Predictive Maintenance

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  • This unique motor sensor combines 3 different sensors in one multi-sensor node: temperature, vibration, and electrical current. Get continuous remote monitoring of these key predictors of motor failure. Receive alerts via text, email, or phone. Avoid costly downtime and gain operating insight. It's like having X-ray vision into your key processes.

    Video Demonstration and Tutorial - Wireless Motor and Rotating Equipment Sensor - Vibration, Temperature, Electric Current

    wireless motor monitor video demonstration
    • The only system currently available that combines all three types sensors on one transceiver node. Get sophisticated monitoring at a real-world price.
    • Installs quickly & safely: temperature sensor and vibration sensor (accelerometer) install quickly with industrial-strength magnets or screw mount. Current sensor is a split-core amp clamp.
    • The standard vibration sensor takes a simple yet highly effective and proven approach by sampling at 5KHz and edge-computing the data to report RMS acceleration, RMS velocity, and peak acceleration.
    • Store data & manage alerts with our SensorManager.com software, or integrate into your own PLC or other software.
    This motor condition monitoring sensor is ideal for an IoT predictive maintenance program or condition-based monitoring & maintenance.   Part of the breakthrough Leap Sensors® system for the IIoT. Build your quote here:
  • This wireless sensor communicates via a cellular transmission for remote temperature & flood monitoring. Sensor transceiver node combines standard mini k-type thermocouple connector for temperature sensing (wide temperature range) and a water sensor for flood detection or to detect water inside an enclosure. 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:
  • This unique Leap wireless sensor attaches to the top of a silicon wafer for fabrication process monitoring. It is less than 5mm thick, so it fits in wafer processing ovens and other critical fab equipment. The sensor has 9 ultra-small, high-accuracy RTD sensors that are adhered to the surface of the wafer, giving you better accuracy than a wireless thermocouple wafer sensor (tc wafer sensor).
    • 3-wire RTD connection supports long cables while maintaining temperature accuracy during rapid heating.
    • The entire sensor is rated to operate up to at least 125C (257F).
    • Readings as fast as every 3 seconds for each of the 9 sensors.
    • Field replaceable batteries.
    • Data logging capability when the transceiver node is not linked to a gateway.
    This wireless sensor is ideal for monitoring:
    • Silicon wafer processing
    • Temperature chuck testing/verification
    • Scientific experiments
    • Paint and coatings curing
    • Temperature profiling over a surface
        Part of the breakthrough Leap Sensors® system.   Build your quote here:
  • This highly versatile industrial sensor supports 9 miniature, low-mass precision RTD temperature sensors connected to a high-temperature transceiver node in an industrial enclosure.
    • 3-wire RTD connection supports long cables while also maintaining high temperature accuracy.
    • The entire sensor is rated to operate up to at least 125C (257F).
    • Readings as fast as every 3 seconds for each of the 9 sensors.
    • Data logging capability when the transceiver node is not linked to a gateway.
        Part of the breakthrough Leap Sensors® system.   Build your quote here:
  • This unique Leap wireless sensor is less than 5mm thick and supports 9 ultra-small, high-accuracy RTD sensors.
    • 3-wire RTD connection supports long cables while also maintaining high temperature accuracy.
    • The entire sensor is rated to operate up to at least 125C (257F).
    • Readings as fast as every 3 seconds for each of the 9 sensors.
    • Data logging capability when the transceiver node is not linked to a gateway.
    Ideal for these processes:
    • Silicon wafer processing
    • Scientific experiments
    • Paint and coatings curing
    • Temperature profiling over a surface
        Part of the breakthrough Leap Sensors® system.   Build your quote here:
  • This Leap wireless sensor has a standard mini thermocouple connectors that can connect to any thermocouple. (Standard products comes with K-Type thermocouples.) Other thermocouple types are also available - type-B, type-S, etc. Because thermocouples can be used over a wide temperature range and thermocouples come in a huge range of probe types, this sensor addresses many industrial applications - and is one of our most popular industrial wireless sensors.   Part of the breakthrough Leap Sensors® system.   Build your quote here:
  • This Leap wireless sensor has two standard mini thermocouple connectors that can connect to any K-type thermocouple.   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.   Part of the breakthrough Leap Sensors® system.   Build your quote here:
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