Dustin Partners Biaxial Tiltmeter is a 3-axis wireless tiltmeter designed to provide measurements of changes from the vertical level, either on the ground or in structures. This makes them key sensors to monitor inclinations, movements, and differential settlements of slopes or infrastructures.

The sensors are available with an external antenna for full range capabilities or with an internal antenna for applications such as railway tracks where it’s important to minimize the potential risk for external parts.

The sensor is capable of transmitting data via long-range radio to a gateway connected to the Internet up to 9 miles/15 km. away.


Dustin Partners Biaxial Inclinometer is a 3-axis wireless inclinometer designed to provide measurements of changes from the vertical level, either on the ground or in structures. This makes them key sensors to monitor inclinations, movements and differential settlements of slopes or infrastructures. The sensors are available with an external antenna for full range capabilities or with an internal antenna for applications as railway tracks where it’s important to minimize the potential risk for external parts.


Dustin Partners LoRa network. Support a continuous data flow for your geotechnical and structural monitoring instrumentation when you need to:

  • Cover vast distances,
  • Transmit signals through physical barriers,
  • Minimize maintenance operations and site visits.

All this, while allowing massive scale at low deployment and maintenance costs.


Dustin Partners’ Triaxial Accelerometer is a wireless sensor that automates data collection for long term, continuous vibration monitoring. It features a tri-axial accelerometer and an exception- based, edge algorithm that allows the detection of threshold breaches for vibration-based parameters such as Law/PPV and frequency.
The Accelerometer is suitable to comply with vibration regulations regarding building integrity (DIN 4150-3, BS7385-2, among others) and vibrations effect on people (ISO2631-2).
Long-range and low-power
The Accelerometer is a robust, IP68 device, and can operate under minimum maintenance. Up to 1.5 years battery lifespan using a 30 min reporting period, considering a vibration scenario with relevant events triggering alert mode two or three times per week. With excelling radio-range, the vibration meter can stream data up to 15km to the nearest gateway.


The vibrating wire (VW) one- and five-channel digital crackmeters automate data collection by connecting your vibrating wire instruments wirelessly to your monitoring systems.

The sensors are autonomous battery-powered devices with C-size advanced chemistry batteries that can last up to 22 years with minimum maintenance required. The units may also be used as standalone loggers for manual monitoring and can be easily configured and connected with a USB cable and an Android phone.


The vibrating wire (VW) one- and five-channel digital strain gauges automate data collection by connecting your vibrating wire instruments wirelessly to your monitoring systems.

The sensors are autonomous battery-powered devices with C-size advanced chemistry batteries that can last up to 22 years with minimum maintenance required. The units may also be used as standalone loggers for manual monitoring and can be easily configured and connected with a USB cable and an Android phone.


The basic principal of operation is the utilization of MEMS (Micro-Electro- Mechanical Systems) tilt sensors to make accurate measurements of inclination at discrete points where each Tilt Sensor is located.

MEMS tilt sensors are low-cost, robust, and virtually immune to shock loading. They operate over a wide angular
range, with high sensitivity.


The basic principal of operation is the utilization of MEMS (Micro-Electro- Mechanical Systems) inclinometer node sensors to make accurate measurements of inclination at discrete points where each inclinometer node Sensor is located.

MEMS tilt sensors are low-cost, robust, and virtually immune to shock loading. They operate over a wide angular
range, with high sensitivity


Dustin vibrating wire displacement transducers are designed to measure displacements across joints and cracks in concrete, rock, soil and structural members.
In essence, the transducer consists of a vibrating wire in series with a tension spring. Displacements are accommodated by a stretching of the tension spring, which produces a commensurate increase in wire tension.


designed for high-precision structural health assessment and environmental impact management. Engineered for industries where accuracy and reliability are critical, the DEPA III leverages cutting-edge sensor technology to deliver unparalleled data collection and analysis, all in real-time.

Whether you’re monitoring infrastructure during construction, safeguarding sensitive equipment, or ensuring compliance with environmental standards, the DEPA III offers seamless integration with cloud-based platforms for instant alerts and data-driven insights. Its rugged design makes it ideal for harsh environments, and its ease of deployment ensures quick setup for rapid results.

Earth Pressure Cells consist of two stainless steel plates welded along the edges, with a small gap between them filled with hydraulic fluid. External pressure compresses the plates, and this pressure is transferred to the hydraulic fluid inside. A pressure transducer then converts the fluid pressure into an electrical signal, which can be read and recorded.

Made from durable 17-4 stainless steel, these transducers offer excellent corrosion resistance, ensuring long-lasting, reliable measurements in a variety of environments.
The devices are available with a variety of cables, allowing customization for specific applications. For added protection, vented versions are available to negate the effects of barometric pressure changes.

The DustinNet Mesh network operates as a self-healing network which will reconfigure itself to accommodate disturbances to the physical environment or changes to the network configuration. The system topology can take advantage of mesh, star, or cluster tree configurations to optimize the data path from the loggers to the gateway.


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