ADXL356TEZ-EP Overview
The ADXL356TEZ-EP is a high-precision, low-noise, 3-axis MEMS accelerometer designed for industrial and scientific applications requiring accurate vibration and acceleration measurements. This device offers a wide dynamic range with selectable ??2 g, ??4 g, and ??8 g measurement scales, enabling flexibility across various operational environments. Featuring a low power consumption profile and excellent bias stability, it supports long-term reliability in demanding conditions. The digital output interfaces simplify integration into complex systems, making it ideal for motion sensing, structural health monitoring, and condition-based maintenance solutions. For detailed technical insights and sourcing, visit IC Manufacturer.
ADXL356TEZ-EP Technical Specifications
| Parameter | Specification |
|---|---|
| Measurement Axes | 3-axis (X, Y, Z) |
| Measurement Range | ??2 g, ??4 g, ??8 g selectable |
| Noise Density | 20 ??g/??Hz (typical at 100 Hz) |
| Output Type | 24-bit Sigma-Delta ADC, Digital (SPI/I2C) |
| Power Supply Voltage | 2.25 V to 3.6 V |
| Supply Current | 350 ??A (typical) |
| Bandwidth | Selectable, up to 1 kHz |
| Operating Temperature Range | -40??C to +105??C |
| Package Type | 16-lead LFCSP, RoHS compliant |
| Zero-g Bias Stability | ??0.1 mg typical |
ADXL356TEZ-EP Key Features
- Low Noise Density: Provides precise acceleration measurements with minimal signal distortion, critical for accurate vibration analysis.
- Wide Measurement Range: Selectable ??2 g, ??4 g, and ??8 g scales allow adaptability to diverse sensing environments and dynamic conditions.
- Digital Output Interface: SPI and I2C compatibility facilitates seamless integration into digital control systems and data acquisition platforms.
- Low Power Consumption: Efficient operation at 350 ??A supports battery-powered and energy-sensitive applications without compromising performance.
- Robust Operating Temperature: Reliable performance from -40??C to +105??C ensures suitability for harsh industrial settings.
- Stable Zero-g Bias: Minimal drift enhances measurement consistency over time, reducing calibration frequency and maintenance costs.
ADXL356TEZ-EP Advantages vs Typical Alternatives
This accelerometer offers superior noise performance and bias stability compared to typical MEMS devices, enabling highly accurate and reliable sensing in critical industrial applications. Its low power consumption and flexible digital communication interfaces provide integration advantages, reducing system complexity and energy requirements. The extended operating temperature range enhances durability and reliability under harsh environmental conditions, making this device a preferred choice over standard accelerometers for precision measurement tasks.
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Typical Applications
- Vibration monitoring and structural health analysis in industrial machinery, enabling predictive maintenance and reducing unplanned downtime through precise acceleration sensing.
- Condition-based monitoring systems that require high-resolution motion detection for equipment performance optimization.
- Inertial measurement units (IMUs) used in robotics and automation for accurate position and motion tracking.
- Seismic and geophysical instrumentation requiring reliable, low-noise acceleration measurements under variable environmental conditions.
ADXL356TEZ-EP Brand Info
The ADXL356TEZ-EP is part of a family of precision MEMS accelerometers crafted by a leading semiconductor manufacturer specializing in advanced sensor technologies. Designed with industry-grade reliability and high-performance specifications, this product serves demanding applications where accuracy and durability are paramount. The brand??s commitment to innovation ensures continuous development of sensor solutions that meet the evolving needs of industrial, scientific, and instrumentation markets worldwide.
FAQ
What communication interfaces does the ADXL356TEZ-EP support?
The device supports both SPI and I2C digital communication protocols. This dual-interface flexibility allows engineers to easily integrate the accelerometer into a wide range of microcontroller and data acquisition systems, enhancing compatibility and simplifying design.
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