FXLS8961AFR1 Overview
The FXLS8961AFR1 is a high-performance 3-axis accelerometer designed for precise motion sensing and vibration monitoring in industrial and consumer applications. Offering a wide measurement range and low power consumption, this MEMS sensor delivers reliable, accurate acceleration data in a compact 3 x 3 x 1 mm LGA package. It features advanced digital output and configurable interrupt functionalities, enabling seamless integration into embedded systems. With robust sensitivity and built-in self-test capabilities, the device supports enhanced fault detection and system diagnostics. The FXLS8961AFR1 is ideal for applications requiring efficient power management, stable performance, and high-resolution data acquisition. For more information, visit IC Manufacturer.
FXLS8961AFR1 Technical Specifications
| Parameter | Specification |
|---|---|
| Measurement Range | ??2 g, ??4 g, ??8 g, ??16 g selectable |
| Output Data Rate (ODR) | 1.56 Hz to 800 Hz configurable |
| Power Supply Voltage | 1.71 V to 3.6 V |
| Current Consumption | Typically 270 ??A at 100 Hz ODR |
| Interface | I2C (up to 1 MHz), SPI (up to 10 MHz) |
| Package | 3 x 3 x 1 mm LGA-14 |
| Temperature Range | -40 ??C to +85 ??C |
| Resolution | 16-bit digital output |
| Self-Test | Built-in electrostatic self-test function |
FXLS8961AFR1 Key Features
- Multi-Range Measurement: Supports four selectable full-scale ranges, allowing tailored sensitivity for different application requirements.
- Low Power Consumption: Operates efficiently at just 270 ??A during active measurement mode, extending battery life in portable systems.
- High Data Resolution: Provides 16-bit digital output for precise acceleration data, enhancing motion detection accuracy.
- Flexible Interface Options: Features both I2C and SPI communication protocols, enabling versatile connectivity with microcontrollers and processors.
- Integrated Self-Test: Built-in electrostatic self-test ensures sensor integrity and supports predictive maintenance.
- Compact Package: The small 3 x 3 x 1 mm LGA package simplifies board design and supports space-constrained applications.
- Configurable Interrupts: Enables event-driven operation, reducing processor load and improving system responsiveness.
FXLS8961AFR1 Advantages vs Typical Alternatives
This accelerometer offers superior sensitivity and selectable measurement ranges compared to typical MEMS sensors, providing enhanced accuracy for diverse applications. Its low power consumption makes it ideal for battery-operated devices, while the dual I2C/SPI interface options improve integration flexibility. The built-in self-test function and compact package enhance reliability and ease of implementation, distinguishing it from standard accelerometers in the industrial and consumer markets.
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Typical Applications
- Industrial Vibration Monitoring: Enables real-time detection of machine conditions and predictive maintenance with high accuracy and reliability.
- Consumer Electronics: Used for motion detection in wearable devices and smartphones, ensuring precise orientation and activity tracking.
- Gaming and Virtual Reality: Provides responsive motion sensing for immersive user experiences and gesture recognition.
- Automotive Systems: Supports vehicle stability control and driver assistance features through accurate acceleration measurement.
FXLS8961AFR1 Brand Info
The FXLS8961AFR1 is developed by a leading semiconductor manufacturer specializing in MEMS sensor technology. This product line is renowned for combining innovative microelectromechanical design with rigorous quality standards to deliver reliable, high-performance accelerometers. The device benefits from advanced process technology and extensive testing to ensure consistent operation across a wide range of industrial and consumer applications. Its reputation for precision and durability makes it a preferred choice among engineers and system designers.
FAQ
What measurement ranges does the FXLS8961AFR1 support?
The device supports four selectable full-scale acceleration ranges: ??2 g, ??4 g, ??8 g, and ??16 g. This flexibility allows users to optimize sensitivity and dynamic range based on their specific application requirements.
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Which communication interfaces are available with this accelerometer?
The sensor provides both I2C and SPI digital interfaces. I2C supports data rates up to 1 MHz, while SPI supports up to 10 MHz, allowing for flexible integration with various microcontrollers and embedded systems.
How does the built-in self-test improve sensor reliability?
The integrated electrostatic self-test function enables users to verify the sensor’s operation without external equipment. This feature facilitates system diagnostics and fault detection, helping to maintain consistent performance over time.
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What is the typical power consumption during operation?
During active measurement at 100 Hz output data rate, the device typically consumes 270 ??A. This low current draw is advantageous for battery-powered applications, extending operational life.
In what package is the sensor delivered, and why is it beneficial?
The accelerometer comes in a compact 3 x 3 x 1 mm LGA-14 package. Its small size allows for easy integration into space-constrained designs while maintaining mechanical stability and protecting the sensor elements.





