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See the detailed product description and specification below. This sensor uses the 4th generation of the world's first RFID sensor chip - the same chip that is used by many commercial aircraft for tire and temperature monitoring. See a video demonstration of the Crane Aircraft Wheel SmartStem. This ultra-miniature battery-free RFID pressure/vacuum and temperature sensor is ideal for embedding inside structures such as honeycomb carbon fiber. The low frequency and magnetic radio coupling allows it to read through many materials, such as carbon fiber, that other radio frequencies can't penetrate. This sensor also operates at temperature extremes from -50°C to 170°C (-58°F to 340°F). Learn more about Low Frequency RFID sensing on the .We specialize in custom sensors. If this isn't exactly what you need, please contact us.
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This specially-designed wireless temperature sensor has 9 precision RTDs. The entire transceiver node can operate up to 250ºC (482ºF) - the highest-temperature-rated enclosure we offer. The node is less than 1 inch (2.5 cm) thick - able to ride on a wafer or circuit board through a reflow oven. For wafer temperature monitoring, RTD sensors are ultra-thin and small for a fast response to temperature changes. For other applications, virtually any other RTD sensor can be integrated, including pointed insertion probes for meat or food processing. 3-wire configuration on RTDs assures extra accuracy and immunity to the high-temperature environments. Sensor cable lengths can be made to order. Part of the breakthrough Leap Sensors® system.Build your quote here:
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This unique wireless sensor remotely measures the depth of a liquid in a tank or pond using a submersible pressure sensor. The Leap Sensor transceiver node uses edge computing to convert the pressure measurement to liquid depth. Completely battery-powered - no external power source needed. Optional water- and weather-proof enclosure protects the sensor transceiver node. Optional direct-to-cellular technology for remote locations. Data is sent directly to a cloud server. Contact us for the best combination of pressure sensor and other options for your application. Part of the breakthrough Leap Sensors® system. Build your quote here:
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Get instantaneous flow rate information without cutting into pipes and running signal wires. The Leap Sensors wireless transceiver node can integrate with a wide range of ultrasonic and Doppler clamp-on flow meters. Connect to plant software with the Modbus interface or use Leap's cloud-based software. Due to the large power consumption of ultrasonic and Doppler flow meters, the flow meter must be powered by 120V. Data from the flow meter is sent wirelessly via a gateway to the software. Clamp-on flow meters are available for a wide range of pipe sizes from 0.5 to 48 inches. Use for metal or plastic pipes. Contact us to find the best clamp-on flow sensor for your application. Part of the breakthrough Leap Sensors® system. Build your quote here:
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Wireless transceiver node with an RS485 Modbus RTU interface can read up to 10 Modbus registers to track valuable machine monitoring data. Can be used with almost any Modbus RTU sensor and communication device. Contact us to discuss best options for your application. Connect the transceiver node to a variable frequency drive (VFD) to collect data such as electric current draw, voltage levels, RPM, temperatures, and error conditions. Ideal for predictive maintenance or automated process auditing. Due to the high-power consumption of the Modbus RTU interface, this transceiver node typically uses a external power source to power the node. Battery power is an option if data sampling and transmitting is done every few hours. Part of the breakthrough Leap Sensors® system. Build your quote here:
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The Pressurized Dew Point (PDP) wireless sensor monitors the dew point temperature inside compressed air lines. Because water condenses at a higher temperature when the air is pressurized, the sensor sends an alert when the temperature inside the air lines is nearing the dew point. This provides the plant maintenance team ample warning to take action to head off major equipment malfunctions and damage. This Leap sensor integrates the Michell Easidew EA2 Moisture Meter. Part of the breakthrough Leap Sensors® system. Build your quote here:
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This wireless sensor node replaces the discontinued Synapsense wireless temperature sensor module. The Leap sensor node has a connector that connects to existing Snapsense temperature sensor wiring harnesses. A Leap wireless gateway and Leap software are required. Data may be passed to other software using the web-API or Modubs. Convert your discontinued Synapsense monitoring system to the latest technology.Part of the breakthrough Leap Sensors® system.
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This highly versatile industrial sensor supports 6 to 9 miniature, low-mass precision RTD temperature sensors connected to a transceiver node in an industrial enclosure. Ideal for data center rack remote monitoring.
- 3-wire RTD connection supports long cables while also maintaining high temperature accuracy.
- Readings as fast as every 3 seconds for each of the sensors.
- Data logging capability when the transceiver node is not linked to a gateway.
- Option to integrate existing rack monitoring probes for "plug & play" installation.
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This wireless sensor communicates via a cellular transmission for remote temperature & flood monitoring. The internal antenna keeps the transceiver node small and resistant to damage. Sensor transceiver node combines standard mini k-type thermocouple connector for temperature sensing (wide temperature range) and a water sensor for flood detection. No gateway required – ideal for remote locations where standard sensors won’t work. Sensor node transmits via cellular link directly to cloud-based user interface. Receive alerts by email or text. “Practically battery-free”™ - Long battery life (up to 10 years, depending on application & transmission interval). Customize to your specific needs, including options to transmit only when designated thresholds are exceeded.Part of the breakthrough Leap Sensors system. Build your quote here:
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This optional current transformer can be connected to the wireless Motor Monitor Transceiver Node to detect a rise in current that in indicative of a failing machine. Designed specifically for use in a machine condition based monitoring system as part of a condition based maintenance program.Part of the breakthrough Leap Sensors® system for the IIoT. Price is for a 0-50A AC split core current transformer. Please let us know if you need a current transformer with a higher rating. Build your quote here:
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Coming Soon
This Leap wireless sensor has eight standard mini thermocouple connectors that can connect to any type of thermocouple (type K is standard). Because thermocouples can be used over a wide temperature range and thermocouples come in a huge range of probe types, this sensor addresses many harsh industrial applications. -
Put all of your most important sensor data and graphs on one page with the Dashboard option in the Leap software. Dashboards can be configured for you by the Phase IV Engineering team - or select the option to configure your own dashboards.Contact us for pricing on your specific requirements.Contact Us
Prices, Quotes, Questions...
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This Leap wireless transceiver node integrates two standard industrial pressure sensors along with two thermocouples. (Type K is standard, but other types can also be integrated). The sensor is powered by the Leap Sensor device battery with a power supply that can be specified - 12 or 24 volts. No external power source is needed. Contact us for pricing for your unique configuration.Contact us to let us help you make your selected pressure sensors and thermocouples wireless. Part of the breakthrough Leap Sensors® system. Build your quote here:
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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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Breakthrough technology uses CAN bus to "daisy chain" multiple load cell interface modules to one wireless Leap transceiver node. Anywhere from 2 to 30 load cell modules can be added to the bus. Each load cell module can support 2 full-bridge mV/V load cells, for a total of up to 60 load cells 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 loads and force in several places along structural components such as I-beams, girders, support columns, etc. Contact us to find the best strain sensor configuration for your specific application. Part of the breakthrough Leap Sensors® system. Contact us for pricing on your specific configuration. Build your quote here: