FXLS60322AESR2 Industrial Gyroscope Sensor, 3-Axis, LGA Package

  • Measures acceleration and tilt, enabling precise motion sensing for various control and monitoring systems.
  • Integrates a multi-axis sensor that captures dynamic movement data crucial for accurate device orientation.
  • Features a compact LFCSP package, allowing efficient board space usage in tightly constrained designs.
  • Suitable for wearable devices, providing reliable motion detection to enhance user interaction and feedback.
  • Designed for consistent performance under diverse conditions, supporting long-term operational stability.
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FXLS60322AESR2 Overview

The FXLS60322AESR2 is a high-performance, low-power 3-axis accelerometer designed for precise motion sensing and vibration monitoring in industrial applications. With its compact package and integrated digital output, this sensor delivers reliable acceleration data over a broad dynamic range. It supports advanced embedded features such as programmable interrupts and self-test functions, ensuring robust operation and ease of integration. Ideal for industrial automation, predictive maintenance, and condition monitoring, this accelerometer combines accuracy and efficiency to meet demanding engineering requirements. For detailed technical support and procurement, visit IC Manufacturer.

FXLS60322AESR2 Technical Specifications

Parameter Specification
Sensor Type 3-axis MEMS Accelerometer
Output Data Interface I2C Digital Interface
Measurement Range ??2 g / ??4 g / ??8 g selectable
Supply Voltage 1.71 V to 3.6 V
Operating Temperature Range -40??C to +85??C
Output Data Rate (ODR) 1.56 Hz to 1600 Hz programmable
Power Consumption Minimum 13 ??A in low-power mode
Package Type 3 x 3 x 1 mm LGA
Self-Test Function Built-in electrostatic self-test

FXLS60322AESR2 Key Features

  • Selectable Measurement Range: Enables flexibility by allowing choice between ??2 g, ??4 g, and ??8 g, adapting to various vibration and motion sensing requirements.
  • Low-Power Operation: The sensor consumes as little as 13 ??A in low-power mode, ideal for battery-powered industrial monitoring systems needing long operational life.
  • High Output Data Rate: Supports up to 1600 Hz sampling frequency, providing detailed and real-time acceleration data for precise condition monitoring.
  • Integrated Digital Interface: I2C communication simplifies system integration and reduces external component count, facilitating firmware implementation and device control.
  • Compact LGA Package: The small 3 x 3 x 1 mm footprint enables dense PCB layouts, advantageous for space-constrained industrial modules and embedded systems.
  • Built-in Self-Test: Provides on-demand sensor health verification, ensuring reliable operation and simplifying system diagnostics in the field.
  • Wide Operating Temperature Range: Functionality from -40??C to +85??C ensures stable performance in harsh industrial environments.

FXLS60322AESR2 Advantages vs Typical Alternatives

This accelerometer offers superior sensitivity and selectable dynamic ranges compared to many standard industrial sensors, ensuring accurate detection of both low and high amplitude vibrations. Its low power consumption extends device uptime in remote monitoring applications. Integrated features like built-in self-test and programmable interrupts enhance system reliability and ease of maintenance. The compact package and digital I2C interface simplify integration, reducing BOM cost and design complexity relative to analog or bulkier alternatives.

Typical Applications

  • Industrial Vibration Monitoring: Provides precise acceleration measurements to detect equipment anomalies, supporting predictive maintenance and reducing unplanned downtime in manufacturing plants.
  • Condition monitoring in rotating machinery where accurate detection of mechanical faults is critical.
  • Motion sensing for industrial automation systems requiring real-time feedback on equipment status.
  • Embedded sensor modules in IoT devices for asset tracking and environmental sensing within industrial environments.

FXLS60322AESR2 Brand Info

Manufactured by a leading semiconductor company specializing in MEMS sensor technology, this accelerometer is part of an advanced portfolio focused on industrial and automotive applications. The product benefits from rigorous quality control and proven reliability standards, aligning with industry demands for durable and precise sensing solutions. The brand is recognized for integrating innovative features such as low power consumption and embedded diagnostics, reinforcing its reputation as a trusted choice for engineers and system designers.

FAQ

What is the typical power consumption of this accelerometer in active mode?

The device consumes approximately 13 ??A in its low-power mode, which is suitable for continuous monitoring applications where minimizing energy use is essential. Power consumption varies with output data rate and operating conditions but remains efficient for industrial sensor deployments.

Can this accelerometer operate over a wide temperature range?

Yes, it is designed to operate reliably from -40??C up to +85??C, making it suitable for harsh industrial environments where temperature fluctuations are common. This wide range ensures consistent sensor performance and accuracy.

What output interface options are available?

The sensor features a digital I2C interface, facilitating straightforward communication with microcontrollers and digital systems. This interface supports easy integration into various embedded platforms without the need for additional analog signal conditioning.

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Does the sensor include any diagnostic or self-test capabilities?

It includes a built-in electrostatic self-test function that allows users to verify sensor functionality and detect faults. This feature is critical for maintaining system reliability and simplifying maintenance procedures in industrial deployments.

What are the selectable measurement ranges and their applications?

The accelerometer supports selectable ranges of ??2 g, ??4 g, and ??8 g, allowing adaptation to different sensing scenarios. Lower ranges provide higher sensitivity for subtle vibrations, while higher ranges are suitable for detecting intense shocks or rapid movements commonly found in industrial machinery monitoring.

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