NXP MPX2102ASX Pressure Sensor
The MPX2102ASX is a state-of-the-art pressure sensor from NXP Semiconductors designed for a wide range of applications requiring a micro-machined silicon pressure sensor. This device offers a highly accurate and linear voltage output directly proportional to the applied pressure. The sensor is a member of NXP's MPX series of silicon piezoresistive pressure sensors that are renowned for their reliability and consistent performance.
Key Features:
- Operating Pressure Range: The MPX2102ASX operates within a pressure range of 0 to 100 kPa, making it suitable for various measurement needs.
- Temperature Compensated: This sensor includes temperature compensation from -40°C to +125°C, ensuring stable outputs across a broad range of environmental conditions.
- High Sensitivity: With a sensitivity of 40 mV/kPa, the MPX2102ASX can detect minute changes in pressure, providing precise readings for critical applications.
- Differential Pressure Measurement: It is designed to measure the difference between two pressure sources, which is essential for applications like flow rate monitoring and level detection.
- Robust Design: Encapsulated in a rugged, small outline package (SOP), the sensor is protected against environmental factors, making it ideal for robust applications.
- Integrated Silicon Pressure Sensor: On-chip signal conditioned temperature compensated and calibrated, the MPX2102ASX delivers a high-level output model for ease of use.
Applications:
The MPX2102ASX is versatile and can be employed in various industries and systems, including:
- Industrial controls
- Medical devices
- Pneumatic control systems
- Automotive systems
- Environmental monitoring
- Consumer electronics
In summary, the NXP MPX2102ASX pressure sensor is an excellent choice for system designers and engineers who require a reliable, accurate, and easy-to-integrate component for their pressure-sensing needs. Its robust design and temperature compensation make it suitable for challenging environments and ensure its performance is maintained without the need for external calibration in most applications.