FXPS7115D4
FXPS7115D4 is Digital absolute pressure sensor manufactured by NXP Semiconductors.
description
The FXPS7115D4 high-performance, high-precision barometric absolute pressure (BAP) sensor consists of a pact capacitive micro-electro-mechanical systems (MEMS) device coupled with a digital integrated circuit (IC) producing a fully calibrated digital output.
The sensor is based on NXP's high-precision capacitive pressure cell technology. The architecture benefits from redundant pressure transducers as an expanded quality measure. This sensor delivers highly accurate pressure and temperature readings through either a serial peripheral interface (SPI) or an inter-integrated circuit (I2C) interface. Furthermore, the sensor employs an on-demand digital self-test for the digital IC and the MEMS transducers.
The sensor operates over a pressure range of 40 k Pa to 115 k Pa and over a wide temperature range of
- 40 ºC to 130 ºC.
The sensor es in an industry-leading 4 mm x 4 mm x 1.98 mm, restriction of hazardous substances (Ro HS) pliant, high power quad flat no lead (HQFN) package[1] suitable for small PCB integration. Its AEC-Q100[2] pliance, high accuracy, reliable performance, and high media resistivity make it ideal for use in automotive, industrial, and consumer applications.
2 Features and benefits
- Absolute pressure range: 40 k Pa to 115 k Pa
- Operating temperature range:
- 40 °C to 130 °C
- Pressure transducer and digital signal processor (DSP)
- Digital self-test
- I2C patible serial interface
- Client mode operation
- Standard mode, Fast mode, and Fast-mode Plus support
- 32-bit SPI patible serial interface
- Sensor data transmission mands
- 12-bit data for absolute pressure
- 8-bit data for temperature
- 2-bit basic status and 2-bit detailed status fields
- 3, 4, or 8-bit configurable CRC
- Capacitance to voltage converter with anti-aliasing filter
- Sigma delta ADC plus sinc filter
- 800 Hz or 1000 Hz low-pass filter for absolute pressure
- Lead-free, 16-pin HQFN, 4 mm x 4 mm x 1.98 mm package
NXP Semiconductors
Digital absolute pressure...