IPSLU-GP015-5M12 Allicdata Electronics
Allicdata Part #:

725-1699-ND

Manufacturer Part#:

IPSLU-GP015-5M12

Price: $ 120.74
Product Category:

Sensors, Transducers

Manufacturer: Cynergy 3
Short Description: PRESSURE TRANS. 0-15PSIG 1/4"NPT
More Detail: Pressure Sensor 15 PSI (103.42 kPa) Vented Gauge M...
DataSheet: IPSLU-GP015-5M12 datasheetIPSLU-GP015-5M12 Datasheet/PDF
Quantity: 3
1 +: $ 109.76500
10 +: $ 99.47560
50 +: $ 94.33060
Stock 3Can Ship Immediately
$ 120.74
Specifications
Series: IPSLU-M12
Part Status: Active
Pressure Type: Vented Gauge
Operating Pressure: 15 PSI (103.42 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: 75 PSI (517.11 kPa)
Operating Temperature: -20°C ~ 80°C
Package / Case: Cylinder, Threaded - M12
Supplier Device Package: --
Description

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Pressure sensors, transducers, and any related device need to take readings of the pressure in gasses or liquids, then convert them into easily readable electrical signals. IPSLU-GP015-5M12 is one such device, and its purpose and operation are the main focuses of this article.

The first part to consider is the application field. IPSLU-GP015-5M12 is part of the GU series family, thus it is ideal for applications in the food and beverage industry, hospitals, and other areas needing to measure liquid pressure. This means that it can also be used in pharmaceutical production, HVAC control systems, chemical metering, and other industries. It can also be used in a variety of domestic settings that require accurate pressure readings and conversion.

To achieve accurate pressure reading capability, the IPSLU-GP015-5M12- is developed with ceramic diaphragm to measure the pressure. The ceramic diaphragm is plugged into a classical Wheatstone bridge with four active piezo-resistors. This then forms an electrical output that is directly proportional to the amount of pressure applied to it. The ceramic diaphragm is also calibrated to the customer’s requirements.

The second part is related to its working principle. Its working principle is based on a combination of pressure measurements, resistance and convertibility. The pressure is measured in the application by a ceramic diaphragm, which in turn outputs an electrical signal proportional to the measured pressure. This signal is further transferred to the corresponding Wheatstone bridge, whose resistances become proportional to the voltage applied to it. This bridge creates an output signal that has a total range equal to the varying pressure. The measured signal is then converted into a signal readable by a controller or monitor.

The IPSLU-GP015-5M12 is also constructed to operate over a wide temperature range and is available in both digital and analog formats. It is also fast and precise enough to take readings over a wide range of linear pressure. The unit is also constructed of a robust explosion-proof code which allows for safe use in hazardous environments, such as potentially explosive atmospheres.

However, it should be noted that the IPSLU-GP015-5M12 is not a real-time pressure measurement device. Its measurement capabilities are accurate in the range of 1 to 5 bar, meaning it can be useful for general monitoring applications. The device may also require additional monitoring equipment to take more precise measurements and is also limited to measuring pressure changes in the atmosphere, as it cannot measure pressure changes in liquids.

Overall, the IPSLU-GP015-5M12 is designed for the food and beverage industry, hospitals, pharmaceutical production, HVAC control systems, chemical metering, and other domestic settings. It works on a combination of pressure measurements, resistances, convertibility, and other features to take accurate readings over a wide range of linear pressure. Its robust construction also makes it safe for use in hazardous environments. Despite this, it does have disadvantages, such as not being suitable for real-time or more precise measurements and the limits placed on measuring pressure changes in liquids.

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

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