, performance calculation and safety function is based on these measurements. If the data is inaccurate, the control strategy will be inaccurate as well.
That is why sensor selection matters.
At HB Products, our Pressure and Temperature Sensors are designed specifically for demanding industrial and commercial environments where reliability, accuracy and long-term stability are essential.
Because control systems can only perform as well as the measurements they receive.
Fast Pressure Measurements Create Faster Decisions
Pressure conditions inside a refrigeration system can change rapidly.
The faster a sensor reacts, the faster the control system can respond.
Our HBPS Pressure Sensor delivers a response time below 2 milliseconds, providing near-instant feedback to the control system. This enables more accurate pressure monitoring and improves the ability to react to changing operating conditions.
The sensor is available in three pressure ranges:
- 0 to 6 bar
- -1 to 25 bar
- -1 to 200 bar
Despite its compact design, the sensor is built to withstand pressures up to 200 bar and operates reliably in temperatures ranging from -40°C to +125°C.
For refrigeration engineers, that means one sensor platform covering a wide range of applications.
Reliable Temperature Measurement for Critical Processes
Temperature is one of the most important variables in refrigeration.
And often one of the most underestimated.
Our HBTS Temperature Sensor is designed according to DIN 60751 standards and is available in both PT100 and PT1000 versions.
With sensor lengths of 60 mm and 90 mm and a pressure rating of up to 150 bar, the HBTS provides accurate and reliable measurements in demanding process conditions.
The sensor is supplied with a sensor well, ensuring secure installation while simplifying future service operations.
When Analog Output Is Required
Many industrial systems rely on direct analog communication with PLCs and control systems.
For these applications, the HBTS-TR combines temperature measurement with an integrated 4–20 mA transmitter.
The output range can be configured using HB Tool software, allowing the sensor to be adapted precisely to the requirements of the application.
The result is a flexible temperature measurement solution that integrates directly into existing automation systems without additional signal conversion equipment.
And because the sensor element can be replaced without evacuating the refrigeration system, maintenance becomes significantly easier and less costly.
Measure Exactly Where It Matters
Average temperatures rarely tell the full story.
The most important temperature is often found at a specific location—a hot spot, a critical component or an area where process conditions vary.
Our PT1000-based temperature sensors support both direct measurement and remote cable-mounted measurement, allowing installation exactly where the most valuable information can be obtained.
The sensors generate a standard 4–20 mA signal and can be easily integrated into PLC-based control systems.
Simple installation. Accurate measurements. Better process visibility.
Designed for Industrial Reality
Sensor specifications are easy to discuss in theory.
What matters is how they perform in real operating conditions.
Our Pressure and Temperature Sensors are built for environments where equipment is exposed to vibration, temperature fluctuations, moisture and demanding process conditions every day.
Robust materials, industrial-standard connections and proven sensor technologies ensure reliable performance over the long term.
Because unexpected sensor failures create more than measurement problems.
They create operational problems.
Accurate Measurements Drive Better Performance
Pressure and temperature measurements are often viewed as basic instrumentation.
In reality, they form the foundation of every control strategy in a refrigeration system.
Accurate measurements improve efficiency.
Reliable measurements improve stability.
Fast measurements improve control.
And when those three factors come together, refrigeration systems perform better.
It all starts with the quality of the data.

