The NXP MPVZ5004GW7U is a state-of-the-art pressure sensor that offers a highly accurate and reliable solution for a wide range of applications. This sensor is part of NXP's integrated silicon pressure sensor family, designed for a high level of integration suited for user-friendly interfaces in both digital and analog applications.
Key Features
- Sensitivity: The MPVZ5004GW7U provides a high sensitivity output that varies with applied pressure. It is capable of detecting pressure changes as small as 0.57 mV/V/Pa.
- Operating Range: This sensor operates over a pressure range of 0 to 4.0 kPa (0 to 0.58 psi), making it suitable for low-pressure measurement applications.
- Temperature Compensated: The device includes temperature compensation technology, which ensures consistent and accurate readings over a temperature range of -40°C to +125°C.
- Calibration: Each MPVZ5004GW7U sensor is individually calibrated and tested to ensure precise measurements.
- Versatility: It can be used in various applications including medical devices, industrial controls, and consumer products.
- Package: The sensor is housed in a small outline package (SOP) with a dual port configuration, allowing for easy integration into various systems.
Applications
The MPVZ5004GW7U pressure sensor is versatile and can be employed in diverse applications such as:
- Medical instrumentation, such as non-invasive blood pressure monitoring
- Environmental controls for HVAC systems
- Level indicators for tanks and reservoirs
- Altimeters and barometers for personal electronics
Technical Specifications
| Parameter |
Value |
| Pressure Range |
0 to 4.0 kPa |
| Supply Voltage |
4.75 to 5.25 V |
| Output |
0.2 to 4.7 V |
| Operating Temperature |
-40°C to +125°C |
| Package |
SOP with dual port |
The MPVZ5004GW7U from NXP is an exceptional choice for developers and engineers looking for a reliable and precise pressure sensing solution. Its robust feature set and adaptability to various applications make it a valuable component in any pressure measurement system.