Allicdata Part #: | 26PCBFH6G-ND |
Manufacturer Part#: |
26PCBFH6G |
Price: | $ 25.93 |
Product Category: | Sensors, Transducers |
Manufacturer: | Honeywell Sensing and Productivity Solutions |
Short Description: | PRESSURE20PC26PC 5 PSI |
More Detail: | Pressure Sensor ±5 PSI (±34.47 kPa) Compound Male ... |
DataSheet: | 26PCBFH6G Datasheet/PDF |
Quantity: | 1000 |
25 +: | $ 23.56800 |
Series: | 26PC |
Part Status: | Active |
Pressure Type: | Compound |
Operating Pressure: | ±5 PSI (±34.47 kPa) |
Output Type: | Wheatstone Bridge |
Output: | 0 mV ~ 50 mV (10V) |
Accuracy: | ±0.5% |
Voltage - Supply: | 2.5 V ~ 16 V |
Port Size: | Male - M5 |
Port Style: | Threaded |
Features: | Temperature Compensated |
Maximum Pressure: | ±20 PSI (±137.9 kPa) |
Operating Temperature: | -40°C ~ 85°C |
Package / Case: | 4-SIP Module |
Supplier Device Package: | -- |
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Pressure sensors, transducers, and gauges are used in a broad range of applications. 26PCBFH6G is a pressure sensor specifically designed to measure and monitor external pressure or pressure objects. It incorporates a pressure sensitive diaphragm that is connected to a strain gauge; when the diaphragm is subjected to a pressure, it shows a physical deformation that produces strain in the gauge, leading to a proportional electrical signal conversion whose value reflects the pressure applied. Depending on the specifics of the diaphragm and strain gauge, the 26PCBFH6G pressure sensor can tolerate a wide range of pressure. Therefore, it is highly suitable for applications that require precise and reliable pressure measurement.
The 26PCBFH6G pressure sensor works on the principle of the piezoresistive effect. The pressure chamber of the sensor contains a silicon strain gauge. When the pressure is applied, the strain gauge undergoes extensional and shear strain, resulting in a change in its resistance. This resistance change is proportional to the pressure applied, and is measured by the sensor’s built-in circuit. The signal from the pressure sensor is then outputted as a millivolt corresponding to the applied pressure. The signal is then transmitted to a controller, which can be programmed to respond to such an input signal. The controller should be optimized to the specific application in question.
26PCBFH6G pressure sensors can be widely used in various industries and applications. Pressure sensors are utilized in gas and liquid handling systems, such as in pumps, compressors, flow control systems, and process control systems. Their ability to accurately measure liquids and gases makes them suitable for integration into medical instruments or automotive engines where stringent performance requirements are critical. Furthermore, they can be used in measuring pressures in medical and physiological applications, for example, when measuring the air pressure in the patient’s lungs or to detect the change in pressure of the artery walls. In industrial applications, they can be used to monitor pressure in industrial processes or in gas compression systems. Additionally, they can be employed to detect pressure variations in aircrafts, rockets, missiles, and other aerospace vehicles.
The performance of the 26PCBFH6G pressure sensor is highly dependent on the environmental conditions under which it is used. For instance, factors such as the temperature, humidity, and the presence of contaminants in the atmosphere can affect the accuracy and response time of the sensor. Therefore, it should be installed such that it is protected from these environmental conditions. The ideal operating temperature for the 26PCBFH6G pressure sensor is between 0°C and 70°C, and its output is linear up to +60°C. Another factor that should be taken into account is the pressure range, which can vary substantially from one model of the sensor to another.
26PCBFH6G pressure sensors are a reliable and repeatable option for measuring pressures in gases and liquids. They are designed to be used in a wide variety of industrial, medical, and aerospace applications, where their accurate and reliable performance can be relied on. When used in adverse environments, it is important to choose the most suitable pressure sensor model and to adjust the operating temperature to ensure maximum accuracy.
The specific data is subject to PDF, and the above content is for reference
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