P61-1000-S-A-I24-20MA-A Allicdata Electronics
Allicdata Part #:

P61-1000-S-A-I24-20MA-A-ND

Manufacturer Part#:

P61-1000-S-A-I24-20MA-A

Price: $ 124.10
Product Category:

Sensors, Transducers

Manufacturer: SSI Technologies Inc
Short Description: SENSOR 1000PSIS 1/4 NPT W/TEMP
More Detail: Pressure Sensor 1000 PSI (6894.76 kPa) Sealed Gaug...
DataSheet: P61-1000-S-A-I24-20MA-A datasheetP61-1000-S-A-I24-20MA-A Datasheet/PDF
Quantity: 1000
10 +: $ 112.81700
Stock 1000Can Ship Immediately
$ 124.1
Specifications
Series: MediaSensor™
Part Status: Active
Pressure Type: Sealed Gauge
Operating Pressure: 1000 PSI (6894.76 kPa)
Output Type: Analog Current
Output: 4 mA ~ 20 mA
Accuracy: ±0.5%
Voltage - Supply: 8 V ~ 30 V
Port Size: Male - 1/4" (6.35mm) NPT
Port Style: Threaded
Features: --
Termination Style: 24" Integral Harness
Maximum Pressure: 3000 PSI (20684.27 kPa)
Operating Temperature: -40°C ~ 105°C
Package / Case: Cylinder
Supplier Device Package: --
Description

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Pressure Sensors, Transducers

A pressure sensing transducer, such as the P61-1000-S-A-I24-20MA-A, is a device that can detect and measure the pressure of a medium, and convert the detected pressure into an electrical signal. A pressure transducer is typically used to control and monitor systems in industrial, medical, automotive, aviation, and other commercial applications, and requires an external power source and precise hardware. This article will discuss the application fields of the P61-1000-S-A-I24-20MA-A pressure transducer and the working principle behind it.

Application Field

The application fields for pressure transducers are vast, as they are used for measuring and/or controlling pressure-related variables in industrial, medical, and other systems. Pressure transducers are commonly used in the food and beverage industry to monitor and control fill levels, concentrations, and temperatures. They can be used to measure fluid pressure in pumps and valves. Automotive applications include monitoring engine temperature and oil pressure, while aviation applications may involve monitoring engine fluid pressure or aircraft fuel tanks. Pressure transducers can also be used in medical applications such as monitoring organ blood pressure and oxygen levels.

Pressure transducers are also used in industrial applications. These include measurements of pressure and flow rate in pipes and tanks, as well as level sensors for use in tanks, storage silos, sedimentation tanks, and other vessels. In the oil and gas industry, they are used for monitoring and controlling the pressure and temperature of pipelines. Additionally, in the nuclear power industry, pressure transducers are used to monitor the pressure and temperature of fuel rods. Pressure transducers are also widely employed in the chemical and petrochemical industries for controlling liquid levels and other process variables.

Working Principle

The P61-1000-S-A-I24-20MA-A pressure transducer is designed to convert pressure into an electrical signal. This is accomplished by incorporating a sensing element, usually piezoresistive, into the transducer. The sensing element consists of a diaphragm, a force-sensing resistor, and a strain-sensitive circuit. When pressure is applied to the diaphragm, the force-sensing resistor detects the pressure and converts it into an electrical signal. The electrical signal is then amplified and transformed into a proportional output voltage by the the strain-sensitive circuit.

The I24-20MA-A pressure transducer also features a low-power design, allowing it to be used in a wide range of applications. This transducer can be used with analog and digital signals, allowing it to be integrated into existing systems and processes. Its low-power design also enables it to operate for extended periods of time without having to be recharged or replaced.

As with any pressure transducer, the P61-1000-S-A-I24-20MA-A should be properly calibrated to ensure accurate measurements. Calibration involves measuring the pressure transducer output at various points to ensure that it is accurately measuring pressure. This is achieved by using a calibration curve, which is specific to the sensor used, in order to determine the linearity of the pressure transducer output.

Conclusion

The P61-1000-S-A-I24-20MA-A is a pressure transducer that can be used in a variety of applications, including food and beverage, automotive, aviation, medical, industrial, and nuclear power. The working principle behind the device is based on a sensing element that converts the applied pressure into an electrical signal which is then amplified and transformed into a proportional output voltage. In order for the pressure transducer to accurately measure pressure, it must be properly calibrated. This calibration involves measuring the pressure transducer output at various points using a calibration curve specific to the sensor.

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

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