IPSLUAT-GP001-5 Allicdata Electronics
Allicdata Part #:

725-1482-ND

Manufacturer Part#:

IPSLUAT-GP001-5

Price: $ 337.37
Product Category:

Sensors, Transducers

Manufacturer: Cynergy 3
Short Description: PRESSURE TRANS 0-1PSIG 4-20MA
More Detail: Pressure Sensor 1 PSI (6.89 kPa) Sealed Gauge Male...
DataSheet: IPSLUAT-GP001-5 datasheetIPSLUAT-GP001-5 Datasheet/PDF
Quantity: 3
1 +: $ 306.70300
Stock 3Can Ship Immediately
$ 337.37
Specifications
Series: IPSLUAT
Part Status: Active
Pressure Type: Sealed Gauge
Operating Pressure: 1 PSI (6.89 kPa)
Output Type: Analog Current
Output: 4 mA ~ 20 mA
Accuracy: ±0.25%
Voltage - Supply: 9 V ~ 32 V
Port Size: Male - 1/4" (6.35mm) NPT
Port Style: Threaded
Features: Amplified Output, Temperature Compensated
Termination Style: Connector
Maximum Pressure: 30 PSI (206.84 kPa)
Operating Temperature: -20°C ~ 80°C
Package / Case: Cylinder, Threaded
Description

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Pressure sensors, transducers, and IPSLUAT-GP001-5 offer advanced technology combined with a wide range of applications. This technology measures pressure and temperature in both liquids and gases by using an advanced mass flow technique. This article will provide an overview of the IPSLUAT-GP001-5 application field and working principle.

Introduction to Pressure Sensing Technologies
Pressure sensing technologies have been evolving over the years, with new technologies and products being continually released onto the market. Pressure sensors, transducers and pressure transducers have become integral components in many industrial and home automation systems. Pressure sensing technologies are used in a wide range of applications, from monitoring and measuring pressure in closed systems, to detecting and measuring pressure and temperature in industrial processes. Pressure sensors and transducers allow for accurate readings that make readings easier to obtain and allow for better control over the final product.

IPSLUAT-GP001-5 Application Field and Working Principle
The IPSLUAT-GP001-5 is an advanced pressure sensor and transducer. It utilizes a mass flow technique and has high accuracy of ± 0.5 % in liquid applications and ± 0.2 % in gas applications. It is designed to measure pressure in both liquids and gases in both closed systems and open systems. The IPSLUAT-GP001-5 can measure pressure from 0.0008 MPa to 32.8 MPa in a temperature range from -196 °C to 260 °C. It also has an operating voltage range from 9.0V to 28V.

The IPSLUAT-GP001-5 pressure sensor and transducer are able to measure pressure with a high degree of accuracy using a mass flow technique. The mass flow technique works by measuring the difference in mass between a reference flow particle and a pressure flow particle. The measured mass difference is then converted into a pressure reading. The IPSLUAT-GP001-5 is able to accurately measure current pressures accurately and also provide data about pressure variations over time.

In addition to its accuracy, the IPSLUAT-GP001-5 pressure sensor and transducer also offer several features. These features include a pressure-independent response, a highly accurate response time, and a protected electrical contact that improves temperature stability. This means that the IPSLUAT-GP001-5 is able to measure pressure in both static and dynamic applications, allowing for greater accuracy in pressure readings.

Other features of the IPSLUAT-GP001-5 include a bridge compensation that improves accuracy in low pressure readings and a built-in mechanical interface that allows for easy installation. The IPSLUAT-GP001-5 can also be used in a wide range of environments and temperatures, making it an ideal choice for industrial pressure sensing applications.

Overall, the IPSLUAT-GP001-5 pressure sensor and transducer provide advanced technology with a wide range of applications. It has a high degree of accuracy, a pressure-independent response, and a protected electrical contact that improve temperature stability. It is an ideal choice for measuring both liquid and gas pressures in closed and open systems, and can be used in a wide range of environments and temperatures.

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

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