ADXL356BEZ Overview
The ADXL356BEZ is a high-precision, low-noise, low-power MEMS accelerometer designed for industrial and scientific applications that demand accurate vibration, tilt, and shock measurements. Featuring a wide dynamic range and high sensitivity, this device excels in environments requiring reliable and stable acceleration data. Its low noise density and low power consumption enable extended operation in battery-powered systems and sensitive measurement setups. The accelerometer??s compact package and robust internal design support integration into space-constrained, high-reliability systems. For further details and procurement, visit IC Manufacturer.
ADXL356BEZ Technical Specifications
| Parameter | Specification |
|---|---|
| Measurement Range | ??40 g (gravity) |
| Noise Density | 25 ??g/??Hz |
| Bandwidth | 0.5 Hz to 1 kHz |
| Supply Voltage | 2.25 V to 3.6 V |
| Power Consumption | 350 ??A typical |
| Output Type | Analog voltage |
| Operating Temperature Range | -40??C to +85??C |
| Package | 10-lead LFCSP (4 mm ?? 4 mm ?? 1 mm) |
| Sensitivity | 8 mV/g typical |
| Cross-Axis Sensitivity | 0.5% typical |
ADXL356BEZ Key Features
- Low noise density of 25 ??g/??Hz enables precise vibration and tilt measurement critical for sensitive industrial monitoring and scientific instrumentation.
- Wide measurement range of ??40 g accommodates high-shock environments, making it suitable for robust applications in automotive, aerospace, and industrial machinery.
- Low power consumption at 350 ??A supports battery-powered and portable systems, extending operational lifetimes without compromising accuracy.
- Wide bandwidth from 0.5 Hz to 1 kHz allows detection of both low-frequency tilt and high-frequency vibration signals within a single device.
- Compact LFCSP package provides easy integration into space-constrained designs while maintaining mechanical robustness and thermal performance.
- High sensitivity of 8 mV/g ensures accurate, linear output proportional to acceleration, facilitating straightforward signal processing and calibration.
- Robust operating temperature range from -40??C to +85??C enables reliable performance in harsh industrial environments.
ADXL356BEZ Advantages vs Typical Alternatives
The ADXL356BEZ stands out with its combination of ultra-low noise, low power consumption, and broad dynamic range compared to typical MEMS accelerometers. Its analog output and stable sensitivity offer precise, real-time acceleration data crucial for industrial monitoring and scientific research. Additionally, the device??s compact package and extended temperature range ensure superior reliability and ease of integration in demanding environments, making it an optimal choice over less sensitive or higher power alternatives.
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Typical Applications
- Precision vibration monitoring and analysis in industrial equipment, enabling early fault detection and maintenance scheduling through accurate acceleration data.
- Tilt sensing in robotics and automation systems, providing stable and sensitive measurement of orientation changes for precise control.
- Shock and impact detection in aerospace and automotive safety systems, ensuring reliable detection of rapid acceleration events.
- Seismic measurement and structural health monitoring, where low noise and high sensitivity are essential for detecting subtle ground or structural movements.
ADXL356BEZ Brand Info
The ADXL356BEZ is part of Analog Devices?? portfolio of high-performance MEMS accelerometers, known for stringent quality standards and innovation in sensor technology. This product is engineered to meet the rigorous demands of industrial, scientific, and instrumentation markets. With a proven track record for accuracy, reliability, and low power operation, it reflects the brand??s commitment to delivering precise sensing solutions that enable smarter, safer, and more efficient systems worldwide.
FAQ
What is the measurement range and sensitivity of this accelerometer?
This device offers a measurement range of ??40 g, suitable for detecting both moderate and high acceleration events. Its sensitivity is approximately 8 mV per g, providing a linear and
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