IPSSAT-G1003-5C Allicdata Electronics
Allicdata Part #:

725-1497-ND

Manufacturer Part#:

IPSSAT-G1003-5C

Price: $ 307.22
Product Category:

Sensors, Transducers

Manufacturer: Cynergy 3
Short Description: PRESSURE TRANS 0-100BARG 4-20MA
More Detail: Pressure Sensor 1450.38 PSI (10000 kPa) Sealed Gau...
DataSheet: IPSSAT-G1003-5C datasheetIPSSAT-G1003-5C Datasheet/PDF
Quantity: 3
1 +: $ 279.28500
Stock 3Can Ship Immediately
$ 307.22
Specifications
Series: IPSS
Part Status: Active
Pressure Type: Sealed Gauge
Operating Pressure: 1450.38 PSI (10000 kPa)
Output Type: Analog Current
Output: 4 mA ~ 20 mA
Accuracy: ±0.25%
Voltage - Supply: 9 V ~ 32 V
Port Size: Male - 3/4" (19.05mm) BSP
Port Style: Threaded
Features: Amplified Output, Temperature Compensated
Termination Style: Connector, 4-Pin
Maximum Pressure: 2900.75 PSI (20000 kPa)
Operating Temperature: -20°C ~ 80°C
Package / Case: Cylinder, Threaded
Description

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Pressure sensors, transducers, and the like are essential components of instrumentation and control systems. The IPSSAT-G1003-5C is one such product used to measure and monitor pressure in various applications. This article will go through the application fields and working principle of the IPSSAT-G1003-5C.

The IPSSAT-G1003-5C is primarily used as an absolute pressure transducer, which is suitable for both industrial factories and production laboratories. It can be used to measure medium pressures in a range of 0 to 1000 mBar, with an accuracy between 0.1 and 1.0%. Furthermore, it is also capable of measuring differential pressures in a range of -1000 to 1000 mBar with an accuracy of between 0.1 and 1.0%.

In terms of a direct application field, this pressure transducer can be used to measure and monitor pressure in industrial processes. It is commonly used in industrial manufacturing, chemical processing, and even in oil and gas production facilities. It is designed to be compatible with PLCs, other advanced controllers, and computer-controlled systems. Furthermore, its accuracy and reliability make it an ideal choice for use in pressure measurement in hazardous environments, such as offshore production platforms, as well as in chemical and petroleum laboratories.

On a more technical note, the IPSSAT-G1003-5C works on the principle of Bernoulli’s equation. This equation states that an increase in pressure occurs when a decrease in velocity occurs in incompressible fluids. This is due to the law of conservation of energy, which states that energy is not created or destroyed, but is conserved. Therefore, when pressure in a fluid is increased, the velocity must decrease. To measure pressure, the IPSSAT-G1003-5C uses a mechanical element, which is connected to a spring. By measuring the displacement of the spring, the pressure is determined. This is a relatively simple and inexpensive way of determining pressure.

In addition, the IPSSAT-G1003-5C also features a *strain gauge element, which further increases its accuracy and reliability. A strain gauge is a type of sensor that works by measuring the induction of an electrical current as a result of a mechanical stress on an object. The strain gauge is made up of a thin foil beam with a variable electrical resistance. When the beam is strained, the resistance also changes. This change in resistance is then used to measure the strain or pressure in the object. This makes the IPSSAT-G1003-5C a highly accurate and reliable instrument for detecting pressure.

The IPSSAT-G1003-5C is a highly accurate and reliable pressure transducer, which can be used in a variety of applications. Its ability to measure absolute and differential pressures with high accuracy makes it an ideal choice for use in hazardous environments, as well as in industrial and laboratory settings. It also features a strain gauge element that increases its accuracy and reliability even further. As such, the IPSSAT-G1003-5C is an ideal choice for both commercial and industrial applications that require the accurate measurement of pressure.

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

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