0.3 PSI-D-PRIME-MV Allicdata Electronics
Allicdata Part #:

442-1042-ND

Manufacturer Part#:

0.3 PSI-D-PRIME-MV

Price: $ 58.98
Product Category:

Sensors, Transducers

Manufacturer: All Sensors Corporation
Short Description: SENSOR 0.3PSID MV DUAL
More Detail: Pressure Sensor 0.3 PSI (2.07 kPa) Differential Ma...
DataSheet: 0.3 PSI-D-PRIME-MV datasheet0.3 PSI-D-PRIME-MV Datasheet/PDF
Quantity: 1000
1 +: $ 53.61300
Stock 1000Can Ship Immediately
$ 58.98
Specifications
Series: ACPC
Part Status: Active
Pressure Type: Differential
Operating Pressure: 0.3 PSI (2.07 kPa)
Output Type: Wheatstone Bridge
Output: 0 mV ~ 20 mV (12V)
Accuracy: ±0.25%
Voltage - Supply: 16V
Port Size: Male - 0.19" (4.8mm) Tube, Dual
Port Style: Barbless
Features: Temperature Compensated
Termination Style: PCB
Maximum Pressure: 5 PSI (34.47 kPa)
Operating Temperature: -25°C ~ 85°C
Package / Case: 6-SIP Module
Supplier Device Package: --
Description

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Pressure sensors, Transducers, and the 0.3 PSI-D-PRIME-MV is an application field that is rapidly becoming promising. This technology uses a variety of transducer elements, like strain gauges, piezos, and capacitors, to convert changes in pressure into an electrical signal. Such devices count the number of molecules between two surfaces which act as a reference to evaluate a measurement. As pressure increases, the surfaces move closer together. This is the basis of a 0.3 PSI-D-PRIME-MV’s measurement range and accuracy.The 0.3 PSI-D-PRIME-MV is composed of a stainless steel support and a flexible membrane. It is the membrane which is subject to the pressure differential. Computer processing then takes this pressure differential and creates a signal proportional to the pressure. By knowing the relationship between the pressure applied and the output signal, the value of the pressure is determined.In terms of its operation, a 0.3 PSI-D-PRIME-MV utilizes a Wheatstone bridge circuit to measure the electrical resistance of a semiconductor. Voltage is continuously applied to two diagonally opposed sections of the bridge, with the other two sections being determined by the transducers. As pressure increases, the stray capacitance of the diagonally opposed transducers also increase. This change in the bridge’s capacitance is inversely proportional to the applied pressure. When the pressure is balanced, the bridge cancels out its own voltage and the Wheatstone bridge circuit gives an accurate voltage.The transducer, by itself, is unable to accurately determine the pressure applied, but it can detect the change in pressure as it is proportional to the applied voltage. The outputs from the transducers can be converted into digital signals which can be further processed, allowing for micro-pressure measurement and measurement ranges up to 0.3 PSI-D-PRIME-MV.The transducer is also used in a wide variety of applications. Pressure and level monitoring can be done with this technology, often in places where a mechanical gauge cannot take readings due to high temperatures. It can also be used to measure water levels and water activities. It can be applied to medical applications, to measure blood pressure or to monitor heart rate. Pressure transducers can be used in military applications, as well as in automotive and industrial applications.The 0.3 PSI-D-PRIME-MV also has micro-electrical applications. These are applications that take the electrical signal from the transducer and process it so that it can be used to power small machines. This can include controlling robots and electric motor systems. Moreover, it can be used for other industrial purposes like controlling safety devices or operating valves.The 0.3 PSI-D-PRIME-MV is an important and versatile application field for pressure sensors and transducers. The electrical signal they generate is the basis of accurate and instantaneous measurements, and can be used to control a variety of automated systems and machines. Its versatility allows it to be used in everything from medical to military applications.

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

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