P51-500-A-L-M12-4.5OVP-000-000 Allicdata Electronics
Allicdata Part #:

P51-500-A-L-M12-4.5OVP-000-000-ND

Manufacturer Part#:

P51-500-A-L-M12-4.5OVP-000-000

Price: $ 96.96
Product Category:

Sensors, Transducers

Manufacturer: SSI Technologies Inc
Short Description: SENSOR 500PSI M10-1.25 6H 4.5V
More Detail: Pressure Sensor 500 PSI (3447.38 kPa) Absolute Fem...
DataSheet: P51-500-A-L-M12-4.5OVP-000-000 datasheetP51-500-A-L-M12-4.5OVP-000-000 Datasheet/PDF
Quantity: 1000
5 +: $ 88.14960
Stock 1000Can Ship Immediately
$ 96.96
Specifications
Series: MediaSensor™
Part Status: Active
Pressure Type: Absolute
Operating Pressure: 500 PSI (3447.38 kPa)
Output Type: Analog Voltage
Output: 0.5 V ~ 4.5 V
Accuracy: ±0.5%
Voltage - Supply: 5V
Port Size: Female - M10 x 1.25
Port Style: Threaded
Features: Amplified Output, Temperature Compensated
Termination Style: M12, 4 Pin
Maximum Pressure: --
Operating Temperature: -40°C ~ 105°C
Package / Case: Cylinder
Supplier Device Package: --
Description

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P51-500-A-L-M12-4.5OVP-000-000 pressure sensors, transducers, are used to measure the pressure of liquid, gases, or solid. They are reliable and accurate components used in many industries ranging from industrial process control and medical imaging to the mobile device industry. Pressure transducers are designed to sense pressure in a range of pressure ranges and are normally used to measure absolute, gauge, vacuum, and compound pressure.

Pressure sensors and transducers work on the principle of strain gage based technology. A strain gage is a device that measures the strain or deformation of a material when a force is applied to it. When the pressure is applied to the strain gage, it causes the strain gage to deform, thus changing its electrical resistance. This change in electrical resistance is then converted to a voltage or an output signal by the strain gage detection circuit and the output signal can then be used to calculate the pressure.

For pressure sensors and transducers, the strain gage is usually attached to a strain-relief diaphragm. This diaphragm is designed to absorb the strain, and the electrical signals generated by the strain gage are then sent through a connecting cable or wireless communication to the electronic devices for processing. The strain-relief diaphragm must be precisely matched to the strain gage in order to ensure that accurate signals are sent to the electronic device.

P51-500-A-L-M12-4.5OVP-000-000 pressure sensors and transducers have a variety of applications. The most common applications of pressure sensors include pressure measurement of liquids, gases, and solids, pressure monitoring in medical imaging, process control, pressure sensing in the aerospace industry, and pressure sensing in mobile devices. In many of these applications, pressure transducers are used in combination with other sensors to form a complete system for monitoring and controlling processes.

The accuracy and reliability of pressure sensors and transducers depend on several factors including the strain gage accuracy, the strain gage detection circuit, and the strain relief diaphragm. The strain gage accuracy is determined by the accuracy of the strain gage resistor, which must be accurately matched to the strain relief diaphragm. The strain gage detection circuit must be designed to minimize noise and errors in the output signal, and the strain relief diaphragm must be accurately matched to the strain gage to ensure accurate readings.

In conclusion, P51-500-A-L-M12-4.5OVP-000-000 pressure sensors and transducers are used to measure the pressure of liquids, gases, and solids in a range of pressure ranges. They are based on strain gage technology, whereby the strain gage is attached to a strain-relief diaphragm and the electrical signals generated by the strain gage are sent to the electronic devices for processing. Pressure transducers have a variety of applications in industries such as industrial process control, medical imaging, aerospace, and mobile devices. The accuracy and reliability of pressure sensors and transducers depend on several factors including the strain gage accuracy, the strain gage detection circuit, and the strain relief diaphragm.

The specific data is subject to PDF, and the above content is for reference

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