Allicdata Part #: | 287-1044-ND |
Manufacturer Part#: |
SDXL005D4 |
Price: | $ 0.00 |
Product Category: | Sensors, Transducers |
Manufacturer: | Honeywell Sensing and Productivity Solutions |
Short Description: | SENSOR PRESSURE DIFF 5" H2O 6DIP |
More Detail: | Pressure Sensor 0.18 PSI (1.25 kPa) Differential M... |
DataSheet: | SDXL005D4 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Supplier Device Package: | -- |
Series: | SDX |
Part Status: | Obsolete |
Pressure Type: | Differential |
Operating Pressure: | 0.18 PSI (1.25 kPa) |
Output Type: | Wheatstone Bridge |
Output: | 0 mV ~ 25 mV (12V) |
Accuracy: | ±1% |
Voltage - Supply: | 20V |
Port Size: | Male - 0.09" (2.29mm) Tube, Dual |
Port Style: | Barbless |
Features: | Temperature Compensated |
Termination Style: | PCB |
Maximum Pressure: | 7.23 PSI (49.83 kPa) |
Operating Temperature: | -40°C ~ 85°C |
Package / Case: | 6-DIP Module |
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Pressure sensors are transducers that convert pressure into an electric signal which can then be interpreted in terms of voltage, current, frequency, or digital data. They are designed to measure a variety of parameters such as pressure, altitude, liquid levels, and temperature. Pressure sensors are used widely in a variety of applications, including automotive, aerospace, medical, and chemical industries. The SDXL005D4 pressure sensor is one example of a pressure sensor with specific application fields and working principles.
The SDXL005D4 pressure sensor is a piezoresistive pressure sensor designed for automotive applications. It is designed to measure pressure in a variety of applications, including fuel tanks, exhaust systems, and air intakes. It features a low hysteresis, fast response time, and high sensitivity. The sensor is calibrated to measure pressure up to 5 bar over a temperature range of -20°C to +80°C. This makes it ideal for automotive applications where temperature and pressure vary often.
The working principle of the SDXL005D4 pressure sensor is based on the piezoresistive transduction principle. This includes the use of silicon cells that are sensitive to applied pressure. When pressure is applied to the cell, it changes the resistance of the silicon element. The strain gauge or piezoresistor is used to measure the change in resistance and convert it into a corresponding voltage or electrical signal. The electrical signal is then read by a sensor interface and converted into a usable, digital signal.
The SDXL005D4 pressure sensor is designed to operate in two modes: absolute and differential. In absolute mode, the output signal reflects the absolute pressure applied to the cell, regardless of whatever other signals are present. In differential mode, the output signal reflects the difference between the applied pressure and the reference signal. This capability makes the sensor particularly useful for automotive applications, as it can accurately measure both the applied pressure and any changes in pressure with respect to the reference signal.
The SDXL005D4 pressure sensor is an example of a pressure sensor designed for specific applications and to operate on a specific working principle. Its design makes it suitable for automotive applications, where temperature and pressure vary often. The sensor’s ability to measure pressure in two modes is also useful for automotive applications, as it can accurately measure both the applied pressure and any changes in pressure with respect to the reference signal.
The specific data is subject to PDF, and the above content is for reference
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