ADXL316WBCSZ Overview
The ADXL316WBCSZ is a high-precision, low-noise analog accelerometer designed for vibration and shock measurement in industrial and instrumentation applications. It offers a wide bandwidth and a high sensitivity of 100 mV/g, enabling accurate detection of dynamic acceleration signals. Its low power consumption and small form factor make it ideal for integration into compact systems requiring reliable motion sensing. With robust performance across temperature ranges and low distortion, this device is suitable for critical measurement tasks. For more details, visit IC Manufacturer.
ADXL316WBCSZ Technical Specifications
| Parameter | Specification | 
|---|---|
| Sensitivity | 100 mV/g | 
| Measurement Range | ??50 g | 
| Bandwidth | 0.5 Hz to 2 kHz | 
| Noise Density | 150 ??g/??Hz | 
| Supply Voltage | ??5 V dual supply | 
| Nonlinearity | ??0.5 % full scale | 
| Operating Temperature Range | -40??C to +85??C | 
| Output Type | Analog voltage output | 
| Package | 8-lead SOIC | 
ADXL316WBCSZ Key Features
- High Sensitivity: Provides 100 mV/g output, enabling precise detection of small acceleration changes, ideal for vibration analysis.
- Wide Bandwidth: Operates from 0.5 Hz to 2 kHz, supporting both low-frequency and high-frequency dynamic measurements.
- Low Noise Density: 150 ??g/??Hz noise ensures accuracy in low-level signal detection, critical for instrumentation applications.
- Stable Performance: Maintains accuracy across a broad temperature range (-40??C to +85??C), enhancing reliability in harsh environments.
ADXL316WBCSZ Advantages vs Typical Alternatives
This accelerometer offers superior sensitivity and low noise performance compared to typical MEMS alternatives, making it well-suited for precision vibration monitoring. Its wide frequency response and low distortion improve measurement accuracy in demanding industrial applications. Additionally, the analog output simplifies integration with existing analog signal processing systems, while the dual supply operation enhances signal linearity and stability.
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Typical Applications
- Industrial vibration monitoring and condition-based maintenance systems requiring accurate, real-time acceleration data for machinery health assessment.
- Seismic and structural health monitoring where wide bandwidth and low noise are essential for detecting subtle vibrations.
- Precision instrumentation in laboratory and test environments that demand stable and high-fidelity acceleration measurements.
- Shock and impact testing in automotive and aerospace sectors, utilizing the device??s wide measurement range and robust performance.
ADXL316WBCSZ Brand Info
This product is part of Analog Devices’ portfolio of high-performance accelerometers, known for their precision and reliability in industrial sensing applications. The ADXL316WBCSZ combines advanced sensor design with robust packaging to deliver consistent analog output signals essential for vibration and shock measurement. As a trusted provider in sensor technology, the brand supports engineers with detailed documentation and application notes to facilitate seamless integration.
FAQ
What is the typical power supply requirement for this accelerometer?
The device requires a dual supply voltage of ??5 V for optimal operation. This dual supply configuration ensures accurate analog output and linear response, suitable for precision measurement systems.
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Can this accelerometer measure both static and dynamic acceleration?
This model is primarily designed for dynamic acceleration measurement due to its frequency response range starting at 0.5 Hz, making it less suited for static acceleration or tilt detection applications.
How does temperature affect the accelerometer??s performance?
The accelerometer operates reliably across -40??C to +85??C, maintaining sensitivity and low noise levels within this range, which ensures stable results in varying industrial environments.
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What type of output signal does the ADXL316WBCSZ provide?
It delivers an analog voltage output proportional to acceleration, which can be directly interfaced with analog-to-digital converters or signal conditioning circuits for further processing.
Is the device suitable for high-shock applications?
Yes, with a measurement range of ??50 g, the acceler






