ADXL1002BCPZ-RL Overview
The ADXL1002BCPZ-RL is a high-performance, low noise, wide bandwidth MEMS accelerometer designed for precision vibration and shock measurement applications. With a bandwidth extending up to 11 kHz and an ultra-low noise density of 25 ??g/??Hz, it delivers accurate, stable, and reliable acceleration data. The device operates on a 3.3 V supply and features a robust analog output with a 100 mV/g sensitivity, making it ideal for critical industrial condition monitoring and predictive maintenance systems. Its compact ceramic LCC package ensures durability under harsh environments. For detailed product data and sourcing, visit IC Manufacturer.
ADXL1002BCPZ-RL Technical Specifications
| Parameter | Specification |
|---|---|
| Measurement Range | ??50 g |
| Bandwidth (-3 dB) | 11 kHz |
| Noise Density | 25 ??g/??Hz |
| Sensitivity | 100 mV/g |
| Supply Voltage | 3.3 V ?? 0.3 V |
| Output Type | Analog voltage output |
| Operating Temperature Range | -40??C to +125??C |
| Package Type | 10-lead Ceramic LCC (Leadless Chip Carrier) |
| Nonlinearity | ??0.5% |
| Cross-Axis Sensitivity | ??2% |
ADXL1002BCPZ-RL Key Features
- Wide Bandwidth: The device offers a flat frequency response up to 11 kHz, enabling accurate capture of high-frequency vibration signals essential for precise industrial diagnostics.
- Ultra-Low Noise Performance: With a noise density of just 25 ??g/??Hz, it ensures high signal fidelity, allowing detection of very small vibrations and subtle mechanical changes.
- Robust Analog Output: Provides a linear 100 mV/g analog output, simplifying interface design and integration with existing signal processing systems.
- Wide Operating Temperature Range: Suitable for harsh industrial environments, the sensor maintains performance from -40??C to +125??C, ensuring reliability in diverse conditions.
- Compact and Durable Packaging: The 10-lead ceramic LCC package improves mechanical robustness and thermal dissipation, extending sensor lifespan in demanding applications.
ADXL1002BCPZ-RL Advantages vs Typical Alternatives
This accelerometer excels over typical alternatives due to its combination of ultra-low noise, wide bandwidth, and robust analog output. Its high sensitivity and low cross-axis interference contribute to precise, reliable measurements critical for condition monitoring and predictive maintenance. The extended operating temperature and sturdy ceramic package enhance durability and integration flexibility, making it preferable for industrial vibration sensing compared to standard MEMS accelerometers with narrower bandwidths or higher noise floors.
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Typical Applications
- Industrial condition monitoring and predictive maintenance systems utilize this accelerometer to detect early signs of machine wear or failure by accurately measuring high-frequency vibrations and shocks.
- Rotating equipment diagnostics, such as motors, pumps, and turbines, where precise vibration data is essential for performance evaluation and fault detection.
- Structural health monitoring in industrial plants, providing real-time vibration data to assess mechanical integrity and prevent unexpected downtime.
- High-frequency vibration analysis in test and measurement equipment, supporting engineers in product development and quality control processes.
ADXL1002BCPZ-RL Brand Info
The ADXL1002BCPZ-RL is a precision MEMS accelerometer from a leading semiconductor manufacturer specializing in analog and mixed-signal integrated circuits. Designed for demanding industrial applications, this product line emphasizes high accuracy, low noise, and robust packaging solutions. The device??s engineering reflects a commitment to reliability and performance in vibration sensing technology, supporting engineers and system designers in deploying advanced condition monitoring and fault diagnostics solutions.
FAQ
What type of output signal does this accelerometer provide?
This accelerometer delivers a linear analog voltage output proportional to acceleration, with a sensitivity of 100 mV/g. The analog output simplifies integration with a wide range of signal conditioning and data acquisition systems.
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