NXP's triaxial accelerometers are ideal for automotive, Internet of Things, and medical applications | Heisener Electronics
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NXP's triaxial accelerometers are ideal for automotive, Internet of Things, and medical applications

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Post Date: 2022-09-25, NXP

     NXP FXLS8964AF is a compact three-axis accelerometer designed for a variety of applications where motion detection requires an ultra-low power wake-up capability. The combination of sensor performance, system power saving features, and extended temperature range performance make the FXLS8964AF an ideal accelerometer for automotive key fob applications.

      The FXLS8967AF is a compact three-axis MEMS accelerometer designed for a variety of automotive safety and convenience applications that require ultra-low power wake-up on motion detection. The combination of sensor performance, system power saving features, and extended temperature range performance make the FXLS8967AF an ideal accelerometer for automotive safety and convenience applications.

      The FXLS8974CF is a compact 3-axis MEMS accelerometer designed for a variety of industrial and medical IoT applications that require ultra-low power wake-up capability when detecting motion. The device supports high-performance and low-power modes of operation to maximize resolution and power consumption for a variety of unique use cases. The combination of sensor performance, system power saving features, and extended temperature range performance make the FXLS8974CF an ideal accelerometer for IoT motion detection.

     The FXLS8964AF and FXLS8967AF devices are AEC-Q100 qualified and operate over the extended temperature range of -40°C to +105°C. These parts support high-performance and low-power operating modes to maximize resolution and power requirements for a variety of unique use cases.

     The FXLS89xx devices are available in a 2 mm x 2 mm x 0.95 mm, ten-lead DFN package with 0.4 mm pitch and wettable flanks. These smart sensors include advanced digital features such as SDCD modules for inertial event detection, automatic wake/sleep, 32-sample FIFO/LIFO buffers, and a single-wire interface, ensuring overall power savings and simplifying host data collection.

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