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Ellenex Pressure Monitoring Solutions: Enhancing your Energy Utilisation in Building Management

Writer's picture: Duncan MarwickDuncan Marwick
Do you know building operations account for over 30% of the global energy demands, nearly 28% of the global energy-related emissions from electricity!
Pressure monitoring solutions are critical for the energy efficiency for building managements, as it involves in both the HVAC purposes and water and wastewater utilities

The Wide Recognition of Energy Utilisation in Building Operations

Worldwide, building operations contribute to more than 30% of the total energy consumption, with nearly 28% of global energy-related emissions stemming from electricity usage (18% directly from electricity consumption and space heating). In emission-intensive countries like China, Japan, the US, and the European Union, energy utilisation standards and building management codes have been increasing dramatically since 2022.


  • According to the International Energy Agency, managing existing buildings, particularly those with complex systems like HVAC (Heating, Ventilation, and Air Conditioning) and water/wastewater utilities, is not only energy-intensive but also costly. In which, the HVAC systems consume the highest energy (38%) regardless of its residential(32%) or tertiary(49%) nature.

  • The operational expenses associated with maintaining these systems can be significant, especially considering the age of many buildings and the advanced technology required to ensure their efficient operation

HVAC systems consume the highest energy (38%) regardless of its residential(32%) or tertiary(49%) nature.

Accurate pressure monitoring is essential for ensuring energy efficiency, preventing leaks, and minimising operational costs. This is because pressure imbalances can lead to increased energy consumption, equipment wear, and potential system failures, all of which contribute to higher overall operational expenses.

  • HVAC Systems: Pressure monitoring helps ensure that the airflow and air pressure within the HVAC system are balanced and maintained at optimal levels. This is crucial for efficient heating, ventilation, and air conditioning throughout the building. Monitoring pressure can also help detect issues such as leaks or blockages in the ductwork, which can affect system performance and indoor air quality.

  • Water Utilities: In water distribution systems, pressure monitoring is essential for maintaining adequate water pressure throughout the building. Proper pressure ensures that water reaches all parts of the building effectively, including upper floors and remote areas. Monitoring pressure can also help identify leaks or breaks in the water lines, preventing water wastage and property damage.

  • Wastewater Utilities: Pressure monitoring in wastewater systems helps ensure proper flow and prevent backups or overflows. By monitoring pressure levels at various points in the system, building managers can detect blockages or other issues that may impede the flow of wastewater. This proactive approach helps prevent costly repairs and mitigates the risk of environmental contamination.


The Ineffective Conventional Pressure Monitoring

The Pressure monitoring enables the performance monitoring capability in an remote and energy efficient manner, tuning your building management

For a long time our measurements and maintenance systems in remained with simple pressure gauges or transducers, limiting the capabilities to effectively monitor and analyse the operational inefficiencies throughout the building operations.

  • Manual Monitoring: Many conventional pressure monitoring devices require manual readings and inspections, which can be time-consuming and prone to human & reading error. Automated systems offer continuous monitoring and data collection, reducing the risk of missed issues or delays in response.

  • Limited Data Insights: Conventional pressure monitoring methods often provide limited data insights beyond basic pressure readings. They may lack features such as trend analysis consistently across long period of time, predictive maintenance capabilities, or real-time alerts, which can be essential for proactive management and optimisation.

  • Inability to Detect Early Warning Signs: Conventional monitoring methods may not always detect subtle changes or early warning signs of potential problems. Advanced monitoring technologies can provide more sensitive detection capabilities, allowing for early intervention and preventing costly failures or downtime.


For example, in the competitive world of commercial property management, ensuring optimal HVAC performance is paramount. Imagine a scenario where a leading property manager faces challenges with inefficient airflow monitoring across their smart building portfolio. Uneven temperature distribution and rising energy costs become significant pain points affecting tenant comfort and operational efficiency!


Leveraging an IoT solution leader: The IoT Applications for Remote Monitoring

To address these challenges, commercial property management has the option of Ellenex's battery-operated differential pressure sensors, leveraging NB-IoT or LoRaWAN technology.

We offer ruggedised design, making them effective to install in hard to access areas. This also makes maintaining them within complex HVAC systems much simpler. Real-time airflow and temperature monitoring provide valuable insights into system performance, enabling precise control and optimisation.


Your Pressure Monitoring Elevator! Enabling your energy efficiencies in HVAC systems and your water utilities

The implementation of Ellenex's pressure sensors overcomes critical issues related to inaccurate airflow monitoring. By delivering reliable data, Ellenex's solution empowers property managers and building owners to optimise energy usage and address comfort issues effectively in the follow aspects:

  • HVAC and Air Conditioning Systems

  • Leakage Monitoring Systems

  • Air Filter Performance Monitoring

  • Heat Recovery Systems

  • Fan and Ventilation System Performance Monitoring

  • Air Velocity Monitoring

  • Pressurised Chambers Monitoring

  • Blower Vacuum Monitoring

  • Clean Rooms positive pressure indication

  • Fan pressure indication

  • Burner and Boiler Monitoring Systems


Ellenex Offerings

Ellenex Shopping portal: offerings in more than 50 countries with 4000+ IoT product variations, supporting connections with 5 types of LPWAN technologies
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The IoT platform provided by Ellenex is capable of supporting different types of industrial parameters suiting 60+ industrial solutions
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At Ellenex, we believe that sensors and measurement systems are the most important parts of any process system and production line.   Backed by more than 25 years of experience in this area and recent developments in IoT (Internet of Things) networks, we designed and manufacture one of the widest ranges of end-to-end industrial LPWAN (Low Power Wide Area Network) for mass IoT applications.   Our new range of products opens up new opportunities for industries to implement the industrial internet of things (IIoT) in their production plants and service system easily with the lowest cost and minimum integration
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Ellenex developed a highly integratable software platform for complex IoT applications
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At Ellenex, we value modularity and integratability as our data collection from Iot Devices can be easily transmitted to other systems, all available on our OpenAPI document
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  • Air Compressor Operation Monitoring

  • Asset Cathodic Protection Monitoring

  • Asset Temperature Monitoring

  • Boilers Pressure and Temperature Monitoring

  • Building Structural Health Monitoring

  • Chemical Tanks Level Monitoring

  • Data Centre and Clean Room Pressure Monitoring

  • Diesel Delivery Management

  • Differential Pressure Monitoring

  • Dump Truck Overload and Operation Monitoring

  • Dust Collection System Monitoring

  • Farm Fish Operation Monitoring

  • Flood Monitoring

  • Frozen Food Delivery Management

  • Grain Silo Level Monitoring

  • HVAC Air Filter Performance Monitoring

  • HVAC Airflow Monitoring

  • Hydraulic Systems Overload Monitoring

  • Industrial Gas Cylinders Level Monitoring

  • Industrial Water Meters Digitalisation

  • Land Movement Monitoring

  • Liquid Storage Tank Level Monitoring

  • Manhole Blockage Monitoring

  • Milk Tank Level Monitoring

  • Negative Pressure Monitoring

  • Operational System Digitalisation

  • Pipe Temperature and Pressure Monitoring

  • Pump Pressure Monitoring

  • Rain Level Monitoring

  • Remote Diesel Tank Level Monitoring

  • Soil Moisture Monitoring

  • Trucks Overload Monitoring

  • Underground Water Pipeline Pressure Monitoring

  • Waste Liquid Delivery Management

  • Wastewater Pipe Pressure Monitoring

  • Water Filter Performance Monitoring

  • Water Quality Monitoring

  • Water Supply Monitoring

  • Water Tank Level Monitoring

  • Water Wells Level Monitoring

Key pre-configured Industrial IoT solutions

Main Industrial IoT Sensors: 

  • PTS2: Industrial Pressure (0.2bar to 1,000bar)

  • PTC2: Corrosive Resistant Pressure

  • PTD2: Pressure Sensor with Built-in Temperature Sensor

  • PTDH2: High Temperature Pressure and Temperature Sensor

  • PTG2: Pressure with Built-in GPS

  • PTS3: IP68 Pressure Sensor

  • PTF2: Flush Type Pressure Sensor

  • PTF2: Thich film Flush type Pressure

  • PTE2: Earth Pressure Sensor

  • PDS2: Industrial Differential Pressure Sensor

  • PDG2: DP with Built-in GPS

  • PDT2: Ultra Low Range Air Pressure and Temperature

  • PLS2: Submersible Level (1m to 200m range)

  • PLC2: Corrosive Resistant Level (Titanium)

  • PLD2: Level Sensor with Built-in Temperature

  • PLG2: Level Sensor with Built-in GPS

  • PLS3: Submersible Level Sensor with IP68 Housing

  • PLM2: Well Level Sensor (15.8mm Sensor Head, 2in Housing)

  • PLMD2: Well Level and Temperature Sensor

  • TTS2: Industrial Temperature Sensor

  • TTG2: Temperature Sensor with Built-in GPS

  • TTS3: Temperature Sensor with IP68 housing

  • TTS2: Pipe Temperature Sensor

  • DUS3: IP68 Ultrasonic Level Sensor

  • DRC3: IP68 Corrosive Radar Sensor (8m and 30m range)

  • FMS2: Industrial Water Meter Interface

  • CSD2: Conductivity Salinity and Temperature sensor

  • CTR2: Turbidity and Temperature Sensor

  • CPH2: pH, ORP and Temperature Sensor

  • CDO2: Dissolved Oxygen and Temperature Sensor

  • MSS2: Soil Moisture Sensor

  • MAS2: Outdoor Humidity Sensor

  • MRS2: Rain Sensor (Tipping bucket)

  • ECP2: Cathodic Protection Sensor

  • RS1-4/20: Single channel 4-20mA Interface

  • RS1-P: Single channel Pulse Interface

  • RS1-SDI: Single channel SDI-12 Interface

  • RS1-M: Single channel Modbus Interface

  • RS1-Pt: Single channel Pt100 Interface

  • RM1: Multi-channel Interface

  • RM4-4/20: Multi-channel Interface (4 x 4-20mA Sensor)

  • RM4-Pt: Multi-channel Interface (4 x Pt Sensor)

  • RM4-M: Multi-channel Interface (4 x Modbus)

  • RM4-mV: Multi-channel Interface (4 x mV Sensors)

  • RM4-Pulse: Multi-channel Interface (4 x Pulse Counter)

  • RM4-0/10: Multi-channel Interface (4 x 0-10V Sensor)

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