SA5x & SA90 14,16 or 24 bit digital pressure sensor
SA54 High Accuracy piezoresistive silicon ceramic pressure sensor, offering a digital output for reading pressure over the specified full-scale pressure span and temperature range. SA54 Series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non-linearity using an on-board Application Specific Integrated Circuit (ASIC). Calibrated output values for pressure are updated at approximately 50 Hz. SA54 Series is calibrated over the temperature range of 0 °C to 60 °C. The sensor is characterized for operation from a single power supply of 3.3 Vdc. These sensors measure differential and gauge pressures. Differential versions allow application of pressure to either side of the sensing diaphragm. Gauge versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. SA54 Series sensors are intended for use with non-corrosive, non-ionic working fluids.
SA57 High Accuracy piezoresistive silicon ceramic pressure sensor, offering an analogue or 16-bit digital output for reading pressure over the specified full-scale pressure span and temperature range. SA57 Series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non-linearity using an on-board Application Specific Integrated Circuit (ASIC). Calibrated output values for pressure are updated at approximately 2 kHz. SA57 Series is calibrated over the temperature range of -10 °C to 60 °C. The sensor is characterized for operation from a single power supply of either 3.3 Vdc or 5.0 Vdc. These sensors measure differential and gage pressures. Differential versions allow application of pressure to either side of the sensing diaphragm. Gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. SA57 Series sensors are intended for use with non-corrosive, non-ionic working fluids.
SA55 High Accuracy piezoresistive silicon ceramic pressure sensor, offering an analogue or 14-bit digital output for reading pressure over the specified full-scale pressure span and temperature range. SA55 Series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non-linearity using an on-board Application Specific Integrated Circuit (ASIC). Calibrated output values for pressure are updated at approximately 1 kHz. SA55 Series is calibrated over the temperature range of -10 °C to 60 °C. The sensor is characterized for operation from a single power supply of either 3.3 Vdc or 5.0 Vdc. These sensors measure differential and gage pressures. Differential versions allow application of pressure to either side of the sensing diaphragm. Gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. SA55 Series sensors are intended for use with non-corrosive, non-ionic working fluids.
SA90 High Accuracy piezoresistive silicon ceramic pressure sensor, offering an analog/digital output for reading pressure over the specified full-scale pressure span and temperature range. SA90 Series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non-linearity using an on-board Application Specific Integrated Circuit (ASIC). Calibrated output values for pressure are updated at approximately 1 kHz. SA90 Series is calibrated over the temperature range of -20 °C to 85 °C. The sensor is characterized for operation from a single power supply of either 3.3 Vdc or 5.0 Vdc. These sensors measure differential and gage pressures. Differential versions allow application of pressure to either side of the sensing diaphragm. Gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. SA90 Series sensors are intended for use with non-corrosive, non-ionic working fluids.
Our experts can help you select the right product for your application.