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Integrate almost any strain sensor into a Leap Sensors wireless transceiver node for structural health monitoring (SHM) on bridges, overpasses, support beams, and more. Easy to install on existing structures. Be up & running in just a few minutes.
Wireless Strain Demonstration and Tutorial
Contact us to find the best strain sensor configuration for your specific application. Part of the breakthrough Leap Sensors® system. Strain sensors are not included. Contact us and one of our experts can recommend strain gauges for your application. We offer easy-to-install spot-weld-on strain sensors. We also have a Micro Measurements battery-powered spot welder available for rent. Build your quote here:
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Integrate almost any strain sensor into a Leap Sensors wireless transceiver node for structural health monitoring (SHM) on bridges, overpasses, support beams, and more. Easy to install on existing structures. Be up & running in just a few minutes.
Wireless Strain Demonstration and Tutorial
Contact us to find the best strain sensor configuration for your specific application. Part of the breakthrough Leap Sensors® system. Strain sensors are not included. Contact us and one of our experts can recommend strain gauges for your application. We offer easy-to-install spot-weld-on strain sensors. We also have a Micro Measurements battery-powered spot welder available for rent. Build your quote here: -
Wireless transceiver node designed to integrate with all types of load cell sensors.
Wireless Load Cell Demonstration and Tutorial
Contact us to find the best load cell configuration for your specific application. Part of the breakthrough Leap Sensors® system. Build your quote here: -
Sensor transceiver node designed to integrate with all types of pins to monitor weight and force on pulleys and rollers.
Wireless Load Cell Demonstration and Tutorial
Contact us to find the best load pin configuration for your specific application. Part of the breakthrough Leap Sensors® system. Build your quote here: -
Wireless transceiver node designed to integrate with any ring force transducer that has one of these outputs: mV/V, 4-20 mA, or 0-10V. The Leap transceiver node provides power to the ring force transducer. Ideal for monitoring preloads, testing equipment, clamping forces, and remote ongoing force and load monitoring. Contact us to find the best ring force transducer configuration for your specific application. Part of the breakthrough Leap Sensors® system. Build your quote here:
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This groundbreaking sensor node integrates a discrete pulse flow meter to count units of flow (i.e. gallons, liters, etc) as liquid flows through a line. Unit can also be used as an incremental encoder for monitoring machinery speeds and total output. The transceiver node times individual pulses and their accumulated counts as they occur. It then uses edge computing to determine current flow rates and total volume of liquid passing through the meter. The edge logic also identifies when flow has stopped, duration of flow events, and duration of stop events. For ease of analysis, the node calculates both instantaneous rate of flow and its duration since the last sensor data reset, as well as a value to indicate if flow is currently occurring.
- Monitors 11 different output variables, such as pulses, flow rate, total pulses, total volume, etc. See specifications for more details.
- Transceiver node is powered by a 120V wall transformer that plugs into a jack on the bottom of the enclosure (no battery powered options available.) Data is transmitted wirelessly via a gateway to the software.
- Connects to the Leap Wireless Sensor System with a secure 2.4GHz, FCC-certified radio.
- Count-reset button on top of the node enclosure resets the total flow at the end of a measurement period. Users can also set automated resets based on time of day.
- This unit is a variation of the Leap production counter, with modifications to account for flow measurement and volume totals.
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Vibration sensor can measure G-forces. Vibration sensor takes a simple yet highly effective approach in monitoring maximum and average g-force trends of +/-16G and can sample at up to 5 KHz on all 3 axes. The accelerometer has optional advanced on-board edge computing FFT capabilities. Customized options include vibration, tilt, and shock events. Up to 8 vibration modules can be attached to one transceiver node. The vibration module also includes a temperature sensor.
Video Demonstration and Tutorial
Transceiver Node Configuration
Vibration+Temperature Modules: The number of vibration/temperature modules (1-8) connected to the Vibration Transceiver Node can be selected on the vibration module page. Build your quote here: -
Breakthrough technology uses CAN bus to "daisy chain" multiple small strain gauge sensor modules to one wireless Leap transceiver node. Anywhere from 1 to 16 strain gauge modules can be added to the bus. Each CAN strain module can support 2 full-bridge resistive strain gauge sensors, for a total of up to 32 full-bridge strain gauges per transceiver node. Edge processing at the strain sensor level assures a high-quality conversion of the sensor voltage reading to a digital reading, which can then be reliably sent via the CAN bus to the wireless transceiver node. Industrial CAN bus cables can be over 600 feet long. Ideal for wireless monitoring of strain in multiple points along structural components such as I-beams, girders, hanging structures, support columns, railways etc., as well as industrial applications such as rotating shafts in engines, turbines, etc.
Wireless Strain Demonstration and Tutorial
Contact us to find the best strain sensor configuration for your specific application. Part of the breakthrough Leap Sensors® system. Multiple strain sensing modules attach to the transceiver node over a CAN bus. Each module can support two full-bridge strain sensors. The strain modules are ordered separately. Contact Us and an Application Engineer will work with you to provide a detailed final quote that meets your specific application. Build your quote here: