IPSL-G0100-5 Allicdata Electronics
Allicdata Part #:

IPSL-G0100-5-ND

Manufacturer Part#:

IPSL-G0100-5

Price: $ 144.68
Product Category:

Sensors, Transducers

Manufacturer: Cynergy 3
Short Description: SENSOR PRESSURE 0-.1BARG 4-20MA
More Detail: Pressure Sensor 1.45 PSI (10 kPa) Vented Gauge Mal...
DataSheet: IPSL-G0100-5 datasheetIPSL-G0100-5 Datasheet/PDF
Quantity: 1000
1 +: $ 131.52500
Stock 1000Can Ship Immediately
$ 144.68
Specifications
Series: IPSL
Part Status: Active
Pressure Type: Vented Gauge
Operating Pressure: 1.45 PSI (10 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) BSP
Port Style: Threaded
Features: Amplified Output, Temperature Compensated
Termination Style: Connector
Maximum Pressure: 29.01 PSI (200 kPa)
Operating Temperature: -20°C ~ 80°C
Package / Case: Cylinder
Supplier Device Package: --
Description

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Pressure sensors, also known as pressure transducers, are devices used to convert pressure into an electrical signal that can be measured and monitored by a control system. IPSL-G0100-5 is widely used pressure transducer in industrial control systems.

IPSL-G0100-5 pressure transducer uses a semiconductor strain gauge as a measurement element to measure pressure, displacement and force. The sensing element consists of several strain gauges in a Wheatstone bridge circuit. When pressure is applied to the diaphragm of the transducer, the strain gauges experience mechanical strain of which the resistance value changes. The change in resistance forms an electrical signal that is continuous and proportional to the pressure applied. This electrical signal is referred to as the pressure transducer’s output.

The application fields of IPSL-G0100-5 pressure transducer can be broadly divided into two categories: industrial and scientific.

In industrial field, IPSL-G0100-5 pressure transceiver has become an essential tool for process control, precision pressure control and data acquisition. The IoT era with its ever-growing industry requires reliable, accurate and easily deployable methods to measure and monitor pressure data. Pressure transducer is the most suitable device for this purpose. IPSL-G0100-5 pressure transducer features high accuracy, low cost, and easy installation and use, which makes it the number one choice for industrial automation.

In scientific field, IPSL-G0100-5 pressure transceiver is used in laboratory experiments to study the behavior of fluids under various conditions, analyze the behavior of microorganisms in pressurized environments, and study various physical and chemical phenomenon associated with pressure changes. In addition, IPSL-G0100-5 pressure transducers are also used for measuring the depth and pressure of water bodies, monitoring the pressure of boiling liquids, analyzing the pressure waveforms generated by heartbeats and measuring hydrostatic pressure in the deep sea.

The working principle of IPSL-G0100-5 pressure transducer is very simple. The transducer consists of a diaphragm which is connected to a strain gauge. The strain gauge is connected to a Wheatstone bridge circuit, which is connected to the input of a signal conditioning circuit. When pressure is applied to the diaphragm, it causes the strain gauge to experience mechanical strain, which changes the resistors in the bridge circuit. This change in resistance is detected by the signal conditioning circuit, which in turn changes the bridge circuit output voltage. This output voltage is continuous and proportional to the applied pressure. This output voltage is then interpreted by the control system and the pressure is measured.

In conclusion, IPSL-G0100-5 pressure transducer is a widely-used pressure transducer that is used in both industrial and scientific applications. It converts pressure into an electrical signal that can be measured and monitored by a control system. The output of the transducer is continuous and proportional to the applied pressure, and the working principle of the transducer is based on the Wheatstone bridge circuit.

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

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